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Analysis of the impedance spectra of short conductive fiber-reinforced composites

机译:短导电纤维增强复合材料的阻抗谱分析

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摘要

The presence of small amounts of short conductive fibers in a composite of finite matrix conductivity results in the subdivision of the one matrix impedance arc into two separate low and high frequency arcs in the complex impedance plane. These features are attributable to a "frequency-switchable" interfacial impedance on the fiber surfaces, rendering them insulating at DC and low AC frequencies, but conducting at intermediate frequencies. A combination of physical simulations (single wires in tap water) and pixel-based computer modeling was employed to investigate the roles of fiber pull-out, debonding, and orientation on the impedance response of fiber-reinforced composites. The ratio of the low frequency arc size to the overall DC resistance (γ-parameter) is sensitive to pull-out and/or debonding, especially when a fiber just barely makes contact with the matrix. The γ-parameter is also quite sensitive to fiber orientation with respect to the direction of the applied field. Ramifications for the characterization of cement, ceramic, and polymer matrix composites are discussed.
机译:在有限的矩阵电导率的复合物中存在少量的短导电纤维会导致将一个矩阵阻抗弧细分为复阻抗平面中的两个独立的低频和高频弧。这些特征归因于纤维表面上的“频率可切换”界面阻抗,使它们在直流和低交流频率下绝缘,但在中频下导电。结合物理模拟(自来水中的单线)和基于像素的计算机建模,研究了纤维拔出,脱粘和取向对纤维增强复合材料阻抗响应的作用。低频电弧尺寸与总直流电阻(γ参数)之比对拔出和/或脱胶敏感,特别是在光纤刚好与基体接触时。相对于所施加场的方向,γ参数对纤维取向也非常敏感。讨论了表征水泥,陶瓷和聚合物基复合材料的后果。

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