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A lamination model for shape memory polymer/woven fabric composites

机译:形状记忆聚合物/织物复合材料的层压模型

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摘要

Based on continuum mechanics and finite element method, a lamination model was developed for shape memory polymer composites (SMPCs) reinforced by woven fabrics. SMPCs were modeled as a laminated structure with woven fabric reinforcements embedded in shape memory polymers (SMPs). Thermo-responsive SMPs were defined by a 3D phenomenological model based on the phase transition approach, while woven fabric reinforcements were characterized by an anisotropic hyperelastic model. The proposed model was validated by comparing numerical results of a SMPC in the shape memory cycle of bending deformation with experimental data. Applications of the lamination model were demonstrated on numerical simulations of a tube made of SMPC in three shape memory cycles with different deformation modes. The proposed model is simple and applicable in the simulations of various shape memory cycles related to SMPCs. It also provides a theoretical foundation for the analysis and design optimization of woven fabric reinforced SMPC structures.
机译:基于连续型力学和有限元方法,开发了由织造织物增强的形状记忆聚合物复合材料(SMPC)开发了层压模型。 SMPC被建模为层压结构,其嵌入形状记忆聚合物(SMPS)嵌入织物增强件。通过基于相转变方法的3D现象学模型来定义热响应SMP,而织物增强剂的特征在于各向异性超弹性模型。通过将SMPC的数值结果与实验数据进行比较,通过比较SMPC的数值结果来验证所提出的模型。层压模型的应用在具有不同变形模式的三个形状记忆循环中由SMPC制成的管的数值模拟。所提出的模型简单且适用于与SMPC相关的各种形状记忆循环的模拟。它还为织物增强SMPC结构的分析和设计优化提供了理论基础。

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