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Dynamic Properties of Delaminated Braided Textile Composite Beams

机译:层状编织纤维复合材料梁的动力特性

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摘要

In this paper, vibration analysis of through-width single- and multi-delamiriated cantilevered composite beams is carried out using Finite Element Analysis (FEA) approach. Different configurations of multiple delaminations are considered. The FEA results for single delaminations are validated via experimental testing. It is found that changes in the natural frequencies of delaminated cantilevered beams are related to the number, type and distributions of delaminations within a beam. Also, the natural frequency shifts due to single or multiple delaminations are influenced by the thickness-wise locations of the delaminations. As the delamination is moved from the outermost inter-laminar layer towards the mid-plane of the beam, the natural frequency decreases and reaches a minimum value when the delamination is located at the mid-plane. Single delaminations have a more significant effect on natural frequencies than multiple delaminations of the same overall dimension as the single delamination. Furthermore, it is found that there is a greater reduction in natural frequency when multiple delaminations are close together than when they are spread out. However, where the locations of multiple delaminations coincide with nodal or antinodal vibration points, the effect is significantly altered.
机译:在本文中,使用有限元分析(FEA)方法对全宽单层和多层分层悬臂组合梁进行了振动分析。考虑了多个分层的不同配置。单个分层的FEA结果通过实验测试进行了验证。发现分层的悬臂梁的固有频率的变化与梁内分层的数量,类型和分布有关。而且,由于单个或多个分层而引起的固有频率偏移受到分层的厚度方向位置的影响。当分层从最外面的层间层向光束的中平面移动时,当分层位于中平面时,固有频率会降低并达到最小值。单个分层对自然频率的影响比与单个分层具有相同整体尺寸的多个分层更为明显。此外,已经发现,当多个分层靠近在一起时,自然频率的降低幅度要大于其展开时的固有频率。但是,在多个分层的位置与节点或反节点振动点重合的情况下,效果会显着改变。

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