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Unusual mechanical response of carbon black-filled thermoplastic elastomers

机译:炭黑填充的热塑性弹性体的异常机械响应

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摘要

Observations are reported on carbon black-filled thermoplastic elastomer in multi-step uniaxial tensile cyclic tests with various strain rates at room temperature. Experimental data reveal several unusual features of stress-strain diagrams: (ⅰ) fading memory of deformation history in cyclic tests with increasing maximum elongation ratios, (ⅱ) transitions from simple to mixed to inverse relaxation and creep in specimens subjected to stretching and subsequent retraction down to various minimum stresses, and (ⅲ) strain rate-induced acceleration of inverse relaxation and creep. A constitutive model is developed for the time- and rate-dependent response of polymer composites under an arbitrary three-dimensional deformation with finite strains. Adjustable parameters in the stress-strain relations are found by fitting the experimental data. Ability of the constitutive equations to describe the mechanical behavior of thermoplastic-elastomer composites under cyclic deformation and to predict the observed phenomena is confirmed by numerical simulation.
机译:在室温下,以各种应变速率在多步骤单轴拉伸循环测试中报告了炭黑填充热塑性弹性体的观察结果。实验数据揭示了应力-应变图的几个不同寻常的特征:(ⅰ)循环测试中变形历史的褪色记忆,随着最大伸长率的增加,(ⅱ)试样在经历拉伸和随后的回缩过程中从简单松弛过渡到混合松弛,然后转变为反向松弛和蠕变降低至各种最小应力,以及(ⅲ)应变率引起的反松弛和蠕变加速。建立了本构模型,用于在有限应变的任意三维变形下,聚合物复合材料的时间和速率依赖性响应。通过拟合实验数据找到应力-应变关系中的可调参数。数值模拟证实了本构方程描述热塑性弹性体复合材料在循环变形下的力学行为并预测观察到的现象的能力。

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