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Analysis of manufacturing effects on fatigue failure of an automotive component using finite element methods

机译:用有限元方法分析制造对汽车零部件疲劳失效的影响

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In this study, the fatigue life of an automotive suspension component was analysed using finite element methods with regard to stamping and welding effects. Because automotive suspension components are produced by forming and welding sheet metal, there are various effects on the final product, such as uneven thickness distribution, residual stresses and weld notches. Manufacturing effects may change the mechanical performance of the automotive components; therefore, it is desirable to consider these effects in the early design stage. Residual stresses due to work hardening and thermal deformation were investigated through process simulation. The redistribution and relaxation of residual stresses in a component were investigated in fatigue life analysis under a cyclic loading condition. Various equivalent relaxation curves were investigated and one was selected after comparisons with test results. The fatigue simulation results were compared to the test results; a good correlation between the two was achieved for the residual stress effects in terms of life cycles and failure locations. The simulation results also show that welding produces more detrimental effects than stamping with regard to the fatigue life of a component.
机译:在这项研究中,针对冲压和焊接效果,使用有限元方法分析了汽车悬架部件的疲劳寿命。由于汽车悬架部件是通过成形和焊接钣金来生产的,因此会对最终产品产生各种影响,例如厚度分布不均,残余应力和焊缝。制造效果可能会改变汽车零部件的机械性能;因此,希望在设计的早期阶段就考虑这些影响。通过过程仿真研究了由于加工硬化和热变形而产生的残余应力。在循环载荷条件下的疲劳寿命分析中,研究了组件中残余应力的重新分布和松弛。研究了各种等效的松弛曲线,并与测试结果进行比较后选择了一条。将疲劳模拟结果与测试结果进行比较;就生命周期和失效位置而言,残余应力效应在两者之间取得了良好的相关性。仿真结果还表明,就部件的疲劳寿命而言,焊接比冲压产生的有害影响更大。

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