首页> 外文期刊>Journal of Applied Polymer Science >Kinetic and heat transfer modeling of rubber blends' sulfur vulcanization with N-t-butylbenzothiazole-sulfenamide and N,N-di-t-butylbenzothiazole-sulfenamide
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Kinetic and heat transfer modeling of rubber blends' sulfur vulcanization with N-t-butylbenzothiazole-sulfenamide and N,N-di-t-butylbenzothiazole-sulfenamide

机译:N-叔丁基苯并噻唑亚磺酰胺和N,N-二叔丁基苯并噻唑亚磺酰胺对橡胶混合物硫磺硫化的动力学和传热模型

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摘要

Vulcanization kinetics and heat transfer for various blends of natural (NR) and polybutadiene (BR) rubber were studied simultaneously using a mechanistic approach when developing vulcanization model kinetics. Rubber process analyzer (RPA), dynamic scanning calorimetry (DSC), and Fourier transform infrared spectroscopy (FTIR) methods were used for the study. The model reaction scheme was based on one of the best possible proposed individual reaction mechanisms. Molecular modeling was applied to distinguish between the reactivity of chemically similar species. The kinetics of N-t-butylbenzothiazole-sulfenamide (TBBS) and N,N-di-t-butylbenzothiazole-sulfenamide (TBSI) were treated separately using FTIR experiment data, and then incorporated in a model suitable for two-accelerator vulcanization. The proposed model quite well describes the thermal equilibration during the induction period despite a few simplifications. During cure and over-cure periods the course of vulcanization was described using a rigorous kinetic model. Physical and chemical model parameters were calculated from experimental data. Average heat transfer coefficient minimum during induction period was found to be at a weight ratio of BR and NR 1 : 1. The activation energy of significant reactions between rubber and other species was found to vary linearly with vulcanization compound composition. (C) 2006 Wiley Periodicals, Inc. J Appl Polym Sci 103: 293-307, 2007
机译:在开发硫化模型动力学时,使用机械方法同时研究了天然(NR)和聚丁二烯(BR)橡胶的各种共混物的硫化动力学和热传递。橡胶过程分析仪(RPA),动态扫描量热法(DSC)和傅立叶变换红外光谱(FTIR)方法用于研究。模型反应方案基于提出的最佳可能的单个反应机理之一。应用分子建模来区分化学相似物种的反应性。使用FTIR实验数据分别处理N-叔丁基苯并噻唑亚磺酰胺(TBBS)和N,N-二叔丁基苯并噻唑亚磺酰胺(TBSI)的动力学,然后将其纳入适合两促进剂硫化的模型中。尽管有一些简化,但所提出的模型很好地描述了感应期间的热平衡。在固化和过度固化期间,使用严格的动力学模型描述了硫化过程。物理和化学模型参数由实验数据计算得出。发现在诱导期间最小的平均传热系数为BR和NR的重量比为1:1。发现橡胶与其他物质之间显着反应的活化能随硫化化合物组成线性变化。 (C)2006 Wiley Periodicals,Inc. J Appl Polym Sci 103:293-307,2007

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