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Hybrid additive manufacturing of Al-Ti6Al4V functionally graded materials with selective laser melting and cold spraying

机译:Al-Ti6Al4V的混合添加剂制造功能渐进的材料,具有选择性激光熔化和冷喷涂

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摘要

A hybrid additive manufacturing technology for fabricating functionally graded materials (FGMs) is proposed in this paper. The new process represents a combination of two existing additive manufacturing processes, selective laser melting (SLM) and cold spraying (CS). The targeted experiment of Al and Al + Al2O3 deposited onto SLM Ti6Al4V via CS reveals that the hybrid additive manufacturing process can produce thick, dense and machinable FGMs composed of non-weldable metals without intermetallic phase formation at the multi-materials interface. The SLM Ti6Al4V part exhibited fully acicular martensitic microstructure in contrast with alpha + beta microstructure in the Ti6Al4V feedstock, while the grain structure of the CS Al part had no significant change as compared with the Al feedstock. Due to the phase transformation of the SLM part and work hardening of the CS part, the overall hardness of the FMGs was higher than that of the feedstock.
机译:本文提出了一种用于制造功能梯度材料(FGMS)的混合添加剂制造技术。 新方法代表了两个现有的添加剂制造方法,选择性激光熔化(SLM)和冷喷涂(CS)的组合。 沉积在SLM Ti6Al4V的Al和Al + Al2O3的靶向实验揭示了杂化添加剂制造方法可以在多材料界面处没有由金属间相形成的不可焊金属组成的厚,致密和可加工的FGM。 SLM Ti6Al4V部分与Ti6Al4V原料中的α+β微观结构形成完全针状马氏体微观结构,而CS Al部分的晶粒结构与Al原料相比没有显着变化。 由于SLM部分的相变和Cs部分的工作硬化,FMG的总体硬度高于原料的整体硬度。

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