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Appraisement of planar, bending and twisting cracks in 3D with isotropic and orthotropic damage models

机译:用各向同性和正交损伤模型评估3D的平面,弯曲和扭曲裂缝

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摘要

This paper discusses the modeling of cracking in quasi-brittle materials using isotropic and orthotropic damage constitutive laws. A mixed strain/displacement finite element formulation is used, taking advantage of its enhanced precision and its enforced interelemental strain continuity. On the one hand, this formulation avoids the spurious mesh dependency of the computed solution associated to standard elements and does not require the use of tracking techniques. On the other hand, it greatly alleviates the spurious stress locking associated to the use of orthotropic models on standard finite elements. The performance of several isotropic and orthotropic damage constitutive laws is assessed through an extensive comparison with analytical solutions, numerical tests and experimental evidence reported in the literature. The behavior of the different damage models in terms of crack surface, collapse mechanism and force displacement curves is investigated performing 3D analyses in several conditions including Mode I, Mixed Mode and Mode III fracture. When performing the appraisement of planar, bending and twisting cracks, the enhanced accuracy of the mixed formulation allows for a distinct assessment of the several damage models considered. Aspects related to the behavior of damage models, such as the influence of Poisson's ratio, the shape of the damage surface and the adoption of isotropic and orthotropic models are investigated and noteworthy conclusions are drawn.
机译:本文讨论了各向同性和正交损伤本构规定的准脆性材料裂缝的建模。利用混合应变/位移有限元制剂,利用其增强的精度及其强制性时段应变连续性。一方面,该配方避免了与标准元件相关联的计算解决方案的虚假网格依赖性,并且不需要使用跟踪技术。另一方面,它极大地减轻了与在标准有限元件上使用正交模型相关的杂散应力锁定。通过与分析解决方案,数值测试和文献中报告的实验证据进行广泛的比较来评估若干各向同性和正交损伤本构规定的性能。在包括模式I,混合模式和模式III裂缝的若干条件下,研究了在裂缝表面,折叠机构和力位移曲线方面的不同损伤模型的行为。在进行平面的评估时,弯曲和扭曲裂缝的评估时,混合配方的增强精度允许对考虑的几种损坏模型进行不同的评估。研究了与损伤模型的行为有关的方面,例如泊松比的影响,损伤表面的形状和通过各向同性和正交模型的采用进行了研究,并得出了值得注意的结论。

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