Induction Steel: Inclusion Content and Mechanical Properties of Reinforcing Bars Produced from Pencil Ingots and Continuously Cast Billets

被引:0
作者
A. Hossain
A. S. W. Kurny
机构
[1] Department of Materials and Metallurgical Engineering, Bangladesh University of Engineering and Technology, Dhaka
关键词
Continuously cast billet; Inclusion content; Mechanical properties; Pencil ingot;
D O I
10.1007/s40033-012-0005-x
中图分类号
学科分类号
摘要
In Bangladesh, most of the reinforcing bars are produced by rolling steel produced by melting scrap in induction furnaces. In many plants the molten steel is directly cast in vertical moulds into what are usually called ‘pencil ingots’. In some plants the molten steel is tapped into large ladles, taken to continuous casting machines and cast into continuous billets. In some cases the molten steel is refined in ladles (purged with nitrogen or argon) before casting into continuous billets. This investigation aims at a comparison of the inclusion content and resultant mechanical properties of reinforcing bars produced through these different routes. The samples for this study were collected from the process streams of a steel plant. The inclusion content was determined by direct measurement of inclusions on metallographic specimens and the mechanical properties were determined by using a universal tensile testing machine. Reinforcing bars produced by rolling ladle refined continuously cast billets have the lowest content of inclusion and the best mechanical (yield strength, ultimate tensile strength, percentage elongation, etc.) properties. The highest inclusion content and the worst properties were obtained in the pencil ingots. © 2012, The Institution of Engineers (India).
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页码:13 / 17
页数:4
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共 8 条
  • [1] Dasaratha C., Krishnaiah T.N., Rodrigues F., Vernekar G.V., electric furnaces and steel foundry (DM L.D. Plant Visvesvaraya Iron &, (1980)
  • [2] Amit C., Ojha C., Production of quality steel at TATA Steel, Asia Steel, pp. 98-102, (1997)
  • [3] Challenges and Opportunities, Steel Furnace Association of India, Oxford-IBH Publishing Co, Proceedings of the International Conference on Electric Steel in the Eighties, 15-17, pp. 71-78, (1982)
  • [4] Ratnam, C.J. Deve, Technological development in the electric steel industry. Proceedings of the International Conference on Electric Steel in the Eighties: Challenges and Opportunities, Steel Furnace Association of India, Oxford-IBH Publishing Co., New Delhi, 15-17, pp. 79-90, (1982)
  • [5] Kjerrmann H., Jernkont. Ann., 113, pp. 181-199, (1929)
  • [6] Franklin A.G., Comparison between a quantitative microscope and chemical methods for assessment of nonmetallic inclusions, J. Iron Steel Inst., 207, pp. 181-186, (1969)
  • [7] Allmand T.R.L.I.M., A review of method for assessing non-metallic inclusions in steel, J. Iron Steel Inst., 190, pp. 359-372, (1958)
  • [8] Baker T.J., Charles J.A., Effect of second phase particles on the mechanical properties of steel, pp. 79-87, (1971)