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Tempering Reactions and Elemental Redistribution During Tempering of Martensitic Stainless Steels

机译:马氏体不锈钢回火过程中的回火反应和元素再分配

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Tempering reactions in the martensite phase of Fe-13Cr-0.47C (mass pct) stainless steel and its Si- and Mn-added modifications were studied by correlative dilatometry and magnetic measurements. Tempering for 5minutes was performed at sequentially higher temperatures up to 923 K (650 degrees C). Classical tempering reactions including the segregation of C atoms at defects, precipitation of M3C and Cr-rich carbides, and austenite decomposition were clearly identified. The formation of M3C carbides was partially and entirely suppressed by Mn and Si additions, respectively. Compared to low-alloy steels, the decomposition of retained austenite in stainless steels was delayed to temperatures above 823 K (550 degrees C). The latter occurred concurrently with the formation of Cr-rich carbides in the martensite. In addition, non-classical tempering reactions such as the partial dissolution of C clusters at temperatures above 573 K (300 degrees C) and the short-range diffusion of substitutional elements including Cr and Mn to C clusters and M3C carbides in the temperature range of 673 K to 823 K (400 degrees C to 550 degrees C) were identified based on the associated increase in the magnetization.
机译:通过相关的稀释测定和磁测量研究了Fe-13Cr-0.47℃(MASSEPCT)不锈钢和其Si-and和Mn添加修饰的马氏体相中的回火反应。 5分钟的回火在依次更高的温度下进行,高达923k(650℃)。清楚地鉴定了包括在缺陷,沉淀和富含Cr的碳化物中的C原子的典型回火反应,以及奥氏体分解。分别由Mn和Si添加部分和完全抑制M3C碳化物的形成。与低合金钢相比,在不锈钢中的保留奥氏体的分解被延迟到823k(550℃)以上的温度。后者在马氏体中形成Cr富含Cr的碳化物。另外,在573k(300摄氏度)的温度下,诸如C簇的部分溶解的非古典回火反应以及包括Cr和Mn至C簇的短距离扩散在温度范围内的C簇和M3C碳化物。基于磁化的相关增加,鉴定673k至823 k(400℃至550℃)。

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