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首页> 外文期刊>Procedia CIRP >Development and Simulation of Isotropic Hardening for AISI 1035 Weld Stress Prediction during Design and Welding Assembly of Lower Brackets of Rail Cars
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Development and Simulation of Isotropic Hardening for AISI 1035 Weld Stress Prediction during Design and Welding Assembly of Lower Brackets of Rail Cars

机译:铁路下托架设计和焊接组装过程中AISI 1035焊接应力预测的各向同性硬化的开发和仿真

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Residual stresses through plastic deformation during the assembly operation of a rail car can cause cracks, distortion or other associated welding flaws if not checked. This study considers the use of analytical and numerical methods involving the simulation of isotropic hardening models for the prediction of AISI 1035 weld residual stresses during the arc welding assembly of the lower brackets of a rail car. Using the isotropic hardening model as well as the ABAQUS simulation software, the dynamic simulation of the gas metal arc welding process was performed at ambient temperature of 25oC over varying temperatures. The thermal modelling of the weld pass was carried out followed by the determination of the stress and strain values from the combined thermal elastic-plastic analysis. The results obtained indicated that the predictive ability of the isotropic model is highly significant, with the values of the weld stress and corresponding strain agreeing closely with the experimental values over varying ranges of temperatures. Hence, the isotropic hardening model can be used for weld residual stress simulation and prediction. Future work can consider the combination of both the isotropic and kinematic models.
机译:如果不检查,在有轨车组装过程中由于塑性变形而产生的残余应力会导致裂纹,变形或其他相关的焊接缺陷。本研究考虑使用包括各向同性硬化模型模拟在内的分析和数值方法,用于预测轨道车辆下托架的弧焊组装期间的AISI 1035焊接残余应力。使用各向同性硬化模型以及ABAQUS模拟软件,在环境温度25oC和变化温度下进行了气体保护金属电弧焊过程的动态模拟。对焊道进行热建模,然后根据热弹塑性组合分析确定应力和应变值。所得结果表明,各向同性模型的预测能力非常重要,在不同温度范围内,焊接应力和相应应变的值与实验值非常吻合。因此,各向同性硬化模型可用于焊接残余应力的模拟和预测。未来的工作可以考虑各向同性模型和运动学模型的组合。

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