材料科学
焊接
温度梯度
极限抗拉强度
复合材料
热的
接头(建筑物)
有限元法
压力(语言学)
冶金
结构工程
热力学
物理
哲学
工程类
量子力学
语言学
作者
Linyi Xie,Wenqing Shi,Teng Wu,Meimei Gong,Detao Cai,Shanguo Han,Kuanfang He
出处
期刊:Materials
[MDPI AG]
日期:2022-09-05
卷期号:15 (17): 6159-6159
被引量:5
摘要
The high cooling rate and temperature gradient caused by the rapid heating and cooling characteristics of laser welding (LW) leads to excessive thermal stress and even cracks in welded joints. In order to solve these problems, a dynamic preheating method that uses hybrid laser arc welding to add an auxiliary heat source (arc) to LW was proposed. The finite element model was deployed to investigate the effect of dynamic preheating on the thermal behavior of LW. The accuracy of the heat transfer model was verified experimentally. Hardness and tensile testing of the welded joint were conducted. The results show that using the appropriate current leads to a significantly reduced cooling rate and temperature gradient, which are conducive to improving the hardness and mechanical properties of welded joints. The yield strength of welded joints with a 20 A current for dynamic preheating is increased from 477.0 to 564.3 MPa compared with that of LW. Therefore, the use of dynamic preheating to reduce the temperature gradient is helpful in reducing thermal stress and improving the tensile properties of the joint. These results can provide new ideas for welding processes.
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