Fabricating TiNiCu Ternary Shape Memory Alloy by Directed Energy Deposition via Elemental Metal Powders

材料科学 形状记忆合金 能量色散X射线光谱学 三元运算 合金 扫描电子显微镜 冶金 极限抗拉强度 假弹性 奥氏体 复合材料 差示扫描量热法 马氏体 微观结构 热力学 物理 计算机科学 程序设计语言
作者
Yitao Chen,Xinchang Zhang,Mohammad Masud Parvez,Joseph William Newkirk,Frank Liou
出处
期刊:Applied sciences [Multidisciplinary Digital Publishing Institute]
卷期号:11 (11): 4863-4863 被引量:9
标识
DOI:10.3390/app11114863
摘要

In this paper, a TiNiCu shape memory alloy single-wall structure was fabricated by the directed energy deposition technique with a mixture of elemental Ti, Ni, and Cu powders following the atomic percentage of Ti50Ni45Cu5 to fully utilize the material flexibility of the additive manufacturing process to develop ternary shape memory alloys. The chemical composition, phase, and material properties at multiple locations along the build direction were studied, using scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction, Vickers hardness testing, tensile testing, and differential scanning calorimetry. The location-dependent compositions of martensitic TiNi and austenitic TiNi phases, mechanical properties, and functional properties were investigated in detail. Variations were found in atomic compositions of Ti, Ni, and Cu elements along the build direction due to the complex interaction between elemental powders and laser processing. Good correlations were present among the chemical composition, phase constituent, hardness, and feature of phase transformation temperatures at various locations. The ultimate tensile strength of the as-deposited TiNiCu alloy is comparable with the previously reported additively manufactured TiNi binary alloys. By adding Cu, a much lower thermal hysteresis was achieved, which shows good feasibility of fabricating ternary TiNiCu shape memory alloys, using elemental powders in the directed energy deposition to adjust the thermal hysteresis.

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