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Fatigue Life Evaluation For Multi-spot Welded Structures

机译:多点焊接结构的疲劳寿命评估

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摘要

A procedure using a conventional stress value (ERS, equivalent radial stress) to evaluate fatigue behaviour is applied to spot welded joints. The ERS is based on a closed-form solution of a theoretical bi-dimen-sional model of the spot weld area, under various types of loading conditions; ERS can be determined for every spot weld of the jointed structure. The closed-form solution is also digitalized in order to define a spot element which can be used in FE simulation of multi-spot structures, providing profit both in accuracy and in computing time saving.rnThrough the use of ERS-N curves, fatigue data collected on different joint geometries can be successfully mixed together. One of the main aspects evidenced is that progressive damage deeply influences fatigue behaviour: a simple numerical solution neglecting accumulated damage is unable to foresee the whole fatigue life. Indeed, the final value of ERS is given accounting the progressive damage effects of spot welds using a non-linear damage-step procedure. In the present paper the method has been applied to many experimental results: it is shown that a single criterion is used to deal with several different structures and materials.
机译:将使用常规应力值(ERS,等效径向应力)评估疲劳行为的过程应用于点焊接头。 ERS基于在各种类型的载荷条件下点焊区域的理论二维模型的闭合形式解;可以为接合结构的每个点焊确定ERS。封闭形式的解决方案也被数字化,以定义一个点元素,该点元素可用于多点结构的有限元模拟,从而在准确性和节省计算时间方面均获利。rn通过使用ERS-N曲线,疲劳数据可以将在不同关节几何形状上收集的样本成功地混合在一起。可以证明的主要方面之一是,渐进式损伤会深深影响疲劳行为:忽略累积损伤的简单数值解无法预测整个疲劳寿命。实际上,ERS的最终值已通过非线性损伤步骤程序说明了点焊的渐进性损伤效应。在本文中,该方法已应用于许多实验结果:表明使用单一标准来处理几种不同的结构和材料。

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