Song Changhui, Hu Zehua, Xiao Yunmian, Li Yang, Yang Yongqiang
School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, China.
Micromachines (Basel). 2022 Mar 22;13(4):494. doi: 10.3390/mi13040494.
The dissimilar materials bonding of NiTi alloy with shape memory effect (SME) and CuSn10 alloy with good ductility, electrical conductivity, and thermal conductivity can be used in aerospace, circuits, etc. In order to integrate NiTi and CuSn10 with greatly different physical and chemical properties by selective laser melting (SLM), the effects of forming interlayers with different SLM process parameters were explored in this study. The defects, microstructure, and component diffusion at the interface were also analyzed. Columnar grain was found along the molten pool boundary of the interfacial region, and grains in the interfacial region were refined. Elements in the interfacial region had a good diffusion. Phase identifying of the interface showed that NiTi was generated. The analysis showed that the columnar grain, refined grains in the interfacial region, and a certain amount of NiTi could strengthen the interfacial bonding. This study provides a theoretical basis for forming NiTi/CuSn10 dissimilar materials structural members.
具有形状记忆效应(SME)的镍钛合金与具有良好延展性、导电性和导热性的铜锡10合金的异种材料结合可用于航空航天、电路等领域。为了通过选择性激光熔化(SLM)将物理和化学性质差异极大的镍钛合金和铜锡10合金结合在一起,本研究探讨了不同SLM工艺参数形成中间层的效果。还分析了界面处的缺陷、微观结构和成分扩散。沿界面区域熔池边界发现柱状晶,界面区域的晶粒得到细化。界面区域元素具有良好的扩散。界面的相鉴定表明生成了镍钛合金。分析表明,柱状晶、界面区域细化的晶粒以及一定量的镍钛合金可以增强界面结合。本研究为形成镍钛/铜锡10异种材料结构件提供了理论依据。