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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Microstructure and Mechanical Properties of Amorphous and Metamorphic Alloy Products Fabricated by Powder Injection Molding
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Microstructure and Mechanical Properties of Amorphous and Metamorphic Alloy Products Fabricated by Powder Injection Molding

机译:粉末注射成型非晶态和变质合金产品的组织和力学性能

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In the present study, a powder injection molding (PIM) process was applied to Cu-based amorphous and Fe-based metamorphic alloys, and microstructure, hardness, and wear resistance of the PIM products were analyzed and compared with those of conventional stainless steel products. Injection-molded Cu-based amorphous powders were not completely sintered even at temperatures just below the melting temperature as all amorphous phases were replaced by crystalline phases. When Fe-based metamorphic powders were injection-molded and then sintered at 1200°C, completely densified products with almost no pores were obtained. They contained 34 vol. percent of (Cr,Fe)_2B borides in the austenite matrix without amorphous phases. Since these (Cr,Fe)_2B borides were very hard and thermally stable, hardness, high-temperature hardness, and wear resistance of the Fe-based metamorphic alloy products were two or three times as high as those of conventional stainless steel products. This property improvement presented new possibilities for their application to structural materials or parts requiring excellent mechanical properties.
机译:在本研究中,将粉末注射成型(PIM)工艺应用于Cu基非晶态和Fe基变质合金,并分析了PIM产品的组织,硬度和耐磨性,并将其与常规不锈钢产品进行了比较。 。注射成型的基于铜的非晶态粉末即使在刚好低于熔融温度的温度下也不能完全烧结,因为所有非晶态相都被晶相所取代。当将Fe基变质粉末注射成型,然后在1200℃下烧结时,获得几乎没有孔的完全致密的产物。他们包含34卷。没有非晶相的奥氏体基体中(Cr,Fe)_2B硼化物的百分含量。由于这些(Cr,Fe)_2B硼化物非常坚硬且热稳定,因此铁基变质合金产品的硬度,高温硬度和耐磨性是传统不锈钢产品的两倍或三倍。这种性能的改进为将其应用于需要优异机械性能的结构材料或零件提供了新的可能性。

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