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An 8-chain Model for Rubber-like Materials Accounting for Non-affine Chain Deformations and Topological Constraints

机译:类橡胶材料的8链模型,考虑了非仿射链变形和拓扑约束

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摘要

Several industrial applications involve rubber and rubber-like materials, and it is important to be able to predict the constitutive response of these materials. In the present paper, a new constitutive model for rubber-like solids is proposed. The model is based on the 8-chain concept introduced by Arruda and Boyce (J. Mech. Phys. Solids 41, 389–412, 1993) to which two new components are added. Real polymer networks do not deform affinely, and in the proposed model this is accounted for by the inclusion of an elastic spring, acting in series with the representative polymer chain. Furthermore, real polymer chains are not completely free to move, which is modelled by imposing a topological constraint on the transverse motions of the representative polymer chain. The model contains five model parameters and these need to be determined on the basis of experimental data. Three experimental studies from the literature were used to assess the proposed model. The model was able to reproduce experimental data performed under conditions of uniaxial tension, generalised plane deformation, and biaxial tension with an excellent accuracy. The strong predictive abilities together with the numerically efficient structure of the model make it suitable for implementation in a finite element context.
机译:几种工业应用涉及橡胶和类橡胶材料,因此重要的是能够预测这些材料的本构响应。本文提出了一种新型的橡胶状固体本构模型。该模型基于Arruda和Boyce(J. Mech。Phys。Solids 41,389–412,1993)引入的8链概念,其中添加了两个新组件。实际的聚合物网络不会发生仿射变形,在建议的模型中,这是通过包含与代表性聚合物链串联作用的弹性弹簧来解决的。此外,真实的聚合物链并非完全自由移动,这是通过对代表性聚合物链的横向运动施加拓扑约束来建模的。该模型包含五个模型参数,这些参数需要根据实验数据确定。来自文献的三项实验研究被用于评估所提出的模型。该模型能够以极高的精度再现在单轴拉伸,广义平面变形和双轴拉伸条件下进行的实验数据。该模型具有强大的预测能力以及数字上高效的结构,使其适合在有限元环境中实施。

著录项

  • 来源
    《Journal of Elasticity》 |2011年第2期|p.99-116|共18页
  • 作者

    Martin Kroon;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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