Rapid Wear of an Impact Breaker Bar Due to Excessive Retained Austenite

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Abstract

An impact breaker bar showed signs of rapid wear. The nominal composition of this chromium alloy cast iron was Fe-2.75C-0.75Mn-0.5Si-0.5Ni-19.5Cr-1.1Mo. The measured hardness of this bar was 450 to 500 HRB. The desired hardness for this material after air hardening is 600 to 650 HRB. The microstructure consisted of eutectic chromium carbides (Cr7C3) in a matrix of retained austenite and martensite intermingled with secondary carbides. Analysis (visual inspection and 500x view of sections etched with Marble's reagent) supported the conclusion that the low hardness resulted from an excessive amount of retained austenite. This caused reduced wear resistance and thus rapid wear in service. Recommendations included avoiding an excessive austenitizing temperature and excessive cooling rates from the austenitizing temperature and controlling the chemical composition to avoid excessive hardenability for the section size involved.
由于残余奥氏体过多,冲击破碎棒的快速磨损
一个冲击破碎机显示出快速磨损的迹象。该铬合金铸铁的标称成分为Fe-2.75C-0.75Mn-0.5Si-0.5Ni-19.5Cr-1.1Mo。测得该棒的硬度为450 ~ 500hrb。该材料在空气硬化后所需的硬度为600至650 HRB。显微组织由残余奥氏体和马氏体基体中的共晶碳化物(Cr7C3)和次生碳化物组成。分析(目视检查和用大理石试剂蚀蚀的500倍视图)支持这样的结论:低硬度是由于残留的奥氏体过多造成的。这导致耐磨性降低,从而在使用中快速磨损。建议包括避免过高的奥氏体化温度和过高的奥氏体化冷却速度,并控制化学成分以避免相关截面尺寸的过度淬透性。
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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