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1 mill for rolling sections
Англо-русский металлургический словарь > mill for rolling sections
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2 mill for rolling sections
1) Техника: сортовой стан, сортопрокатный стан (прокатный)2) Металлургия: сортопрокатный станУниверсальный англо-русский словарь > mill for rolling sections
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3 mill
1) завод; фабрика4) клеть ( прокатного стана)6) мельница; дробилка; измельчитель; пищ. вальцовый станок || молоть; дробить; измельчать7) станок; установка9) фреза || фрезеровать10) нефт. фрезер11) авто двигатель12) пресс (для масел, соков)13) мн. ч. вальцы14) проф. пишущая машина15) пилировать ( мыло)•mill for rolling center disktype wheels — колёсопрокатный стан;mill for rolling circular shapes — сортовой стан для прокатки круглых профилей;mill for rolling sections — сортовой (прокатный) стан, сортопрокатный станmill of straight-through design — непрерывный( прокатный) стан с прямолинейным расположением клетей-
1-2 mill
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1-2-3 mill
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air separator mill
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air-set roller mill
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air-swept mill
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attrition mill
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autogenous mill
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balanced mill
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ball mill
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ball-race mill
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ball-rolling mill
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ball-tube mill
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band mill
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bar mill
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bark mill
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barrel-type roll piercing mill
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bar-slitting mill
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bar-type horizontal boring mill
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basket mill
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batch mill
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bead mill
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beam-rolling mill
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beam mill
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beet sugar mill
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Belgian mill
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billet mill
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blade-type mill
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bloom breakdown mill
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blooming mill
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blooming/beam blank mill
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blooming-slabbing mill
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board mill
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boring mill
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bowl mill
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boxboard mill
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breakdown mill
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broadside mill
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broad-strip mill
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burr mill
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butt mill
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butt-weld pipe mill
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cage mill
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calendering mills
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cane sugar mill
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casing section mill
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cement mill
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chaser mill
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Chilean mill
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chip mill
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circular garment-strip mill
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circular knit fabric mill
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cladding mill
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clay mill
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close-coupled mill
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cluster mill
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coal-pulverizing mill
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cob mill
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coffee mill
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cogging mill
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coil skin pass mill
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coining mill
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cold-reducing tube mill
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cold-rolling mill
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cold-strip mill
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colloidal mill
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colloid mill
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color mill
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combination blooming-billet mill
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combination mill
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combination pickling-rolling mill
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commission knitting mill
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compartment mill
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compound mill
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concentrating mill
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condensing mill
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cone-roll piercing mill
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Contiloop mill
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continuous butt-weld mill
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continuous hot-strip mill
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continuous repeater mill
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continuous rod mill
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continuous rolling mill
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continuous seamless-tube rolling mill
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continuous sheet bar-and-billet mill
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continuous wide-strip hot mill
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continuous wire mill
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continuous-continuous mill
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contour rolling mill
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corn mill
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cotter mill
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cross-rolling mill
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crushing mill
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cutup mill
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cyanidation mill
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Daelen mill
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debranning mill
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descaling mill
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die rolling mill
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direct knitting mill
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direct rolling mill
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direct-fired mill
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disk mill
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double reduction mill
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double-roller mill
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double-stand rolling mill
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double-strand mill
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dough mill
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drag-over mill
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drawing mill
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drill collar mill
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drill pipe mill
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duo mill
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edger mill
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edge-runner dry mills
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edge-runner mill
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electric-weld pipe mill
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emulsifying mill
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end mill
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endless mill
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expanding mill
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extracting mill
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face mill
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feed mill
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final mills
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finishing mill
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fishing mill
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fishplate mill
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flaking mill
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flatting mill
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flax-scutching mill
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flotation mill
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flour mill
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foil rolling mill
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foil mill
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forming mill
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four-high reversing cold mill
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four-strand mill
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full-fashioning mill
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full-floating mandrel mill
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fully autogenous mill
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fully continuous tandem mill
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gang mill
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glazing mill
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Grey mill
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grinding mill
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groats mill
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groundwood mill
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guide mill
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hammer mill
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hand mill
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HCC mill
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heavy section mill
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high crown control mill
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high-lift blooming mill
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high-lift slabbing mill
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high-reduction mill
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hoop mill
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hosiery mill
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hot-pack rolling mill
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hot-rolling mill
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hot-strip mill
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hydraulic mill
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hydraulic tandem-cold mill
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impact mill
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indexable ball nose end mill
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induction weld mill
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ink mill
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inserted blade mill
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jar mill
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jet-type mill
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jet mill
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jobbing mill
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Jordan mill
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jumbo mill
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jumping mill
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junk mill
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knife casing mill
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knitted fabric mill
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knitted outerwear mill
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lapidary mill
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lap-welding mill
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light plate rolling mill
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light-section mill
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loam mill
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log band mill
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looping-type rolling mill
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lumber mill
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mandrel mill
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masticating mills
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medium-section mill
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merchant-bar mill
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merchant mill
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metal-powder rolling mill
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mixing mills
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mortar mill
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multigroove plug mill
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multiple-stand rolling mill
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multiple-strand mill
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nonferrous rolling mill
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no-twist wire rod mill
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oil mill
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one-pair roller mill
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open continuous mill
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ore mill
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outside mill
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overhang roll-type mill
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pack mill
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packer retriever mill
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paddle-type mill
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paint mill
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pan mill
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paper mill
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passover mill
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pearling mill
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pebble mill
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piercing mill
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pilger seamless-tube mill
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pilot mill
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pinch-pass mill
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pipe-and-tube mill
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pipe mill
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planetary hot mill
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planishing mill
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plate mill
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plug mill
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pneumatic mill
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pony-roughing mill
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portable pipe mill
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press piercing mill
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primary mill
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profile mill
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provender mill
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pug mill
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pullover mill
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pulp mill
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pulp-and-paper mill
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pulverizing mill
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purifierless mill
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push mill
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quarto mill
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quasi-continuous tandem-type rolling mill
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quasi-continuous type rolling mill
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rail and structural steel mill
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rail finishing mill
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rail rerolling mill
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rail rolling mill
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railway-wheel mill
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railway-wheel-and-tire mill
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Raschel mill
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reamer mill
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reducing mill
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reducing-sizing mill
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reduction mill
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refining mill
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reinforcing bar mill
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repiercing mill
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retained mandrel mill
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reversing mill
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ring-rolling mill
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ring-type cold-strip mill
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rockright mill
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rod mill
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rod repeater mill
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roll mills
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roller mill
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rolling mill
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rotary piercing mill
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rotary-rolling mill
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round nose mill
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run-down mill
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runner mill
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S mill
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saw mill
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seamless-tube rolling mill
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secondary mill
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section mill
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semiautogenous grinding mill
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semifinishing mill
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shape rolling mill
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shape mill
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shaping mill
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sheared plate mill
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sheet bar mill
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sheet mill
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sheeting mill
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sheet-temper mill
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shredder mill
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side mill
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single-groove plug mill
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single-pass mill
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single-sheet rolling mill
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single-stand mill
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sinking mill
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sinking-sizing mill
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six-high cluster mill
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sizing mill
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skelp mill
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skin rolling mill
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skin mill
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skirted mill
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slabbing mill
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slab mill
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small-section mill
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soaproller mills
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soap mills
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solid mill
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squirrel cage mill
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stamp mill
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starting mill
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Steckel mill
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stretch-reducing mill
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strip rolling mill
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structural mill
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tandem mill
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taper mill
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Taylor mill
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temper/double reduction mill
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tempering mill
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tertiary mill
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thin-sheet mill
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thread mill
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three-quarter continuous hot-strip mill
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three-roll planetary cross-rolling mill
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tie-plate mill
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tin-plate mill
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tin mill
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tire rolling mill
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Transval mill
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tricot mill
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trio mill
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triplet mill
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tube mill
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tube-forming mill
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tube-rolling mill
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tube-stretch-reducing mill
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tube-welding mill
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tubing mill
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tubular mill
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tumbling mill
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turret-type vertical mill
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twelve-high reversing cluster mill
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twin blooming mill
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two-roll mills
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two-storey mill
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underwear mill
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unidirectional mill
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universal slabbing mill
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UOE mill
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uranium mill
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vacuum-rolling mill
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vacuum-stand mill
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vegetable mill
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veneer mill
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versatile precision rolling mill
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vertical-horizontal-vertical reversing mill
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vibrating mill
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warming mills
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warp knitted fabric mill
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welding-and-forming mill
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wet stamp mill
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wheel rolling mill
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wide-flange beam mill
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wide-strip rolling mill
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window mill
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wire mill
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wire-rod mill
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Y-mill
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Z mill
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Z rolling mill
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zoom rolling mill -
4 сортопрокатный стан
1) Engineering: mill for rolling section, mill for rolling sections (прокатный), section mill, shape mill2) Metallurgy: bar-rolling mill, mill for rolling sectionsУниверсальный русско-английский словарь > сортопрокатный стан
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5 сортовой стан
1) Engineering: mill for rolling section, mill for rolling sections, section mill, shape mill2) Railway term: bar mill, merchant mill4) Makarov: section rolling mill -
6 Alleyne, Sir John Gay Newton
SUBJECT AREA: Metallurgy[br]b. 8 September 1820 Barbadosd. 20 February 1912 Falmouth, Cornwall, England[br]English iron and steel manufacturer, inventor of the reversing rolling mill.[br]Alleyne was the heir to a baronetcy created in 1769, which he succeeded to on the death of his father in 1870. He was educated at Harrow and at Bonn University, and from 1843 to 1851 he was Warden at Dulwich College, to the founder of which the family claimed to be related.Alleyne's business career began with a short spell in the sugar industry at Barbados, but he returned to England to enter Butterley Iron Works Company, where he remained for many years. He was at first concerned with the production of rolled-iron girders for floors, especially for fireproof flooring, and deck beams for iron ships. The demand for large sections exceeded the capacity of the small mills then in use at Butterley, so Alleyne introduced the welding of T-sections to form the required H-sections.In 1861 Alleyne patented a mechanical traverser for moving ingots in front of and behind a rolling mill, enabling one person to manipulate large pieces. In 1870 he introduced his major innovation, the two-high reversing mill, which enabled the metal to be passed back and forth between the rolls until it assumed the required size and shape. The mill had two steam engines, which supplied the motion in opposite directions. These two inventions produced considerable economies in time and effort in handling the metal and enabled much heavier pieces to be processed.During Alleyne's regime, the Butterley Company secured some notable contracts, such as the roof of St Paneras Station, London, in 1868, with the then-unparalleled span of 240 ft (73 m). The manufacture and erection of this awe-inspiring structure was a tribute to Alleyne's abilities. In 1872 he masterminded the design and construction of the large railway bridge over the Old Maas at Dordrecht, Holland. Alleyne also devised a method of determining small quantities of phosphorus in iron and steel by means of the spectroscope. In his spare time he was a skilled astronomical observer and metalworker in his private workshop.[br]Bibliography1875, "The estimation of small quantities of phosphorus in iron and steel by spectrum analysis", Journal of the Iron and Steel Institute: 62.Further ReadingObituary, 1912, Journal of the Iron and Steel Institute: 406–8.LRDBiographical history of technology > Alleyne, Sir John Gay Newton
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7 Bedson, George
SUBJECT AREA: Metallurgy[br]b. 3 November 1820 Sutton Coldfield, Warwickshire, Englandd. 12 December 1884 Manchester (?), England[br]English metallurgist, inventor of the continuous rolling mill.[br]He acquired a considerable knowledge of wire-making in his father's works before he took a position in 1839 at the works of James Edleston at Warrington. From there, in 1851, he went to Manchester as Manager of Richard Johnson \& Sons' wire mill, where he remained for the rest of his life. It was there that he initiated several important improvements in the manufacture of wire. These included a system of circulating puddling furnace water bottoms and sides, and a galvanizing process. His most important innovation, however, was the continuous mill for producing iron rod for wiredrawing. Previously the red-hot iron billets had to be handled repeatedly through a stand or set of rolls to reduce the billet to the required shape, with time and heat being lost at each handling. In Bedson's continuous mill, the billet entered the first of a succession of stands placed as closely to each other as possible and emerged from the final one as rod suitable for wiredrawing, without any intermediate handling. A second novel feature was that alternate rolls were arranged vertically to save turning the piece manually through a right angle. That improved the quality as well as the speed of production. Bedson's first continuous mill was erected in Manchester in 1862 and had sixteen stands in tandem. A mill on this principle had been patented the previous year by Charles While of Pontypridd, South Wales, but it was Bedson who made it work and brought it into use commercially. A difficult problem to overcome was that as the piece being rolled lengthened, its speed increased, so that each pair of rolls had to increase correspondingly. The only source of power was a steam engine working a single drive shaft, but Bedson achieved the greater speeds by using successively larger gear-wheels at each stand.Bedson's first mill was highly successful, and a second one was erected at the Manchester works; however, its application was limited to the production of small bars, rods and sections. Nevertheless, Bedson's mill established an important principle of rolling-mill design that was to have wider applications in later years.[br]Further ReadingObituary, 1884, Journal of the Iron and Steel Institute 27:539–40. W.K.V.Gale, 1969, Iron and Steel, London: Longmans, pp. 81–2.LRD -
8 Ramsbottom, John
[br]b. 11 September 1814 Todmorden, Lancashire, Englandd. 20 May 1897 Alderley Edge, Cheshire, England[br]English railway engineer, inventor of the reversing rolling mill.[br]Ramsbottom's initial experience was gained at the locomotive manufacturers Sharp, Roberts \& Co. At the age of 28 he was Manager of the Longsight works of the Manchester \& Birmingham Railway, which, with other lines, became part of the London \& North Western Railway (L \& NWR) in 1846. Ramsbottom was appointed Locomotive Superintendent of its north-eastern division. Soon after 1850 came his first major invention, that of the split-ring piston, consisting of castiron rings fitted round the piston to ensure a steam-tight fit in the cylinder. This proved to be successful, with a worldwide application. In 1856 he introduced sight-feed lubrication and the form of safety valve that bears his name. In 1857 he became Locomotive Superintendent of the L \& NWR at Crewe, producing two notable classes of locomotives: 2–4–0s for passenger traffic; and 0–6–0s for goods. They were of straightforward design and robust construction, and ran successfully for many years. His most spectacular railway invention was the water trough between the rails which enabled locomotives to replenish their water tanks without stopping.As part of his policy of making Crewe works as independent as possible, Ramsbottom made several metallurgical innovations. He installed one of the earliest Bessemer converters for steelmaking. More important, in 1866 he coupled the engine part of a railway engine to a two-high rolling mill so that the rolls could be run in either direction, and quickly change direction, by means of the standard railway link reversing gear. This greatly speeded up the rolling of iron or steel into the required sections. He eventually retired in 1871.[br]Further ReadingJ.N.Weatwood, 1977, Locomotive Designers in the Age of Steam, London: Sidgwick \& Jackson, pp. 43–7.W.K.V.Gale, 1969, Iron and Steel, London: Longmans, p. 80 (provides brief details of his reversing mill).F.C.Hammerton, 1937, John Ramsbottom, the Father of the Modern Locomotive,London.LRD
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