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Application of Numerical Method to Investigation of Fatigue Crack Behavior Through Friction Stir Welding

机译:数值方法在搅拌摩擦焊疲劳裂纹行为研究中的应用

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Fatigue crack propagation through a friction stir welded (FSW) joint of 2024-T351 Al alloy is investigated numerically. The governing relationships for predicting the crack behavior including incremental crack length, crack growth rate, and crack growth direction are presented. Stress intensity is calculated based on displacement correlation technique, and fatigue crack growth through the FSW joint is investigated under linear elastic fracture mechanics (LEFM) using the Paris model. The concepts of crack closure, residual stress, and stress relaxation are incorporated into the Paris model to support the final results. Maximum circumferential tensile stress method is applied to predict the crack growth direction. Finally, the numerical approaches are employed to the high number of elements in the framework of Fracture Analysis Code (FRANC2D/L) to simulate the fatigue crack propagation through the FSW joint including various zones with different material properties. Fatigue lifetime of the welded joint is predicted by implementing the same procedure for various loading values. The obtained numerical results are validated with the experimental work (Ali et al., Int J Fatigue 30:2030–2043, 2008).
机译:数值研究了2024-T351铝合金通过搅拌摩擦焊接(FSW)接头产生的疲劳裂纹扩展。给出了预测裂纹行为的控制关系,包括增加的裂纹长度,裂纹扩展速率和裂纹扩展方向。基于位移相关技术计算应力强度,并使用巴黎模型在线性弹性断裂力学(LEFM)下研究通过FSW接头的疲劳裂纹扩展。裂缝闭合,残余应力和应力松弛的概念已纳入Paris模型以支持最终结果。采用最大周向拉应力法预测裂纹扩展方向。最后,在“断裂分析代码”(FRANC2D / L)框架内对大量元素采用了数值方法,以模拟疲劳裂纹在FSW接头中的传播,包括不同材料特性的不同区域。通过对各种载荷值执行相同的过程,可以预测焊接接头的疲劳寿命。获得的数值结果通过实验工作得到了验证(Ali等人,Int J Fatigue 30:2030–2043,2008)。

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