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Selective Laser Melting of Al-Based Matrix Composites with Al2O3 Reinforcement: Features and Advantages

机译:用Al2O3加固的基于铝基基复合材料的选择性激光熔化:特征和优点

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摘要

Aluminum matrix composites (AMC) are of great interest and importance as high-performance materials with enhanced mechanical properties. Al2O3 is a commonly used reinforcement in AMCs fabricated by means of various technological methods, including casting and sintering. Selective laser melting (SLM) is a suitable modern method of the fabrication of net-shape fully dense parts from AMC with alumina. The main results, achievements, and difficulties of SLM applied to AMCs with alumina are discussed in this review and compared with conventional methods. It was shown that the initial powder preparation, namely the particle size distribution, sphericity, and thorough mixing, affected the final microstructure and properties of SLMed materials drastically. The distribution of reinforcing particles tends to consolidate the near-melting pool-edges process because of pushing by the liquid–solid interface during the solidification process that is a common problem of various fabrication methods. The achievement of an homogeneous distribution was shown to be possible through both the thorough mixing of the initial powders and the precise optimization of SLM parameters. The strength of the AMCs fabricated by the SLM method was relatively low compared with materials produced by conventional methods, while for superior relative densities of more than 99%, hardness and tribological properties were obtained, making SLM a promising method for the Al-based matrix composites with Al2O3.
机译:铝基复合材料(AMC)具有很大的兴趣和重要性,具有增强机械性能的高性能材料。 Al2O3是通过各种技术方法制造的AMCS中常用的增强,包括铸造和烧结。选择性激光熔融(SLM)是一种合适的现代方法,其从氧化铝的AMC制造了净形完全致密的部件。在本次综述中讨论了SLM的主要结果,成果和困难,并与常规方法进行了比较。结果表明,初始粉末制备,即粒度分布,球形和彻底混合,影响了术的最终显微结构和性质的急剧上。增强颗粒的分布倾向于巩固近熔融的池边缘过程,因为在凝固过程中推动液体固体界面,这是各种制造方法的常见问题。通过初始粉末的彻底混合和SLM参数的精确优化,显示了均匀分布的实现是可能的。与通过常规方法产生的材料相比,由SLM方法制造的AMCs的强度相对较低,而对于优异的相对密度超过99%,获得硬度和摩擦学性质,使SLM为基于Al的基质的有希望的方法用Al2O3复合材料。

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