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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >On a molecular statistical basis for Ogden's model of rubber elasticity
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On a molecular statistical basis for Ogden's model of rubber elasticity

机译:基于分子统计的奥格登橡胶弹性模型

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In this paper, a link is established between the statistical theory of long chain molecules and Ogden's phenomenological model of rubber elasticity. It has been shown by several authors in the past that many invariant-based phenomenological models for rubber-like materials are related to the classical statistical theories. The essential means to reach this reconciliation were methods to account for a non-affine deformation of polymer chains in the network, appropriate techniques to calculate their averaged response, and an approximation of the inverse Langevin function appearing in the non-Gaussian statistical theory. It is shown in this paper that the very same approach, if appropriately implemented, allows to express the strain-energy function of Ogden's material in terms of physical constants characterising the polymer chain and network, together with few additional parameters that account for the non-affine deformation of the polymer chains. Particularly, it is shown that Ogden's model can be represented as a non-affine non-Gaussian 3-chain model with topological constraints.
机译:本文在长链分子的统计理论与橡胶弹性的奥格登现象学模型之间建立了联系。过去,几位作者已经表明,许多类似橡胶的材料的基于不变性的现象学模型与经典的统计理论有关。实现这种调节的必要手段是解决网络中聚合物链的非仿射变形的方法,计算其平均响应的适当技术以及在非高斯统计理论中出现的朗文逆函数的近似值。本文表明,如果实施得当,可以采用完全相同的方法,通过表征聚合物链和网络的物理常数以及很少的其他参数来表达Ogden材料的应变能函数。聚合物链的仿射变形。特别地,表明Ogden模型可以表示为具有拓扑约束的非仿射非高斯3链模型。

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