By G. E. Ruddle and A. F. Crawley (Eds.)
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Additional info for Proceedings of the Metallurgical Society of the Canadian Institute of Mining and Metallurgy
51 ACCELERATED COOLING OF ROLLED STEEL 52 The TEM microstructure of Fig. 2 ym. S. S. can be increased without deteriorating the toughness. The microstructure of the steel consisted of mixture of fine grained polygonal ferrite and lower bainite-like transformed products. The improved mechanical properties were attributed to this microstructure. »C Ti . «C/s 600 — — 600 3 400 1 1 1 600 Pattern Π 500 c 400 -40 < o to > Ü -80 í C i ; ^ CkJCL -120 10 20 Cooling rate Fig. 9. 30 , 'C/s Effect of the cooling rate on mechanical properties of the plate.
Shiga, C , K. Amano, Τ. Enami, Μ. Tanaka, R. Tarui, and Y. Kusuhara (1983). Application of Multipurpose Accelerated Cooling System (MACS) to the Production of HSLA Steel Plate. Proceedings of International Conference on Technology and Applications of High Strength Low Alloy (HSLA) Steels, 643-654, Philadelphia, Pennsylvania. ACCELERATED COOLING OF A NB-V MICRQALLOYED PLATE STEEL L . E . E. Ruddle, A . F . Crawley and J . D . Boyd P h y s i c a l Metallurgy Research L a b o r a t o r i e s , CANMET 568 Booth S t .
In M. Korchynsky, (Eds), Microalloying 75 (Washington, DC), Union Carbide, NY. 120. Kozasu, L (1984). In HSLA Steels - Technology and Applications (Philadelphia), ASM, Metals Park, OH. 593. Kozasu, L (1986). In P. D. ), Accelerated Cooling of Steel, (Pittsburgh), TMSAIME, Warrendale, PA. 15. 26 ACCELERATED COOLING OF ROLLED STEEL Lankford, W. T. J r . , Samways, N. L . , Craven, R. F . and McGannon, H. E . (1985). , Association of Iron and Steel Engineers, Pittsburgh, PA. 1231. Leslie, W. C. (1981).