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拨叉轴等离子焊接数值模拟与实验研究
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作者单位:

1.华北理工大学 机械工程学院,河北 唐山 063200;2.唐山龙润机械有限公司,河北 唐山 063000;3.中国二十二冶集团有限公司,河北 唐山 063000

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中图分类号:

TG456.2;U463.212

基金项目:

河北省教育厅产学研专项(CXY2024054);中国五矿集团有限公司科技专项计划(2021ZXA06)


Numerical Simulation and Experimental Research on Plasma Welding of Shift Fork Shaft
Author:
Affiliation:

1.College of Mechanical Engineering, North China University of Science and Technology, Tangshan 063200, China;2.Tangshan Long-run Machinery Co., Ltd, Tangshan 063000, China;3.China MCC22 Group Corporation Ltd, Tangshan 063000, China

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    摘要:

    拨叉轴是手动变速箱、自动化手动变速箱和双离合变速箱中连接拨叉,调整齿轮啮合的重要零件。为研究拨叉轴等离子焊接过程中焊接变形、残余应力与焊接工艺参数的关系,基于ABAQUS仿真软件,采用温度-位移耦合的有限元计算方法并选取双椭球热源模型,对焊板与叉轴焊接的应力场、变形及温度场进行了数值模拟,完成了拨叉轴焊接工艺方案的优化,通过仿真和实验验证了优化模型的可靠性。结果表明:焊接变形随着焊接速度的增大有所减小,焊接速度在 2.5~3.0 mm/s区间时焊接变形量较小;变形随着焊接电流的增大而增大。焊接残余应力同焊接电流、焊接速度没有表现出明显的变化规律,但峰值均分布在560 MPa左右,小于叉轴650 MPa的抗拉强度,存在局部的应力集中现象。整体看,残余应力主要分布在焊缝两端,变形主要发生在焊板,经过优化的模型两道焊缝热源温度峰值更加均衡,局部焊接残余应力与变形略有下降。因此,模拟与实验结果可以为生产过程焊接质量的控制提供理论指导。

    Abstract:

    The shift fork shaft is an important component in manual transmission, automatic manual transmission and dual-clutch transmission to connect the fork and adjust gear engagement. To study the relationship among welding deformation, residual stress and welding process parameters during plasma welding of shift fork shaft, based on ABAQUS simulation software, the temperature-displacement coupled finite element calculation method was adopted and double ellipsoidal heat source model was selected to numerically simulate the stress field, deformation and temperature field of the welded plate and shift fork shaft. The optimization of the welding process of shift fork shaft was completed, and the reliability of the optimized model was verified through simulation and experiments. The results show that welding deformation is decreased with the increase in welding speed. The welding deformation is relatively small at welding speed of 2.5–3.0 mm/s and is increased with the increase in welding current. The welding residual stress does not show a significant variation law with welding current and welding speed, but the peak values are distributed around 560 MPa, which is smaller than the tensile strength of the fork shaft (650 MPa), and there is a local stress concentration phenomenon. Overall, residual stress is mainly distributed at both ends of the weld seam, and deformation mainly occurs at the weld plate. The optimized model has a more balanced peak temperature of the two weld heat sources, and local welding residual stress and deformation slightly decrease. Therefore, simulation and experimental results can provide theoretical guidance for the control of welding quality in actual production process.

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杨建光,纪宏超,裴未迟,何雷,黄晓敏,王珊珊.拨叉轴等离子焊接数值模拟与实验研究[J].稀有金属材料与工程,2025,54(1):156~170.[Yang Jianguang, Ji Hongchao, Pei Weichi, He Lei, Huang Xiaomin, Wang Shanshan. Numerical Simulation and Experimental Research on Plasma Welding of Shift Fork Shaft[J]. Rare Metal Materials and Engineering,2025,54(1):156~170.]
DOI:10.12442/j. issn.1002-185X.20240373

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历史
  • 收稿日期:2024-06-23
  • 最后修改日期:2024-10-10
  • 录用日期:2024-10-15
  • 在线发布日期: 2025-01-24
  • 出版日期: 2025-01-20