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Modeling the thermomechanical behavior of carbon fiber-reinforced shape memory polymer composites under the finite deformation

机译:碳纤维增强的形状记忆聚合物复合材料在有限变形下的热力学行为建模

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摘要

In this article, a thermoviscoelastic constitutive model is introduced to describe the unidirectional continuous elastic fiber-reinforced shape memory polymer composites under the finite deformation. Although the shape memory polymers can be used in finite deformations, only a small strain can be applied on the carbon fiber for its small failure tensile strain (about 2%). Using the model, the effective strain of the carbon fiber for the unidirectional continuous carbon fiber-reinforced shape memory polymer composites can be derived. It is found that the carbon fiber-reinforced shape memory polymer composites with the fiber inclination angle in a typical range can be used in the finite deformation, without failure of the carbon fiber. Besides, a simplified buckling model is proposed to predict the fiber buckling under axial compression. It is calculated that the buckling critical stress is rather small. Therefore, it should be avoided in application. As for carbon fiber-reinforced shape memory polymer composites, the bending driving capacity is the crucial property in their applications. Hence, the shape memory effect of the carbon fiber-reinforced shape memory polymer composite beam under the finite deformation is also studied here. The findings can be used to provide guidance for the design and application of the carbon fiber-reinforced shape memory polymer composites and their structures.
机译:本文采用热粘弹性本构模型描述了有限变形下单向连续弹性纤维增强的形状记忆聚合物复合材料。尽管形状记忆聚合物可以在有限的变形中使用,但是由于碳纤维的破坏拉伸应变小(约2%),因此只能对碳纤维施加很小的应变。使用该模型,可以得出单向连续碳纤维增强的形状记忆聚合物复合材料的碳纤维有效应变。已经发现,具有纤维倾斜角在典型范围内的碳纤维增强的形状记忆聚合物复合材料可用于有限变形而不会破坏碳纤维。此外,提出了一种简化的屈曲模型来预测轴向压缩下的纤维屈曲。计算得出屈曲临界应力相当小。因此,应避免在应用中使用。对于碳纤维增强的形状记忆聚合物复合材料,弯曲驱动能力是其应用中的关键性能。因此,这里还研究了碳纤维增强的形状记忆聚合物复合材料梁在有限变形下的形状记忆效果。这些发现可用于为碳纤维增强的形状记忆聚合物复合材料及其结构的设计和应用提供指导。

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