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A novel approach to simulate the stiffness behaviour of spot welded vehicle structures under multi axial variable amplitude loading

机译:一种模拟多轴可变振幅载荷下点焊车辆结构刚度行为的新方法

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Under cyclic loading in combination with high local stress levels a change in stiffness of connection points, e.g. spot welds, self-piercing rivets or flow drill screws can be observed. This paper introduces a numerical approach for the simulation of stiffness changes in vehicle structures under multiaxial cyclic loading as a result of the stiffness degradation of individual spot welds. The basic approach is based on a conventional damage accumulation combined with a power law representing the change in the spot weld’s stiffness. Instead of an accumulated damage value D a residual stiffness is set as failure criterion. Extensions to the approach are presented for its application to multiaxial loading with variable amplitudes. A conventional multiaxial fatigue test of a complete vehicle, focusing on its rear end including global stiffness and local strain measurements at the beginning, median and at the end of the test are presented and compared to the simulated results. This computation approach allows a more reliable fatigue assessment in comparison to a fatigue analysis which does not consider stiffness changes. The damage propagation after the crack initiation at an individual spot weld is represented more accurately as subsequent changes in the load paths are considered.
机译:在循环载荷下结合高局部应力水平,连接点的刚度发生变化,例如可以观察到点焊,自冲铆钉或流动钻孔螺钉。本文介绍了一种数值方法,用于仿真由于单点焊的刚度降低而在多轴循环载荷下车辆结构的刚度变化。基本方法是基于常规的损伤累积,再结合幂律来表示点焊刚度的变化。代替累积的损伤值D,将残余刚度设置为失效准则。提出了对该方法的扩展,以应用于可变振幅的多轴载荷。提出了完整车辆的常规多轴疲劳测试,重点是其后端,包括测试开始,中值和结束时的整体刚度和局部应变测量,并将其与模拟结果进行了比较。与不考虑刚度变化的疲劳分析相比,这种计算方法可以进行更可靠的疲劳评估。考虑到载荷路径中的后续变化,可以更准确地表示在单个点焊处裂纹萌生之后的损伤传播。

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