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A method for determining orientation function of glass fiber in fiber reinforced plastic sheets and nonwoven mats by dielectric constant

机译:一种通过介电常数测定纤维增强塑料板和非织造垫中玻璃纤维的方向函数的方法

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摘要

A method is proposed for determining the orientation functions of fibers of isotropic materials such as glass and gamma alumina in FRP sheets and nonwoven mats. The method consists of (1) measurement of the anisotropy of in-plane dielectricconstant of a sheet sample with polarized microwave, (2) theoretical estimation of the difference between the dielectric constants parallel and perpendicular to the fiber direction of a perfectly oriented sheet, and (3) determination of the meanorientation angle and orientation function of the fiber from the results of (1) and (2) Regarding the second process (2), three of theoretical models which have been reported are examined and compared with experimental data of unidirectional glass/air and glass/epoxy and are found to be equally suitable. The orientation functions obtained for laminates of continuous fibers of glass and gamma alumina are in agreement with the theoretical values calculated from the stacking structure within 5% deviation.Orientation functions are also determined on FRP sheets and nonwoven mats of short glass fiber and the anisotropies in modulus of elasticity and in ultrasonic propagation velocity are calculated from them. The differences between the calculated values and the directly measured values are less than 10%.
机译:提出了一种用于确定各向同性材料纤维的方向函数,例如玻璃和γ氧化铝在FRP板和非织造垫中。该方法包括(1)用偏振微波的平面内电介质混合器的各向异性的测量,(2)平行介质常数与完美定向的薄片的纤维方向之间的介质常数之间的差异的理论估计。 (3)从关于第二种方法(2)的结果(1)和(2)的结果,测定纤维的义值和取向函数关于第二种方法(2),据报道的三种理论模型进行检查,并与单向的实验数据进行比较玻璃/空气和玻璃/环氧树脂,发现同样合适。用于玻璃和γ氧化铝的连续纤维层压物获得的取向功能与从5%偏差的堆叠结构计算的理论值一致。在短玻璃纤维的FRP片材和非织造垫和各向异性上也确定了函数功能。弹性模量和超声波传播速度由它们计算。计算值与直接测量值之间的差异小于10%。

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