Formation of austenite in Fe-10Cr-0.2C alloy

U. Lenel, R. Honeycombe
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引用次数: 18

Abstract

AbstractThe formation of austenite from a ferrite–carbide microstructure in an Fe-10Cr-0.2C (wt-%) alloy has been investigated by optical and transmission electron microscopy and microanalysis of partially transformed and quenched samples. Although nucleation of austenite is relatively sluggish (compared to low alloys steels), growth of austenite is rapid and the reaction is complete within 100 s at temperatures above AC 3. The transformation proceeds more rapidly as the temperature increases. Fine undissolved carbides have little effect on the movement of the austenite growth front while closely spaced coarse carbides can pin the interface. Carbides do not dissolve in ferrite or in the ferrite/austenite interface (unless the interface is stationary owing to pinning) but the higher solubility of carbon in austenite allows dissolution of carbides in austenite to occur. The rate of dissolution is controlled by the rate of removal of chromium. Austenite inherits the chromium content of the ferrite and no par...
Fe-10Cr-0.2C合金中奥氏体的形成
摘要:采用光学显微镜、透射电镜以及部分相变和淬火试样的显微分析,研究了Fe-10Cr-0.2C (wt-%)合金中铁素体-碳化物组织形成奥氏体的过程。虽然奥氏体的形核相对缓慢(与低合金钢相比),但奥氏体的生长迅速,在ac3以上的温度下,反应在100秒内完成。随着温度的升高,这种转变进行得更快。细小的未溶碳化物对奥氏体生长前缘的移动影响不大,而密集分布的粗碳化物则能钉住界面。碳化物不溶于铁素体或铁素体/奥氏体界面(除非界面因钉钉而固定),但碳在奥氏体中的较高溶解度允许碳化物在奥氏体中溶解。溶解速率由铬的去除率控制。奥氏体继承了铁素体的铬含量,而没有铬含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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