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首页> 外文期刊>International journal of applied mechanics >A Visco-Hyperelastic Constitutive Model for Multilayer Polymer Membranes and its Application in Packaging Air Cushion
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A Visco-Hyperelastic Constitutive Model for Multilayer Polymer Membranes and its Application in Packaging Air Cushion

机译:多层聚合物膜的粘-超弹性本构模型及其在包装气垫中的应用

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摘要

Air cushion is an important packaging material with admirable cushion property in protecting articles from damage. Polymer membrane in air cushion renders a highly nonlinear elastic and rate dependent mechanical behavior in experimental tensile test. A visco-hyperelastic constitutive model for a polymer membrane of an air cushion is developed by additively decomposing its mechanical response into a hyperelastic portion and a viscoelastic portion. Material parameters are consecutively obtained by matching experimental data of static and dynamic uni-axial tensile tests of the membrane, respectively. Compression test of a single air column of the air cushion is conducted as a means of validation on the proposed constitutive model. By comparing simulation results with experimental data, it is shown that the proposed visco-hyperelastic model can properly characterize the mechanical behavior of the air cushion packaging material. The model can be applied to evaluate cushion performance of air cushions and their optimum design.
机译:气垫是一种重要的包装材料,具有出色的缓冲性能,可保护物品免受损坏。气垫中的聚合物膜在拉伸试验中表现出高度非线性的弹性和速率相关的机械行为。通过将其机械响应累加分解为超弹性部分和粘弹性部分,来开发用于气垫聚合物膜的粘-超弹性本构模型。通过分别匹配膜的静态和动态单轴拉伸试验的实验数据连续获得材料参数。作为对所提出的本构模型进行验证的一种手段,对气垫的单个气柱进行压缩测试。通过将仿真结果与实验数据进行比较,结果表明,所提出的粘超弹性模型可以正确表征气垫包装材料的力学性能。该模型可用于评估气垫的气垫性能及其最佳设计。

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