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Kriging metamodel global optimization of clinching joining processes accounting for ductile damage

机译:考虑韧性延展的铆接过程的Kriging元模型全局优化

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摘要

Clinching is a very cheap and efficient cold forming process that enables to join two sheets without any additional part such as a rivet or a bolt. This paper deals with the optimization of the final mechanical strength of a joined component using a global optimization technique based on Kriging meta-model. The optimization process includes both the joining stage and the mechanical strength simulations. It is shown that accounting for plastic strain, residual stresses and damage occurring during clinching is essential if one wants to study the final mechanical strength of the clinched component. The global optimization leads to a 13.5% increase of the mechanical strength for tensile loading and to 46.5% increase for shear loading. The global optimization procedure also enables to study the influence of input geometrical variability on the final mechanical strength, which is essential from an industrial point of view.
机译:铆接是一种非常便宜且有效的冷成型工艺,该工艺能够将两张板材连接在一起而无需任何其他零件,例如铆钉或螺栓。本文使用基于Kriging元模型的全局优化技术来处理连接部件的最终机械强度。优化过程包括连接阶段和机械强度模拟。结果表明,要想研究压紧零件的最终机械强度,必须考虑到压接过程中发生的塑性应变,残余应力和损坏,这一点至关重要。全局优化可将拉伸载荷的机械强度提高13.5%,而将剪切载荷的机械强度提高46.5%。全局优化程序还可以研究输入几何可变性对最终机械强度的影响,从工业角度来看,这是必不可少的。

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