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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Microstructure and Phase Relations in a Powder-Processed Ti-22Al-12Nb Alloy
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Microstructure and Phase Relations in a Powder-Processed Ti-22Al-12Nb Alloy

机译:粉末加工Ti-22Al-12Nb合金的显微组织和相关系

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摘要

A systematic investigation was undertaken to compare the effect of processing on the phase relations and microstructure of 66Ti-22Al-12Nb (in at. pct) alloy. The alloy was processed by three different routes: (1) cold pressing (CP) followed by reaction sintering; (2) CP followed by hot pressing (HP) followed by sintering; and (3) arc melting (AM), hydride-dehydride processing to make the alloy powder followed by cold isostatic pressing and then sintering. The samples were analyzed by X-ray diffraction (XRD); optical microscopy, scanning electron microscopy-energy dispersive spectroscopy (SEM-EDS), and electron microprobe analysis (EPMA). The analyses showed that all the processing methods have resulted in the same phases, but the AM route resulted in an equiaxed microstructure, whereas the other two methods resulted in a lamellar microstructure. This refinement in microstructure was attributed to the hydride-dehydride processing step of the AM route.
机译:进行了系统的研究,以比较工艺对66Ti-22Al-12Nb(at。pct)合金的相关系和显微组织的影响。合金通过三种不同的途径进行处理:(1)冷压(C​​P),然后进行反应烧结; (2)CP,然后热压(HP),然后烧结; (3)电弧熔化(AM),氢化物-脱水处理以制造合金粉末,然后进行冷等静压,然后烧结。通过X射线衍射(XRD)分析样品;光学显微镜,扫描电子显微镜-能量色散光谱(SEM-EDS)和电子显微探针分析(EPMA)。分析表明,所有加工方法都产生了相同的相,但是AM路线导致了等轴显微组织,而其他两种方法导致了层状显微组织。微观结构的这种改进归因于AM路线的氢化物-脱水物处理步骤。

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