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The influence of nanofiller alignment on transverse percolation and conductivity

机译:纳米填料排列对横向渗透和电导率的影响

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摘要

Nanocomposites have unprecedented potential for conductivity-based damage identification when used as matrices in structural composites. Recent research has investigated nanofiller alignment in structural composites, but because damage identification often requires in-plane measurements, percolation and conductivity transverse to the alignment direction become crucial considerations. We herein contribute indispensable guidance to the development of nanocomposites with aligned nanofiller networks and insights into percolation trends transverse to the alignment direction by studying the influence of alignment on transverse critical volume fraction, conductivity, and rate of transition from non-percolating to percolating in three-dimensional carbon nanotube composite systems.
机译:纳米复合材料用作结构复合材料中的基质时,具有基于电导率的损伤识别的空前潜力。最近的研究已经研究了结构复合材料中的纳米填料排列,但是由于损伤识别通常需要进行面内测量,因此垂直于排列方向的渗透和电导率成为关键考虑因素。我们通过研究排列对横向临界体积分数,电导率以及从非渗入到渗入的过渡速率的影响,在本文中为排列有取向的纳米填料网络的纳米复合材料的发展和洞悉与排列方向垂直的渗滤趋势的见解提供了必不可少的指导。维碳纳米管复合材料系统。

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