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Steelmaking Technological Options

机译:炼钢技术选择

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During the last 125 years, the steel industry has witnessed revolutionary changes in the process of Steelmaking. The Bessemer process was the predominant steel production technology during the last two decades of the 19th century. The open hearth process accounted for the lion's share of world steel production for six decades from 1910 to 1970. With the appearance of the LD process on the industrial stage in 1952, the importance of open hearth process declined and currently the basic oxygen processes are contributing more than 60 per cent of the world steel production. The LD process also led to the development of several other oxygen blown processes such as LDAC, OLP, OBM, QBOP, EOF, etc. The electric arc furnace process of Steelmaking has been in commercial use since 1910. Its share in the world steel production has been increasing steadily and today, it accounts for almost 33 per cent of the world crude steel production. The main advantages of the electric arc furnace are its flexibility of unit size; capability of producing all grades of steel; and lower investment. Generally speaking, the process has been utilising scrap as feed material which leads to the problem of residual impurities in the product. With the advent of the DR processes and the availability of feedstock of known characteristics, however, the dependence on steel scrap has been reduced to some extent. From the economic viewpoint, the availability and cost of the electric power are the decisive factors governing the application of the electric arc furnace process. The recent technological developments in Steelmaking are primarily centred around reducing the energy consumption; utilising virgin metallic iron in different forms as metallic charge; and lowering the tap to tap time to synchronise with continuous casting operation. There are several technological options available today for Steelmaking through the electric furnace route. It is expected that by the year 2010, the contribution of electric furnace to world crude steel output would increase to about 40 percent.
机译:在过去的125年,钢铁行业已经见证了炼钢的过程中革命性的变化。贝西默过程是在过去二十年在19世纪期间,主要的钢铁生产技术。占世界钢产量的大部分份额为1910年六个十年到1970年随着LD过程对产业化阶段,1952年出现的平炉炼钢工序,平炉过程中的重要性有所下降,目前基本氧过程贡献超过60%的世界钢产量的百分之。劳工处过程也导致了其他几个吹氧过程,如LDAC,OLP,OBM,QBOP,EOF等炼钢电弧炉工艺已在商业用途自1910年以来其在世界钢产量份额的发展一直稳步上升,今天,它几乎占了33%的世界粗钢产量的百分之。电弧炉的主要优点是单元尺寸的灵活性;生产钢的所有级别的能力;和较低的投资。一般而言,该过程一直利用废料作为饲料材料,这导致在产品残留杂质的问题。与DR工艺的出现和的已知特性的原料的可用性,但是,在废钢的依赖性已经减少到一定程度。从经济角度来看,可用性和电力的成本管理电弧炉工艺的应用的决定性因素。近期炼钢技术的发展围绕降低能耗主要集中;利用以不同的形式如金属料处女金属铁;和降低抽头到抽头的时间与连续铸造操作同步。有通过电炉路线提供了一些技术方案今天炼钢。据预计,到2010年,电炉的世界粗钢产量的贡献将增加至约40%。

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