首页> 外文期刊>Composites. B, Engineering >Self-sensing And Dispersive Evaluation Of Single Carbon Fiber/carbon Nanotube (cnt)-epoxy Composites Using Electro-micromechanical Technique And Nondestructive Acoustic Emission
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Self-sensing And Dispersive Evaluation Of Single Carbon Fiber/carbon Nanotube (cnt)-epoxy Composites Using Electro-micromechanical Technique And Nondestructive Acoustic Emission

机译:碳微纤维/碳纳米管(cnt)-环氧复合材料的电微机械和无损声发射自感和色散评估

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摘要

Self-sensing and interfacial evaluation were investigated with different dispersion solvents for single carbon fiber/carbon nanotube (CNT)-epoxy composites by electro-micromechanical technique and acoustic emission (AE) under loading/subsequent unloading. The optimized dispersion procedure was set up to obtain improved mechanical and electrical properties. Apparent modulus and electrical contact resistivity for CNT-epoxy composites were correlated with different dispersion solvents for CNT. CNT-epoxy composites using good dispersion solvents exhibited a higher apparent modulus because of better stress transferring effects due to the relatively uniform dispersion of CNT in epoxy and enhanced interfacial adhesion between CNT and the epoxy matrix. However, good solvents exhibited a higher apparent modulus but lower thermodynamic work of adhesion, W_a for single carbon microfiber/CNT-epoxy composite. It is attributed to the fact that hydrophobic behavior with high advanced contact angle was observed for CNT-epoxy in the good solvent, which might not be compatible well with the carbon microfiber. Damage sensing was also detected simultaneously using AE combined with electrical resistance measurement. Electrical resistivity increased stepwise with progressing fiber fracture due to the decrease in electrical contact by the CNT.
机译:通过电子微机械技术和加载/随后卸载下的声发射(AE),研究了不同分散溶剂对单碳纤维/碳纳米管(CNT)-环氧树脂复合材料的自感和界面评价。建立了优化的分散程序以获得改善的机械和电气性能。 CNT-环氧树脂复合材料的表观模量和电接触电阻率与CNT的不同分散溶剂相关。使用良好分散溶剂的CNT-环氧复合材料表现出较高的表观模量,这是由于CNT在环氧树脂中的相对均匀分散以及CNT与环氧基质之间的界面粘合性增强,从而具有更好的应力转移效果。但是,良好的溶剂表现出较高的表观模量,但粘合性的热力学功较低,对于单碳微纤维/ CNT-环氧树脂复合材料而言,W_a。这归因于以下事实:在良好的溶剂中,CNT-环氧化合物观察到了具有高提前接触角的疏水行为,这可能与碳微纤维不兼容。还使用AE和电阻测量相结合的方式同时检测了损坏感应。由于CNT的电接触减少,随着纤维断裂的进行,电阻率逐步增加。

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