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首页> 外文期刊>Metallurgical and Materials Transactions A >Correlation of microstructure with hardness and wear resistance of surface composites fabricated by high-energy electron beam irradiation of Fe-based metamorphic powders
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Correlation of microstructure with hardness and wear resistance of surface composites fabricated by high-energy electron beam irradiation of Fe-based metamorphic powders

机译:铁基变质粉末高能电子束辐照制备的表面复合材料的显微组织与硬度和耐磨性的关系

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摘要

In this study, surface composites were fabricated with Fe-based metamoprhic powders by high-energy electron beam irradiation, and the correlation of their microstructure with hardness and wear resistance was investigated. Fe-based metamorphic powders were deposited on a plain carbon steel substrate, and then electron beam was irradiated on these powders without flux to fabricate a one-layered surface composite. A two-layered surface composite was also fabricated by irradiating electron beam again onto the powders deposited on the one-layered surface composite. The composite layers of 1.3∼1.9 mm in thickness were homogeneously formed without defects and contained a large amount (up to 48 vol pct) of hard and fine Cr2B crystalline phases in the Cr0.19Fe0.7Ni0.11 matrix. Since the hardness and wear resistance of the surface composite layers were directly influenced by hard Cr2B phases, they were two to three times greater than those of the steel substrate. In particular, the two-layered surface composite showed a high hardness of ∼300 VHN even at 750 °C, as well as at room temperature, because Cr2B phases and the Cr0.19Fe0.7Ni0.11 matrix were hard and thermally stable.
机译:本研究采用高能电子束辐照法制备了铁基高温合金粉末表面复合材料,研究了其微观结构与硬度和耐磨性的相关性。将Fe基变质粉末沉积在普通的碳钢基底上,然后在没有助熔剂的情况下将电子束照射在这些粉末上,以制造一层表面复合材料。还通过将电子束再次照射到沉积在单层表面复合材料上的粉末上来制造两层表面复合材料。均匀地形成厚度为1.3〜1.9mm的复合层而没有缺陷,并且在Cr0.19 Fe0中包含大量(最大48vol pct)的硬而细的Cr2B晶相。 7 Ni0.11 矩阵。由于表面复合层的硬度和耐磨性直接受硬Cr2B相的影响,因此它们是钢基底的2至3倍。尤其是,这种两层表面复合材料即使在750°C以及室温下也显示出约300 VHN的高硬度,这是因为Cr2B相和Cr0.19 Fe0.7 Ni0.11 基质坚硬且热稳定。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第5期|1485-1494|共10页
  • 作者单位

    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 790-784 Pohang Korea;

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

    Liquidmetal Technologies 25800 Commercentre Drive Suite 100 92630 Lake Forest CA;

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