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Extended layerwise method for laminated composite plates with multiple delaminations and transverse cracks

机译:具有多个分层和横向裂纹的层压复合板的扩展分层方法

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摘要

In this paper, the extended layerwise method (XLWM), which was developed for laminated composite beams with multiple delaminations and transverse cracks (Li et al. in Int J Numer Methods Eng 101: 407-434, 2015), is extended to laminated composite plates. The strong and weak discontinuous functions along the thickness direction are adopted to simulate multiple delaminations and inter-laminar interfaces, respectively, whilst transverse cracks are modeled by the extended finite element method (XFEM). The interaction integral method and maximum circumferential tensile criterion are used to calculate the stress intensity factor (SIF) and crack growth angle, respectively. The XLWM for laminated composite plates can accurately predicts the displacement and stress fields near the crack tips and delamination fronts. The thickness distribution of SIF and thus the crack growth angles in different layers can be obtained. These information cannot be predicted by using other existing shell elements enriched by XFEM. Several numerical examples are studied to demonstrate the capabilities of the XLWM in static response analyses, SIF calculations and crack growth predictions.
机译:本文将针对具有多个分层和横向裂纹的层压复合梁(Li et al. in Int J Numer Methods Eng 101: 407-434, 2015)开发的扩展分层方法(XLWM)扩展到层压复合板。采用沿厚度方向的强不连续函数和弱不连续函数分别模拟多层析层和层间界面,同时采用扩展有限元法(XFEM)对横向裂纹进行建模。采用相互作用积分法和最大周长拉伸准则分别计算了应力强度因子(SIF)和裂纹扩展角。用于层压复合板的XLWM可以准确预测裂纹尖端和分层前沿附近的位移场和应力场。可以得到SIF的厚度分布,从而得到不同层的裂纹扩展角度。这些信息无法通过使用由 XFEM 扩充的其他现有 shell 元素来预测。通过几个数值算例来证明XLWM在静态响应分析、SIF计算和裂纹扩展预测方面的能力。

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