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Effects of Cr and B Contents on Volume Fraction of (Cr,Fe)2B and Hardness in Fe-Based Alloys Used for Powder Injection Molding

机译:Cr和B含量对粉末注射成型铁基合金中(Cr,Fe)2 B的体积分数和硬度的影响

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In the current study, Fe-based alloys were used for powder injection molding (PIM) parts with various qualities and hardness ranges by varying chemical compositions according to thermodynamically calculated phase diagrams. Their microstructure and hardness values were analyzed and compared with those of the PIM specimens made from conventional Fe-based alloy powders or stainless steel powders. The Cr-to-B ratio (X Cr/X B) and the sum of Fe, Cr, and B content (X Fe+X Cr+X B) were varied to design nine Fe-based alloy compositions based on the composition of Armacor “M” alloy powders (Liquidmetal Technologies, Lake Forest, CA). According to the microstructural analysis results of the cast and heat-treated Fe-based alloys, large amounts of (Cr,Fe)2B were formed in the tempered martensite matrix. The volume fraction of (Cr,Fe)2B was varied from 42 pct to 91 pct with alloy compositions, and these results were well matched with the thermodynamically calculated volume fractions of (Cr,Fe)2B. The hardness of the fabricated alloys was varied from 300 VHN to 1600 VHN with alloy compositions, and this value increased linearly with the increasing volume fraction of (Cr,Fe)2B. From the correlation data between the volume fraction of (Cr,Fe)2B and hardness, the high-temperature equilibrium phase diagram, which could be used for the design of Fe-based alloys with various fractions and hardness values of (Cr,Fe)2B, was made.
机译:在当前的研究中,通过根据热力学计算的相图改变化学成分,将铁基合金用于具有各种质量和硬度范围的粉末注射成型(PIM)零件。分析了它们的微观结构和硬度值,并将其与由传统的铁基合金粉末或不锈钢粉末制成的PIM试样进行了比较。 Cr / B比(X Cr / XB )和Fe,Cr和B含量的总和(X Fe + X Cr + XB B。根据合金成分,(Cr,Fe)2 的体积分数从42 pct变化到91 pct,这些结果与(Cr,Fe)2 的热力学计算的体积分数非常吻合。 B.随合金组成的变化,合金的硬度从300 VHN变化到1600 VHN,并且该值随(Cr,Fe)2 B的体积分数的增加而线性增加。从(Cr,Fe)2 B的体积分数与硬度之间的相关数据,可以得出高温平衡相图,该图可用于设计具有不同分数和硬度值的Fe基合金。制备了(Cr,Fe)2 B。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第7期|p.2237-2250|共14页
  • 作者单位

    Center for Advanced Aerospace Materials, Pohang, Korea;

    Center for Advanced Aerospace Materials, Pohang, Korea;

    Center for Advanced Aerospace Materials, Pohang, Korea;

    Center for Advanced Aerospace Materials, Pohang, Korea;

    Center for Advanced Aerospace Materials, Pohang, Korea;

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

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

    New Growth Technology Strategy Department, POSCO, Seoul, 135-777, Korea;

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