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Microstructural influences on consolidation behavior of titanium metal matrix composites

机译:微观结构对钛金属基复合材料固结行为的影响

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摘要

Vacuum hot pressing has been used for the development of Ti-MMCs using foil-fiber-foil bundles, and a unified micro-mechanical model has been presented to determine the densification behavior. The effects of process conditions on the consolidation, together with microstructural evolution of the materials, have been investigated. As a result either increasing temperature or pressure leads to increasing densification rate but the conditions should be determined by the precisely controlled geometrical arrangement that is related to the heterogeneous microstructures. The experimentally measured microstructural changes have shown that both grain growth and refinement occurs during the process, and their effect on densification have been analyzed by means of two types of possible mechanisms including grain growth kinetics and dynamic recrystallization.
机译:真空热压已被用于开发使用箔-纤维-箔束的Ti-MMC,并提出了统一的微机械模型来确定致密化行为。研究了工艺条件对固结的影响以及材料的微观结构演变。结果,温度或压力的增加导致致密化速率的增加,但条件应由与异质微结构有关的精确控制的几何排列确定。实验测量的微观结构变化表明,在此过程中会同时发生晶粒长大和细化,并且已通过两种可能的机制(包括晶粒长大动力学和动态重结晶)分析了它们对致密化的影响。

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