Effects of Defects in a New Form of Affordable Composite Materials-Rod Reinforcement

W. Chan, J. S. Wang
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Abstract

A pultruded rod reinforced composite which can eliminate presence of fiber waviness and reduce cost of laminate manufacturing has become a focus interest to aircraft manufacturers. Due to its characteristics of rod layer, conventional analysis which use the smeared properties across the entire rod layer fails to predict the structural response of this rod reinforced laminates. A closed-form expression was derived and a finite element analysis was conducted for predicting the critical buckling load for this type of laminates with a damage. Damage considered include broken rods, rods split vertically and horizontally, and delamination between the rod layer and angle plies. It is concluded that damages with rods split horizontally and a delamination can reduce the buckling load. For the rods broken, the buckling load will be reduced if a broken space is included. However, the buckling load remains unchanged if rods split vertically.
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一种新型廉价复合材料——棒材增强材料中缺陷的影响
一种能够消除纤维波纹并降低层压板制造成本的拉挤杆增强复合材料已成为飞机制造商关注的焦点。由于棒材层的特性,传统的利用整个棒材层涂抹特性的分析方法无法预测棒材层合板的结构响应。推导了含损伤层合板临界屈曲载荷的封闭表达式,并进行了有限元分析。考虑的损坏包括杆断、杆垂直和水平劈裂以及杆层和角层之间的分层。结果表明,水平劈裂和分层损伤可以降低屈曲载荷。对于断裂的杆件,如果加入断裂空间,屈曲载荷将会降低。然而,如果杆垂直劈裂,屈曲载荷保持不变。
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