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The damping-modulus relationship in flax-carbon fibre hybrid composites

机译:亚麻-碳纤维混杂复合材料的阻尼模量关系

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The trade-off between the elastic modulus and damping capacity as a function of fibre composition in carbon-flax hybrid composite laminates was investigated. Hybrid composite laminates with varying carbon-flax fibre-epoxy content were prepared using a combination of compression moulding and vacuum bagging. The elastic modulus and damping loss coefficients were determined by free-vibration in longitudinal and flexural modes, and modelled using a rule of hybrid mixtures (ROHM) and laminate theory. The models were in close agreement with the experimental data for both the longitudinal and flexural modes and thus appeared to be a feasible method of predicting the stiffness damping relationship in this system of hybrid composite laminates. The experimental data of the tensile strength was found to also follow the ROHM. However, the experimental data of the flexural strength deviated negatively from the theoretical prediction, exhibiting lower values than the predicted ones. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了碳亚麻混合复合材料层压板中弹性模量和阻尼能力与纤维组成之间的权衡关系。使用压缩成型和真空装袋的组合制备具有变化的碳亚麻纤维环氧含量的杂化复合材料层压板。弹性模量和阻尼损耗系数由纵向和挠曲模式下的自由振动确定,并使用混合混合物(ROHM)和层压理论进行建模。该模型与纵向和弯曲模式的实验数据非常吻合,因此似乎是预测该混合复合层压板系统中刚度阻尼关系的可行方法。发现抗张强度的实验数据也遵循ROHM。但是,抗弯强度的实验数据与理论预测值相差很大,显示出比预测值低的值。 (C)2015 Elsevier Ltd.保留所有权利。

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