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Effect of fabric weaves on the dynamic response of two-dimensional woven fabric composites

机译:织物编织对二维织物复合材料动态响应的影响

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摘要

This study investigated the effect of two-dimensional fabric weaves (plain, twill, and satin) on the vibrational characteristics (natural frequency and damping) of woven carbon/epoxy composites. Natural frequencies of woven composites were measured by experimental modal analysis for plain weave, twill weave, and satin weave composites. The experimentally measured natural frequency results were compared with the ones predicted by numerical free vibration analysis. Numerical analysis was performed using a multiscale modelling approach. First, the impregnated fiber tow properties were predicted using periodic boundary conditions assuming that fibers are perfectly bonded. Then, the homogenized impregnated fiber tow properties and matrix properties were used to predict the natural frequencies of woven composite beams. The experimental and numerical results revealed that satin weave composites possess higher natural frequencies than plain weave composites. Flexural loss factor of woven composites was measured experimentally by dynamic mechanical analysis and half-power bandwidth method. Results from both analyses showed that plain weave composites have higher flexural loss factor as compared to satin weave composites.
机译:本研究调查了二维织物编织(平原,斜纹,绸缎和绸缎)对编织碳/环氧复合材料的振动特性(自然频率和阻尼)的影响。通过实验模拟分析进行编织复合材料的自然频率,用于平原编织,斜纹编织和缎面编织复合材料。将实验测量的自然频率结果与通过数值自由振动分析预测的实验性的自然频率结果进行了比较。使用多尺度建模方法进行数值分析。首先,使用假设纤维完全粘合,使用周期边界条件预测浸渍的纤维丝束性能。然后,使用均质浸渍的纤维丝束性能和基质性质来预测编织复合梁的固有频率。实验性和数值结果表明,缎纹编织复合材料具有比普通编织复合材料更高的自然频率。通过动态机械分析和半功率带宽方法实验测量编织复合材料的抗纹损耗因子。两种分析的结果表明,与缎纹编织复合材料相比,普通织物复合材料具有更高的抗弯曲损耗因子。

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