TiB2颗粒增强AlCuMg复合材料可制造性研究

M. Akkaş, A. M. A. Elfghi
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引用次数: 0

摘要

由于铝及其合金在汽车、航空航天、生物医学和航空航天等各种行业中具有优异的性能(如高耐腐蚀性、耐热性、电性能、强度和韧性),因此被用作各种行业的复合材料。然而,在铝及其合金的工业应用中,遇到了机械性能方面的问题。经确定,目前文献中关于提高铝合金及其合金力学性能的研究很少。在本研究中,将TiB2颗粒以不同速率加入到AlCuMg基体中,并在三维湍流中混合1小时。通过实验研究,以制备具有显微组织和力学性能的AlCuMg基复合材料为目标。采用粉末冶金和熔盐保护合成的方法,在生产阶段将Al、Cu、Mg和TiB2粉末按不同的化学成分比例混合,制备样品。在烧结过程中,为了防止所制备样品的氧化和合成过程,首选熔盐保护烧结工艺。在这种熔盐保护方法中,首选KBr(溴化钾)作为盐。利用扫描电子显微镜(SEM)、能谱仪(EDS)和x射线衍射仪(XRD)对样品进行了表征。显微硬度测量应用于生产样品的强度和力学特性。由于TiB2颗粒具有高熔点、高强度和高力学性能,因此确定AlCuMg合金提高了组织和力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Manufacturability of TiB2 Particle Reinforced AlCuMg Composites
Al and its alloys are used as composite materials in various industries due to their properties (such as high corrosion resistance, heat resistance, electrical properties, strength and toughness) in various industries such as automotive, aerospace, biomedical and aerospace. However, in the industrial use of Al and its alloys, problems are encountered in terms of their mechanical properties. It has been determined that there are very few studies in the literature on studies to increase the mechanical properties of AlCuMg and its alloys. In this study, TiB2 particles were added to the AlCuMg matrix at different rates and mixed with three-dimensional turbula for 1 hour. As a result of experimental studies, it was aimed to produce composite materials with AlCuMg matrix in terms of microstructure and mechanical properties. The samples were produced by powder metallurgy and molten salt protected synthesis method by mixing Al, Cu, Mg and TiB2 powders at different chemical composition ratios during the production phase. The molten salt protected sintering process was preferred to prevent oxidation of the produced samples and for the synthesis process during sintering. In this molten salt protection method, KBr (potassium bromide) is preferred as the salt. Scanning electron microscopy (SEM), energy dispersive spectrum (EDS) and X-Ray diffraction (XRD) analyzes were applied for the characterization processes of the samples after production. Microhardness measurements were applied for the strength and mechanical characterization of the produced samples. Since TiB2 particles have high melting temperature, high strength and high mechanical properties, it has been determined that AlCuMg alloy increases the microstructure and mechanical properties.
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