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Modeling framework for free edge effects in laminates under thermo-mechanical loading

机译:热机械载荷下层压板自由边缘效应的建模框架

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摘要

In this paper, a novel Quasi-2D (Q-2D) plane strain formulation for predicting interlaminar stresses in multi-directional laminates is developed and implemented within the finite element method framework. In particular, analyses of free edge stresses in composite laminates subjected to uniform axial and/or thermal loading are conducted. The Q-2D modeling approach presented here is validated by comparing the predicted interlaminar stresses with corresponding 3D models and previously published data. Computational time required for determining the interlaminar stresses using Q-2D model is approximately 30 times lower than the 3D analysis of the same laminate. Also, the Q-2D model is implemented within a commercially available software by modifying a 3D model to behave like a 2D model. This is particularly advantageous over developing an in-house finite element method code to capture the complex free edge stress states in multi-directional composites. Hence, the current framework can potentially be used as a computational tool for efficiently predicting the interlaminar stresses in different laminates subjected to thermo-mechanical loading, which can assist in determining interlaminar regions susceptible to free edge delamination. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,在有限元方法框架内开发并实现了一种新颖的准2D(Q-2D)平面应变公式,用于预测多向层压板中的层间应力。特别地,进行了经受均匀的轴向和/或热负荷的复合层压板中的自由边缘应力的分析。通过将预测的层间应力与相应的3D模型和以前发布的数据进行比较,可以验证此处介绍的Q-2D建模方法。使用Q-2D模型确定层间应力所需的计算时间比同一层压板的3D分析大约低30倍。此外,通过将3D模型修改为行为类似于2D模型,可在市售软件中实现Q-2D模型。与开发内部有限元方法代码以捕获多向复合材料中复杂的自由边缘应力状态相比,这特别有利。因此,当前框架可以潜在地用作计算工具,以有效地预测经受热机械载荷的不同层压板中的层间应力,这可以帮助确定易受自由边缘分层影响的层间区域。 (C)2017 Elsevier Ltd.保留所有权利。

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