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Elastic-Plastic Stress Analysis of Cold-Worked Pin-Loaded Holes

机译:冷加工销孔的弹塑性应力分析

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A detailed two-dimensional, elastic-plastic finite element analysis of a pin-loaded hole was conducted. A thin rectangular aluminum alloy sheet (7075-T6) with a circular hole was considered under plane stress conditions. The hole was loaded purely by a rigid pin to different load magnitudes. Appropriate contact elements were used at the pin-hole interface to transfer the traction loads from one surface to another. Material nonlinearities for the sheet and friction were included in the analyses. Radial and hoop stress solutions along the pin-hole interface were compared in elastically and plastically loaded holes. The influence of friction on the stress results was studied. The locations and magnitudes of the peak hoop stresses were determined. Lastly, an initial residual field was introduced around the hole by a cold expansion simulation before a subsequent pin-loading analysis. Because the cold expansion process involves some reverse yielding, both iso-tropic and kinematic material hardening models were considered.
机译:对销孔进行了详细的二维弹塑性有限元分析。在平面应力条件下,考虑了带有圆形孔的矩形矩形薄钢板(7075-T6)。孔仅由刚性销钉加载到不同的加载量。在针孔界面处使用了合适的接触元件,将牵引力从一个表面转移到另一个表面。板材的材料非线性和摩擦都包括在分析中。在弹性和塑性加载孔中比较了沿针孔界面的径向和环向应力解决方案。研究了摩擦对应力结果的影响。确定了峰值环向应力的位置和大小。最后,在随后的销荷载分析之前,通过冷膨胀模拟在孔周围引入了初始残余场。由于冷膨胀过程涉及一些反向屈服,因此考虑了各向同性和运动学材料硬化模型。

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