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STRUCTURAL STRESS CORRECTION METHODS FOR LINEAR ELASTIC FINITE ELEMENT ANALYSIS OF SPOT WELDED JOINTS

机译:点焊接头线性弹性有限元分析的结构应力校正方法

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Structural stress concepts are widely used in fatigue life prediction of spot welds and seam welds in vehicle structures. For fatigue life prediction of welded joints based on the structural stress methods, it is necessary to obtain applied force ranges versus fatigue life of the welded specimens. Then, the force ranges versus fatigue life information is converted to structural stress ranges versus fatigue life (S-N) of the joints. The structural stress ranges versus the fatigue life curve of the welded specimens becomes the material fatigue property of the welded joints to predict fatigue life of joints in vehicle structures. While converting the applied load ranges to the structural stress ranges, linear elastic finite element analysis (FEA) is used. Therefore, the applied load ranges are considered as the responses of linear elastic deformation even though the load ranges consist of the linear elastic deformation and plastic deformation. As results the structural stress ranges of the welded joints are reduced in S-N curve. This study introduces simple techniques for spot welded joints to include the plastic deformation effect on the structural stress calculation without performing elastic-plastic finite element analysis. Fatigue test results of spot welded joints for lap-shear and coach peel specimens of advanced high strength steels (AHSS) and mild steels were used. The corrected structural stress methods showed better correlation with the test results.
机译:结构应力概念广泛用于预测汽车结构中点焊和缝焊的疲劳寿命。为了基于结构应力方法预测焊接接头的疲劳寿命,必须获得施加力范围与焊接试样的疲劳寿命。然后,将力范围与疲劳寿命信息转换为接头的结构应力范围与疲劳寿命(S-N)。焊接试样的结构应力范围与疲劳寿命曲线之间的关系成为焊接接头的材料疲劳特性,以预测车辆结构中接头的疲劳寿命。在将施加的载荷范围转换为结构应力范围时,使用了线性弹性有限元分析(FEA)。因此,即使载荷范围包括线性弹性变形和塑性变形,施加的载荷范围也被视为线性弹性变形的响应。结果,焊接接头的结构应力范围以S-N曲线减小。这项研究介绍了简单的点焊接头技术,将塑性变形效应包括在结构应力计算中,而无需进行弹塑性有限元分析。使用了高级高强度钢(AHSS)和低碳钢的搭接剪切和车削皮试样的点焊接头疲劳试验结果。校正后的结构应力方法显示出与测试结果更好的相关性。

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