材料科学
焊接
冶金
钛合金
镁合金
有限元法
镁
钛
超声波焊接
超声波传感器
热影响区
复合材料
合金
结构工程
工程类
物理
声学
作者
Dewang Zhao,Daxin Ren,Kunmin Zhao,Pan Sun,Xinglin Guo,Liming Liu
出处
期刊:Chinese journal of mechanical engineering
[Elsevier]
日期:2019-11-29
卷期号:32 (1)
被引量:24
标识
DOI:10.1186/s10033-019-0409-8
摘要
Abstract Ultrasonic welding is an effective ways to achieve a non-reactive/immiscible heterogeneous metal connection, such as the connection of magnesium alloy and titanium alloy. But the thermal mechanism of magnesium alloy/titanium alloy ultrasonic welding has not been defined clearly. In this paper, the experimental and the finite element analysis were adopted to study the thermal mechanism during welding. Through the test, the temperature variation law during the welding process is obtained, and the accuracy of the finite element model is verified. The microscopic analysis indicates that at the welding time of 0.5 s, the magnesium alloy in the center of the solder joint is partially melted and generates the liquid phase. Through the finite element analysis, the friction coefficient of the magnesium–titanium ultrasonic welding interface can be considered as an average constant value of 0.28. The maximum temperature at the interface can exceed 600 °C to reach the melting point temperature of the magnesium alloy. The plastic deformation begins after 0.35 s and occurs at the magnesium side at the center of the interface.
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