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首页> 外文期刊>Composites Science and Technology >Interfacial damage in biopolymer composites reinforced using hemp fibres: Finite element simulation and experimental investigation
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Interfacial damage in biopolymer composites reinforced using hemp fibres: Finite element simulation and experimental investigation

机译:麻纤维增强生物聚合物复合材料的界面损伤:有限元模拟和实验研究

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The present study aims at considering the effect of interfacial damage on the mechanical performance of a starchy composite reinforced using hemp fibres. Mechanical behaviour is approached experimentally using tensile testing coupled to digital image acquisition. Thermomoulded samples with single fibres are designed to allow sample testing perpendicularly to the direction of fibre alignment. Experimental evidence of localised damage is then highlighted in the elasticity stage. Finite element computation is attempted to explain the observed damage using an adequate mechanical model that considers weak adhesion between phases and dynamic evolution of damage. Predicted results show that the FE model is able to reproduce the observed behaviour suggesting that local damage evolution is a serious mechanism affecting the performance of the studied composite.
机译:本研究旨在考虑界面损伤对使用大麻纤维增强的淀粉复合材料的机械性能的影响。机械性能是通过拉伸测试与数字图像采集相结合来通过实验得出的。单纤维热塑样品的设计允许垂直于纤维排列方向进行样品测试。然后在弹性阶段突出显示局部损坏的实验证据。尝试使用适当的机械模型来进行有限元计算来解释观察到的损伤,该力学模型考虑了相之间的弱粘附力和损伤的动态演变。预测结果表明,有限元模型能够重现观察到的行为,表明局部损伤演化是影响所研究复合材料性能的重要机制。

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