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Improvement of impact toughness by modified hot working and heat treatment in 13%Cr martensitic stainless steel

机译:通过改进的热加工和热处理来改善13%Cr马氏体不锈钢的冲击韧性

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摘要

Improvement of the general mechanical properties and in particular sub-zero impact toughness in a 0.2% C-13%Cr martensitic stainless steel has been explored by varying the hot deformation and heat treatment conditions. The deformation conditions include hot rolling an ingot in one case and cogging the ingot to a semis followed by hot rolling in another case. The bars made from both routes were subjected to a single hardening heat treatment at 980 ℃ and 1040 ℃ oil quenched and a double hardening heat treatment at 1040 ℃ followed by 980 ℃ oil quenched. The hardened steels were subjected to a standard two stage tempering at 710 ℃ followed by 680 ℃. The impact toughness was found to be doubled in the cogged and rolled steel in double hardened condition. Other processing conditions show varying impact toughness levels. The toughness observed was correlated to the grain size and the carbide distribution in the matrix and the fractography features.
机译:通过改变热变形和热处理条件,已经探索了在0.2%C-13%Cr马氏体不锈钢中改善一般机械性能,特别是改善零下冲击韧性的方法。变形条件包括在一种情况下热轧铸锭并且将铸锭齿化成半坯,然后在另一种情况下进行热轧。将两种路线制成的棒材在980℃和1040℃油淬火后进行单次硬化热处理,并在1040℃进行双淬火热处理,然后在980℃油淬火。淬火钢在710℃和680℃进行标准的两阶段回火。发现在双重硬化条件下,带齿和轧制钢的冲击韧性增加了一倍。其他加工条件显示出不同的冲击韧性水平。观察到的韧性与晶粒尺寸和基体中的碳化物分布以及分形特征有关。

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