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不同预热焊接方法对Q345C钢对接焊接接头温度场、残余应力及变形的影响

Effects of Different Pre-Heating Welding Methods on the Temperature Field, Residual Stress and Deformation of a Q345C Steel Butt-Welded Joint.

作者信息

Yuan Jie, Ji Hongchao, Zhong Yingzhuo, Cui Guofa, Xu Linglong, Wang Xiuli

机构信息

College of Mechanical Engineering, North China University of Science and Technology, Tangshan 063210, China.

School of Materials Science and Engineering, Zhejiang University, Hangzhou 310030, China.

出版信息

Materials (Basel). 2023 Jul 2;16(13):4782. doi: 10.3390/ma16134782.

Abstract

Heavy plate welding has been widely used in the construction of large projects and structures, in which the residual stress and deformation caused by the welding process are the key problems to address to reduce the stability and safety of the whole structure. Strengthening before welding is an important method to reduce the temperature gradient, control the residual stress and reduce the deformation of welds. Based on the ABAQUS software, the thermal elastoplastic finite element method (FEM) was used to simulate the welding thermal cycle, residual stress and deformation of low-alloy, high-strength steel joints. Based on the finite element simulation, the influences of flame heating and ceramic heating on the temperature field, residual stress distribution and deformation of a Q345C steel butt-welded joint were studied. The results showed that the thermal cycle of the ceramic sheet before welding had little influence on the whole weldment, but had great influence on the residual stress of the weldment. The results show that the maximum temperature and residual stress of the welded parts are obviously weakened under the heating of ceramic pieces, and the residual stress of the selected feature points is reduced by 5.88%, and the maximum temperature of the thermal cycle curve is reduced by 22.67%. At the same time, it was concluded that the weld shapes of the two were basically the same, but the weld seams heated by ceramic pieces had a better weld quality and microstructures through comparing the macro- and micro-structures between the welded parts heated by ceramic pieces and the simulated weld. Heating before welding, therefore, is an effective method to obtain a high weld quality with less residual stress and deformation.

摘要

厚板焊接已广泛应用于大型工程和结构的建设中,其中焊接过程中产生的残余应力和变形是降低整个结构稳定性和安全性需要解决的关键问题。焊前强化是降低温度梯度、控制残余应力和减少焊缝变形的重要方法。基于ABAQUS软件,采用热弹塑性有限元法(FEM)模拟了低合金高强度钢接头的焊接热循环、残余应力和变形。基于有限元模拟,研究了火焰加热和陶瓷加热对Q345C钢对接接头温度场、残余应力分布和变形的影响。结果表明,焊前陶瓷片的热循环对整个焊件影响较小,但对焊件的残余应力影响较大。结果表明,在陶瓷片加热作用下,焊件的最高温度和残余应力明显减弱,所选特征点的残余应力降低了5.88%,热循环曲线的最高温度降低了22.67%。同时,通过比较陶瓷片加热焊件与模拟焊缝的宏观和微观组织,得出两者的焊缝形状基本相同,但陶瓷片加热的焊缝具有更好的焊接质量和微观组织。因此,焊前加热是获得高焊接质量、减少残余应力和变形的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3f3/10343208/dc337a362086/materials-16-04782-g001.jpg

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