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Mechanochemical synthesis of chromium-based alloys

机译:铬基合金的机械化学合成

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摘要

This paper presents a detailed study of the formation of chromium-based alloys, Cr-Ta-W + plasticizing additives (Nb and Zr) and Cr-Ta-Si, during milling of powder mixtures in a Fritsch (P-7) planetary mill under an Ar atmosphere. It is shown that, after milling for 18 h, all the components of the starting mixtures convert into a Cr-based BCC solid solution. The powders of chromium alloys obtained in this study are readily compacted by hot isostatic pressing (HIP) under conditions typical of the processing of powders of high-temperature nickel alloys. Heating of the powders and compacts leads to the decomposition of the supersaturated solid solution and the formation of two forms of the Cr2M Laves phase with cubic crystal lattices. The formation of a mixed-phase fine microstructure in the chromium alloys after HIP suggests that the materials studied here are potentially attractive as a base of next-generation chromium-based high-temperature alloys.
机译:本文详细介绍了在Fritsch(P-7)行星式磨粉机中研磨粉末混合物过程中铬基合金,Cr-Ta-W +增塑添加剂(Nb和Zr)和Cr-Ta-Si的形成的研究。在Ar气氛下。结果表明,研磨18小时后,起始混合物的所有组分均转化为Cr基BCC固溶体。在高温镍合金粉末加工的典型条件下,可以通过热等静压(HIP)轻松压实本研究中获得的铬合金粉末。粉末和压坯的加热导致过饱和固溶体的分解,并形成具有立方晶格的两种形式的Cr2M Laves相。 HIP后在铬合金中形成混合相细微结构表明,此处研究的材料作为下一代铬基高温合金的基础具有潜在的吸引力。

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