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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Mechanical properties of AlSi10Mg alloy fabricated by laser melting deposition and improvements via heat treatment
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Mechanical properties of AlSi10Mg alloy fabricated by laser melting deposition and improvements via heat treatment

机译:激光熔化沉积和通过热处理改善制造的Alsi10mg合金的机械性能

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摘要

Process optimization and heat treatment of AlSi10Mg aluminum alloy parts fabricated by laser melting deposition (LMD) based on coaxial powder feeding are conducted in this paper to improve manufacturing quality. The microstructures and mechanical properties of the LMD-built AlSi10Mg alloy parts are systematically investigated. Experimental results show the relative density of the block samples increase to 99.2% without larger pores and cracks after process optimization. The sample microstructures are found to display directional rapid solidification characteristics, with the Al-Si eutectic microstructure containing three microstructures being cellular, columnar dendrites and divergent dendrites. With solution and artificial aging heat treatments, Si atoms are rejected from the supersaturated Al matrix to form small Si granular particles. The heat treated samples display a uniform microstructure without heterogeneities and the microhardness remains stable at 118 Fly. When the as-built sample is heat treated for solution time 2h, tensile strength increases from 292 MPa to 342 MPa due to the formation of strengthening phase Mg2Si.
机译:本文进行了基于同轴粉末的激光熔化沉积(LMD)制造的Alsi10mg铝合金部件的工艺优化和热处理,以提高制造质量。系统研究了LMD构建的Alsi10mg合金零件的微观结构和力学性能。实验结果表明,在工艺优化后,嵌段样品的相对密度增加到99.2%而无需更大的孔隙和裂缝。发现样品微结构显示定向快速凝固特性,具有含有三种微结构的Al-Si共晶微观结构是细胞,柱状树枝状和发散的树突。通过溶液和人工老化热处理,Si原子从超饱和的Al基质中排出以形成小的Si颗粒颗粒。热处理样品显示出均匀的微观结构而没有异质性,并且微硬度在118次飞行中保持稳定。当为溶液溶液进行热处理时,抗拉强度由于强化相Mg2Si的形成而从292MPa至342MPa增加。

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