-
1 concrete in the structure
- concrete in the structure
- n
бетон в теле конструкции (сооружения) (в отличие от бетона в контрольных образцах)
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
Англо-русский словарь строительных терминов > concrete in the structure
-
2 concrete in the structure
Строительство: бетон в теле конструкции (в отличие от бетона в контрольных образцах), бетон в теле сооружения (в отличие от бетона в контрольных образцах)Универсальный англо-русский словарь > concrete in the structure
-
3 concrete
- concrete
- nбетон; бетонная смесь || бетонировать
concrete around reinforcing steel — бетон в зоне [между стержнями] арматуры
concrete compacted by jolting — бетонная смесь, уплотнённая ударным методом [трамбованием]
concrete cured at 20°C — бетон, выдерживаемый при температуре 20°C
concrete cured at elevated temperatures — бетон, выдержанный [отвердевший] в условиях повышенных температур
concrete in mass — массивный бетон, бетон, уложенный в большой массив
concrete in the structure — бетон в теле конструкции [сооружения] ( в отличие от бетона в контрольных образцах)
concrete placed in lifts — бетон, укладываемый слоями [послойно]
concrete placed in the work — бетон, уложенный в конструкцию
concrete strong enough to support its own weight — бетон, достигший прочности, достаточной для восприятия собственного веса
concrete strong enough to support superimposed loads — бетон, достигший прочности, позволяющей воспринимать приложенные [временные] нагрузки
concrete with a high cement factor — бетонная смесь с большим содержанием цемента, жирная бетонная смесь
- concrete of inadequate quality
- concrete of the required quality
- abrasion-resistant concrete
- acid-resisting concrete
- acrylic concrete
- aerated concrete
- air-entrained concrete
- air entrapped concrete
- air-placed concrete
- air-tight concrete
- alkali-resistant glass grain-reinforced concrete
- all-lightweight-aggregate concrete
- architectural concrete
- architectural exposed concrete
- architectural precast concrete
- asbestos foamed concrete
- as-mixed concrete
- asphaltic concrete
- asphalt concrete
- as-placed concrete
- autoclaved concrete
- backfill concrete
- basalt chippings concrete
- base course concrete
- base concrete
- belt-conveyed concrete
- biological shielding concrete
- bitumen concrete
- black concrete
- blended cement concrete
- blinding concrete
- board-finished concrete
- board marked concrete
- breeze concrete
- brick-look concrete
- brushed concrete
- bulk concrete
- bush hammered concrete
- calcium silicate concrete
- cast-in-place concrete
- cellular concrete
- cement concrete
- centrifugally cast concrete
- chloride-contaminated concrete
- cinder concrete
- clay concrete
- coarse-graded asphaltic concrete
- coarse asphaltic concrete
- coarse-graded asphalt concrete
- coarse asphalt concrete
- cold-laid asphaltic concrete
- cold asphaltic concrete
- cold-laid asphalt concrete
- cold asphalt concrete
- colloidal concrete
- colored concrete
- compacted concrete
- composite reinforced concrete
- constructional concrete
- continuously reinforced concrete
- conventional concrete
- corrosion-damaged concrete
- crushed concrete
- crushed brick concrete
- cryogenic concrete
- cured concrete
- custom concrete
- cyclopean concrete
- dense concrete
- densit concrete
- dingy concrete
- disintegrated concrete
- doubly prestressed concrete
- doubly reinforced concrete
- dry concrete
- dry mixture concrete
- dry mix concrete
- durable concrete
- earth-damp concrete
- electrically conductive concrete
- electrically heated concrete
- epoxy concrete
- exfoliated vermiculite concrete
- expanded concrete
- expanded-clay concrete
- expansive-cement concrete
- exposed aggregate concrete
- extra heavy concrete
- extreme lightweight concrete
- extruded concrete
- facing concrete
- fair-faced concrete
- fat concrete
- fiber reinforced concrete
- field concrete
- field-cured concrete
- fill concrete
- fine grained concrete
- fine grain concrete
- fire-proof concrete
- floated concrete
- flowing concrete
- flow concrete
- foamed concrete
- foamed slag concrete
- foam-gas concrete
- free-flowing concrete
- fresh concrete
- freshly laid concrete
- freshly mixed concrete
- freshly placed concrete
- fully consolidated concrete
- furnace cinder concrete
- gas concrete
- glass concrete
- glass-fiber reinforced concrete
- granolithic concrete
- green concrete
- grouted-aggregate concrete
- grouted concrete
- gunned concrete
- gypsum concrete
- gypsum fiber concrete
- hand mixed concrete
- hardened concrete
- harsh concrete
- hearting concrete
- heated concrete
- heat insulating concrete
- heat-resistant concrete
- heavyweight concrete
- weight concrete
- high-density concrete
- high-early-strength concrete
- high flowability concrete
- high-pressure steam cured concrete
- high-strength concrete
- high-temperature-resisting concrete
- high-temperature concrete
- high-workability concrete
- holdover concrete
- honeycombed concrete
- hot concrete
- hot-laid asphaltic concrete
- hot asphaltic concrete
- hot-laid asphalt concrete
- hot asphalt concrete
- hot weather concrete
- hydraulic concrete
- ice concrete
- improved quality concrete
- in-fill concrete
- initial concrete
- in-situ concrete
- insulating concrete
- integrally colored concrete
- iron-shot concrete
- latex modified concrete
- lean mix concrete
- lean concrete
- left-over concrete
- lightweight concrete
- lightweight aggregate concrete
- lime concrete
- low cement content concrete
- low-density concrete
- low-grade concrete
- low-heat concrete
- low-pressure steam cured concrete
- low-slump concrete
- low-slump dense concrete
- low workability concrete
- machine mixed concrete
- marine concrete
- mass concrete
- microsilica concrete
- monolithic concrete
- mushy concrete
- nailable concrete
- new concrete
- no-fines concrete
- no-fine concrete
- noncomplying concrete
- nonshrink concrete
- normal-weight concrete
- normal concrete
- no-slump concrete
- no-voids concrete
- ocrated concrete
- off-formwork concrete
- ordinary structural concrete
- ornamental concrete
- oversite concrete
- packaged concrete
- pattern stamped concrete
- pavement concrete
- perlite aggregate concrete
- perlite concrete
- perlite insulating concrete
- pfa concrete
- pigmented concrete
- plain concrete
- plant-mixed concrete
- plastic concrete
- plastic state concrete
- pneumatically placed concrete
- polyester resin concrete
- polyester concrete
- polymer concrete
- polymer-cement concrete
- polymer-impregnated concrete
- polymer-modified concrete
- polymer-modified glass-fiber-reinforced concrete
- polystyrene bead concrete
- polystyrene-foam concrete
- poor concrete
- popcorn concrete
- porous concrete
- Portland cement concrete
- post-tension concrete
- pourable concrete
- poured-in-place concrete
- pozzolana concrete
- precast concrete
- precast glass-fiber-reinforced concrete
- precast prestressed concrete
- precast reinforced concrete
- precast with cast-in-place concrete
- prefabricated reinforced concrete
- prefab reinforced concrete
- prepacked aggregate concrete
- prepacked concrete
- pre-post tensioned concrete
- prestressed concrete
- pretensioned concrete
- pretension concrete
- properly consolidated concrete
- pumice concrete
- pumpable concrete
- quality concrete
- quality controlled concrete
- radiation shielding concrete
- rammed concrete
- ready mixed concrete
- recycled concrete
- refractory concrete
- refractory insulating concrete
- regular concrete
- reinforced concrete
- reinforced polymer concrete
- resin concrete
- resin modified cement concrete
- returned concrete
- rich concrete
- roller compacted concrete
- rubble concrete
- salt water resistant concrete
- sand concrete
- sand blasted concrete
- sawdust concrete
- scale-resistant concrete
- scoria concrete
- sealed concrete
- seawater resisting concrete
- seawater concrete
- self-compacting concrete
- self-stressed concrete
- semidry concrete
- semilightweight concrete
- set concrete
- shielding concrete
- shrinkage compensating concrete
- shrink-mixed concrete
- shuttered concrete
- silica-fume concrete
- silicate concrete
- site concrete
- site mixed concrete
- site mixed ready mixed concrete
- slag concrete
- specialty concretes
- special concretes
- specified ready mixed concrete
- sprayed concrete
- sprayed steel fiber concrete
- spun concrete
- stabilized concrete
- stamped concrete
- standard concrete
- steam cured concrete
- steel fiber concrete
- steel fiber reinforced concrete
- steel fibrous concrete
- sticky concrete
- stiff consistency concrete
- stiff concrete
- stone concrete
- structural concrete
- structural lightweight aggregate concrete
- structural lightweight concrete
- structural precast concrete
- submerged concrete
- sulfate-resistant concrete
- sulfur concrete
- sulfur-modified concrete
- super concrete
- superplasticized concrete
- superplasticized flowing concrete
- tamped concrete
- tar concrete
- terrazzo concrete
- textured architectural concrete
- textured concrete
- textured concrete left as cast
- three component concrete
- tooled concrete
- transit-mix concrete
- translucent concrete
- tremie concrete
- trowelled concrete
- truck-mixed concrete
- two-component concrete
- ultra-high-strength concrete
- uncured concrete
- undersanded concrete
- underwater concrete
- uniform concrete
- unreinforced concrete
- unsurfaced exposed concrete
- vacuum treated concrete
- vacuum concrete
- vermiculate concrete
- vibrated concrete
- waterproofed concrete
- water-repellent concrete
- watertight concrete
- weak concrete
- wearproof concrete
- wet concrete
- white cement concrete
- white concrete
- wire prestressed precast concrete
- wire stressed precast concrete
- wood cement concrete
- wood fiber concrete
- zero slump concrete
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
* * * -
4 concrete
1) бетон3) бетонный4) бетонировать; сращивать5) конкретный; определённый•to lay concrete in alternate bay — укладывать бетонное покрытие "через плиту" ( дорожное строительство)
to let into concrete — забетонировать; заделать в бетон
to mix concrete "en route" — перемешивать бетон в пути ( в автобетономешалке)
to prestress reinforced concrete by post-tensioning — предварительно напрягать железобетон натяжением на упоры
to transfer stress from the reinforcing steel to the concrete — обжимать бетон при предварительном напряжении в изделии
to strike off surplus concrete — снимать, срезать излишки бетона
- concrete of stiff consistency - above-water concrete - acid-resisting concrete - adjustment of concrete mixture - aerated concrete - ageing of concrete - agglomerate-foam concrete - air-entrained concrete - air-entraining concrete - air-entrapped concrete - air-hardening of concrete - airfree concrete - air-placed concrete - airtight concrete - antiseptic concrete - application of concrete mixture - architectural concrete - architectural exposed concrete - armoured concrete - articulated concrete - asbestos-foamed concrete - as cast concrete - ash concrete - asphalt concrete - asphaltic concrete - asphaltic-cement concrete - as-placed concrete - autoclaved concrete - autoclaved cellular concrete - awakened concrete - balancing of proposed concrete mix - arrangement of steel in reinforced concrete - ballast concrete - batching of concrete mix - batching of concrete mix by volume - batching of concrete mix by weight - belt-conveyed concrete - biological shielding concrete - bituminous concrete - bituminous concrete pavement - bleeding of concrete - blown-out concrete - bonded to the steel concrete - booted concrete - breakdown test for concrete sample - breeze concrete - broken concrete - build concrete - buried concrete - bush-hammered concrete - cassie concrete - cast concrete - cast-in-place concrete - cast-in-situ concrete - cell concrete - cellular concrete - cement concrete - cement concrete pavement - central-mixed concrete - ceramsite concrete - cinder concrete - close-up failures in concrete structure - coarse concrete - coarseness of concrete mixture grading - cinder cement concrete - coke cement concrete - cold weather concrete - colloidal concrete - coloured concrete - compacted concrete - continuous concrete - controlled-quality concrete - copper-bearing concrete - corrosion-damaged concrete - crack safety of reinforced concrete elements - crazed concrete - crushed concrete - crushed-stone concrete - cured concrete - curing of concrete by ponding - curing of concrete units - curing of test concrete specimens - custom concrete - dead load of concrete structure - de-aerated concrete - deformation of concrete mix - delayed-setting concrete - dense concrete - dense ballast concrete - deposing of concrete - dry-mix concrete - dry concrete - early-strength concrete - earth concrete - electrically conductive concrete - epoxy concrete - excess concrete - expansive concrete - exposed concrete - extra-heavy concrete - fast-hardening concrete - fat concrete - faulty concrete - fibrous concrete - field concrete - fine concrete - finished concrete - floated concrete - floating concrete mixture plant - fluating of concrete - fluid concrete - fly-ash concrete - foam concrete - folding concrete form - fresh concrete - fully consolidated concrete - gas concrete - glass concrete - glass-fibre reinforced concrete - granite concrete - gravel concrete - gravel-aggregated concrete - green concrete - grouted-aggregate concrete - guss concrete - hand-compacted concrete - gypsum concrete - gypsum fibre concrete - hard concrete - hard rock concrete - hardened concrete - hardening of concrete - harsh concrete - haydite concrete - hearting concrete - heat-insulating concrete - heat-resistant concrete - heavy concrete - high-slump concrete - high-strength concrete - hollow concrete - homogeneous concrete - honeycombing concrete - hooped concrete - hot-laid asphaltic concrete - hydraulic concrete - ingredients of concrete - in-situ concrete - integral waterproofing of concrete - iron-shot concrete - job-mixed concrete - job-placed concrete - jonquil concrete - lean concrete - light aggregate concrete - lightweight concrete - lightweight aggregate concrete - lilac concrete - lime concrete - liquid concrete - liquid glass concrete - loose concrete - low-porosity concrete - low-slump concrete - machine-mixed concrete - marine concrete - mass concrete - mushy consistency of concrete - nailable concrete - nailing concrete - normal concrete - normal heavy concrete - no-slump concrete - off-formwork concrete - ordinary dense concrete - overnight concrete - oversite concrete - pavement concrete - placeability of concrete - placement of concrete - plain concrete - polymer concrete - polypropylene-fibre reinforced concrete - polystyrene-foam concrete - poor concrete - poor-quality concrete - popcorn concrete - porous concrete - portland-cement concrete - portland-pozzolana concrete - poured-in-place concrete - post-stressed concrete - post-tensioned concrete - precast concrete - precast structural concrete - prepacked aggregate concrete - pressed concrete - prestressed concrete - prestressed concrete with anchor loops - prestressed concrete with anchor plates - pumice concrete - pump concrete - quality concrete - rammed concrete - reactive aggregate concrete - ready-mix concrete - ready-mixed concrete - refractory concrete - reinforced concrete - rich concrete - roller compacted concrete - rough concrete - rubble concrete - sample of concrete - sand and gravel concrete - sand-cinder concrete - sandwich concrete - sawdust concrete - segregated concrete - segregating concrete - self-stressed concrete - setting of concrete - site concrete - slag concrete - slag-foam concrete - slow-setting concrete - spread concrete - spreaded concrete - spun concrete - stamped concrete - steam-cured concrete - steamed concrete - steel concrete - steel-fibre reinforced concrete - stiff concrete - stone concrete - structural concrete - stuck concrete - subaqueous concrete - substandard concrete - sulphur concrete - sulphur modified concrete - tamped concrete - tar concrete - terazzo concrete - transit-mix concrete - transit-mixed concrete - tremie concrete - ultra-high-strength concrete - undersanded concrete - underwater concrete - unworkable concrete - vacuum concrete - vacuum-treated concrete - vermiculite concrete - water-cured concrete - waterproof concrete - watertight concrete - weather resistant concrete - wet concrete - wood-fibre concrete - workability of concrete - workable concreteto strike off excess concrete — снимать, срезать излишки бетона
* * *бетон; бетонная смесь || бетонироватьconcrete around reinforcing steel — бетон в зоне [между стержнями] арматуры
concrete compacted by jolting — бетонная смесь, уплотнённая ударным методом [трамбованием]
concrete cured at 20°C — бетон, выдерживаемый при температуре 20°C
concrete cured at elevated temperatures — бетон, выдержанный [отвердевший] в условиях повышенных температур
concrete in mass — массивный бетон, бетон, уложенный в большой массив
concrete in the structure — бетон в теле конструкции [сооружения] ( в отличие от бетона в контрольных образцах)
concrete placed in lifts — бетон, укладываемый слоями [послойно]
concrete placed in the work — бетон, уложенный в конструкцию
concrete strong enough to support its own weight — бетон, достигший прочности, достаточной для восприятия собственного веса
concrete strong enough to support superimposed loads — бетон, достигший прочности, позволяющей воспринимать приложенные [временные] нагрузки
- concrete of inadequate qualityconcrete with a high cement factor — бетонная смесь с большим содержанием цемента, жирная бетонная смесь
- concrete of the required quality
- abrasion-resistant concrete
- acid-resisting concrete
- acrylic concrete
- aerated concrete
- air-entrained concrete
- air entrapped concrete
- air-placed concrete
- air-tight concrete
- alkali-resistant glass grain-reinforced concrete
- all-lightweight-aggregate concrete
- architectural concrete
- architectural exposed concrete
- architectural precast concrete
- asbestos foamed concrete
- as-mixed concrete
- asphaltic concrete
- asphalt concrete
- as-placed concrete
- autoclaved concrete
- backfill concrete
- basalt chippings concrete
- base course concrete
- base concrete
- belt-conveyed concrete
- biological shielding concrete
- bitumen concrete
- black concrete
- blended cement concrete
- blinding concrete
- board-finished concrete
- board marked concrete
- breeze concrete
- brick-look concrete
- brushed concrete
- bulk concrete
- bush hammered concrete
- calcium silicate concrete
- cast-in-place concrete
- cellular concrete
- cement concrete
- centrifugally cast concrete
- chloride-contaminated concrete
- cinder concrete
- clay concrete
- coarse-graded asphaltic concrete
- coarse asphaltic concrete
- coarse-graded asphalt concrete
- coarse asphalt concrete
- cold-laid asphaltic concrete
- cold asphaltic concrete
- cold-laid asphalt concrete
- cold asphalt concrete
- colloidal concrete
- colored concrete
- compacted concrete
- composite reinforced concrete
- constructional concrete
- continuously reinforced concrete
- conventional concrete
- corrosion-damaged concrete
- crushed concrete
- crushed brick concrete
- cryogenic concrete
- cured concrete
- custom concrete
- cyclopean concrete
- dense concrete
- densit concrete
- dingy concrete
- disintegrated concrete
- doubly prestressed concrete
- doubly reinforced concrete
- dry concrete
- dry mixture concrete
- dry mix concrete
- durable concrete
- earth-damp concrete
- electrically conductive concrete
- electrically heated concrete
- epoxy concrete
- exfoliated vermiculite concrete
- expanded concrete
- expanded-clay concrete
- expansive-cement concrete
- exposed aggregate concrete
- extra heavy concrete
- extreme lightweight concrete
- extruded concrete
- facing concrete
- fair-faced concrete
- fat concrete
- fiber reinforced concrete
- field concrete
- field-cured concrete
- fill concrete
- fine grained concrete
- fine grain concrete
- fire-proof concrete
- floated concrete
- flowing concrete
- flow concrete
- foamed concrete
- foamed slag concrete
- foam-gas concrete
- free-flowing concrete
- fresh concrete
- freshly laid concrete
- freshly mixed concrete
- freshly placed concrete
- fully consolidated concrete
- furnace cinder concrete
- gas concrete
- glass concrete
- glass-fiber reinforced concrete
- granolithic concrete
- green concrete
- grouted-aggregate concrete
- grouted concrete
- gunned concrete
- gypsum concrete
- gypsum fiber concrete
- hand mixed concrete
- hardened concrete
- harsh concrete
- hearting concrete
- heated concrete
- heat insulating concrete
- heat-resistant concrete
- heavyweight concrete
- weight concrete
- high-density concrete
- high-early-strength concrete
- high flowability concrete
- high-pressure steam cured concrete
- high-strength concrete
- high-temperature-resisting concrete
- high-temperature concrete
- high-workability concrete
- holdover concrete
- honeycombed concrete
- hot concrete
- hot-laid asphaltic concrete
- hot asphaltic concrete
- hot-laid asphalt concrete
- hot asphalt concrete
- hot weather concrete
- hydraulic concrete
- ice concrete
- improved quality concrete
- in-fill concrete
- initial concrete
- in-situ concrete
- insulating concrete
- integrally colored concrete
- iron-shot concrete
- latex modified concrete
- lean mix concrete
- lean concrete
- left-over concrete
- lightweight concrete
- lightweight aggregate concrete
- lime concrete
- low cement content concrete
- low-density concrete
- low-grade concrete
- low-heat concrete
- low-pressure steam cured concrete
- low-slump concrete
- low-slump dense concrete
- low workability concrete
- machine mixed concrete
- marine concrete
- mass concrete
- microsilica concrete
- monolithic concrete
- mushy concrete
- nailable concrete
- new concrete
- no-fines concrete
- no-fine concrete
- noncomplying concrete
- nonshrink concrete
- normal-weight concrete
- normal concrete
- no-slump concrete
- no-voids concrete
- ocrated concrete
- off-formwork concrete
- ordinary structural concrete
- ornamental concrete
- oversite concrete
- packaged concrete
- pattern stamped concrete
- pavement concrete
- perlite aggregate concrete
- perlite concrete
- perlite insulating concrete
- pfa concrete
- pigmented concrete
- plain concrete
- plant-mixed concrete
- plastic concrete
- plastic state concrete
- pneumatically placed concrete
- polyester resin concrete
- polyester concrete
- polymer concrete
- polymer-cement concrete
- polymer-impregnated concrete
- polymer-modified concrete
- polymer-modified glass-fiber-reinforced concrete
- polystyrene bead concrete
- polystyrene-foam concrete
- poor concrete
- popcorn concrete
- porous concrete
- Portland cement concrete
- post-tension concrete
- pourable concrete
- poured-in-place concrete
- pozzolana concrete
- precast concrete
- precast glass-fiber-reinforced concrete
- precast prestressed concrete
- precast reinforced concrete
- precast with cast-in-place concrete
- prefabricated reinforced concrete
- prefab reinforced concrete
- prepacked aggregate concrete
- prepacked concrete
- pre-post tensioned concrete
- prestressed concrete
- pretensioned concrete
- pretension concrete
- properly consolidated concrete
- pumice concrete
- pumpable concrete
- quality concrete
- quality controlled concrete
- radiation shielding concrete
- rammed concrete
- ready mixed concrete
- recycled concrete
- refractory concrete
- refractory insulating concrete
- regular concrete
- reinforced concrete
- reinforced polymer concrete
- resin concrete
- resin modified cement concrete
- returned concrete
- rich concrete
- roller compacted concrete
- rubble concrete
- salt water resistant concrete
- sand concrete
- sand blasted concrete
- sawdust concrete
- scale-resistant concrete
- scoria concrete
- sealed concrete
- seawater resisting concrete
- seawater concrete
- self-compacting concrete
- self-stressed concrete
- semidry concrete
- semilightweight concrete
- set concrete
- shielding concrete
- shrinkage compensating concrete
- shrink-mixed concrete
- shuttered concrete
- silica-fume concrete
- silicate concrete
- site concrete
- site mixed concrete
- site mixed ready mixed concrete
- slag concrete
- specialty concretes
- special concretes
- specified ready mixed concrete
- sprayed concrete
- sprayed steel fiber concrete
- spun concrete
- stabilized concrete
- stamped concrete
- standard concrete
- steam cured concrete
- steel fiber concrete
- steel fiber reinforced concrete
- steel fibrous concrete
- sticky concrete
- stiff consistency concrete
- stiff concrete
- stone concrete
- structural concrete
- structural lightweight aggregate concrete
- structural lightweight concrete
- structural precast concrete
- submerged concrete
- sulfate-resistant concrete
- sulfur concrete
- sulfur-modified concrete
- super concrete
- superplasticized concrete
- superplasticized flowing concrete
- tamped concrete
- tar concrete
- terrazzo concrete
- textured architectural concrete
- textured concrete
- textured concrete left as cast
- three component concrete
- tooled concrete
- transit-mix concrete
- translucent concrete
- tremie concrete
- trowelled concrete
- truck-mixed concrete
- two-component concrete
- ultra-high-strength concrete
- uncured concrete
- undersanded concrete
- underwater concrete
- uniform concrete
- unreinforced concrete
- unsurfaced exposed concrete
- vacuum treated concrete
- vacuum concrete
- vermiculate concrete
- vibrated concrete
- waterproofed concrete
- water-repellent concrete
- watertight concrete
- weak concrete
- wearproof concrete
- wet concrete
- white cement concrete
- white concrete
- wire prestressed precast concrete
- wire stressed precast concrete
- wood cement concrete
- wood fiber concrete
- zero slump concrete -
5 structure
- structure
- n1. конструкция; конструктивная система (здания, сооружения)
2. сооружение, здание
3. структура
4. pl леса; подмости; поддерживающие конструкции
structure beyond repair — сооружение, не подлежащее восстановлению ( из-за чрезмерного износа)
structure designed by elastic method of analysis — конструкция, рассчитанная с учётом только упругой работы
structure designed by plastic theory — конструкция, рассчитанная по теории пластичности
structure designed on an experimental basis — сооружение [объект] экспериментального проектирования
structure exposed to wind force — сооружение, подвергаемое воздействию ветровых нагрузок; сооружение, для которого ветровые нагрузки являются основными
structure in design stage — сооружение в стадии проектирования; проектируемое сооружение
to make the structure statically determinate — превратить конструкцию в статически определимую ( путём удаления лишних связей)
structure subjected to specified loads — конструкция, нагруженная заданными [расчётными] нагрузками
- above-grade structure
- air-supported structure
- alien structure
- alignment structure
- all-metal structure
- all welded steel structure
- amorphous structure
- angle structure
- appurtenant structure
- arched structure
- architectural structure
- Armco multiplate superspan bridging structures
- armocement structure
- aseismic structure
- atomic reactor containment structure
- auxiliary structure
- avalanche brake structure
- backwater structure
- bank protection structure
- beam-and-column structure
- block structure
- box-type structure
- box structure
- braced structure
- building structure
- bulkhead structure
- cantilever structure
- carrying structure
- cased structure
- cast-in-situ structure
- cellular structure
- cladding structure
- closure structure
- coast-protecting structure
- completed structure
- composite structure
- concrete structure
- concrete gravity structure
- conjugation structure
- continuous structure
- control structure
- conveyance structure
- crest structure
- crib structure
- cross-wall structures
- crystalline structure
- dead-end structure
- dispersed structure
- dome structure
- drop structure
- earth structure
- earthquake-resistant structure
- earth-sheltered structure
- encased structure
- enclosing structures
- engineering structures
- external protection structure
- fish-protection structure
- fixed gravity structure
- floated-in structure
- floating structure
- flocculated structure
- floor structure
- folded plate structure
- folded structure
- framed structure
- freely supported structure
- free standing tower structure
- geological structure
- girder structure
- glass-block structure
- glued structure
- granular structure
- gravity structure
- grid structure
- guide structure
- heated structure
- heat-insulated structure
- high-rise structure
- high-strength structure
- hinged structure
- honeycomb structure
- hydraulic structure
- hyperstatic structure
- in-line structure
- intake structure
- laminated structure
- large-block structure
- large panel structure
- large span structure
- lattice structure
- lightweight structure
- linear structures
- line structures
- load-bearing structure
- log structure
- long span structure
- major structure
- manure storage structure
- marine structure
- massive concrete structure
- mass concrete structure
- metal structure
- modular structure
- multilevel structure
- multilevel cast-in-place parking structure
- multilevel precast concrete bar structure
- multiple span structure
- multistorey structure
- nonbearing structure
- nuclear energy structures
- offshore structure
- oil field structure
- open parking structure
- open-pile braced structure
- open-web structure
- orthotropic structure
- outfall structure
- outlet structure
- panel structure
- parking structure
- perlitic structure
- permanent structure
- pile structure
- pile-and-crib structure
- plate structures
- port structure
- portable structure
- portal structure
- post-and-beam structure
- precast structure
- prestressed structure
- prestressed pretensioned structure
- pretensioned structure
- radial plan structure
- rectilinear structure
- redundant structure
- regulating structure
- reinforced concrete structure
- reinforced masonry structure
- reinforced soil structure
- reinforced timber structure
- rigid structure
- rigid-plastic structure
- roof structure
- seismic structure
- self-supporting structure
- shell structure
- simply supported structure
- single span structure
- skeleton-type structure
- skeleton structure
- soil structure
- solid structure
- space structure
- space-grid structure
- spillway structure
- sports structure
- statically determinate structure
- statically indeterminate structure
- steel structure
- steel and concrete structure
- steel bearing structure
- storage structure
- stressed skin structure
- submerged structure
- subsurface structure
- supporting structure
- surface structure
- suspended structure
- suspended cable net structure
- tailrace structure
- tall structure
- thin-shell structure
- thin-walled prismatic structure
- thin-walled steel structure
- training structure
- truss structure
- tube-in-tube structure
- tubular structure
- turnout structure
- unclad structure
- underground structure
- underpinning structure
- underwater structure
- unified structure
- unsafe structure
- unusual structure
- urban structure
- utility structures
- vault structure
- water-conveyance structure
- water-diverting structure
- water-filled framed structure
- waterfront structure
- water retaining structure
- welded structure
- zoned earthfill structure
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
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6 structure
1) сооружение; конструкция; конструктивная система; строение; здание2) расположение частей; конструкция; устройство3) структура•- airtight structure - alignment structure - all-metal structure - all-veneer structure - all-welded steel structure - angle structure - armocement structure - aseismic structures - avalanche-protection structure - balloon structure - balloon frame structure - basic structure - beam and girder structure - beam and slab structure - beamless plate structure - bearing structure - bearing-wall structure - bedded structure - block structure - box structure - box-like space structure - braced structure - brick structure - brick-veneer structure - bridge structure - building structure - built-up structure - buried structure - cable structures - cable-stayed structures - cage structure - cancelled structure - cast-in-situ structures - cellular structure - classification of structures - coast-protecting structure - community structure - compact structure - compact grain structure - composite structure - concrete structure - concrete-bent structure - concrete gravity structure - concretionary structure - conjugation structure - crest structure - crib structure - cross-wall structure - crystal structure - cubic structure - curved structure - dangerous structure - dead-end structure - deformation of structure - disasterproof structure - double-skin structure - dust-tight structure - earthquakeproof structure - engineering structure - exterior structure - fabricated structure - filler structure - fine structure - fireproof structure - flood-regulating structure - folded plate structure - frame structure - geologic structure - girder structure - girderless structure - glued structure - glued-laminated structure - grade separation structure - grain structure - granular structure - guide structure - hipped-plate structure - historic structure - hollow-wood structure - hydraulic structure - incombustible structure - indeterminate structure - industrial structure - intake structure - jointless structure - ladder structure - lamellar structure - laminated structure - large-panel structures - large-sized block structures - latticed structure - layer-built structure - load-bearing structure - load-carrying structure - lumber core structure - mammoth building structure - masonry structure - mesh structure - metal structure - mixed structure - modular structure - moving-form structure - multi-span structure - non-bearing structure - non-fireproof structure - non-redundant structure - open structure - orbiting structure - pan structure - panelled structure - partially-prestressed composite structure - paste structure - pell-mell structure - permanent structure - plated structure - platform frame structure - porous structure - post and beam structure - post and panel structure - posttensioned structure - pre-assembled member structure - precast structure - precast and cast-in-situ structure - precast concrete structure - precast panel structure - prefabricated structure - prefabricated demountable structures - pre-posttensioned concrete structure - pressurized structure - prestressed structures - pretensioned concrete structures - probabilistic model of structure - protected metal structure - rammed loam structure - redundant structure - reinforced brick structure - reinforced concrete structure - reinforced masonry structure - reliability of structure - residential structures - rigid structure - rigid framed structure - road-mix structure - rumpled structure - sandwich structure - separation structure - shell structure - simple structure - simple in structure - single-grain structure - skeleton structure - slow-burning structure - slow-burning heavy timber structure - soil structure - solid-walled structure - space grid structures - statically determinate structure - statically indeterminate structure - steel structure - steel-frame structure - steel-plate structures - stone structures - stratified structure - supporting structure - suspended structures - temporary structure - thin-shell structure - thin-slab structure - thin-walled structure - tidal-regulating structure - tone structure - tower-base structure - track structure - trussed structure - two-hinged structure - urban spatial structure - veneered structure - vesicular structure - void structure - wall-bearing structure - water-diverting structure - waterfront structure - water purification structure - waterside structure - weight of structure - welded structure - welded steel structure - wood structureto load a structure — нагружать конструкцию, сооружение
* * *1. конструкция; конструктивная система (здания, сооружения)2. сооружение, здание3. структура4. pl леса; подмости; поддерживающие конструкцииstructure beyond repair — сооружение, не подлежащее восстановлению ( из-за чрезмерного износа)
structure designed by elastic method of analysis — конструкция, рассчитанная с учётом только упругой работы
structure designed by plastic theory — конструкция, рассчитанная по теории пластичности
structure designed on an experimental basis — сооружение [объект] экспериментального проектирования
structure exposed to wind force — сооружение, подвергаемое воздействию ветровых нагрузок; сооружение, для которого ветровые нагрузки являются основными
structure in design stage — сооружение в стадии проектирования; проектируемое сооружение
to make the structure statically determinate — превратить конструкцию в статически определимую ( путём удаления лишних связей)
- above-grade structurestructure subjected to specified loads — конструкция, нагруженная заданными [расчётными] нагрузками
- air-supported structure
- alien structure
- alignment structure
- all-metal structure
- all welded steel structure
- amorphous structure
- angle structure
- appurtenant structure
- arched structure
- architectural structure
- Armco multiplate superspan bridging structures
- armocement structure
- aseismic structure
- atomic reactor containment structure
- auxiliary structure
- avalanche brake structure
- backwater structure
- bank protection structure
- beam-and-column structure
- block structure
- box-type structure
- box structure
- braced structure
- building structure
- bulkhead structure
- cantilever structure
- carrying structure
- cased structure
- cast-in-situ structure
- cellular structure
- cladding structure
- closure structure
- coast-protecting structure
- completed structure
- composite structure
- concrete structure
- concrete gravity structure
- conjugation structure
- continuous structure
- control structure
- conveyance structure
- crest structure
- crib structure
- cross-wall structures
- crystalline structure
- dead-end structure
- dispersed structure
- dome structure
- drop structure
- earth structure
- earthquake-resistant structure
- earth-sheltered structure
- encased structure
- enclosing structures
- engineering structures
- external protection structure
- fish-protection structure
- fixed gravity structure
- floated-in structure
- floating structure
- flocculated structure
- floor structure
- folded plate structure
- folded structure
- framed structure
- freely supported structure
- free standing tower structure
- geological structure
- girder structure
- glass-block structure
- glued structure
- granular structure
- gravity structure
- grid structure
- guide structure
- heated structure
- heat-insulated structure
- high-rise structure
- high-strength structure
- hinged structure
- honeycomb structure
- hydraulic structure
- hyperstatic structure
- in-line structure
- intake structure
- laminated structure
- large-block structure
- large panel structure
- large span structure
- lattice structure
- lightweight structure
- linear structures
- line structures
- load-bearing structure
- log structure
- long span structure
- major structure
- manure storage structure
- marine structure
- massive concrete structure
- mass concrete structure
- metal structure
- modular structure
- multilevel structure
- multilevel cast-in-place parking structure
- multilevel precast concrete bar structure
- multiple span structure
- multistorey structure
- nonbearing structure
- nuclear energy structures
- offshore structure
- oil field structure
- open parking structure
- open-pile braced structure
- open-web structure
- orthotropic structure
- outfall structure
- outlet structure
- panel structure
- parking structure
- perlitic structure
- permanent structure
- pile structure
- pile-and-crib structure
- plate structures
- port structure
- portable structure
- portal structure
- post-and-beam structure
- precast structure
- prestressed structure
- prestressed pretensioned structure
- pretensioned structure
- radial plan structure
- rectilinear structure
- redundant structure
- regulating structure
- reinforced concrete structure
- reinforced masonry structure
- reinforced soil structure
- reinforced timber structure
- rigid structure
- rigid-plastic structure
- roof structure
- seismic structure
- self-supporting structure
- shell structure
- simply supported structure
- single span structure
- skeleton-type structure
- skeleton structure
- soil structure
- solid structure
- space structure
- space-grid structure
- spillway structure
- sports structure
- statically determinate structure
- statically indeterminate structure
- steel structure
- steel and concrete structure
- steel bearing structure
- storage structure
- stressed skin structure
- submerged structure
- subsurface structure
- supporting structure
- surface structure
- suspended structure
- suspended cable net structure
- tailrace structure
- tall structure
- thin-shell structure
- thin-walled prismatic structure
- thin-walled steel structure
- training structure
- truss structure
- tube-in-tube structure
- tubular structure
- turnout structure
- unclad structure
- underground structure
- underpinning structure
- underwater structure
- unified structure
- unsafe structure
- unusual structure
- urban structure
- utility structures
- vault structure
- water-conveyance structure
- water-diverting structure
- water-filled framed structure
- waterfront structure
- water retaining structure
- welded structure
- zoned earthfill structure -
7 Nervi, Pier Luigi
[br]b. 21 June 1891 Sondrio, Italyd. 9 January 1979 (?), Italy[br]Italian engineer who played a vital role in the use and adaptation of reinforced concrete as a structural material from the 1930s to the 1970s.[br]Nervi early established a reputation in the use of reinforced concrete with his stadium in Florence (1930–2). This elegant concrete structure combines graceful curves with functional solidity and is capable of seating some 35,000 spectators. The stadium was followed by the aircraft hangars built for the Italian Air Force at Orvieto and Ortebello, in which he spanned the vast roofs of the hangars with thin-shelled vaults supported by precast concrete beams and steel-reinforced ribs. The structural strength and subtle curves of these ribbed roofs set the pattern for Nervi's techniques, which he subsequently varied and elaborated on to solve problems that arose in further commissions.Immediately after the Second World War Italy was short of supplies of steel for structural purposes so, in contrast to the USA, Britain and Germany, did not for some years construct any quantity of steel-framed rectangular buildinngs used for offices, housing or industrial use. It was Nervi who led the way to a ferroconcrete approach, using a new type of structure based on these materials in the form of a fine steel mesh sprayed with cement mortar and used to roof all kinds of structures. It was a method that resulted in expressionist curves instead of rectangular blocks, and the first of his great exhibition halls at Turin (1949), with a vault span of 240 ft (73 m), was an early example of this technique. Nervi continued to create original and beautiful ferroconcrete structures of infinite variety: for example, the hall at the Lido di Roma, Ostia; the terme at Chianciano; and the three buildings that he designed for the Rome Olympics in 1960. The Palazzetto dello Sport is probably the most famous of these, for which he co-operated with the architect Annibale Vitellozzi to construct a small sports palace seating 5,000 spectators under a concrete "big top" of 194 ft (59 m) diameter, its enclosing walls supported by thirtysix guy ropes of concrete; inside, the elegant roof displays a floral quality. In 1960 Nervi returned to Turin to build his imaginative Palace of Labour for the centenary celebrations of Garibaldi and Victor Emmanuel in the city. This vast hall, like the Crystal Palace in England a century earlier (see Paxton), had to be built quickly and be suitable for later adaptation. It was therefore constructed partly in steel, and the metal supporting columns rose to palm-leaf capitals reminiscent of those in ancient Nile palaces.Nervi's aim was always to create functional buildings that simultaneously act by their aesthetic qualities as an effective educational influence. Functionalism for Nervi never became "brutalism". In consequence, his work is admired by the lay public as well as by architects. He collaborated with many of the outstanding architects of the day: with Gio Ponti on the Pirelli Building in Milan (1955–9); with Zehrfuss and Breuer on the Y-plan UNESCO Building in Paris (1953–7); and with Marcello Piacentini on the 16,000-seat Palazzo dello Sport in Rome. Nervi found time to write a number of books on building construction and design, lectured in the Universities of Rio de Janiero and Buenos Aires, and was for many years Professor of Technology and Technique of Construction in the Faculty of Architecture at the University of Rome. He continued to design new structures until well into the 1970s.[br]Principal Honours and DistinctionsRIBA Royal Gold Medal 1960. Royal Institute of Structural Engineers Gold Medal 1968. Honorary Degree Edinburgh University, Warsaw University, Munich University, London University, Harvard University. Member International Institute of Arts and Letters, Zurich; American Academy of Arts and Sciences; Royal Academy of Fine Arts, Stockholm.Bibliography1956, Structures, New York: Dodge.1945, Scienza o Arte del Costruire?, Rome: Bussola.Further ReadingP.Desideri et al., 1979, Pier Luigi Nervi, Bologna: Zanichelli.A.L.Huxtable, 1960, Masters of World Architecture; Pier Luigi Nervi, New York: Braziller.DY -
8 damage
1) повреждение; разрушение2) дефект3) ком. ущерб, убыток4) мн. ч.; ком. возмещение ущерба5) повреждать, разрушать; наносить ущерб•to claim damages — ком. взыскивать убытки
- accidental damage - actual damage - aesthetic damage - agreed-and-liquidated damage - assembly damage - cable damage - collision damage of a panel - concealed damage - corrosive damage - corrosive-fatigue damage - critical damage of a structure - early damage - earthquake damage - ecological damage - electrical damage - electronic unit damage - environmental damage - equipment damage - erosive damage - external damage of a building - external damage of concrete surface - fastener damage - fire damage - flood damage - fractional damage - frost structure damage - general damages - in-plant damage - internal damage of the structure - leaking-causing oil pump damage - liquidated damage - machine damage - maintenance damage - mechanical damage - noise fatigue damage - nominal and contemptuous damages - overheat damage - overrun damage - physical damage - pipeline damage - pollution damage - prospective damages - seismic damage of bridges - shock damage - specific damages - statutory damages - storing damage - structural damage - structural fatigue damage - structure buckling damage - superficial damage - surface damage - transport damage - vibration damage to concrete - visible damageto recover damages — ком. получать компенсацию ( за убытки)
* * *разрушение; повреждение- actual damage
- corrosion damage
- earthquake damage
- fatigue damage
- fire damage to concrete
- freeze-thaw damage
- freezing damage
- frost damage
- impact damage
- seismic damage to buildings
- steel corrosion damage of concrete
- structural damage -
9 Mies van der Rohe, Ludwig
SUBJECT AREA: Architecture and building[br]b. 27 March 1886 Aachen, Germanyd. 17 August 1969 Chicago, USA[br]German architect, third of the great trio of long-lived, second-generation modernists who established the international style in the inter-war years and brought it to maturity (See Jeanneret (Le Corbusier) and Gropius).[br]Mies van der Rohe was the son of a stonemason and his early constructional training came from his father. As a young man he gained experience of the modern school from study of the architecture of the earlier leaders, notably Peter Behrens, Hendrik Berlage and Frank Lloyd Wright. He commenced architectural practice in 1913 and soon after the First World War was establishing his own version of modern architecture. His building materials were always of the highest quality, of marble, stone, glass and, especially, steel. He stripped his designs of all extraneous decoration: more than any of his contemporaries he followed the theme of elegance, functionalism and an ascetic concentration on essentials. He believed that architectural design should not look backwards but should reflect the contemporary achievement of advanced technology in both its construction and the materials used, and he began early in his career to act upon these beliefs. Typical was his early concrete and glass office building of 1922, after which, more importantly, came his designs for the German Pavilion at the Barcelona Exposition of 1929. These designs included his famous Barcelona chair, made from chrome steel and leather in a geometrical design, one which has survived as a classic and is still in production. Another milestone was his Tugendhat House in Brno (1930), a long, low, rectilinear structure in glass and steel that set a pattern for many later buildings of this type. In 1930 Mies followed his colleagues as third Director of the Bauhaus, but due to the rise of National Socialism in Germany it was closed in 1933. He finally left Germany for the USA in 1937, and the following year he took up his post as Director of Architecture in Chicago at what is now known as the Illinois Institute of Technology and where he remained for twenty years. In America Mies van der Rohe continued to develop his work upon his original thesis. His buildings are always recognizable for their elegance, fine proportions, high-quality materials and clean, geometrical forms; nearly all are of glass and steel in rectangular shapes. The structure and design evolved according to the individual needs of each commission, and there were three fundamental types of design. One type was the single or grouped high-rise tower, built for apartments for the wealthy, as in his Lake Shore Drive Apartments in Chicago (1948–51), or for city-centre offices, as in his Seagram Building in New York (1954–8, with Philip Johnson) or his Chicago Federal Centre (1964). Another form was the long, low rectangle based upon the earlier Tugendhat House and seen again in the New National Gallery in Berlin (1965–8). Third, there were the grouped schemes when the commission called for buildings of varied purpose on a single, large site. Here Mies van der Rohe achieved a variety and interest in the different shapes and heights of buildings set out in spatial harmony of landscape. Some examples of this type of scheme were housing estates (Lafayette Park Housing Development in Detroit, 1955–6), while others were for educational, commercial or shopping requirements, as at the Toronto Dominion Centre (1963–9).[br]Further ReadingL.Hilbersheimer, 1956, Ludwig Mies van der Rohe, Chicago: P.Theobald.Peter Blake, 1960, Mies van der Rohe, Architecture and Structure, Penguin, Pelican. Arthur Drexler, 1960, Ludwig Mies van der Rohe, London: Mayflower.Philip Johnson, 1978, Mies van der Rohe, Seeker and Warburg.DYBiographical history of technology > Mies van der Rohe, Ludwig
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10 action
1) действие, работа (механизма, машины); воздействие; режим работы (механизма, машины); принцип действия2) мероприятие3) решение4) акт, документ ( официальный); иск•- action of rust - adhesive action - ad-hoc action - aerodynamic action - arch action - authorized action - cantilever action - column action - combined action - cylinder action - delayed action - follow-up action - frost action - gravity action - mutual action of steel and concrete - notch action - pulsed action - pumping action - surface action - unauthorized action - vibration action - wedging action* * *действие, воздействие; деятельность- aggressive action
- arching action
- atmospheric action
- backward and forward action
- boggy action
- bounding action
- cataract action
- centrifugal action
- chemical action of concrete setting
- climatic action
- combined action
- control action
- delayed action
- double action
- dynamic action
- earthquake action
- equivalent action
- fly ash action in concrete mix
- fly ash action in mix
- freeze-and-thaw action
- freeze-thaw action
- frost action
- gravity action
- high-low action
- indirect action
- most unfavourable action of load
- principal action of admixture
- reciprocal action
- safety action
- shearing action
- statical action of a force
- statical action
- steady action
- temperature action
- two-way action
- vacuum breaking action
- wind pressure action on the structure -
11 CIDS
1) Авиация: cabin intercommunication data system2) Военный термин: Combat Identification for the Dismounted Soldier, Combat Information Demonstration System, chemical information data system, combat information display system, communications in direct support, critical items development specification3) Сокращение: Coastal Intrusion & Detection System (Canada), Collateral Information Display Station, Contracting Information Data System5) Иммунология: Canadian Implantable Defibrillator Study -
12 cids
1) Авиация: cabin intercommunication data system2) Военный термин: Combat Identification for the Dismounted Soldier, Combat Information Demonstration System, chemical information data system, combat information display system, communications in direct support, critical items development specification3) Сокращение: Coastal Intrusion & Detection System (Canada), Collateral Information Display Station, Contracting Information Data System5) Иммунология: Canadian Implantable Defibrillator Study -
13 Eiffel, Alexandre Gustave
SUBJECT AREA: Civil engineering[br]b. 15 December 1832 Dijon, Franced. 27 December 1923 Paris, France[br]French engineer, best known for the famous tower in Paris that bears his name.[br]During his long life Eiffel, together with a number of architects, was responsible for the design and construction of a wide variety of bridges, viaducts, harbour installations, exhibition halls, galleries and department stores; he set up his own firm in 1867 to handle such construction. Of particular note were his great arched bridges, such as the 530 ft (162 m) span arch over the River Douro at Oporto in Portugal (1877–9) and the 550 ft (168 m) span of the Pont de Garabit over the Truyère in France (1880–4). He was responsible in 1884 for the protective iron-work for the Statue of Liberty in New York and, a year later, for the great dome over the Nice Observatory. In 1876 he had collaborated with Boileau to build the Bon Marché department store in Paris. The predominant material for all these structures was iron, and, in some cases glass was important. The famous Eiffel Tower in Paris is entirely of wrought iron, and the legs are supported on masonry piers that are each set into concrete beneath the ground. The idea of the tower was first conceived in 1884 by Maurice Koechlin and Emile Nougier, and Eiffel won a competition for the commission to built the structure. His imaginative and practical scheme was for a strong lightweight construction 984 ft (300 m) high, with its 12,000 sections to be prefabricated and riveted together largely before erection; the open, perforated design reduced the problems of wind resistance. The tower was constructed on schedule by 1889 to commemorate the centenary of the outbreak of the French Revolution and was the tallest structure in the world until the erection of the Empire State Building in New York in 1930–2.[br]Further ReadingJ.Harriss, 1975, The Tallest Tower: Eiffel and the Belle Epoque, Boston: Hough ton Mifflin.F.Poncetton, 1939, Eiffel: Le Magicien du Fer, Paris: Tournelle.DYBiographical history of technology > Eiffel, Alexandre Gustave
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14 treatment
1) обработка ( технологическая)2) пропитка, пропитывание3) измельчение, дробление4) обогащение6) очистка, подготовка•- acid treatment - advanced waste treatment - aerobic treatment - architectural treatment - biological sewage treatment - bituminous treatment - bituminous road surface treatment - carbon treatment - complete treatment - copper sulphate treatment - effluent treatment - final treatment - fire-retardant treatment - full-length treatment - heat treatment - heat treatment of concrete - high-pressure steam treatment - hot surface treatment - intermediate treatment - internal water treatment treatment - ion-exchange treatment - land treatment - lime treatment - multistage treatment - open-tank treatment - ozone treatment - penetration surface treatment - pole treatment - primary treatment - residential water treatment - sap treatment - secondary treatment - sewage treatment - steam treatment - superficial treatment of timber - surface treatment - symmetrical treatment - tertiary treatment - waste-water treatment - water treatment* * *обработка; очистка; пропитка ( древесины)- acid treatment
- acoustical treatment
- aerobic treatment
- A/O treatment
- architectural treatment of the structure
- architectural treatment
- biochemical sewage treatment
- biological sewage treatment
- chemical sewage treatment
- chemical water treatment
- final treatment
- flame treatment
- GAC treatment
- heat treatment
- in ground treatment of groundwater
- in ground treatment
- land treatment
- mechanical treatment
- mechanical treatment of sewage
- mixed-in-place surface treatment
- monolithic surface treatment
- open-tank treatment
- oxidation treatment
- ozone treatment
- penetration treatment
- preliminary treatment
- primary treatment of wastes
- primary sewage treatment
- secondary treatment
- sewage treatment
- sludge treatment
- soil treatment
- stress relief heat treatment
- surface treatment
- tertiary treatment
- thermal treatment
- thermal sludge treatment
- UV water treatment
- vacuum treatment of freshly laid concrete
- vacuum treatment of concrete
- water treatment
- wood fire-retardant treatment -
15 action
- action
- nдействие, воздействие; деятельность
- aggressive action
- arching action
- atmospheric action
- backward and forward action
- boggy action
- bounding action
- cataract action
- centrifugal action
- chemical action of concrete setting
- climatic action
- combined action
- control action
- delayed action
- double action
- dynamic action
- earthquake action
- equivalent action
- fly ash action in concrete mix
- fly ash action in mix
- freeze-and-thaw action
- freeze-thaw action
- frost action
- gravity action
- high-low action
- indirect action
- most unfavourable action of load
- principal action of admixture
- reciprocal action
- safety action
- shearing action
- statical action of a force
- statical action
- steady action
- temperature action
- two-way action
- vacuum breaking action
- wind pressure action on the structure
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
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16 treatment
- treatment
- nобработка; очистка; пропитка ( древесины)
- acid treatment
- acoustical treatment
- aerobic treatment
- A/O treatment
- architectural treatment of the structure
- architectural treatment
- biochemical sewage treatment
- biological sewage treatment
- chemical sewage treatment
- chemical water treatment
- final treatment
- flame treatment
- GAC treatment
- heat treatment
- in ground treatment of groundwater
- in ground treatment
- land treatment
- mechanical treatment
- mechanical treatment of sewage
- mixed-in-place surface treatment
- monolithic surface treatment
- open-tank treatment
- oxidation treatment
- ozone treatment
- penetration treatment
- preliminary treatment
- primary treatment of wastes
- primary sewage treatment
- secondary treatment
- sewage treatment
- sludge treatment
- soil treatment
- stress relief heat treatment
- surface treatment
- tertiary treatment
- thermal treatment
- thermal sludge treatment
- UV water treatment
- vacuum treatment of freshly laid concrete
- vacuum treatment of concrete
- water treatment
- wood fire-retardant treatment
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
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17 Perret, Auguste
[br]b. 12 February 1874 Ixelles, near Brussels, Belgiumd. 26 February 1954 Le Havre (?), France[br]French architect who pioneered and established building design in reinforced concrete in a style suited to the modern movement.[br]Auguste Perret belonged to the family contracting firm of A. \& G.Perret, which early specialized in the use of reinforced concrete. His eight-storey building at 25 bis Rue Franklin in Paris, built in 1902–3, was the first example of frame construction in this material and established its viability for structural design. Both ground plan and façade are uncompromisingly modern, the simplicity of the latter being relieved by unobtrusive faience decoration. The two upper floors, which are set back, and the open terrace roof garden set a pattern for future schemes. All of Perret's buildings had reinforced-concrete structures and this was clearly delineated on the façade designs. The concept was uncommon in Europe at the time, when eclecticism still largely ruled, but was derived from the late nineteenth-century skyscraper façades built by Louis Sullivan in America. In 1905–6 came Perret's Garage Ponthieu in Paris; a striking example of exposed concrete, it had a central façade window glazed in modern design in rich colours. By the 1920s ferroconcrete was in more common use, but Perret still led the field in France with his imaginative, bold use of the material. His most original structure is the Church of Notre Dame at Le Raincy on the outskirts of Paris (1922–3). The imposing exterior with its tall tower in diminishing stages is finely designed, but the interior has magnificence. It is a wide, light church, the segmented vaulted roof supported on slender columns. The whole structure is in concrete apart from the glass window panels, which extend the full height of the walls all around the church. They provide a symphony of colour culminating in deep blue behind the altar. Because of the slenderness of the columns and the richness of the glass, this church possesses a spiritual atmosphere and unimpeded sight and sound of and from the altar for everyone. It became the prototype for churches all over Europe for decades, from Moser in prewar Switzerland to Spence's postwar Coventry Cathedral.In a long working life Perret designed buildings for a wide range of purposes, adhering to his preference for ferroconcrete and adapting its use according to each building's needs. In the 1940s he was responsible for the railway station at Amiens, the Atomic Centre at Saclay and, one of his last important works, the redevelopment after wartime damage of the town centre of Le Havre. For the latter, he laid out large open squares enclosed by prefabricated units, which display a certain monotony, despite the imposing town hall and Church of St Joseph in the Place de L'Hôtel de Ville.[br]Principal Honours and DistinctionsPresident des Réunions Internationales des Architectes. American Society of the French Legion of Honour Gold Medal 1950. Elected after the Second World War to the Institut de France. First President of the International Union of Architects on its creation in 1948. RIBA Royal Gold Medal 1948.Further ReadingP.Blater, 1939, "Work of the architect A.Perret", Architektura SSSR (Moscow) 7:57 (illustrated article).1848 "Auguste Perret: a pioneer in reinforced concrete", Civil Engineers' Review, pp.296–300.Peter Collins, 1959, Concrete: The Vision of a New Architecture: A Study of Auguste Perret and his Precursors, Faber \& Faber.Marcel Zahar, 1959, D'Une Doctrine d'Architecture: Auguste Perret, Paris: Vincent Fréal.DY -
18 Wright, Frank Lloyd
SUBJECT AREA: Architecture and building[br]b. 8 June 1869 Richland Center, Wisconsin, USAd. 9 April 1959 Phoenix, Arizona, USA[br]American architect who, in an unparalleled career spanning almost seventy years, became the most important figure on the modern architectural scene both in his own country and far further afield.[br]Wright began his career in 1887 working in the Chicago offices of Adler \& Sullivan. He conceived a great admiration for Sullivan, who was then concentrating upon large commercial projects in modern mode, producing functional yet decorative buildings which took all possible advantage of new structural methods. Wright was responsible for many of the domestic commissions.In 1893 Wright left the firm in order to set up practice on his own, thus initiating a career which was to develop into three distinct phases. In the first of these, up until the First World War, he was chiefly designing houses in a concept in which he envisaged "the house as a shelter". These buildings displayed his deeply held opinion that detached houses in country areas should be designed as an integral part of the landscape, a view later to be evidenced strongly in the work of modern Finnish architects. Wright's designs were called "prairie houses" because so many of them were built in the MidWest of America, which Wright described as a "prairie". These were low and spreading, with gently sloping rooflines, very plain and clean lined, built of traditional materials in warm rural colours, blending softly into their settings. Typical was W.W.Willit's house of 1902 in Highland Park, Illinois.In the second phase of his career Wright began to build more extensively in modern materials, utilizing advanced means of construction. A notable example was his remarkable Imperial Hotel in Tokyo, carefully designed and built in 1916–22 (now demolished), with special foundations and structure to withstand (successfully) strong earthquake tremors. He also became interested in the possibilities of reinforced concrete; in 1906 he built his church at Oak Park, Illinois, entirely of this material. In the 1920s, in California, he abandoned his use of traditional materials for house building in favour of precast concrete blocks, which were intended to provide an "organic" continuity between structure and decorative surfacing. In his continued exploration of the possibilities of concrete as a building material, he created the dramatic concept of'Falling Water', a house built in 1935–7 at Bear Run in Pennsylvania in which he projected massive reinforced-concrete terraces cantilevered from a cliff over a waterfall in the woodlands. In the later 1930s an extraordinary run of original concepts came from Wright, then nearing 70 years of age, ranging from his own winter residence and studio, Taliesin West in Arizona, to the administration block for Johnson Wax (1936–9) in Racine, Wisconsin, where the main interior ceiling was supported by Minoan-style, inversely tapered concrete columns rising to spreading circular capitals which contained lighting tubes of Pyrex glass.Frank Lloyd Wright continued to work until four days before his death at the age of 91. One of his most important and certainly controversial commissions was the Solomon R.Guggenheim Museum in New York. This had been proposed in 1943 but was not finally built until 1956–9; in this striking design the museum's exhibition areas are ranged along a gradually mounting spiral ramp lit effectively from above. Controversy stemmed from the unusual and original design of exterior banding and interior descending spiral for wall-display of paintings: some critics strongly approved, while others, equally strongly, did not.[br]Principal Honours and DistinctionsRIBA Royal Gold Medal 1941.Bibliography1945, An Autobiography, Faber \& Faber.Further ReadingE.Kaufmann (ed.), 1957, Frank Lloyd Wright: an American Architect, New York: Horizon Press.H.Russell Hitchcock, 1973, In the Nature of Materials, New York: Da Capo.T.A.Heinz, 1982, Frank Lloyd Wright, New York: St Martin's.DY -
19 Mendelsohn, Erich
SUBJECT AREA: Architecture and building[br]b. 21 March 1887 Allenstein, East Prussiad. 15 September 1953 San Francisco, California, USA[br]German architect, a pioneering innovator in the modern International style of building that developed in Germany during the early 1920s.[br]In some examples of his work Mendelsohn envisaged bold, sculptural forms, dramatically expressed in light and shade, which he created with extensive use of glass, steel and concrete. Characteristic of his type of early Expressionism was his design for the Einstein Tower (1919), a physical laboratory and observatory that was purpose built for Professor Einstein's research work at Neubabelsburg near Berlin in 1921. As its shape suggests, this structure was intended to be made from poured concrete but, due to technical problems, it was erected in stucco-faced steel and brickwork. Equally dramatic and original were Mendelsohn's department stores, for example the pace-setting Schocken Stores at Stuttgart (1926) and Chemnitz (1928), the Petersdorff Store at Breslau (1927) (now Wrocaw in Poland), and a very different building, the Columbus Haus in Berlin (1929–31). One of his most original designs was also in this city, that for the complex on the great boulevard, the Kurfürstendamm, which included the Universum Cinema (1928). Mendelsohn moved to England in 1933, a refugee from Nazism, and there entered into partnership with another émigré, Serge Chermayeff from Russia. Together they were responsible for a building on the seafront at Bexhill-on-Sea, the De La Warr arts and entertainments pavilion (1935–6). This long, low, glass, steel and concrete structure was ahead of its time in England and comprised a theatre and restaurant; in the centre of the façade, facing the sea, is its chief architectural feature, a semicircular glazed staircase. Soon Mendelsohn moved on to Palestine, where he was responsible for the Government Hospital at Haifa (1937) and the Hadassah University Medical Centre in Jerusalem (1936); in both cases he skilfully adapted his mode to different climatic needs. He finally settled in the USA in 1941, where his most notable buildings are the Maimonides Hospital in San Francisco and the synagogues and Jewish community centres which he built in a number of American cities.[br]Further ReadingArnold Whittick, 1964, Erich Mendelsohn, Leonard Hill Books (the standard work).DY -
20 floor
1. перекрытие2. этажacceptable floor — покрытие пола, удовлетворяющее требованиям технических условий; приемлемое покрытие пола
basement floor — подвальное перекрытие; подвальный этаж
beam-and-slab floor — железобетонное балочное перекрытие, ребристое железобетонное перекрытие
bedroom floor — этаж с гостиничными номерами ; спальный этаж
cellular-steel floor — перекрытие из тонколистового стального настила с каналами замкнутого профиля и верхней монолитной бетонной плиты
cement-wood floor — пол из арболита; покрытие пола из арболита
3. брит. этаж над цокольным этажом, второй этажfloor height — высота этажа; высота перекрытия
4. амер. этаж на уровне нулевой отметки, первый этажground floor — цокольный этаж, первый этаж
heavily loaded floor — перекрытие, несущее тяжёлую нагрузку
heavy duty floor — пол, подвергаемый воздействию тяжёлых эксплуатационных нагрузок
5. балочное перекрытие6. пол, укладываемый по лагам или балкамkitchen floor — этаж, где размещён пищеблок
Omnia floor — сборно-монолитное железобетонное перекрытие «Омниа»
one-way floor — железобетонное плитное перекрытие, армированное в одном направлении
open-web joist floor — перекрытие из лёгких стальных сквозных прогонов и верхней железобетонной плиты
precast beam-and-filler floor — железобетонное перекрытие из сборных балок и сборных элементов заполнения
skip joist system floor — ребристое железобетонное перекрытие со значительными интервалами между рёбрами
floor screed — чистый пол; стяжка (пола)
7. монолитное безбалочное железобетонное перекрытие8. монолитный бетонный пол на грунтовом основанииI felt the floor trembling — я почувствовал, что пол дрожит
9. сборное железобетонное перекрытие из сплошных плит10. пол из сборных сплошных бетонных плитsparkproof floor — пол, не создающий искры
11. деревянное основание пола; чёрный пол12. бетонное основание полаtimber floor — деревянный пол; деревянное перекрытие
13. типовой этаж14. типовое железобетонное перекрытие
См. также в других словарях:
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