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Optimizing the damping properties of unidirectional composites by incorporating carbon fibers with a thin viscoelastic coating

机译:通过将碳纤维与粘弹性薄涂层结合在一起,优化单向复合材料的阻尼性能

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摘要

Two distinct techniques were used to predict, and then optimize, the viscoelastic properties of unidirectional carbon fiber/epoxy composites where the carbon fibers were coated with a thin lossy coating. First, finite element models with hexagonal and random microstructures were used to predict the effect of various parameters on the five independent stiffness constants of such unidirectional composites, most importantly that of the ratio of the coating thickness to the fiber diameter. Second, these predictions were compared to those obtained from the n-layered micromechanical model of Herve and Zaoui and it was shown that the modelling predictions were remarkably accurate. It was found that while the longitudinal moduli were little affected by the presence of the coating, both the transverse and shear moduli showed a maximum loss (and a significant enhancement compared to uncoated fibers) for a coating thickness ratio of 0.001 corresponding to a coating thickness of similar to 10 nm for a typical industrial carbon fiber. The enhancement of the shear loss moduli was shown to be particularly important, as a study of the eigenfrequencies of a simply supported viscoelastic plate strip showed that the shear deformation mode was activated and hence led to a significant increase in the effective vibration damping.
机译:使用两种不同的技术来预测然后优化单向碳纤维/环氧树脂复合材料的粘弹性,其中碳纤维被薄的有损涂层覆盖。首先,使用具有六边形和随机微观结构的有限元模型来预测各种参数对此类单向复合材料的五个独立刚度常数的影响,最重要的是涂层厚度与纤维直径之比。其次,将这些预测与从Herve和Zaoui的n层微机械模型获得的预测进行比较,结果表明建模预测非常准确。已发现,尽管涂层的存在对纵向模量的影响很小,但当涂层厚度比为0.001时,横向模量和剪切模量均显示出最大损耗(与未涂层纤维相比,显着提高)。对于典型的工业碳纤维,其波长类似于10 nm。剪切损耗模量的提高特别重要,因为对简单支撑的粘弹性板条的本征频率的研究表明,剪切变形模式已激活,因此有效振动阻尼显着增加。

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