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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Correlation of Microstructure with Hardness and Wear Resistance of (Cr_3C_2,CrB)/Steel Surface Alloyed Materials Fabricated by High-Energy Electron Beam Irradiation
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Correlation of Microstructure with Hardness and Wear Resistance of (Cr_3C_2,CrB)/Steel Surface Alloyed Materials Fabricated by High-Energy Electron Beam Irradiation

机译:高能电子束辐照制备的(Cr_3C_2,CrB)/钢表面合金材料的显微组织与硬度和耐磨性的关系

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The correlation of microstructure with the hardness and wear resistance of (Cr_3C_2,CrB)/steel surface alloyed materials fabricated using high-energy electron beam irradiation was investigated in this study. Two kinds of powder mixtures, 50Cr_3C_2-50STS304 and 50CrB-50STS304 (wt pet), were placed on a plain carbon steel substrate, which was then irradiated with an electron beam without adding flux. Surface alloyed layers 1.0 to 1.3 mm in thickness were successfully formed without defects; these layers contained a large amount (up to 58 vol pct) of Cr_7C_3 or Cr_1.65Fe_0.35B_0.96 in the austenite or martensite matrix. Both the hardness and wear resistance of the surface alloyed layer were directly influenced by hard carbides or borides, and were 2 to 3 times greater than those of the steel substrate. Particularly in the surface alloyed material fabricated with CrB and stainless steel powders, selective wear of the matrix was considerably reduced. This was due to the number of fine borides homogeneously distributed in the hard martensite matrix and, in turn, led to excellent wear resistance. These findings suggested that irradiation with a high-energy electron beam was useful in the development of surface alloyed materials with improved hardness and wear resistance.
机译:研究了高能电子束辐照制备的(Cr_3C_2,CrB)/钢表面合金材料的显微组织与硬度和耐磨性的相关性。将两种粉末混合物50Cr_3C_2-50STS304和50CrB-50STS304(wt pet)放在纯碳钢基底上,然后在不添加助熔剂的情况下对其进行电子束照射。成功地形成了厚度为1.0到1.3mm的表面合金层,而没有缺陷。这些层在奥氏体或马氏体基体中包含大量(最高58 vol pct)的Cr_7C_3或Cr_1.65Fe_0.35B_0.96。表面合金层的硬度和耐磨性都直接受硬质碳化物或硼化物的影响,比钢基底的硬度大2至3倍。特别是在用CrB和不锈钢粉末制成的表面合金化材料中,基体的选择性磨损显着降低。这是由于均匀分布在硬质马氏体基体中的细硼化物的数量所致,进而导致了极好的耐磨性。这些发现表明,用高能电子束照射可用于开发具有改善的硬度和耐磨性的表面合金化材料。

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