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Numerical integration of an advanced Gurson model for shear loading: Application to the blanking process

机译:用于剪切载荷的高级Gurson模型的数值积分:在下料过程中的应用

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A new extension of the Gurson damage model has been proposed recently to predict ductile fracture under shear dominated loads. The aim of this work is to verify the ability of this approach to simulate, in an accurate way, the damage evolution in shearing processes. An implicit stress integration algorithm is then developed to implement the new model in a finite element code. The numerical procedure is checked through simulations of shear and uniaxial tension tests on a single elements. The extended Gurson damage model is tested and applied to the punching process to compare its predictive ability with the original approach. The obtained numerical results are in good agreement with experimental results of the punching process, showing better ductile fracture predictions compared to the original Gurson model.
机译:最近已经提出了Gurson损伤模型的新扩展,以预测在剪切为主的载荷下的韧性断裂。这项工作的目的是验证这种方法以准确的方式模拟剪切过程中损伤演变的能力。然后,开发了一种隐式应力积分算法,以用有限元代码实现新模型。通过模拟单个元件上的剪切和单轴拉伸试验来检查数值程序。测试扩展的Gurson损伤模型,并将其应用于冲压过程,以将其预测能力与原始方法进行比较。获得的数值结果与冲压过程的实验结果非常吻合,与原始的Gurson模型相比,显示出更好的延性断裂预测。

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