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A multilevel approach for analysis and optimization of nano-enhanced composite structures

机译:纳米增强复合材料结构的分析和优化的多层次方法

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摘要

A hierarchical framework for multilevel analysis and design of composite material and structural systems is presented. The micro- and macro-level material models are integrated with structural analysis to evaluate the response characteristics of the loaded structure affected by both the nanofiber enhancements and continuous fiber reinforcements in the polymer matrix. Besides the nanofiber waviness, the nanofiber-matrix interphase is also included in evaluation of the homogenized stiffness properties of the matrix. To take advantage of the design features at different length scales, a multilevel optimization approach based on analytical target cascading is developed and applied to material-structural analysis and design optimization of a rectangular composite sandwich plate under in-plane loading conditions. The design variables include the volume fractions of the nanofibers and continuous fibers along with the thicknesses of the core and facesheet plies. Multiple failure modes in the form of global buckling, shear crimping, intracell buckling, and face sheet wrinkling are included as design constraints. Different edge loads are applied to study the effect of loading on optimum design. Besides the significant computational efficiency in the multilevel approach, the analysis detail and the results of the multilevel sandwich plate optimization problem are presented and discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了用于复合材料和结构系统的多层次分析和设计的分层框架。将微观和宏观材料模型与结构分析集成在一起,以评估受聚合物基体中的纳米纤维增强和连续纤维增强影响的加载结构的响应特性。除了纳米纤维的波纹度,纳米纤维-基体间相还包括在基质均质刚度特性的评估中。为了利用不同长度尺度上的设计特征,开发了一种基于分析目标级联的多级优化方法,并将其应用于面内载荷条件下矩形复合夹芯板的材料结构分析和设计优化。设计变量包括纳米纤维和连续纤维的体积分数,以及纤芯和面板层的厚度。设计约束包括整体屈曲,剪切卷曲,单元内屈曲和面板起皱形式的多种失效模式。应用不同的边缘载荷来研究载荷对最佳设计的影响。除了多级方法的显着计算效率外,还介绍并讨论了多级夹心板优化问题的分析细节和结果。 (C)2015 Elsevier Ltd.保留所有权利。

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