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A two-yield surfaces, viscoplastic constitutive model for ceramics and geomaterials

机译:一种双屈服表面,陶瓷和岩土材料的粘液组成型模型

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This work describes an innovative multi-axial, elasto-visco-plastic constitutive model based on the assumption that plastic deformations are induced by two mechanisms: a short term, instantaneous mechanism, and a long term, viscous mechanism. The need for this approximation has been recently deduced from experimental compaction of fine grained powders (consisting of clays). This constitutive approach implies the need to consider the existence of two yield surfaces: the first one is a conventional, rate independent, elasto-plastic yield surface, whereas the second one is a Perzyna-type, visco-plastic yield surface. The method for combining the hardening laws of the two, very different yield surfaces within a consistent framework is discussed in detail and the numerical algorithms for the implicit, backward Euler integration of the proposed model are fully explained. In the final part of the work, model simulations are compared with experimental results, showing that model simulations are reliable for both ceramics and geomaterials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作描述了一种基于塑性变形诱导的三种机制的创新的多轴,弹性粘塑料本构型模型:短期,瞬时机制和长期粘性机制。最近已经从细粒粉末(由粘土组成)的实验压实中推导出对该近似的需求。这种本构体方法意味着需要考虑两个屈服表面的存在:第一个是常规的,速率无关,弹性塑料屈服表面,而第二个是Perzyna型,粘塑料屈服表面。结合两者的硬化定律的方法,详细讨论了一致框架内的两种非常不同的屈服表面,并且已经详细讨论了所提出的模型的隐式落后欧拉集成的数值算法。在工作的最后部分,模型模拟与实验结果进行了比较,表明陶瓷和岩土材料的模型模拟是可靠的。 (c)2016 Elsevier Ltd.保留所有权利。

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