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Study on In-Situ Synthesis Process of Ti–Al Intermetallic Compound-Reinforced Al Matrix Composites

机译:Ti-Al金属间化合物增强Al基复合材料的原位合成工艺研究

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摘要

In this study, ball-milled powder of Ti and Al was used to fabricate Ti–Al intermetallic compound-reinforced Al matrix composites by an in-situ reaction in cold-pressing sintering and hot-pressing sintering processes. The detailed microstructure of the Ti–Al intermetallic compound-reinforced Al composite was characterized by optical microscopy (OM), X-ray diffraction (XRD), energy dispersive spectrometry (EDS), and electron backscattered diffraction (EBSD). The results indicate that a typical core–shell-like structure forms in the reinforced particles. The shell is composed of a series of Ti–Al intermetallic compounds and has good bonding strength and compatibility with the Al matrix and Ti core. With cold-pressing sintering, the shell around the Ti core is closed, and the shell thickness increases as the milling time and holding time increase. With hot-pressing sintering, some radiating cracks emerge in the shell structure and provide paths for further diffusion of Ti and Al atoms. The Kirkendall effect, which is caused by the difference between the diffusion coefficients of Ti and Al, results in the formation of cavities and a reduction in density degree. When the quantity of the intermetallic compounds increases, the hardness of the composites increases and the plasticity decreases. Therefore, factors that affect the quantity of the reinforcements, such as the milling time and holding time, should be determined carefully to improve the comprehensive properties of the composites.
机译:在这项研究中,通过在冷压烧结和热压烧结过程中进行原位反应,将球磨的Ti和Al粉末用于制备Ti-Al金属间化合物增强的Al基复合材料。 Ti-Al金属间化合物增强的Al复合材料的详细微观结构通过光学显微镜(OM),X射线衍射(XRD),能量色散谱(EDS)和电子背散射衍射(EBSD)进行了表征。结果表明,在增强颗粒中形成了典型的核-壳状结构。外壳由一系列的Ti-Al金属间化合物组成,并具有良好的结合强度以及与Al基体和Ti核的相容性。通过冷压烧结,Ti核周围的壳是封闭的,并且随着铣削时间和保持时间的增加,壳的厚度也会增加。通过热压烧结,壳结构中会出现一些辐射裂纹,并为进一步扩散Ti和Al原子提供了路径。由于Ti和Al的扩散系数不同而引起的Kirkendall效应导致形成空洞并降低了密度。当金属间化合物的量增加时,复合材料的硬度增加并且可塑性降低。因此,应仔细确定影响增强材料数量的因素,例如研磨时间和保持时间,以改善复合材料的综合性能。

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