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rising steel

  • 1 недораскисленная сталь

    Русско-английский технический словарь > недораскисленная сталь

  • 2 недораскисленная сталь

    Русско-английский политехнический словарь > недораскисленная сталь

  • 3 недостаточно раскисленная сталь

    Русско-английский исловарь по машиностроению и автоматизации производства > недостаточно раскисленная сталь

  • 4 stal rosnąca nieuspokojona

    • rising steel

    Słownik polsko-angielski dla inżynierów > stal rosnąca nieuspokojona

  • 5 недостаточно раскисленная сталь

    Русско-английский политехнический словарь > недостаточно раскисленная сталь

  • 6 сталь

    * * *
    сталь ж.
    steel
    азоти́ровать сталь — nitride steel
    алити́ровать сталь — aluminize steel
    вакууми́ровать сталь — treat (molten) steel under vacuum
    вари́ть сталь жарг.make steel
    ворони́ть сталь — blue steel
    выплавля́ть сталь — make steel
    гофрирова́ть сталь — corrugate steel
    закаля́ть сталь — harden steel; ( охлаждать в целях закалки) quench steel
    ката́ть сталь в горя́чем состоя́нии — hot-roll steel
    ката́ть сталь в холо́дном состоя́нии — cold-roll steel
    леги́ровать сталь — alloy steel
    нагарто́вывать сталь — work-harden steel
    нагрева́ть сталь — reheat steel
    науглеро́живать сталь — carburize steel
    нормализова́ть сталь — normalize steel
    обраба́тывать сталь термомехани́ческий — ausform steel
    омедня́ть сталь — copper-plate steel
    отжига́ть сталь — anneal steel
    отпуска́ть сталь — temper steel
    оцинко́вывать сталь — galvanize steel
    пакети́ровать сталь — fagot steel
    передува́ть сталь — overblow steel
    пережига́ть сталь — burn steel
    плакирова́ть сталь — clad steel
    подверга́ть сталь термообрабо́тке — heat-treat steel
    поставля́ть сталь по механи́ческим сво́йствам — market steel on the basis of physical specifications
    поставля́ть сталь по хими́ческому соста́ву — market steel on the basis of chemical specifications
    продува́ть сталь по́лностью — blow steel fully
    разлива́ть сталь (в изло́жницы) — cast steel, pour [teem] steel into moulds
    расчисля́ть сталь — deoxidize steel
    рифли́ть сталь — checker steel
    стабилизи́ровать сталь — stabilize steel
    трави́ть сталь — pickle steel
    успока́ивать сталь — kill steel
    хроми́ровать сталь хими́ческим спо́собом — chromate steel
    хроми́ровать сталь электролити́ческим спо́собом — chrome-plate steel
    цементи́ровать сталь — case-harden steel
    авиацио́нная сталь — aircraft steel
    автома́тная сталь — free-cutting steel
    алма́зная сталь — extra-hard steel
    армату́рная сталь — reinforcing-bar steel; ( вид проката) reinforcing bars
    аустени́тная сталь — abstenitic steel
    бессеме́ровская сталь — Bessemer steel
    бруско́вая сталь уст.(square) bar steel
    быстроре́жущая сталь — high-speed steel
    була́тная сталь — Damascus steel, damascene
    высоколеги́рованная сталь — high-alloy steel
    высокоуглеро́дистая, высокомарганцо́вистая и т. п. сталь — high-carbon, high-manganese, etc. steel
    дама́сская сталь — Damascus steel, damascene
    дина́мная сталь — dynamo steel
    дисперсио́нно-тверде́ющая сталь — precipitation-hardening steel
    доэвтекто́идная сталь — hypoeutectoid steel
    жаропро́чная сталь — high-temperature steel
    жаросто́йкая сталь — heat-resistant steel
    заклё́почная сталь — rivet steel
    заэвтекто́идная сталь — hypereutectoid steel
    износосто́йкая сталь — wear-resisting steel
    инструмента́льная сталь — tool steel
    квадра́тная сталь — squares
    кипя́щая сталь — брит. rimming steel; амер. rimmed steel
    ки́слая сталь — acid steel
    кислотосто́йкая сталь — acid resisting steel
    кла́панная сталь — valve steel
    конве́ртерная сталь — converter steel
    конструкцио́нная сталь — structural steel
    ко́рпусная сталь — hull plate
    коррозио́нно-сто́йкая сталь — corrosion-resistant steel
    коте́льная сталь — boiler steel
    кремни́стая сталь — silicon steel
    кру́глая сталь — rounds
    леги́рованная сталь — alloyed [alloy-treated] steel
    малоуглеро́дистая сталь — low-carbon steel
    ма́рганцевая сталь — manganese steel
    марте́новская сталь — open-hearth steel
    мартенси́тная сталь — martensitic steel
    мартенситностаре́ющая сталь — maraging steel
    многосло́йная сталь — ply steel
    мя́гкая сталь — mild [soft] steel
    недораски́сленная сталь — rising steel
    нелеги́рованная сталь — plain (carbon) steel
    нема́рочная сталь — off-grade steel
    нержаве́ющая сталь — stainless steel
    низколеги́рованная сталь — low-alloyed steel
    низкоуглеро́дистая сталь — low-carbon steel
    о́бручная сталь — hoop iron
    основна́я сталь — basic steel
    перли́тная сталь — pearlitic steel
    сталь пове́рхностной прока́ливаемости — shallow-hardening steel
    подши́пниковая сталь — bearing steel
    полосова́я сталь ( не путать со стально́й полосо́й) — strip steel (not to be confused with steel strip)
    полуспоко́йная сталь — semikilled steel
    прока́тная, углова́я сталь — angles
    прока́тная, углова́я неравнобо́кая сталь — unequal angles
    прока́тная, углова́я равнобо́кая сталь — equal angles
    проста́я сталь — plain steel
    про́фильная сталь — steel shapes
    пружи́нная сталь — spring steel
    прутко́вая сталь — rod steel; ( вид проката) rods
    ре́льсовая сталь — rail steel
    ро́слая сталь — rising steel
    самозака́ливающаяся сталь — air-hardening steel
    сва́рочная сталь — weld steel
    сталь сквозно́й прока́ливаемости — through-hardening steel
    споко́йная сталь — killed steel
    судострои́тельная сталь — shipbuilding steel
    текстуро́ванная сталь — grain-oriented steel
    ти́гельная сталь — crucible steel
    толстолистова́я сталь — plate steel; ( вид проката) (steel) plate
    толстолистова́я, фасо́нная сталь — sketch plate(s)
    тонколистова́я сталь — sheet steel; ( вид проката) steel sheet
    то́почная сталь — fire-box steel
    трансформа́торная сталь — transformer steel
    тру́бная сталь — pipe steel
    углеро́дистая сталь — carbon steel
    фасо́нная сталь — structural shape(s)
    ферри́тная сталь — ferritic steel
    хро́мистая сталь — chromium steel
    цеме́нтная сталь — cement steel
    шве́ллерная сталь — channels
    шестигра́нная сталь — hexagonal steel, hexagons
    шта́мповая сталь — die steel
    штри́псовая сталь — skelp steel
    электри́ческая сталь — electrical steel (см. тж. электросталь)
    электротехни́ческая сталь — electrical-sheet [silicon-sheet] steel

    Русско-английский политехнический словарь > сталь

  • 7 рослая сталь

    Русско-английский политехнический словарь > рослая сталь

  • 8 недостатъчно дезоксидирана стомана

    rising steel
    rising steels

    Български-Angleščina политехнически речник > недостатъчно дезоксидирана стомана

  • 9 недораскисленная сталь

    rising steel метал.

    Русско-английский научно-технический словарь Масловского > недораскисленная сталь

  • 10 geschweißter Stahlhochbau

    Stahlhochbau m: geschweißter Stahlhochbau m welded high-rise (steel) structure, welded rising (steel) construction

    Deutsch-Englisch Fachwörterbuch Architektur und Bauwesen > geschweißter Stahlhochbau

  • 11 недораскисленная сталь

    Engineering: rising steel

    Универсальный русско-английский словарь > недораскисленная сталь

  • 12 недостаточно раскислённая сталь

    Metallurgy: rising steel

    Универсальный русско-английский словарь > недостаточно раскислённая сталь

  • 13 недостаточно раскисленная сталь

    Metallurgy: rising steel

    Универсальный русско-английский словарь > недостаточно раскисленная сталь

  • 14 рослая сталь

    Engineering: rising steel

    Универсальный русско-английский словарь > рослая сталь

  • 15 geschweißtes Stahlhochbauwerk

    Stahlhochbauwerk n: geschweißtes Stahlhochbauwerk n welded rising (steel) construction

    Deutsch-Englisch Fachwörterbuch Architektur und Bauwesen > geschweißtes Stahlhochbauwerk

  • 16 geschweißte Stahlhochbauten

    Stahlhochbauten mpl: geschweißte Stahlhochbauten mpl welded rising (steel) structures

    Deutsch-Englisch Fachwörterbuch Architektur und Bauwesen > geschweißte Stahlhochbauten

  • 17 Stahlhochbauten

    Stahlhochbauten mpl ST rising steel structures

    Deutsch-Englisch Fachwörterbuch Architektur und Bauwesen > Stahlhochbauten

  • 18 Stahlhochbauwerk

    Stahlhochbauwerk n ST rising steel structure

    Deutsch-Englisch Fachwörterbuch Architektur und Bauwesen > Stahlhochbauwerk

  • 19 Monell, Ambrose

    SUBJECT AREA: Metallurgy
    [br]
    b. 1874 New York, USA
    d. 2 May 1921 Beacon, New York, USA
    [br]
    American metallurgist who gave his name to a successful nickel-copper alloy.
    [br]
    After graduating from Columbia University in 1896. Monell became a metallurgical engineer to the Carnegie Steel Company, rising in six years to be Assistant to the President. In 1900, while Manager of the company's open-hearth steelworks at Pittsburg, he patented a procedure for making high-carbon steel in basic conditions on the hearth of a fixed/stationary furnace; the method was intended to refine pig-iron containing substantial proportions of phosphorus and to do so relatively quickly. The process was introduced at the Homestead Works of the Carnegie Steel Company in February 1900, where it continued in use for some years. In April 1902 Monell was among those who launched the International Nickel Company of New Jersey in order to bring together a number of existing nickel interests; he became the new company's President. In 1904–5, members of the company's metallurgical staff produced an alloy of about 70 parts nickel and 30 copper which seemed to show great commercial promise on account of its high resistance to corrosion and its good appearance. Monell agreed to the suggestion that the new alloy should be given his name; for commercial reasons it was marketed as "Monel metal". In 1917, following the entry of the USA into the First World War, Monell was commissioned Colonel in the US Army (Aviation) for overseas service, relinquishing his presidency of the International Nickel Company but remaining as a director. At the time of his death he was also a director in several other companies in the USA.
    [br]
    Bibliography
    1900, British patent no. 5506 (taken out by O. Imray on behalf of Monell).
    Monell insinuated an account of his steel-making procedure at a meeting of the Iron and Steel Institute held in London and reported in The Journal of the Iron and Steel
    Institute (1900) 1:71–80; some of the comments made by other speakers, particularly B.Talbot, were adverse. The following year (1901) Monell produced a general historical review: "A summary of development in open-hearth steel", Iron Trade
    Review 14(14 November):39–47.
    Further Reading
    A.J.Wadhams, 1931, "The story of the nickel industry", Metals and Alloys 2(3):166–75 (mentions Monell among many others, and includes a portrait (p. 170)).
    JKA

    Biographical history of technology > Monell, Ambrose

  • 20 Holabird, William

    [br]
    b. 11 September 1854 American Union, New York, USA
    d. 19 July 1923 Evanston, Illinois, USA
    [br]
    American architect who contributed to the development of steel framing, a type of structure that rendered possible the erection of the skyscraper.
    [br]
    The American skyscraper was, in the 1870s and 1880s, very much the creation of what came to be known as the Chicago school of architecture. It was the most important American contribution to the urban architectural scene. At this time conditions were ripe for this type of office development, and in the big cities, notably Chicago and New York, steeply rising land values provided the incentive to build high; the structural means to do so had been triggered by the then low costs of making quality iron and steel. The skyscraper appeared after the invention of the passenger lift by Otis and the pioneer steel-frame work of Jenney. In 1875 Holabird was working in Jenney's office in Chicago. By 1883 he had set up in private practice, joined by another young architect, Martin Roche (1855–1927), and together they were responsible for the Tacoma Building (1887–9) in Chicago. In this structure the two front façades were entirely non-load-bearing and were carried by an internal steel skeleton; only the rear walls were load-bearing. The design of the building was not revolutionary (this had to wait for L.H. Sullivan) but was traditional in form. It was the possibility of being able to avoid load-bearing outer walls that enabled a building to rise above some nine storeys, and the thirteen-storeyed Tacoma Building pointed the way to the future development of the skyscraper. The firm of Holabird \& Roche continued in the following decades in Chicago to design and construct further high-quality, although lower, commercial buildings such as those in South Michigan Avenue and the McClurg Building. However, they are best remembered for their contribution in engineering to the development of high-rise construction.
    [br]
    Further Reading
    F.Mujica, 1929, History of the Skyscraper, Paris: Archaeology and Architecture Press. C.W.Condit, 1964, The Chicago School of Architecture: A History of Commercial and
    Public Building in the Chicago Area 1875–1925, Chicago: University of Chicago Press. J.W.Rudd (compiler), 1966, Holabird and Roche: Chicago Architects, American Association of Architectural Bibliographers.
    DY

    Biographical history of technology > Holabird, William

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