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首页> 外文期刊>Polymers >Erroneous or Arrhenius: A Degradation Rate-Based Model for EPDM during Homogeneous Ageing
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Erroneous or Arrhenius: A Degradation Rate-Based Model for EPDM during Homogeneous Ageing

机译:错误或Arrhenius:均匀老化期间EPDM的基于劣化率的模型

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To improve the predictive capability of long-term stress relaxation of elastomers during thermo-oxidative ageing, a method to separate reversible and irreversible processes was adopted. The separation is performed through the analysis of compression set after tempering. On the basis of this separation, a numerical model for long-term stress relaxation during homogeneous ageing is proposed. The model consists of an additive contribution of physical and chemical relaxation. Computer simulations of compression stress relaxation were performed for long ageing times and the results were validated with the Arrhenius treatment, the kinetic study and the time-temperature superposition technique based on experimental data. For chemical relaxation, two decay functions are introduced each with an activation energy and a degradative process. The first process with the lower activation energy dominates at lower ageing times, while the second one with the higher activation energy at longer ageing times. A degradation-rate based model for the evolution of each process and its contribution to the total system during homogeneous ageing is proposed. The main advantage of the model is the possibility to quickly validate the interpolation at lower temperatures within the range of slower chemical processes without forcing a straight-line extrapolation.
机译:为了改善热氧化衰老期间弹性体长期应力松弛的预测能力,采用了分离可逆和不可逆过程的方法。通过分析回火后的压缩装置进行分离。在这种分离的基础上,提出了一种在均匀老化期间的长期应力松弛的数值模型。该模型包括一种物理和化学松弛的添加贡献。电脑模拟压缩应力松弛进行长时间时间,并通过基于实验数据的动力学研究,动力学研究和时间温度叠加技术验证结果。为了化学弛豫,将两个衰减功能引入各自具有激活能量和降解过程。具有较低激活能量的第一个过程在较低的老化时间下占主导地位,而第二种激活能量较高的老化时间较高。提出了一种基于降解速率的速率模型,其对每个过程的演化及其对均匀老化过程中总系统的贡献。该模型的主要优点是可以快速验证在较慢的化学过程范围内的较低温度下的插值,而无需强制直线推断。

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