首页> 外文会议>Third European Conference on Constitutive Models for Rubber Sep 15-17, 2003 London, UK >The effects of cyclic pre-loading and thermal recovery on the viscoelastic response of carbon black-reinforced rubbers
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The effects of cyclic pre-loading and thermal recovery on the viscoelastic response of carbon black-reinforced rubbers

机译:循环预加载和热回收对炭黑增强橡胶粘弹性响应的影响

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Constitutive equations are derived for the time-dependent behavior of particle-reinforced elastomers at isothermal deformations with finite strains. A filled rubber is modelled as an equivalent network of strands bridged by junctions which can slide with respect to their reference positions under loading. The equivalent network is assumed to be strongly heterogeneous, and it is thought of as an ensemble of meso-regions where sliding occurs with different rates. Stress―strain relations are developed by using the laws of thermodynamics. For uniaxial tensile relaxation tests, these equations are determined by three adjustable parameters. To find the material constants, three series of tests are performed at longitudinal strains in the range from 100 to 250%. The study focuses on the effects of pre-loading and thermal recovery on the nonlinear viscoelastic response of natural rubber reinforced with carbon black.
机译:导出了等温有限变形下颗粒增强弹性体随时间变化的行为的本构方程。填充的橡胶被建模为由结点桥接的等效股线网络,这些结点可以在负载下相对于其参考位置滑动。假定等效网络是高度异构的,并且被认为是其中中间区域以不同速率滑动的集合。利用热力学定律建立了应力-应变关系。对于单轴拉伸松弛测试,这些方程式由三个可调参数确定。为了找到材料常数,在100%至250%的纵向应变下进行了三个系列的测试。该研究集中于预加载和热回收对炭黑增强的天然橡胶的非线性粘弹性响应的影响。

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