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首页> 外文期刊>International Journal of Mechanical Sciences >Computational evaluation of strain-rate-dependent deformation behavior of rubber and carbon-black-filled rubber under monotonic and cyclic straining
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Computational evaluation of strain-rate-dependent deformation behavior of rubber and carbon-black-filled rubber under monotonic and cyclic straining

机译:单调和循环应变下橡胶和炭黑填充橡胶的应变率相关变形行为的计算评估

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摘要

The molecular chain network model for elastic deformation behavior and the reptation theory for viscoelastic deformation behavior are used to derive a constitutive equation for rubber. The new eight-chain-like model contains eight standard models consisting of Langevin springs and dashpot to account for the interaction of chains with their surroundings. Monotonic and cyclic deformation behavior of rubber with relaxation under different strain rates have been examined. The results reveal the roles of the individual springs and dashpot, and the strain rate dependence of materials in the monotonic and cyclic deformation behaviors, particularly softening and hysteresis loss, that is, the Mullins effect, occurring in stress-stretch curves under cyclic deformation processes. The validity of the results is checked through comparison with experimental results. The deformation behaviors of a plane strain rubber unit cell containing carbon-black (CB) under monotonic and cyclic straining are investigated by computational simulation using the proposed constitutive equation and homogenization method. The results reveal the substantial enhancement of the resistance of CB-filled rubber to macroscopic deformation, which is caused by the marked orientation hardening due to the highly localized deformation of rubber. The role of strain rate sensitivity on such characteristic deformation behaviors as increases in the resistance to deformation, hysteresis loss, and the effects of the distribution morphology and the volume fraction of CB on the deformation behavior is clarified. The increases in the volume fraction and in the aggregation of the distribution of CB substantially raise the resistance to deformation and hysteresis loss.
机译:利用弹性变形行为的分子链网络模型和粘弹性变形行为的蠕变理论推导橡胶的本构方程。新的类似八链的模型包含八个标准模型,这些模型由Langevin弹簧和减震器组成,以考虑链与周围环境的相互作用。研究了橡胶在不同应变率下具有松弛的单调和循环变形行为。结果揭示了单个弹簧和减震器的作用,以及材料在单调和周期性变形行为中的应变率依赖性,特别是在周期性变形过程中出现在应力-拉伸曲线中的软化和滞后损失,即穆林斯效应。 。通过与实验结果进行比较来检验结果的有效性。利用所提出的本构方程和均质化方法,通过计算模拟研究了含炭黑(CB)的平面应变橡胶单电池在单调和循环应变下的变形行为。结果表明,CB填充橡胶对宏观变形的抵抗力显着增强,这是由于橡胶的高度局部变形导致明显的取向硬化而引起的。阐明了应变速率敏感性对诸如变形抗力的增加,磁滞损失以及分布形态和CB的体积分数对变形行为的影响等特征变形行为的作用。 CB的体积分数的增加和聚集的增加实质上提高了抗变形和磁滞损耗的能力。

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