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Microstructure, Hardness, and Wear Resistance of Powder-Injection-Molded Products of Fe-based Metamorphic Powders

机译:Fe基变质粉末的粉末注塑产品的微观结构,硬度和耐磨性

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Powder injection molding (PIM) process was applied to Fe-based metamorphic alloy powders, and microstructure, hardness, and wear resistance of the PIM products were analyzed and compared with those of conventional PIM stainless steel products. When Fe-based metamorphic powders were injection-molded and then sintered at 1200 deg C, completely densified products with almost no pores were obtained. They contained 34 vol. percent of (Cr,Fe)2B borides dispersed in the austenitic matrix without amorphous phases. Since these (Cr,Fe)2B borides were very hard and thermally stable, hardness, and wear resistance of the PIM products of Fe-based metamorphic powders were twice as high as those of conventional PIM stainless steel products. Such property improvement suggested new applicability of the PIM products of Fe-based metamorphic powders to structures and parts requiring excellent mechanical properties.
机译:将粉末注射成型(PIM)工艺应用于Fe基变质合金粉末,分析了PIM产品的微观结构,硬度和耐磨性,并与传统的PIM不锈钢产品进行比较。当注塑Fe基变质粉末然后在1200℃下烧结时,获得几乎没有孔的完全致密化产物。他们包含34卷。 (Cr,Fe)2b硼胺的百分比分散在奥氏体基质中而没有无定形阶段。由于这些(Cr,Fe)2B硼化物非常坚硬而热稳定,硬度和Fe基变质粉末PIM产物的耐磨性和常规PIM不锈钢产品的PIM产物的耐磨性是两倍。这种性质改进表明,Fe基变质粉末PIM产品的新适用性对需要优异的机械性能的结构和部件。

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