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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The effective interfacial shear strength of carbon nanotube fibers in an epoxy matrix characterized by a mkrodroplet test
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The effective interfacial shear strength of carbon nanotube fibers in an epoxy matrix characterized by a mkrodroplet test

机译:碳纳米管纤维在环氧基体中的有效界面剪切强度,用微滴试验表征

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摘要

The tensile properties of continuous carbon nanotube (CNT) fibers spun from a CNT carpet consisting of mainly double- and triple-walled tubes, and their interfacial properties in an epoxy matrix, are investigated by single fiber tensile tests and microdroplet tests, respectively. The average CNT fiber strength, modulus and strain to failure are 1.2 ± 0.3 GPa, 43.3 ± 7.4 GPa and 2.7 ±0.5%, respectively. A detailed study of strength distribution of CNT fiber has been carried out. Statistical analysis shows that the CNT fiber strength is less scattered than those of MWCNTs as well as commercial carbon and glass fibers without surface treatment. The effective CNT fiber/epoxy interfacial shear strength is 14.4 MPa. Unlike traditional fiber-reinforced composites, the interfacial shear sliding occurs along the interface between regions with and without resin infiltration in the CNT fiber. Guidelines for microdroplet experiments are established through probability analysis of variables basic to specimen design.
机译:通过单纤维拉伸试验和微滴试验分别研究了由主要由双壁管和三壁管组成的CNT地毯纺制的连续碳纳米管(CNT)纤维的拉伸性能,以及在环氧基质中的界面性能。平均CNT纤维强度,模量和断裂应变分别为1.2±0.3 GPa,43.3±7.4 GPa和2.7±0.5%。已经对CNT纤维的强度分布进行了详细的研究。统计分析表明,与未进行表面处理的MWCNT以及商用碳纤维和玻璃纤维相比,CNT纤维强度的分散程度要小于MWCNT。 CNT纤维/环氧树脂的有效界面剪切强度为14.4 MPa。与传统的纤维增强复合材料不同,在碳纤维中有和没有树脂渗透的区域之间的界面处都会发生界面剪切滑动。通过对标本设计基本变量进行概率分析,建立了微滴实验指南。

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