材料科学
扩散焊
钛镍合金
复合材料
焊接
联锁
接头(建筑物)
微观结构
表面粗糙度
变形(气象学)
表面光洁度
扩散焊
冷焊
激光器
超声波焊接
严重塑性变形
激光束焊接
光学
结构工程
形状记忆合金
工程类
物理
气体保护金属极电弧焊
作者
Sansan Ao,C. J. Li,Wei Zhang,J.P. Oliveira,Zhi Zeng,Zhong Luo
出处
期刊:Journal of Manufacturing Science and Engineering-transactions of The Asme
[ASM International]
日期:2021-06-02
卷期号:144 (1)
被引量:3
摘要
Abstract In the present work, the effects of laser surfacing aiming at modifying the surface roughness on NiTi sheets prior to the application of ultrasonic welding (USW) were investigated. Three different configurations joining original and laser surfaced specimens were performed: original/original (referred as O/O), original/treated (referred as O/T), and treated/treated (referred as T/T). The influence of surface roughness on the interface formation, diffusion, and mechanical properties was investigated. It is observed that when both bonding surfaces becomes rougher (T/T configuration), the joint strength is the highest, followed by both smooth bonding surfaces (O/O configuration), and the strength of the joint is the lowest when only one of the bonding surfaces was roughened (O/T configuration), which is related to the degree of plastic deformation at the joining interface. The main joining mechanism of NiTi to the Al interlayer was a metallic bonding caused by shear plastic deformation and formation and growth of micro welds at the joining interfaces. Laser surfacing facilitates the metallic bonding, which is directly reflected in the change of the thickness of the Al interlayer after USW. This also helps to produce a mechanical interlocking at the interface, although there is no significant difference in the elemental diffusion. Interfacial failure occurred in all joints tested under different surface contact conditions and exhibited ductile-like fracture characteristics.
科研通智能强力驱动
Strongly Powered by AbleSci AI