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Direct Laser Sintering of Aluminum Matrix Composites

机译:直接激光烧结铝基基复合材料

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In the present work, we used direct metal laser sintering (DMLS) process to fabricate Al-SiC composite parts directly from a three-dimensional CAD model. AI-7Si-0.3Mg powders were blended with various amounts of SiC particles (5, 10, 15, 20 vol%) at two different sizes (7 and 17 um) and subjected to direct laser sintering using a 200 W continuous wave CO2 laser beam at various scan rates. The densification and microstructural features of the laser-sintered parts were studied. It is shown that the highest density is obtained for the Al alloy-5% SiC (7 um) composite powder. The melt stability is also found to be improved in the presence of SiC particles. The microstructure of the laser-sintered parts composed of a-AI, primarily silicon, SiC, and AI4SiC4 three dimensional plates. This paper presents the advantages and barriers of using DMLS for the fabrication of complex-shaped parts from Al matrix composite powders.
机译:在本作工作中,我们使用直接金属激光烧结(DMLS)工艺直接从三维CAD模型制造AL-SIC复合部件。将Ai-7Si-0.3mg粉末以两种不同尺寸(7和17μm)的各种SiC颗粒(5,10,15,20体积%)混合,并使用200W连续波CO2激光进行直接激光烧结以各种扫描速率的光束。研究了激光烧结部件的致密化和微观结构特征。结果表明,对于Al合金-5%SiC(7μM)复合粉末获得的最高密度。还发现熔体稳定性在SiC颗粒存在下改善。由A-AI,主要是硅,SiC和Ai4SIC4三维板组成的激光烧结部件的微观结构。本文介绍了使用DMLS从Al基质复合粉末制造复合物零件的优点和障碍。

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