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Establishment of rubber thermo-viscoelastic constitutive model and analysis of temperature field

机译:建立橡胶热粘弹性本构模型及温度场分析

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Rubber has strong nonlinear viscoelastic behavior.Under the periodically changing external forces,it show deformation hysteresis,mechanical loss and heat generation.In this work,a pair of extruding and rotating steel-rubber rollers was researched.Stress relaxation data at different temperatures were obtained through dynamic thermomechanical analysis experiments.A thermo-viscoelastic rubber constitutive model with temperature factor was obtained by combining the generalized Maxwell model where parameters of rubber viscoelastic were fitted with Prony series.Then,the temperature experiment of structure was conducted on the experimental platform.Based on thermo-viscoelastic constitutive model,simulation and analysis of temperature distribution of steel-rubber roller was obtained.The results of experimental data were consistent with simulation results.Further,the rubber constitutive models of pure elasticity,the superposition of elasticity and viscoelasticity with non-temperature factors,the superposition of elasticity and viscoelasticity with temperature factors were simulated respectively.The results show that the third model was more consistent with the actual experimental results,which verifies the accuracy of constitutive model building by this work.Through numerical comparison and analysis,it was proved that viscoelastic hysteretic heat generation is an indispensable source of heat generation in rubber structure movement.
机译:橡胶具有很强的非线性粘弹性behavior.Under该周期性变化的外力,它显示出变形的滞后,机械损失和发热generation.In这项工作中,一对挤压和旋转的钢 - 橡胶辊的是得到在不同温度下researched.Stress松弛数据通过experiments.A通过组合其中橡胶粘弹性的参数分别装有普罗尼series.Then广义麦克斯韦模型获得的热粘弹性橡胶组成与温度因子模型动态热机械分析,结构的温度实验在实验进行platform.Based上热黏弹性模型,仿真和钢 - 橡胶辊的温度分布的分析是实验数据的obtained.The结果与仿真results.Further,纯弹性橡胶构模型,弹性的叠加和粘弹性与非一致 - 温度的因素,第弹性等,以及温度因子的粘弹性电子叠加进行了模拟。结果表明,该第三模式是与实际试验结果,验证构模型建筑的由该work.Through数值比较和分析的准确度更一致的,证明粘弹性滞后生热是热产生的在橡胶结构运动不可或缺的来源。

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