单纤维复合材料界面脱粘起始的评价

Souta Kimura, J. Koyanagi, H. Kawada
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引用次数: 17

摘要

复合材料中纤维-基体界面的粘附性传统上是通过基于应力的参数来评估的。最近,一个界面能参数被认为是一个有效的替代方法。然而,基于能量的方法高估了引发界面剥离的能量释放率(界面能),因为为了简单起见,忽略了剥离附近的塑性变形。研究了塑性变形对纤维增强聚合物基复合材料界面能的影响,以评价纤维增强聚合物基复合材料界面脱粘的发生。采用玻璃纤维增强乙烯基复合材料模型进行破碎试验,采用考虑塑性变形能量耗散的能量平衡法计算界面能。确认以下结果:塑性变形对界面能有显著影响,考虑塑性能量耗散的能量平衡方案使界面能恒定,而不考虑释放势能的大小。讨论了我们的模型与以前的模型的不同之处。
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Evaluation of Initiation of the Interfacial Debonding in Single Fiber Composite
Fiber-matrix interfacial adhesion in composites is traditionally evaluated by means of a stress-based parameter. Recently, an interfacial energy parameter is suggested to be a valid alternative. However, the energy-based approaches overestimated the energy release rate to initiate the interfacial debonding (interfacial energy), since the plastic deformation in the vicinity of the debonding was neglected for simplicity. An effect of the plastic deformation on the interfacial energy of a fiber-reinforced polymer matrix composite is studied to evaluate the initiation of the interfacial debonding. The fragmentation tests with a model of glass fiber-reinforced vinylester matrix composite were performed, and the interfacial energy with the energy balance method taking into account an energy dissipation of the plastic deformation was calculated. The following results are confirmed; the plastic deformation has a significant influence on the interfacial energy, and the energy balance scheme taking into account the plastic energy dissipation leads to the constant interfacial energy without reference to the amount of the released potential energy. The differences between our model and the previous one are discussed.
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