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Effective properties for plain weave composites through-thickness reinforced with carbon nanotube forests

机译:碳纳米管森林增强厚度的平纹编织复合材料的有效性能

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摘要

In this paper, an analytical approach is proposed to study the elastic properties of plain weave unit cells with reinforcing single-walled carbon nanotube forests of different growing patterns on the warp and weft carbon yarns. For the carbon nanotube-reinforced polymer matrix in which the carbon fibers are embedded, its properties can be evaluated using a modified rule of mixture. A numerical study using the present analytical approach reveals that for the cases considered, only a small increase in the nanotube volume fraction can result in a remarkable increase in the out-of-plane Young's modulus and a slight increase in the out-of-plane shear modulus but a decrease in the out-of-plane Poisson's ratios for the plain weave composite. The existence of carbon nanotube forests does not significantly affect the effective in-plane properties of plain weave composites. It is also noted from the present numerical study that the effective properties of plain weave composites with nanotube forest reinforcement are closely related to the nanotube volume fraction, growing or distribution patterns, but slightly affected by the orientations of carbon nanotubes.
机译:在本文中,提出了一种分析方法,以研究经编和纬编碳纤维上具有不同生长方式的单壁碳纳米管增强筋的平织单位细胞的弹性。对于包埋有碳纤维的碳纳米管增强的聚合物基体,可以使用改进的混合规则评估其性能。使用本分析方法进行的数值研究表明,对于所考虑的情况,仅纳米管体积分数的微小增加会导致平面外杨氏模量显着增加,而平面外杨氏模量略有增加剪切模量,但平纹复合材料的面外泊松比降低。碳纳米管森林的存在不会显着影响平纹复合材料的有效面内性能。从目前的数值研究中还注意到,具有纳米管森林增强的平纹编织复合材料的有效性能与纳米管的体积分数,生长或分布模式密切相关,但受碳纳米管的取向影响很小。

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