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Residual stresses in cup drawing of automotive alloys

机译:汽车合金杯图中的残余应力

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Residual stresses in metals are caused by a number of processes such as inhomogeneous deformation, phase changes and temperature gradients. This investigation focuses on the residual stresses caused by plastic deformation of automotive metals. Such stresses are responsible for part springback and shape distortion in many manufacturing and assembly processes. Tensile residual stresses may lead to stress cracking and, in some alloys, to stress corrosion cracking which may ultimately lead to premature product failure. The residual stress potential of metals can be evaluated by using the Split Ring Test Method. The test can be used to evaluate the effect of materials on residual stresses in cup drawing. Drawn cups are used because they produce large amounts of residual stresses and, therefore, increase measurement accuracy and reduce experimental error. A closed form analytical solution is used to estimate residual stresses in split rings taken from sections cut from the drawn cups. Residual stress calculations based on the analytical model and on measurements of the gap in the split ring are compared with computer simulation results obtained from two commercial FEM codes.
机译:金属中的残余应力是由多个过程引起的,例如不均匀变形,相变和温度梯度。本研究侧重于汽车金属塑性变形引起的残余应力。这种应力负责在许多制造和组装过程中的部分回弹和形状变形。拉伸残余应力可能导致应力裂化,并且在一些合金中,应对腐蚀裂缝,这可能最终导致过早的产品失效。可以通过使用分离环测试方法来评估金属的残余应力电位。该试验可用于评估材料对杯子杯拉的残余应力的影响。使用绘制的杯子,因为它们产生大量的残余应力,因此增加测量精度并降低实验误差。封闭形式的分析溶液用于估计从绘制杯子切割的截面中的分裂环中的残余应力。将基于分析模型和分裂环中间隙测量的残余应力计算与从两个商业有限元码获得的计算机仿真结果进行比较。

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