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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A micromechanical study of high temperature Ti-Al powder compaction
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A micromechanical study of high temperature Ti-Al powder compaction

机译:Ti-Al粉体高温压实的微观力学研究

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摘要

Process induced micro-scale evolutions can greatly influence the strength and resilience of a high temperature ceramic and intermetallic component. A micromechanical study, based on a unit cell approach, is carried out in the present work toinvestigate these evolutions during compaction of titanium aluminide multi-phase intermetallics at elevated temperatures. The quasi-coupled unit cell analysis can provide an avenue for investigating scalability and migratability of laboratory results tofull scale productions with perturbed material compositions. Effects of various macro-scale process design considerations (e.g., tooling stiffness, spatial distribution of thermal fields) on micro-scale evolutions are investigated in detail. It has beenobserved that a more economic (and usually more flexible) container increases the likelihood of microcrack nucleations, while spatially non-uniform intra-particle thermal fields can be utilized to alleviate processing induced micro-cracks in the finalcompacted product. Possibilities for process design modifications are also discussed.
机译:过程引起的微观演变会极大地影响高温陶瓷和金属间化合物的强度和回弹力。在当前工作中,进行了基于晶胞方法的微机械研究,以研究在高温下铝化钛多相金属间化合物压制过程中的这些演变。准耦合的晶胞分析可以为研究实验室结果对具有扰动的材料成分的大规模生产提供可扩展性和迁移性。详细研究了各种宏观过程设计考虑因素(例如模具刚度,热场的空间分布)对微观尺度演变的影响。已经观察到,更经济(并且通常更柔性)的容器增加了微裂纹成核的可能性,而空间上不均匀的颗粒内热场可以用于减轻最终压实产品中加工引起的微裂纹。还讨论了过程设计修改的可能性。

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