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Effect of tow thickness on the structural response of aerospace-grade spread-tow fabrics

机译:丝束厚度对航空级铺丝织物结构响应的影响

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摘要

The effect of ply thickness on the onset of intralaminar and interlaminar damage is extremely important for the structural response of laminated composite structures. This subject has gained particular interest in recent years due to the introduction in the market of spread-tow, ultra-thin carbon-fibre reinforcements with different configurations. In the present paper, an experimental test campaign was carried out to study the structural response of aerospace-grade plain weave spread-tow fabrics (STFs) of different areal weights. The results showed that, in spite of an apparent superior longitudinal tensile strength of the thick STF, the multidirectional thin-STF laminate exhibited an improved tensile unnotched strength over the thick-STF laminate, attributed to its damage suppression capability. However, damage suppression was also responsible for similar tensile notched strengths. In compression, the thin-STF laminate performed substantially better than the thick-STF laminate in both unnotched and notched configurations. Finally, a similar bearing response was obtained in both STF laminates, in spite of a slightly higher resistance of the thin-STF laminate to the propagation of subcritical damage mechanisms.
机译:层厚对层内和层间破坏的开始的影响对于层压复合结构的结构响应极为重要。近年来,由于市场上引入了具有不同配置的拖曳式超薄碳纤维增强材料,该主题引起了特别的兴趣。在本文中,进行了一项实验测试活动,以研究不同单位面积重量的航空级平纹平纹织物的结构响应。结果表明,尽管厚的STF具有明显优异的纵向拉伸强度,但多方向薄型STF层压板由于其破坏抑制能力而比厚STF层压板表现出改善的拉伸无缺口强度。但是,抑制损伤也可以产生类似的拉伸缺口强度。在压缩状态下,薄STF层压板在无缺口和有缺口的配置下的性能都比厚STF层压板好得多。最后,尽管薄型STF层压板对亚临界损伤机理的传播具有较高的抵抗力,但两种STF层压板均获得了相似的轴承响应。

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