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MECHANISM-BASED DESIGN OF COMPOSITE STRUCTURES

机译:基于机制的复合结构设计

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摘要

The paper introduces high temperature composite software developed for mechanism-based design of composite structures. Mechanism-based design is characterized by an understanding of the critical composite behaviors at several physical scales: the fibrous (micro) scale, the ply/weave (meso) scale and the laminated part (macro) scale, and by the specification of the available design parameters to achieve functionality by those behaviors. A software framework is described which integrates material modeling and analysis codes, provides automated assistance, and links to material databases. Elastic and inelastic material modeling codes suitable for high temperature composites with complex reinforcement and weave/lay-up configurations are presented and references to their underlying theories are given. Advanced analysis techniques are outlined for numerically efficient computational plasticity based on mathematical homogenization, idealization error indicators for material scale, three dimensional crack propagation in a fibrous composite, and modeling of reactive vapor infiltration and chemical vapor deposition processes.
机译:本文介绍了高温复合软件,开发了基于机理的复合结构设计。基于机制的设计的特征在于理解几种物理尺度的关键复合行为:纤维状(微)刻度,层/编织(Meso)刻度和层压部分(宏)刻度,以及可用的规格设计参数以通过这些行为实现功能。描述了一种软件框架,其集成了材料建模和分析代码,提供了自动帮助,以及与材料数据库的链接。提出了适用于高温复合材料的弹性和非弹性材料建模码,并提出了具有复杂的增强和编织/放置构造的和对其潜在理论的参考。基于数学均匀化,理想误差指标,纤维复合材料中的三维裂纹传播,具有高效计算可塑性的先进分析技术,纤维复合中的三维裂纹传播,以及反应蒸汽渗透和化学气相沉积过程的建模。

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