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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >An analysis of the microstructure of spark plasma sintered and hot isostatically pressed V-4Cr-4Ti-1.8Y-0.4Ti(3)SiC(2) alloy and its thermal stability
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An analysis of the microstructure of spark plasma sintered and hot isostatically pressed V-4Cr-4Ti-1.8Y-0.4Ti(3)SiC(2) alloy and its thermal stability

机译:火花等离子体烧结和热等静压V-4Cr-4Ti-1.8Y-0.4Ti(3)SiC(2)合金的微观结构及其热稳定性分析

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摘要

The microstructure and thermal stability of V-4Cr-4Ti-1.58Y-0.4Ti(3)SiC(2) alloy, fabricated by 60 h mechanical milling of blended powders followed by spark plasma sintering (SPS) and hot isostatic pressing, has been investigated. Analysis was undertaken using orientation image maps obtained from the electron backscattering and transmission Kikuchi diffraction techniques as well as hardness testing. The as processed microstructure contained a multimodal distribution of grain sizes, in pancaked bands perpendicular to the compression axis of the SPS. This multimodal matrix grain structure exhibited regions of both random and clear < 111 > fibre texture with grain boundary disorientations that are virtually all high angle (>15 degrees). Both the pancaking and texture observations are most likely a result of the long hold time of 2 h during SPS. Post processing heat treatment showed the microstructure remained stable up to 1000 degrees C and significant grain growth was not observed until 1200 degrees C, suggesting this material has much potential for operation in ultra-extreme environments such as a fusion reactor. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:V-4Cr-4Ti-1.58Y-0.4Ti(3)SiC(2)合金的微结构和热稳定性是通过将混合粉末进行60 h机械研磨,然后进行火花等离子烧结(SPS)和热等静压制而成的调查。使用从电子反向散射和透射菊池衍射技术以及硬度测试获得的取向图像图进行分析。加工后的微结构在垂直于SPS压缩轴的薄煎饼带中包含晶粒大小的多峰分布。这种多峰基质晶粒结构显示出随机且清晰的<111>纤维织构区域,且晶界取向几乎都是高角度(> 15度)。在SPS期间,长时间保持2 h的结果很可能是导致锅结和纹理观察。后处理热处理表明,在高达1000摄氏度的温度下,显微组织仍保持稳定,并且直到1200摄氏度为止都未观察到明显的晶粒长大,这表明该材料具有在超极端环境(例如聚变反应堆)中运行的巨大潜力。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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