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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 >Microstructure and intermediate-temperature mechanical properties of powder metallurgy Ti-6Al-4V alloy prepared by the prealloyed approach
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Microstructure and intermediate-temperature mechanical properties of powder metallurgy Ti-6Al-4V alloy prepared by the prealloyed approach

机译:预合金法制备的粉末冶金Ti-6Al-4V合金的组织和中温力学性能

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摘要

The mechanical properties of powder metallurgy (P/M) Ti-6Al-4V alloys, produced from prealloyed powders by hot isostatic pressing, were evaluated over the intermediate temperature range of 300-500 degrees C. A fully equiaxed or lamellar structure was observed depending on the processing temperature. Microstructural changes were attributed to the beta-transus temperature, predicted as 977 degrees C. As the test temperature increased from 300 to 500 degrees C, the strength of the Ti alloys decreased and their elongation increased, regardless of their initial microstructure. Over the entire temperature range tested, the strength and ductility of equiaxed phase morphologies were higher than those of the lamellar structure. In addition, finer equiaxed structures exhibited higher strength and lower ductility than coarser morphologies. These results were attributed to the initial microstructures of the P/M Ti-6Al-4V alloy samples, as confirmed by evaluating their fracture features. (C) 2015 Elsevier B.V. All rights reserved.
机译:在300-500℃的中间温度范围内,对由预合金粉末通过热等静压制得的粉末冶金(P / M)Ti-6Al-4V合金的机械性能进行了评估。观察到完全等轴或层状结构取决于关于处理温度。微观结构的变化归因于β-转变温度,预测为977摄氏度。随着测试温度从300摄氏度升高至500摄氏度,Ti合金的强度降低,伸长率增加,而不论其初始微观结构如何。在整个测试温度范围内,等轴相形态的强度和延展性高于层状结构。此外,较细的等轴结构比较粗的形态具有更高的强度和更低的延展性。这些结果归因于P / M Ti-6Al-4V合金样品的初始微观结构,如通过评估其断裂特征所证实的。 (C)2015 Elsevier B.V.保留所有权利。

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