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Mesoscale modelling of damage in single- and double-shear composite bolted joints

机译:单剪切和双剪切复合螺栓连接损伤的中尺度模型

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摘要

This paper presents the development and validation of a mesoscale numerical model for predicting damage and failure of bolted joints in laminated composites with different configurations and geometries. Double-shear and single-shear composite bolted joints with different widths and end distances were analyzed. The composite material model combined smeared crack models for all types of intralaminar failure mechanisms, and an interface discrete cohesive-zone model for interlaminar failure. Three dimensional (3D) phenomenological invariant-based failure criteria using in-situ ply strengths were used for the prediction of intralaminar damage onset, together with mechanism-based continuum damage models (longitudinal bi-linear damage model and transverse 3D smeared crack model) for intralaminar damage propagation. An interface cohesive-zone model with consistent initiation and evolution criteria based on the Benzeggagh-Kenane (B-K) law was used to simulate delamination. Particularly, for the first time, the model considered the inherent cohesive-frictional behavior in the intralaminar transverse failure and delamination, namely the frictional sliding in diffuse micro-cracks during damage propagation and in localized meso-cracks after complete fracture. In the 3D explicit finite element models, a fiber-aligned mesh was used for the discretization of composite plies. A multi-zone modelling strategy was used to make the computational cost acceptable for engineering applications. Detailed comparisons between the numerical results and the experimental data previously obtained were performed, with focus on the macroscopic mechanical behavior and mesoscale failure mechanisms. A good correlation between tests and analyses was found. Additionally, several complex failure mechanisms were revealed by the numerical simulations, which could not be clearly identified in previous experimental studies.
机译:本文介绍了中尺度数值模型的开发和验证,该模型可预测具有不同构型和几何形状的层压复合材料中螺栓连接的损坏和破坏。分析了不同宽度和端距的双剪切和单剪切复合螺栓连接。复合材料模型结合了适用于所有类型层内破坏机理的涂片裂纹模型和层间破坏的界面离散内聚区模型。三维(3D)基于现象学不变性的破坏准则,使用原位板层强度来预测层内损伤的发生,以及基于机理的连续介质损伤模型(纵向双线性损伤模型和横向3D涂片裂纹模型)层内损伤传播。使用基于Benzeggagh-Kenane(B-K)定律的具有一致的引发和演化标准的界面内聚区模型来模拟分层。特别是,模型首次首次考虑了层内横向破坏和分层中固有的内聚摩擦行为,即在损伤传播过程中弥散性微裂纹和完全断裂后局部细观裂纹的摩擦滑动。在3D显式有限元模型中,纤维对齐的网格用于复合层的离散化。多区域建模策略用于使计算成本可被工程应用程序接受。在数值结果和先前获得的实验数据之间进行了详细的比较,重点是宏观力学行为和中尺度破坏机理。发现测试与分析之间具有良好的相关性。此外,数值模拟揭示了几种复杂的失效机理,在先前的实验研究中无法清楚地确定。

著录项

  • 来源
    《Composite Structures》 |2019年第10期|111210.1-111210.19|共19页
  • 作者单位

    Nanjing Univ Aeronaut & Astronaut State Key Lab Mech & Control Mech Struct 29 Yudao St Nanjing 210016 Jiangsu Peoples R China|Univ Porto Fac Engn DEMec Rua Dr Roberto Frias S-N P-4200465 Porto Portugal;

    Univ Porto Fac Engn DEMec Rua Dr Roberto Frias S-N P-4200465 Porto Portugal|Inst Ciencia & Inovacao Engn Mecon & Engn Ind INEGI Rua Dr Roberto Frias 400 P-4200465 Porto Portugal;

    Nanjing Univ Aeronaut & Astronaut State Key Lab Mech & Control Mech Struct 29 Yudao St Nanjing 210016 Jiangsu 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

    Composite laminate; Bolted joint; Bearing failure; Modelling; Frictional effects; Confined compression;

    机译:复合层压板;螺栓连接;轴承故障;造型;摩擦效果;密闭压缩;

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