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Effect of ECAP consolidation process on the interfacial characteristics of Al-Cu-Ti metallic glass reinforced aluminum matrix composite

机译:ECAP合并过程对Al-Cu-Ti金属玻璃增强铝基复合材料界面特性的影响

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Equal channel angular pressing (ECAP) process was used to consolidate the Al65Cu20Ti15 metallic glass (AMG) reinforced Al matrix composite at high temperature. The matrix/reinforcement interfacial microstructure of the consolidated composite was studied using scanning electron microscopy (SEM) equipped with energy-dispersive spectrometer (EDS) and transmission electron microscopy (TEM). It is demonstrated that the mutual diffusion of elements was occurred between the matrix and glass reinforcement during the consolidation process. The imposed severe plastic strains by the ECAP process affected the mutual diffusion and elemental distribution at the interface. Also, microstructural characterizations confirmed that no reaction products have been formed between the matrix and reinforcement particles. An illustrative model was presented to explain the atomic structure of matrix/reinforcement interface region.
机译:相等的通道角压(ECAP)工艺用于在高温下巩固Al65Cu20Ti15金属玻璃(AMG)增强的Al基质复合物。 使用配备有能量分散光谱仪(EDS)和透射电子显微镜(TEM)的扫描电子显微镜(SEM)研究了固结复合材料的基质/增强界面微观结构。 证明在固结过程中,在基质和玻璃增强之间发生元件的相互扩散。 ECAP过程的施加严重的塑性菌株影响了界面处的互扩散和元素分布。 而且,微观结构表征证实,在基质和增强颗粒之间没有形成反应产物。 提出了说明性模型以解释基质/加强界面区域的原子结构。

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