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A micromechanical approach to evaluate the post-impact residual stiffness of woven composites

机译:评估机织复合材料冲击后残余刚度的微机械方法

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摘要

Woven composites are widely used in the design of lightweight structures. For a proper design and a safe maintenance, it is important to have a database of their mechanical properties in undamaged but also in damaged conditions. In this work, the attention is focused on a textile carbon reinforced composite. The aim is to define post-impact residual stiffness of the composite by means of a simple and quick but efficient approach. Stiffness of the composite is evaluated by two micromechanical approaches, based on the concept of Unit Cell. These approaches are both analytical and numerical, implemented by the finite element method. In case of the material damaged by a low-speed impact, a possible range of degradation of stiffness matrix is provided. Calibration is proposed based on experimental observations. This procedure evaluates damage and residual stiffness starting from the Unit Cell, up to the lamina and then the whole laminate. This information is certainly useful to quickly estimate structural integrity and residual stiffness of post-impacted structures.
机译:机织复合材料广泛用于轻型结构的设计中。为了进行适当的设计和安全的维护,重要的是要有一个数据库,这些数据库的机械性能既不会损坏,又会损坏。在这项工作中,注意力集中在纺织品碳增强复合材料上。目的是通过简单,快速但有效的方法来定义复合材料的撞击后残余刚度。基于单位单元的概念,可通过两种微机械方法评估复合材料的刚度。这些方法都是解析方法和数值方法,都是通过有限元方法实现的。如果材料受到低速冲击的损坏,则可能会降低刚度矩阵。根据实验观察结果提出校准。此过程从单位单元开始直至层板,再评估整个层压板,评估损伤和残余刚度。该信息对于快速估计后撞击结构的结构完整性和残余刚度当然很有用。

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