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Three-dimensional micromechanics-based constitutive framework for analysis of pultruded composite structures

机译:基于三维力学的拉挤复合结构本构框架

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A new 3D micromechanics-based framework is proposed for the nonlinear analysis of pultruded fiber-reinforced polymeric composites. The proposed 3D modeling framework is a nested multiscale approach that explicitly recognizes the response: of the composite systems (layers) within the cross section of the pultruded member. These layers can have reinforcements ii? the form of roving, continuous filament mat (CFM), and/or woven fabrics. Different 3D micromechanical models for the layers can be used to recognize the basic response of the fiber and matrix materials. The framework is implemented with both shell and 3D finite elements. The 3D lamination theory is used to generate a homogenized nonlinear effective response for a through-thickness representative stacking sequence. The proposed modeling framework for pultruded composites is used to predict the stiffness and nonlinear stress-strain response of E-glass/vinylester pultruded materials reinforced with roving and CFM. The roving layer is idealized using a 3D nonlinear micromechanics model for a unidirectional fiber-reinforced material. A simple nonlinear micromechanics model for the CE;M layer is also applied. The proposed model shows very good predictive capabilities of the overall effective properties and the nonlinear response of pultruded composites, based on the in situ material properties, and the volume fractions of the constituents. Experimental data from off-axis tests of pultruded plates under uniaxial compression are used to verify the proposed model. The proposed framework can be easily incorporated within displacement-based finite-element models of composite structures. [References: 21]
机译:提出了一种新的基于3D微力学的框架,用于拉挤纤维增强聚合物复合材料的非线性分析。提出的3D建模框架是一种嵌套的多尺度方法,可明确识别拉挤构件横截面内的复合系统(层)的响应。这些层可以有增强物吗?粗纱,连续长丝毡(CFM)和/或机织织物的形式。层的不同3D微机械模型可用于识别纤维和基质材料的基本响应。该框架使用Shell和3D有限元实现。 3D层压理论用于为厚度代表的堆叠序列生成均匀化的非线性有效响应。提出的拉挤复合材料建模框架用于预测粗纱和CFM增强的E玻璃/乙烯基酯拉挤材料的刚度和非线性应力-应变响应。粗纱层使用3D非线性微力学模型对单向纤维增强材料进行了理想化处理。 CE; M层的简单非线性微力学模型也被应用。基于原位材料特性和成分的体积分数,所提出的模型显示了拉挤复合材料整体有效特性和非线性响应的良好预测能力。来自拉挤板单轴压缩下的离轴测试的实验数据用于验证所提出的模型。所提出的框架可以很容易地并入复合结构基于位移的有限元模型中。 [参考:21]

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