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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Pearl-Chain Formation of Discontinuous Carbon Fiber under an Electrical Field
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Pearl-Chain Formation of Discontinuous Carbon Fiber under an Electrical Field

机译:电场作用下碳纤维间断链的形成

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The purpose of this paper is to develop a theoretical derivation on aligning discontinuous carbon fiber with an applied electric field, and prove the theory with experiment. A principle with regard to the occurrence of carbon fiber alignment is presented after an introduction of the electromechanical quantities of dielectrics. Based on this principle, an estimation of the polarizability tensor is employed to calculate the required electric field to achieve fiber alignment in liquid solution (e.g., water, resin, etc.). Individual carbon fiber is modeled as a polarizable dielectric cylinder in liquid resin and its motion under direct current (DC) electrical field is decomposed into a polarization effect and rotation effect. A value of 20.12 V/mm is required to align short carbon fibers (0.15 mm) long in liquid resin and is experimentally validated. Finally, an expression to include weight percentage as a means of controlling pearl-chain formation is derived to change the composite’s electrical conductivity.
机译:本文的目的是发展一种理论上的推导,该理论推导了将不连续碳纤维与施加的电场对准的方法,并通过实验证明了这一理论。在介绍了电介质的机电量之后,提出了有关碳纤维排列发生的原理。基于该原理,使用极化率张量的估计来计算在液体溶液(例如水,树脂等)中实现纤维排列所需的电场。将单个碳纤维建模为液态树脂中的可极化电介质圆柱体,并将其在直流(DC)电场下的运动分解为极化效应和旋转效应。在液态树脂中对齐长碳纤维(0.15毫米)需要20.12 V / mm的值,并且已通过实验验证。最后,得出包含重量百分比作为控制珍珠链形成方法的表达式,以改变复合材料的电导率。

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