材料科学
选择性激光熔化
钛镍合金
合金
差示扫描量热法
形状记忆合金
激光功率缩放
扫描电子显微镜
拉伸试验
极限抗拉强度
复合材料
微观结构
冶金
激光器
热力学
光学
物理
作者
Changhui Song,Junfei Huang,Linqing Liu,Zehua Hu,Yongqiang Yang,Di Wang,Chao Yang
标识
DOI:10.1108/rpj-05-2021-0114
摘要
Purpose This paper aims to better control the mechanical properties and functional properties of NiTi alloy. Design/methodology/approach NiTi alloy samples with equal atomic ratio were formed by selective laser melting (SLM). X-ray diffraction (XRD), differential scanning calorimetry (DSC), scanning electron microscopy and tensile testing methods were used to study the effects of different laser power and scanning speed on the densification behavior, phase transformation characteristics and mechanical properties of NiTi alloy. Findings Compared with the laser power, the variation of the keyhole effect caused by the change of scanning speed is more intense, which has a greater effect on the densification behavior of SLM NiTi alloy. The effect of the laser power on the phase transition temperature is small. The increase of scanning speed weakens the burning degree of Ni element, so phase transition temperature decreases. The results of DSC test and tensile test show that the scanning velocity can significantly change the phase transition temperature, martensite twins reorientation and stress–strain behavior of SLM NiTi alloy. Originality/value This study provides a potential method to regulate the mechanical properties and functional properties of NiTi shape memory alloy in the future and NiTi alloys formed by SLM with good elongation were obtained because the Supercellular crystal structure formed during the nonequilibrium solidification of SLM and the superfine precipitates dispersed in the alloy prevented the dislocation formation.
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