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Enhancement on mechanical strength of adhesively-bonded composite lap joints at cryogenic environment using coiled carbon nanotubes

机译:使用盘绕碳纳米管增强低温环境下粘合复合搭接接头的机械强度

摘要

The hardness, tensile and lap joint shear behaviors of pure epoxy, straight multi-walled carbon nanotube (MWNT)/epoxy and coiled multi-walled carbon nanotube (CCNT)/epoxy adhesives conditioned at room temperature (RT) and cryogenic temperature (CT) were investigated in the present study. Experimental results showed that all adhesives had greater Vickers hardness values, Young's moduli and tensile strengths at CT. The performance of CCNT/epoxy adhesive at CT was outstanding due to the enhancement of mechanical interlocking effect between CCNTs and epoxy at low temperature. This effect led to a greater Vickers hardness value, Young's modulus and lap joint shear strength of this adhesive at CT when compared with MWNT/epoxy type. The result from finite element analysis (FEA) also proved that the contraction of matrix at CT induced additional clamping force onto the surface of nanotubes. Due to the larger surface area of CCNTs, a relatively stronger bonding strength was achieved, and thus, CCNT/epoxy adhesive had better mechanical properties at low temperature condition.
机译:纯环氧树脂,纯多壁碳纳米管(MWNT)/环氧树脂和盘绕多壁碳纳米管(CCNT)/环氧粘合剂在室温(RT)和低温(CT)条件下的硬度,拉伸和搭接剪切行为在本研究中进行了调查。实验结果表明,所有胶粘剂均具有较高的维氏硬度值,CT的杨氏模量和拉伸强度。由于在低温下增强了CCNT与环氧树脂之间的机械互锁效果,因此CCNT /环氧树脂胶在CT上的性能非常出色。与MWNT /环氧树脂类型相比,这种效果导致该粘合剂在CT上具有更高的维氏硬度值,杨氏模量和搭接剪切强度。有限元分析(FEA)的结果还证明,CT处的基质收缩在纳米管表面上产生了额外的夹持力。由于CCNT的更大的表面积,获得了相对较强的结合强度,因此,CCNT /环氧树脂粘合剂在低温条件下具有更好的机械性能。

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