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Modeling multi-fracturing fibers in fiber networks using elastoplastic Timoshenko beam finite elements with embedded strong discontinuities - Formulation and staggered algorithm

机译:使用Elastoplast Timoshenko束有限元模拟光纤网络中的多压裂纤维,具有嵌入式强不连续性 - 配方和交错算法

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To model fiber failures in random fiber networks, we have developed an elastoplastic Timoshenko beam finite element with embedded discontinuities. The method is based on the theory of strong discontinuities where the generalized displacement field is enhanced by a jump. The continuum mechanics formulation accounts for a fracture process zone and a bulk material while retaining traction continuity across the discontinuity. The additional degrees of freedom that are associated with the discontinuity are represented by a midpoint node, which is statically condensed to enable the implementation in commercial software through the user element interface. We propose a quasi-brittle fracture model, where the failure-related deformation is uncoupled from the plastic deformation in the bulk material. To retain the positive definite finite element stiffness matrix of the bulk material, we neglect the fracture-related softening of the discontinuity and employ a modified Newton iteration in the strain softening domain. Our implementation facilitates the integration into commercial finite element software and examples illustrate the robustness of the method. The FORTRAN source code is freely available to benchmark our model. We show that fiber failures contribute to the nonlinear stress-strain response of paper. Together with fiber-fiber bond failures, they can potentially explain the nonlinear stress-strain response of paper and nanopaper. (C) 2021 The Author(s). Published by Elsevier B.V.
机译:为了在随机光纤网络中模拟光纤故障,我们开发了一种具有嵌入式不连续性的弹性塑料TIMOSHONKO梁有限元。该方法基于通过跳跃增强广义排量场的强不连续性的理论。连续体制学制剂占骨折过程区和散装材料,同时保持过度不连续性的牵引连续性。与不连续性相关联的附加自由度由中点节点表示,该中点节点静凝地凝结以通过用户元素接口实现商业软件中的实现。我们提出了一种准脆性裂缝模型,其中失效相关变形是从散装材料中的塑性变形耦合的。为了保留散装材料的正定有限元刚度基质,我们忽略了不连续性的骨折相关软化,并在应变软化结构域中使用改性的牛顿迭代。我们的实施促进了集成到商业有限元软件中,并说明了该方法的稳健性。 FORTRAN源代码可自由地用于基准测试我们的型号。我们表明纤维失败有助于纸张的非线性应力 - 应变响应。与纤维纤维键失度一起,它们可以潜在地解释纸和纳米纸的非线性应力 - 应变响应。 (c)2021提交人。 elsevier b.v出版。

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