Gaussian Moving Heat Source Predicts Welding Deformation
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摘要: 以 TX-18 铁路道床吸污装置中的除尘系统角焊缝作为模型,选用 Ansys 模拟了除尘系统角焊缝焊接过程。通过瞬时温度场、焊接残余应力及塑性变形量云图,研究了焊接过程中对其变形量的影响。基于计算结果及实际焊缝长度考量,将反变形量控制在 5~10 mm,并通过退火去除焊接应力后,可以将除尘系统的表面平整度均控制在 2.5 mm 以内,能够满足除尘系统设计要求。Abstract: Taking the fillet weld of the dust removal system of the TX-18 railway track bed as a model, Ansys is selected to simulate the fillet welding process of the dust removal system. Through the instantaneous temperature field, welding residual stress and plastic deformation cloud graph, the influence of the welding process on its deformation is studied. Based on the calculation results and the actual weld length considerations, the anti-deformation amount is controlled to 5-10 mm, and after the welding stress is removed by annealing, the surface flatness of the dust removal system can be controlled within 2.5 mm, which can meet the design requirements of the dust removal system.
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Key words:
- welding stress /
- welding deformation /
- gaussian moving heat source /
- ansys
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[1] 马大炜.关于大秦线重载列车下坡道安全运行和纵向力问题[J].铁道车辆,2005,43(1):1-4. [2] Gu M,Goldak J A.Steady-State Formulation for Stress and Distortion of Welds[J].Journal of Engineering for Industry, 1994,116(4):467. [3] Cai Z,Wu S,Lu A,et al.Line Gauss heat source model:an efficient approach for numerical welding simulation[J].Science & Technology of Welding & Joining,2001,6(2):84-88. [4] 张锦洲,熊禾根,杨雄.基于移动高斯热源的平板对接焊缝数值模拟[J].热加工工艺,2013,42(9):3. [5] 叶卫平,陈武,章桥新.用MATLAB研究微波渗硼扩散问题[J].热加工工艺,2007,36(6):78-80. [6] 汪建华,陆皓,魏良武.固有应变有限元法预测焊接变形理论及其应用[J].焊接学报,2002(6):36-40. [7] 王继永.T形角焊缝焊接变形的工艺改进[J].金属加工(热加工),2009(12):70-71. [8] 张凯.基于数值模拟的角焊缝焊接变形特点和控制研究[D].武汉:武汉理工大学,2018.
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