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A novel damage model in the peridynamics-based cohesive zone method (PD-CZM) for mixed mode fracture with its implicit implementation

机译:混合模式裂缝的透明基于顽固性粘性区方法(PD-CZM)的一种新型损伤模型,其隐含实现

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摘要

Peridynamics (PD) becomes increasingly promising in computational fracture mechanics for its powerful ability to capture complex crack problems. Nevertheless, the PD applications are mainly limited to brittle fracture, and a robust PD model for predicting mixed mode fracture of quasi-brittle materials is still lacking. In this work, a novel damage model is proposed in the PD-CZM to accurately predict quasi-brittle failure under quasi-static mixed-mode loading, especially shear-dominated loading. In order to establish the damage criterion of quasi-brittle materials, the bond potential in bond based peridynamics (BBPD) is firstly separated into the dilatational part and deviatoric part. Instead of using existing bond stretch-based failure criterion, a new damage criterion obtained by combining bond stretch and dilatational bond potential is firstly proposed to determine the damage initiation. Also, the tension softening behavior of quasi-brittle materials is described in the damage model by a well-established degradation curve based on an energy-equivalence principle. Besides, to robustly solve the physical nonlinear characteristics, especially tension softening-induced snap-back phenomenon, the implicit implementation of the PD-CZM is performed with different implicit solution methods. Three challenging benchmarks are simulated to validate the proposed damage model, including Schlangen's single-edge notched beam test, Nooru-Mohamed's double edge-notched concrete specimen (DENS) test and Arrea and Ingraffea's single notched shear beam test with severe snap-back behavior. Both the predicted crack paths and the load-displacement curves are in perfect agreement with the experimental observations and other numerical results, clearly demonstrating the validity of the proposed damage model and the robustness of the implicit implementation. (C) 2021 Elsevier B.V. All rights reserved.
机译:朝鲜动力学(PD)在计算骨折力学中越来越承诺,以获得复杂裂缝问题的强大能力。然而,Pd应用主要限于脆性骨折,并且仍然缺乏用于预测混合模式骨折的鲁棒PD模型。在这项工作中,在PD-CZM中提出了一种新的损伤模型,以准确地预测准静态混合模式负载下的准脆性失败,尤其是剪切主导的负载。为了建立准脆性材料的损伤标准,首先将键基的白癌(BBPD)中的粘合电位分离成扩张部分和脱模部件。首先提出通过组合结合键弹力和扩张键电位获得的新损伤标准来确定通过组合粘合和扩张键电位而获得的新损伤标准来确定损伤启动。而且,基于能量 - 等效原理,通过良好的降解曲线在损伤模型中描述了准脆性材料的张力软化行为。此外,为了强大地解决物理非线性特性,尤其是张力软化引起的快速现象,用不同的隐式解决方案方法进行PD-CZM的隐式实现。模拟了三个具有挑战性的基准,以验证拟议的损坏模型,包括Schlangen的单缘缺口梁测试,Nooru-Mohamed的双刃缺口混凝土样本(DENS)测试和Arrea,Ingraffea的单个凹陷剪切梁测试,具有严重的快速行为。预测的裂缝路径和负载 - 位移曲线都与实验观察和其他数值结果完美一致,清楚地展示了所提出的损害模型的有效性和隐性实施的鲁棒性。 (c)2021 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Computer Methods in Applied Mechanics and Engineering》 |2021年第15期|113721.1-113721.32|共32页
  • 作者单位

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Tae Chee Ave Hong Kong Peoples R China;

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Tae Chee Ave Hong Kong Peoples R China|City Univ Hong Kong Ctr Adv Struct Mat Shenzhen Res Inst 8 Yuexing 1st Rd Shenzhen Hitech Ind Pk Shenzhen Peoples R China;

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Tae Chee Ave Hong Kong Peoples R China;

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Tae Chee Ave Hong Kong Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mixed mode fracture; Quasi-brittle failure; Damage model; Peridynamics; CZM; Implicit solution methods;

    机译:混合模式骨折;准脆性失败;损伤模型;白颌性;CZM;隐含解决方案方法;
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