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Microstructure evolution of low alloy wear resistant steels during heat treatment procedure

机译:热处理过程中低合金耐磨钢的微观结构演化

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Microstructure evolution of low alloy wear resistant steels during heat treatment procedure was studied in this paper. The results showed that During furnace cooling in homogenizing, Chromium/iron, Niobium, Vanadium and other hardly soluble carbides formed. But Chromium/iron carbides could resolve into austenite during quenching procedure, while the other carbides barely changed. Carbon addition grew the carbides into shuttle shapes and inflated the austenite grains. But Ni addition broadened the martensite lath width without dilating the austenite grains. And it hardly influenced the carbides formation. Vanadium addition seemed that the martensite lathes were cut into several discontinues sections. With the temperature rising, the boundaries got blurred, which might correlated with the decomposing of retained austenite.
机译:本文研究了热处理程序期间低合金耐磨钢的微观结构演化。 结果表明,在均质化,铬/铁,铌,钒和其他几乎溶于碳化物中的炉冷却期间。 但铬/铁碳化物在淬火程序期间可以将奥氏体分离成奥氏体,而其他碳化物几乎没有变化。 碳添加将碳化物成梭形形状并膨胀奥氏体颗粒。 但是,Ni加入扩大马氏体板岩宽度而不会扩张奥氏体晶粒。 它几乎影响了碳化物形成。 钒添加似乎马氏体车床被切成了几个停止部分。 随着温度上升,界限被模糊,这可能与保留奥氏体的分解相关。

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