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Gurson-type Elastic-Plastic Damage Model Based on Strain-Rate Plastic Potential

机译:基于应变率塑料电位的Gurson型弹性塑料损伤模型

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Ductile damage is generally described by stress-space analytical potentials. In this contribution, it is shown that strain rate potentials, which are exact conjugate of the stress-based potentials, can be equally used to describe the dilatational response of porous metals. This framework is particularly appropriate for porous materials with matrix described by complex yield criteria for which a closed-form expression of the stress-based potential is not available. Illustration of the new approach is done for porous metals containing randomly distributed spherical voids in a von Mises elasto-plastic matrix. Furthermore, a general time integration algorithm for simulation of the mechanical response using this new formulation is developed and implemented in Abaqus/Standard. The proposed model and algorithm are validated with respect to the Abaqus built-in GTN model, which is based on a stress potential, through the simulation of a tensile test on a round bar.
机译:延展性损坏通常由应力空间分析潜力描述。在这一贡献中,表明应变速率电位,其是基于应力的电位的精确缀合物,可以同样用于描述多孔金属的扩张响应。该框架特别适用于具有由复合产率标准描述的基质的多孔材料,其中不可用应力的潜在的闭合形式表达。新方法的插图是用于含有Von Mises弹塑性基质中的随机分布的球形空隙的多孔金属。此外,在ABAQUS /标准中开发和实现了使用这种新配方的机械响应模拟的一般集成算法。所提出的模型和算法是关于ABAQU内置GTN模型的验证,其基于应力电位,通过圆棒上的拉伸试验模拟。

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