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1 complex steel
Строительство: легированная сталь -
2 complex steel
stal stopowa wieloskładnikowa -
3 complex steel treatment plant
агрегат комплексной обработки стали
АКОС
Многофункцион. установка, включающая разнообразный набор оборудования, позволяющего выполнять в сталеразливочном ковше доводку металла по хим. составу введением кусковых ферросплавов, раскисление, модифицирование и микролегирование с использов. порошкообразных материалов и продувки газами, стабилизацию темп-ры, включая подогрев, в ряде случаев вакуумирование и др. технологич. операции рафинирования стали. Комплексная обработка стали с использов. АКОС развивается в России и за рубежом по двум схемам: на основе модульной системы, при к-рой отдельные операции выполняются на разном оборудовании при транспортировке ковша с обрабатыв. металлом и на основе универс. системы, сочетающей неск. видов внепечной обработки в неподвижном ковше. Осн. преимущ. первой системы - могут использоваться не все модули, входящие в систему, а только те, которые необходимы для обеспечения треб. уровня кач-ва стали. Достоинство универс. системы - значительно меньшая общая продолжительность внепечной обработки. С этой же целью и при модульной системе широко используют совмещение тех-нологич. операций внепечной обработки (см. тж. ВАД-процесс, АП-процесс).
[ http://metaltrade.ru/abc/a.htm]Тематики
Синонимы
EN
Англо-русский словарь нормативно-технической терминологии > complex steel treatment plant
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4 complex steel processing facility
Универсальный англо-русский словарь > complex steel processing facility
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5 steel
сталь; арматура; стальной•
- acid-resistant steel
- alloy steel
- bar steel
- blue steel
- boiler steel
- carbon steel
- carburized steel
- carburizing steel
- cast steel
- chilled steel
- chisel tool steel
- chrome steel
- cold-working die steel
- commercial steel
- complex alloy steel
- concrete steel
- corrosion-resisting steel
- die steel
- drill steel
- effervescing steel
- eutectoid steel
- forging steel
- free-cutting steel
- hardened steel
- heat-resisting steel
- high-alloy steel
- high-carbon steel
- high-speed steel
- high steel
- high-tensile steel
- low-carbon steel
- machine steel
- plate steel
- rail steel
- rapid tool steel
- ribbon steel
- rustless steel
- screw steel
- sheet steel
- spring steel
- stainless steel
- structural steel
- tool steel
- welding steel
- wild steel
- wrought steel -
6 complex alloy steel
English-Russian big polytechnic dictionary > complex alloy steel
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7 steel complex
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8 complex alloyed steel
Макаров: сложнолегированная сталь -
9 steel-casting complex
Техника: сталелитейный комплекс -
10 complex alloy steel
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11 complex alloyed steel
• сложнолегирана стоманаEnglish-Bulgarian polytechnical dictionary > complex alloyed steel
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12 complex alloy steel
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13 building
1) постройка; строение; здание; сооружение; комплекс зданий3) строительный•- abutting buildings - accessory building - additional building - administrative building - air-conditioned building - ancillary building - arch building - basic building - bay-type building - bay-type industrial building - bridge building - business building - civic building - cold-weather building - community building - concrete-steel building - control building - convertible building - deckhead building - detached building - detention building - dilapidated building - domestic building - ecclesiastical building - engine building - engineering building - exhibition building - fabricated building - flat building - framed building - frame-panel building - functional building - hall building - hall-type industrial building - heapstead building - high-density apartment building - high-rise apartment building - high-rise building - intelligent building - integrated building - jerry building - line building - low-rise apartment building - market building - medium-rise apartment building - memorial building - mill building - model building - modular building - monastic building - multispan industrial building - multispan complex industrial building - multistorey apartment building - multistoreyed building - multistoreyed garage building - municipal building - office building - one-storey building - pavilion-like building - prefabricated building - prefabricated reusable building - process building - production building - pseudodipteral building - public building - railroad building - residence building - residential building - residential and community building - ribbon building - ruinous building - sectional building - set-back building - single-aisle building - single-storey building - smallholding building - speculative building - speculative building of flats - sporadic building - sport building - sports building - standardized building - station building - steel frame mill building - stone building - storage building - store building - stressed-skin building - system building - temporal building - temporary building - tenement building - theatre building - tier building - timber building - tower building - towerlike building - two-aisle building - tyre building - universal building - walk-up building - water-conditioning building* * *1. здание; сооружение; постройка; строение; корпус2. строительство; возведение зданийbuilding constructed to 12 m grid — здание с сеткой колонн 12*12 м
building ready for moving-in — здание «под ключ»
- above-grade buildingbuilding up of surface layer — нанесение поверхностного слоя (напр. бетона при торкретировании)
- above-ground building
- abutting buildings
- accessory building
- administration building
- agricultural building
- agricultural production building
- airport building
- all-brick building
- all-metal building
- ancillary building
- arch building
- bank building
- bearing-wall building
- beautifully detailed building
- bedroom building
- bridge building
- central-corridor residential building
- centralized building
- centrally-planned building
- cherished building
- civic building
- cold-weather building
- communal building
- complicated building
- concrete building
- concrete-frame building
- curved building
- demountable building
- domestic building
- earthquake resistance building
- earth-sheltered building
- ecclesiastic building
- educational building
- energy-efficient building
- expo building
- factory building
- factory-built building
- farm building
- fireproof building
- framed building
- frame building
- functional building
- government building
- great public building
- heavy industrial building
- heightened building
- high-rise building
- historic building
- home building
- hostel building
- industrial building
- industrialized building
- industrial production building
- inflatable building
- integrated building
- large-panel building
- light industrial building
- line building
- link building
- loft building
- low-energy building
- low rise building
- main building
- manufacturing building
- memorial building
- mill building
- minor industrial building
- module-built building
- multicompartment building
- multifamily residential building
- multipurpose building
- multistory building
- multiuse building
- municipal buildings
- neighboring buildings
- nondomestic building
- nonresidential building
- office building
- permanent buildings
- portal framed building
- porticoed building
- post-frame building
- post-tensioned building
- precast concrete building
- precast concrete demountable building
- precast concrete framed building
- pre-engineered metal building
- prefabricated building
- pressurized building
- production building
- public building
- public service buildings
- quickly erected building
- racetrack building
- railway buildings
- raised building
- ramshackle building
- rectilinear building
- relocatable building
- repellent looking building
- residence building
- ribbon building
- riverside building
- school building
- science building
- set-back building
- single story building
- site-cast concrete building
- skeleton building
- solar building
- split-level building
- sports building
- steel building
- steel-framed building
- steel-frame building
- steel framed multistory buildings
- storage building
- stuccoed building
- subtle building
- systems building
- tall block building
- tapering building
- temporary buildings
- terminal building
- terraced buildings
- three-dimensional module house building
- three-dimensional house building
- three-floored building
- tier building
- tower building
- tropical building
- turn-key type building
- typical apartment building
- unassertive building
- unit-built building
- university building
- unserviceable building
- ventilation building
- walk-up building
- waterside building
- wing-shaped building
- winter building -
14 frame
1) конструкция, сооружение, строение; скелет сооружения; каркас; рама, рамка; станина; корпус2) ферма, стропила3) козлы; дуга; скоба4) стойка; колонка; траверса5) границы, пределы, рамки6) система отсчёта, система координат7) создавать, вырабатывать8) собирать ( конструкцию)9) оправлять•- A-frame - adjustable frame - all concrete frame - all-welded frame - angle iron frame - balloon frame - bearing frame - bent frame - body frame - boring frame - box-section frame - box- frame - braced frame - bracing frame - building frame - built-up frame - cab frame - carriage frame - catch frame - channel frame - chassis frame - closed rigid frame - composite truss frame - concrete frame - curved frame - door frame - engine frame - filter frame - finder frame - foundation frame - gate frame - grouted frame - guide frame - half-lattice frame - hanger frame - high-pressure gate frame - hinged frame - hingeless frame - horizontal frame - imperfect frame - jigging frame - knee frame - lattice frame - leader frame - main frame - measuring frame - metal frame - moment-resisting space frame - multiple-bay frame - portal frame - redundant frame - reinforced concrete frame - reinforced concrete skeleton frame - rigid frame - rotary frame - saw frame - self-stressed frame - skeleton frame - skeleton frame construction - slider frame - space frame - steel frame - stiff frame - stiffening frame - supporting frame - travelling frame - window frame* * *1. стержневая конструкция, каркас; рама2. дверная или оконная коробка- A frame
- arched frame
- balloon frame
- braced frame
- bracing frame
- building frame
- chassis frame of crane mounting
- complex frame
- continuous rigid frame
- continuous frame
- conveyor belt frame
- door frame
- filter frame
- fir frame
- fixed frame
- grouted frame
- high-rise building frames
- hingeless frame
- hopper frame
- imperfect frame
- knocked-down frame
- lifting frame
- measuring frame
- moment-resisting space frame
- multiple frame
- multispan frame
- multistory frame
- no-hinged frame
- one-span frame
- orthogonal space frame
- pile frame
- plane frame
- portal frame
- precast concrete frame
- reinforced concrete tower frames
- rigid frame
- rigid portal frame
- rolling shutter frame
- semirigid frame
- several stories high frame
- single swing frame
- site-cast concrete frame
- skewed space frame
- space frame
- steel rigid frame
- steel frame
- steel tube space frame
- structural frame
- structural steelwork frame
- three-dimensional frame
- three-hinged frame
- three-pinned frame
- tie frames
- timber frame
- window frame -
15 frame
- frame
- n1. стержневая конструкция, каркас; рама
2. дверная или оконная коробка
- A frame
- arched frame
- balloon frame
- braced frame
- bracing frame
- building frame
- chassis frame of crane mounting
- complex frame
- continuous rigid frame
- continuous frame
- conveyor belt frame
- door frame
- filter frame
- fir frame
- fixed frame
- grouted frame
- high-rise building frames
- hingeless frame
- hopper frame
- imperfect frame
- knocked-down frame
- lifting frame
- measuring frame
- moment-resisting space frame
- multiple frame
- multispan frame
- multistory frame
- no-hinged frame
- one-span frame
- orthogonal space frame
- pile frame
- plane frame
- portal frame
- precast concrete frame
- reinforced concrete tower frames
- rigid frame
- rigid portal frame
- rolling shutter frame
- semirigid frame
- several stories high frame
- single swing frame
- site-cast concrete frame
- skewed space frame
- space frame
- steel rigid frame
- steel frame
- steel tube space frame
- structural frame
- structural steelwork frame
- three-dimensional frame
- three-hinged frame
- three-pinned frame
- tie frames
- timber frame
- window frame
Англо-русский строительный словарь. — М.: Русский Язык. С.Н.Корчемкина, С.К.Кашкина, С.В.Курбатова. 1995.
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16 Industry
Portuguese industry includes electricity, gas, water, mining, and manufacturing sectors. Manufacturing, the largest of these sectors, is concentrated in two major industrial regions: Lisbon-Setúbal in the south and Oporto-Aveiro-Braga in the north. Together, these two regions contain the factories that account for 75 percent of Portugal's industrial output. The Lisbon-Setúbal region includes major heavy industries, such as steel making, shipbuilding and repair, oil refining, chemicals, cement, automobile assembly, wood pulp, cork, and fish processing. About 140 kilometers (84 miles) to the south at Sines is a major deepwater port and associated steel-making and oil-refining complex at Sines. Light industry is located primarily in the Oporto-Aveiro-Braga industrial triangle. Here are located factories that manufacture textiles, footwear, furniture, cutlery, and electronics. Portugal's largest petroleum refinery is located in Oporto.Industrial organization in Portugal reflects three ownership patterns: privately owned domestic factories are concentrated in light industrials; publicly owned factories dominate heavy industry, such as petrochemicals, shipbuilding, steel making, petroleum refining, and electricity; subsidiaries of multinational corporations dominate electronics, automotive, pharmaceutical, and electrical machinery industries. In general, Portugal's light industries, such as textiles, footwear, food, beverage, cork products, and furniture, are labor intensive and technologically backward. -
17 Behrens, Peter
SUBJECT AREA: Architecture and building[br]b. 14 April 1868 Hamburg, Germanyd. 27 February 1940 Berlin, Germany[br]German pioneer of modern architecture, developer of the combined use of steel, glass and concrete in industrial work.[br]During the 1890s Behrens, as an artist, was a member of the German branch of Sezessionismus and then moved towards Jugendstil (Art Nouveau) types of design in different media. His interest in architecture was aroused during the first years of the twentieth century, and a turning-point in his career was his appointment in 1907 as Artistic Supervisor and Consultant to AEG, the great Berlin electrical firm. His Turbine Factory (1909) in the city was a breakthrough in design and is still standing: in steel and glass, with visible girder construction, this is a truly functional modern building far ahead of its time. In 1910 two more of Behrens's factories were completed in Berlin, followed in 1913 by the great AEG plant at Riga, Latvia.After the First World War Behrens was in great demand for industrial construction. He designed office schemes such as those at the Mannesmann Steel Works in Dusseldorf (1911–12; now destroyed) and, in a departure from his earlier work, was responsible for a more Expressionist form of design, mainly in brick, in his extensive complex for I.G.Farben at Höchst (1920–4).In the years before the First World War, some of those who were later amongst the most famous names in modern architecture were among his pupils: Gropius, Mies van der Rohe and Le Corbusier (Charles-Edouard Jeanneret).[br]Further ReadingT.Buddenseig, 1979, Industrielkultur: Peter Behrens und die AEG 1907–14, Berlin: Mann.W.Weber (ed.), 1966, Peter Behrens (1868–1940), Kaiserslautern, Germany: Pfalzgalerie.DY -
18 Gresley, Sir Herbert Nigel
[br]b. 19 June 1876 Edinburgh, Scotlandd. 5 April 1941 Hertford, England[br]English mechanical engineer, designer of the A4-class 4–6–2 locomotive holding the world speed record for steam traction.[br]Gresley was the son of the Rector of Netherseale, Derbyshire; he was educated at Marlborough and by the age of 13 was skilled at making sketches of locomotives. In 1893 he became a pupil of F.W. Webb at Crewe works, London \& North Western Railway, and in 1898 he moved to Horwich works, Lancashire \& Yorkshire Railway, to gain drawing-office experience under J.A.F.Aspinall, subsequently becoming Foreman of the locomotive running sheds at Blackpool. In 1900 he transferred to the carriage and wagon department, and in 1904 he had risen to become its Assistant Superintendent. In 1905 he moved to the Great Northern Railway, becoming Superintendent of its carriage and wagon department at Doncaster under H.A. Ivatt. In 1906 he designed and produced a bogie luggage van with steel underframe, teak body, elliptical roof, bowed ends and buckeye couplings: this became the prototype for East Coast main-line coaches built over the next thirty-five years. In 1911 Gresley succeeded Ivatt as Locomotive, Carriage \& Wagon Superintendent. His first locomotive was a mixed-traffic 2–6–0, his next a 2–8–0 for freight. From 1915 he worked on the design of a 4–6–2 locomotive for express passenger traffic: as with Ivatt's 4 4 2s, the trailing axle would allow the wide firebox needed for Yorkshire coal. He also devised a means by which two sets of valve gear could operate the valves on a three-cylinder locomotive and applied it for the first time on a 2–8–0 built in 1918. The system was complex, but a later simplified form was used on all subsequent Gresley three-cylinder locomotives, including his first 4–6–2 which appeared in 1922. In 1921, Gresley introduced the first British restaurant car with electric cooking facilities.With the grouping of 1923, the Great Northern Railway was absorbed into the London \& North Eastern Railway and Gresley was appointed Chief Mechanical Engineer. More 4–6– 2s were built, the first British class of such wheel arrangement. Modifications to their valve gear, along lines developed by G.J. Churchward, reduced their coal consumption sufficiently to enable them to run non-stop between London and Edinburgh. So that enginemen might change over en route, some of the locomotives were equipped with corridor tenders from 1928. The design was steadily improved in detail, and by comparison an experimental 4–6–4 with a watertube boiler that Gresley produced in 1929 showed no overall benefit. A successful high-powered 2–8–2 was built in 1934, following the introduction of third-class sleeping cars, to haul 500-ton passenger trains between Edinburgh and Aberdeen.In 1932 the need to meet increasing road competition had resulted in the end of a long-standing agreement between East Coast and West Coast railways, that train journeys between London and Edinburgh by either route should be scheduled to take 8 1/4 hours. Seeking to accelerate train services, Gresley studied high-speed, diesel-electric railcars in Germany and petrol-electric railcars in France. He considered them for the London \& North Eastern Railway, but a test run by a train hauled by one of his 4–6–2s in 1934, which reached 108 mph (174 km/h), suggested that a steam train could better the railcar proposals while its accommodation would be more comfortable. To celebrate the Silver Jubilee of King George V, a high-speed, streamlined train between London and Newcastle upon Tyne was proposed, the first such train in Britain. An improved 4–6–2, the A4 class, was designed with modifications to ensure free running and an ample reserve of power up hill. Its streamlined outline included a wedge-shaped front which reduced wind resistance and helped to lift the exhaust dear of the cab windows at speed. The first locomotive of the class, named Silver Link, ran at an average speed of 100 mph (161 km/h) for 43 miles (69 km), with a maximum speed of 112 1/2 mph (181 km/h), on a seven-coach test train on 27 September 1935: the locomotive went into service hauling the Silver Jubilee express single-handed (since others of the class had still to be completed) for the first three weeks, a round trip of 536 miles (863 km) daily, much of it at 90 mph (145 km/h), without any mechanical troubles at all. Coaches for the Silver Jubilee had teak-framed, steel-panelled bodies on all-steel, welded underframes; windows were double glazed; and there was a pressure ventilation/heating system. Comparable trains were introduced between London Kings Cross and Edinburgh in 1937 and to Leeds in 1938.Gresley did not hesitate to incorporate outstanding features from elsewhere into his locomotive designs and was well aware of the work of André Chapelon in France. Four A4s built in 1938 were equipped with Kylchap twin blast-pipes and double chimneys to improve performance still further. The first of these to be completed, no. 4468, Mallard, on 3 July 1938 ran a test train at over 120 mph (193 km/h) for 2 miles (3.2 km) and momentarily achieved 126 mph (203 km/h), the world speed record for steam traction. J.Duddington was the driver and T.Bray the fireman. The use of high-speed trains came to an end with the Second World War. The A4s were then demonstrated to be powerful as well as fast: one was noted hauling a 730-ton, 22-coach train at an average speed exceeding 75 mph (120 km/h) over 30 miles (48 km). The war also halted electrification of the Manchester-Sheffield line, on the 1,500 volt DC overhead system; however, anticipating eventual resumption, Gresley had a prototype main-line Bo-Bo electric locomotive built in 1941. Sadly, Gresley died from a heart attack while still in office.[br]Principal Honours and DistinctionsKnighted 1936. President, Institution of Locomotive Engineers 1927 and 1934. President, Institution of Mechanical Engineers 1936.Further ReadingF.A.S.Brown, 1961, Nigel Gresley, Locomotive Engineer, Ian Allan (full-length biography).John Bellwood and David Jenkinson, Gresley and Stanier. A Centenary Tribute (a good comparative account).See also: Bulleid, Oliver Vaughan SnellPJGRBiographical history of technology > Gresley, Sir Herbert Nigel
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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 construction
1) строительство; стройка; постройка;2) конструкция; сооружение; строение; здание•- construction of diagram - construction of penetration macadam - construction of traffic facilities - adobe construction - agricultural building construction - airfield construction - air-supported construction - airtight construction - aseismic constructions - avalanche-protection construction - balanced construction of plywood - balloon frame construction - basic construction - BBS construction - beam and girder construction - bearing-wall construction - block construction - brick construction - bridge construction - building construction - cable constructions - cage construction - capital construction - carry-over construction - cast-in-place construction - cast-in-situ constructions - catenary construction - civil engineering construction - civilian construction - completion of construction - complex construction - composite construction - concrete construction - concrete-bent construction - contract construction - cost of construction - cross-wall construction - dam construction - date of completion of construction - delay in construction - delay in the construction of a project - double-skin construction - dry construction - dry-wall construction - dust-tight construction - environment-oriented home construction - fast construction - feasibility of the construction of a project - fill construction - fireproof construction - fixed period of construction - frame construction - fully-prefabricated construction - girderless construction - glued construction - high-rise construction - hipped-plate construction - hollow-wood construction - housing construction - hydraulic engineering construction - incombustible construction - incompleted construction project - individual housing construction - industrial building construction - industrialized construction - industrialized construction with apartments modules - integrated construction - laminated construction - large-panel constructions - large-sized block constructions - layer-built construction - levee construction - lift-slab construction - lightweight construction - load-carrying construction - lumber construction - lumber core construction - masonry construction - metal construction - methods of construction - mixed construction - modular construction - municipal construction - multiply construction - mushroom construction - mushroom slab construction - non-fireproof construction - ordinary construction - organization of construction - pace of construction - pan construction - panel construction - panelled construction - partially-prestressed composite construction - period of construction - plastic construction - plated construction - platform frame construction - pneumatic construction - portable unit construction - post-and-beam construction - posttensioned construction - power and water supply of the construction - power plant construction - pre-assembled member construction - precast construction - precast and cast-in-situ construction - precast concrete construction - precast panel construction - prefabricated construction - prefabricated demountable constructions - preload construction of tank - pre-posttensioned concrete construction - prestressed constructions - pretensioned concrete constructions reinforced with wires - pretensioned concrete constructions - project construction - protected metal construction - rammed earth construction - rammed loam construction - region of construction - reinforced brick construction - reinforced concrete construction - reinforced masonry construction - road construction - road-mix construction - sandwich construction - section construction - sectional construction - shell construction - simple in construction - skeleton construction - slow-burning construction - space grid constructions - stage construction - steel construction - steel-frame construction - steel-plate constructions - stone constructions - supporting construction - suspended constructions - temporary construction - thin-shell construction - thin-slab construction - thin-wall construction - total-prefabricated construction - two-dimensional construction - under construction - unit construction - urban construction - veneered construction - wall-bearing construction - water-front construction - welded construction - winter building construction - wood construction
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