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Microvoid damage model with material dilation for ductile fracture

机译:具有材料膨胀的延性断裂的微孔损伤模型

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摘要

A constitutive model that incorporates material dilation and the concept of continuum damage mechanics is developed to predict ductile fracture of steel under monotonic quasi-static loading due to microvoids. In this model, damage is assumed to be isotropic and is a function of the state of stress and the plastic strain increment. Material dilation is assumed to vary with the state of damage. Fracture occurs when the damage limit is reached. Parameters for the model are calibrated using data obtained from tension coupon tests. The constitutive model and the process used to determine its parameters are described. Analyses have been carried out to illustrate the effect of incorporating material dilation. The model is able to closely predict the load versus deformation curve of the tension test. Additional test data required for verifying the model have also been outlined.
机译:建立了结合材料膨胀和连续损伤力学概念的本构模型,以预测由于微孔而在单调准静态载荷下钢的延性断裂。在该模型中,假定破坏是各向同性的,并且是应力状态和塑性应变增量的函数。假定材料膨胀随损坏状态而变化。达到破坏极限时会发生断裂。使用从张力试样测试获得的数据来校准模型的参数。描述了本构模型和用于确定其参数的过程。已经进行了分析以说明结合材料膨胀的效果。该模型能够紧密预测拉伸试验的载荷与变形曲线。还概述了验证模型所需的其他测试数据。

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