Effect of heat input on microstructure and mechanical property of wire-arc additive manufactured Ti-6Al-4V alloy

被引:0
|
作者
Guo Xian
Jeong mok Oh
Junghoon Lee
Sang Myung Cho
Jong-Tak Yeom
Yoonsuk Choi
Namhyun Kang
机构
[1] Pusan National University,Department of Materials Science and Engineering
[2] Korea Institute of Material Science,Titanium Department
[3] Yonsei University,Yonsei University KIURI Institute
[4] Super-TIG Welding Co. Ltd,undefined
来源
Welding in the World | 2022年 / 66卷
关键词
WAAM; Ti-6Al-4V; Heat input; Equiaxed grain; Thermal history; Secondary α;
D O I
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中图分类号
学科分类号
摘要
Wire-arc additive manufacturing (WAAM) combines an electric arc as a heat source and a wire as feedstock to build a layer-by-layer component. In arc welding, heat input is an important characteristic because it influences the cooling rate, which can affect the mechanical properties and microstructure of the deposited material. We investigated the effect of heat input on the microstructure and mechanical properties of WAAM deposited Ti-6Al-4V alloys. A high heat input (106 J/m, specimen H) produced a columnar grain exhibiting a large anisotropic tensile strength. However, a low heat input (5 × 105 J/m, specimen L) transformed the columnar grains to equiaxed grains owing to the accelerated solidification rates. The thermal history of the WAAM deposits was simulated using the finite-element method. The faster cooling rates in the solidification range (1600–1660 °C) in specimen L resulted in a larger fraction of the equiaxed grains and significant reduction of tensile strength anisotropy. Meanwhile, due to more thermal cycles and rapid cooling rates during the secondary-α transformation below the β-transus temperature (700–1006 °C), specimen H produced larger amounts of nitrogen, α′ martensite and fine-secondary α with a tangled dislocation, thereby exhibiting a larger tensile strength and hardness than specimen L.
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页码:847 / 861
页数:14
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