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Effect of carbon nanotube waviness on the effective thermoelastic properties of a novel continuous fuzzy fiber reinforced composite

机译:碳纳米管波纹度对新型连续模糊纤维增强复合材料有效热弹性的影响

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This paper deals with the investigation of the effect of carbon nanotube (CNT) waviness on the effective coefficient of thermal expansion (CTE) of a novel continuous fuzzy fiber reinforced composite (FFRC). This novel FFRC is composed of carbon fibers, sinusoidally wavy CNTs and epoxy matrix. The sinusoidally wavy CNTs are radially grown on the circumferential surfaces of the carbon fibers. Analytical microme-chanics model based on the method of cells (MOC) approach is derived to investigate the influence of the waviness of CNTs on the effective CTEs of the FFRC. The present study reveals that if the amplitudes of the radially grown sinusoidally wavy CNTs are parallel to the axis of the carbon fiber then the thermoelastic properties of the FFRC are significantly improved over those of the FFRC being composed of straight CNTs.
机译:本文研究碳纳米管(CNT)波纹度对新型连续模糊纤维增强复合材料(FFRC)的有效热膨胀系数(CTE)的影响。这种新颖的FFRC由碳纤维,正弦波状CNT和环氧基质组成。正弦波状的CNT在碳纤维的圆周表面上径向生长。推导了基于细胞方法(MOC)的微观分析力学模型,研究了碳纳米管的波纹度对FFRC有效CTE的影响。本研究表明,如果径向生长的正弦波状碳纳米管的振幅平行于碳纤维的轴,则与由直碳纳米管组成的碳纤维复合材料的热弹性相比,碳纤维复合材料的热弹性能得到显着改善。

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