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Effects of heat treatment on wear resistance and fracture toughness of duo-cast materials composed of high-chromium white cast iron and low-chromium steel

机译:热处理对高铬白口铸铁和低铬钢二重铸件耐磨性和断裂韧性的影响

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摘要

The objective of this study is to investigate effects of heat treatment on wear resistance and fracture toughness in duo-cast materials composed of a high-chromium white cast iron and a low-chromium steel as a wear-resistant part and a ductile part, respectively. Different size, volume fraction, and distribution of M7C3 carbides were employed in the wear-resistant part by changing the amount of chromium, and the volume fraction of martensite in the austenitic matrix was varied by the heat treatment. In the alloys containing a small amount of chromium, an interdendritic structure of eutectic M7C3 carbides was formed, and led to the improvement of wear resistance and fracture toughness. After the heat treatment, the selective wear of the matrix and the cracking or spalled-off carbides were considerably reduced since the hardness difference between carbides and matrix decreased by the increase in the matrix hardness, thereby leading to the improvement of the wear resistance. However, the fracture toughness of the heat-treated alloys was lower than that of the as-cast alloys because the matrix containing a considerable amount of martensite did not effectively prevent the crack propagation.
机译:本研究的目的是研究热处理对分别由高铬白口铸铁和低铬钢作为耐磨零件和易延展零件组成的二重铸件材料的耐磨性和断裂韧性的影响。 。通过改变铬的含量,在耐磨部件中采用了不同尺寸,体积分数和分布的M7C3 碳化物,而奥氏体基体中马氏体的体积分数则随着热量的变化而变化。治疗。在含有少量铬的合金中,形成了共晶M7 C3 碳化物的枝晶结构,从而改善了耐磨性和断裂韧性。在热处理之后,由于碳化物和基体之间的硬度差随着基体硬度的增加而减小,因此基体和裂纹或散落的碳化物的选择性磨损显着降低,从而导致耐磨性的提高。但是,热处理合金的断裂韧性比铸态合金的断裂韧性低,这是因为含有大量马氏体的基体不能有效地防止裂纹扩展。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第3期|633-643|共11页
  • 作者单位

    the Center for Advanced Aerospace Materials Pohang University of Science and Technology 790-784 Pohang Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Korea;

    the New Materials and Components Research Center Research Institute of Industrial Science and Technology 790-330 Pohang Korea;

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