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Numerical simulation of residual stress and deformation for submerged arc welding of Q690D high strength low alloy steel thick plate 被引量:6
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作者 朱梓坤 韩阳 +2 位作者 张舟 张义 周龙早 《China Welding》 CAS 2021年第3期49-58,共10页
The finite element simulation software SYSWELD is used to numerically simulate the temperature field,residual stress field,and welding deformation of Q690D thick plate multi-layer and multi-pass welding under differen... The finite element simulation software SYSWELD is used to numerically simulate the temperature field,residual stress field,and welding deformation of Q690D thick plate multi-layer and multi-pass welding under different welding heat input and groove angles.The simulation results show that as the welding heat input increases,the peak temperature during the welding process is higher,and the residual stress increases,they are all between 330–340 MPa,and the residual stress is concentrated in the area near the weld.The hole-drilling method is used to measure the actual welding residual stress,and the measured data is in good agreement with the simulated value.The type of post-welding deformation is angular deformation,and as the welding heat input increases,the maximum deformation also increases.It shows smaller residual stress and deformation when the groove angle is 40°under the same heat input.In engineering applications,under the premise of guaranteeing welding quality,smaller heat input and 40°groove angle should be used. 展开更多
关键词 numerical simulation multi-layer and multi-pass welding Q690D high strength low alloy steel welding residual stress and deformation
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构架环形多道焊变形仿真与焊序选优 被引量:7
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作者 傅利斌 杨鑫华 任瑞铭 《焊接学报》 EI CAS CSCD 北大核心 2012年第3期29-32,114,共4页
基于对焊接变形的产生机理分析,利用实体-壳单元混合模型,建立了转向架构架横梁组对环形多道焊变形仿真的有限元模型,以有效降低计算规模,并利用壳单元实现模型中实体与壳单元的连接.结合试验研究,利用3D双椭球模型,实现了焊接热源的校... 基于对焊接变形的产生机理分析,利用实体-壳单元混合模型,建立了转向架构架横梁组对环形多道焊变形仿真的有限元模型,以有效降低计算规模,并利用壳单元实现模型中实体与壳单元的连接.结合试验研究,利用3D双椭球模型,实现了焊接热源的校核,并通过提取和简化各层的平均热循环曲线,实现热源加载,以提高计算效率.在此基础上,对横梁组对环形多道焊不同焊接顺序下的变形进行计算,实现了面向变形控制的焊接顺序的选优.结果表明,采用的多道焊变形仿真建模与计算方法是可行的,能够满足工程仿真需求. 展开更多
关键词 环形多道焊 变形仿真 焊序选优
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