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Direct and closed form analytical model for the prediction of reaction kinetic of EPDM accelerated sulphur vulcanization

机译:用于预测EPDM加速硫磺硫化反应动力学的直接和闭合形式分析模型

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摘要

A novel direct model with kinetic base for the prediction of the final vulcanization level of EPDM cured with sulphur is presented. The model bases on a preliminary characterization of rubber through standard rheometer tests and allows an accurate prediction of the crosslinking degree at both successive curing times and different controlled temperatures. Both the case of indefinite increase of the torque and reversion can be handled. The approach proposed bases on a previously presented exponential model, where a calibration of three kinetic constants at fixed temperature by means of non-linear least square fitting was required. Here the exponential model is superseded and kinetic constants are evaluated through simple closed form formulas. The applicability of the approach is immediate and makes the model extremely appealing when fast and reliable estimates of crosslinking density of cured EPDM are required. To show the capabilities of the approach proposed, a comprehensive comparison with both available experimental data and results obtained numerically with the exponential model for real compounds at different temperatures is finally provided.
机译:提出了一种具有动力学基础的新型直接模型,用于预测硫磺硫化的三元乙丙橡胶的最终硫化水平。该模型基于通过标准流变仪测试对橡胶的初步表征,可以在连续的固化时间和不同的受控温度下准确预测交联度。扭矩不确定增加和反转的情况都可以处理。该方法基于先前提出的指数模型提出,其中需要通过非线性最小二乘拟合对固定温度下的三个动力学常数进行校准。在这里,指数模型被取代,并且通过简单的封闭形式公式来评估动力学常数。该方法的适用性是即时的,当需要快速而可靠地估计固化的EPDM的交联密度时,该模型非常有吸引力。为了展示所提出方法的功能,最后提供了对可用实验数据和使用不同温度下的真实化合物的指数模型进行数值计算得到的结果的全面比较。

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