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首页> 外文期刊>Journal of Nanomechanics and Micromechanics >Damage Detection in Epoxy Embedded Carbon Nanotubes Using Electrical Resistance and Acoustic Emission
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Damage Detection in Epoxy Embedded Carbon Nanotubes Using Electrical Resistance and Acoustic Emission

机译:采用电阻和声发射环氧嵌入式碳纳米管损伤检测

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摘要

An experimental study was conducted to detect the onset of damage in epoxy embedded carbon nanotubes (CNTs) using a novel combination of in situ electrical resistance and acoustic emission measurements. A simple fabrication process was employed to fabricate epoxy embedded CNTs, and experiments were conducted under quasi-static tensile loading conditions. In situ electrical measurements were made using a high-resolution four circumferential ring probe measurement system. Acoustic emissions were captured simultaneously using sensors mounted within the gauge length area. Both electrical and acoustic responses were later correlated with stress-strain response. The experimental data show that electrical resistance increases monotonically with axial deformation until about maximum tensile stress and later decreases remarkably before failure. Although acoustic counts are less in number at the initial stages of tensile loading, later the count increases significantly after a specimen reaches peak tensile stress owing to the generation and propagation of microcracks from agglomerated CNTs.
机译:进行实验研究以检测使用原位电阻和声发射测量的新组合的新型组合来检测环氧嵌入碳纳米管(CNTs)的损伤。使用简单的制造方法来制造环氧嵌入式CNT,并在准静态拉伸负载条件下进行实验。使用高分辨率四个圆周环探头测量系统进行原位电测量。使用安装在规格长度区域内的传感器同时捕获声发射。电气和声反应后来与应力 - 应变反应相关。实验数据表明,电阻随着轴向变形而单调地增加,直至最大拉伸应力,后来在发生故障之前显着降低。尽管在拉伸载荷的初始阶段的数量下的声学计数较少,但后者在试样达到峰值拉伸应力后,由于从附聚的CNT的产生和繁殖,因此计数显着增加。

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