Effects of thermal aging on 12Cr-1Mo steel

Richard K Duke, Po-Shou Chen, Roy C Wilcox
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引用次数: 2

Abstract

A study of the microstructural evolution during thermal aging was made on two heats of 12Cr-1Mo steel (HT-9) at various temperatures from 500 to 800°C for times of 30–10,000 h. Optical microscopy examination showed that for increasing temperature, the time of aging dictates changes in microstructure. Generally, an aging temperature of 650°C with times of greater than 600 h was required before precipitation reactions became noticeable. Aging at 800°C for times greater than 3,000 h produced an austenitic transformation product. This signifies that the lower temperature boundary of the austenitic region was exceeded. The slower aging rate of one heat is attributed to the presence of delta ferrite in the as-received material.

热时效对12Cr-1Mo钢的影响
对12Cr-1Mo钢(HT-9)在500 ~ 800℃不同温度下热处理30 ~ 10000 h时的组织演变进行了研究。光学显微镜检查表明,随着温度的升高,时效时间决定了组织的变化。一般需要650℃时效,时效时间大于600 h,沉淀反应才会出现。在800℃下时效超过3000 h,产生奥氏体转变产物。这表明超出了奥氏体区域的低温边界。由于在接收材料中存在δ铁氧体,因此一次加热的时效速度较慢。
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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