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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Microstructure characteristics and its formation mechanism of selective laser melting SiC reinforced Al-based composites
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Microstructure characteristics and its formation mechanism of selective laser melting SiC reinforced Al-based composites

机译:基于选择性激光熔化SiC型组合材料的微观结构特性及其形成机理

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摘要

SiC ceramic reinforced Al-based composites were successfully synthetized by selective laser melting (SLM) of 8.5 vol % SiC/AlSi10 Mg powder mixtures. The mechanism of microstructure evolution in an individual molten pool of the SLM processing was investigated. Three characteristic zones were well distinguished, including center and boundary areas of the molten pool as well as the heat-affected zone. The results revealed that the microstructure changing from columnar dendrite growth to cellular growth along the building direction could be attributed to the change of G/R (G is temperature gradient and R is solidification velocity). Phase identification of the SLM-fabricated parts was performed by X-Ray Diffraction (XRD) and Energy Dispersive Spectroscopy (EDS) analysis, further demonstrating the in-situ formed phases in the molten pool. Al4SiC4 crystals were formed in situ around the partially melted SiC ceramic particles. The nanoindentation tests conducted on different areas of the SLM-fabricated Al-based composites exhibited the high nanohardness (2.27 GPa and 2.15 GPa) and the elastic modulus (78.94 GPa and 75.46 GPa) in the center and boundary of molten pool, respectively, which were much higher than the reported value of conventional materials.
机译:通过选择性激光熔融(SLM)为8.5 Vol%SiC / AlSi10mg粉末混合物成功合成了SiC陶瓷增强的铝复合材料。研究了SLM加工单独熔池中的微观结构演化机理。三个特征区域很好地区分,包括熔池的中心和边界区域以及热影响区域。结果表明,从柱状枝晶生长转换到沿建筑方向的细胞生长的微观结构可归因于G / R的变化(G是温度梯度,R是凝固速度)。通过X射线衍射(XRD)和能量分散光谱(EDS)分析进行SLM制造部件的相位鉴定,进一步证明了熔池中的原位形成的相。 Al4SIC4晶体在部分熔化的SiC陶瓷颗粒周围原位形成。在SLM制造的Al基复合材料的不同区域进行的纳米茚调测试分别在熔池的中心和边界中显示出高纳米术(2.27GPa和2.15GPa)和弹性模量(78.94GPa和75.46GPa),其远远高于报告的常规材料的价值。

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