首页> 外文期刊>Journal of the Mechanics and Physics of Solids >An extended eight-chain model for hyperelastic and finite viscoelastic response of rubberlike materials: Theory,experiments and numerical aspects
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An extended eight-chain model for hyperelastic and finite viscoelastic response of rubberlike materials: Theory,experiments and numerical aspects

机译:橡胶状材料的超弹性和有限粘弹性响应延伸的八链模型:理论,实验和数值方面

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Rubberlike materials exhibit strong rate-dependent mechanical response which manifests itself in creep and relaxation tests as well as in the hysteresis curves under cyclic loading. Unlike linear viscoelasticity, creep and relaxation response of rubber is nonlinear and amplitude-dependent. Within this context, the contribution of this work is three fold, (ⅰ) On the experimental side, the characterization of equilibrium and non-equilibrium responses are carried out by means of uniaxial and equibiaxial extension tests. Also performed are the creep and relaxation experiments at various stress and strain levels, (ⅱ) On the theoretical side, we extend the well-known eight-chain model via incorporating a simple yet instrumental tube-constraint term composed of the second invariant into the non-affine network contribution reflecting the ground state equilibrium response. For the non-equilibrium response, we propose a new evolution equation for the creep/relaxation behavior of rubberlike materials based on a relaxation kinetics of a single polymer chain. The geometric non-linearity is incorporated via the finite deformation kinematics based on the multiplicative split of the deformation gradient into elastic and viscous parts, whereas the volumetric and isochoric split of the deformation gradient is entirely discarded. The rheology uses a nonlinear spring responsible for equilibrium elastic response in parallel to n number of Maxwell elements, leading to a generalized Maxwell-Wiechert viscoelastic solid, (ⅲ) The algorithmic implementation of the model features the spectral decomposition of the respective terms and is demonstrated within the context of the finite element method. The developed model is validated by fitting both the elastic and viscoelastic model responses with respect to the experimental data in the sense of uniaxial, (equi)biaxial extensions, and pure shear tests. Relaxation and creep behavior of the model are thoroughly assessed. Also presented in the manuscript is the capability and the performance of the model in the face of a relevant non-homogeneous boundary value problem. The quality of the findings earns the model vast utilization areas from an engineering perspective.
机译:橡胶状材料表现出强速率依赖性机械响应,在蠕变和弛豫测试中表现出蠕变和弛豫测试以及循环载荷下的滞后曲线。与线性粘弹性不同,橡胶的蠕变和弛豫响应是非线性和振幅的。在这种情况下,这项工作的贡献是三倍,(Ⅰ)在实验侧,通过单轴和偏心延伸试验进行平衡和非平衡响应的表征。还表演是各种应力和应变水平的蠕变和弛豫实验,(Ⅱ)在理论侧,我们通过结合由第二不变量的简单且乐器管制术语掺杂众所周知的八个链模型非仿射网络贡献反映了地位均衡应答。对于非平衡反应,我们提出了一种基于单个聚合物链的弛豫动力学的橡胶状材料蠕变/放松行为的新进化方程。基于变形梯度的乘法分裂成弹性和粘性部分,通过有限变形运动学结合了几何非线性,而变形梯度的体积和等离子分裂完全弃去。流变学使用非线性弹簧,该非线性弹簧与N个麦克斯韦元件平行的平衡弹性响应,导致通用的Maxwell-Wiechert粘弹性固体,(Ⅲ)模型的算法实现具有相应术语的光谱分解并进行了说明在有限元方法的上下文中。通过拟合关于单轴(Equi)双轴延伸感和纯剪切测试的实验数据的弹性和粘弹性模型反应来验证开发的模型。彻底评估模型的放松和蠕变行为。还介绍了手稿中的能力和模型的性能,面对相关的非均质边值问题。调查结果的质量来自工程角度的庞大利用区域。

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