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Controlled Synthesis, Characterization, and Flow Properties of Ethylene–Diene Copolymers

机译:乙二烯共聚物的受控合成,表征和流动性质

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摘要

The flow response of branched entangled resins is dominated by the branching topology of the constituent molecules, a property that is not directly accessible using experimental analytical tools for industrially relevant complex resins. In this paper, the controlled terpolymerization of ethylene, 1,9-decadiene, and either hexene or octene in a continuous stirred tank reactor with a metallocene catalyst, is reported. The synthesized samples are characterized extensively with various analytical tools and their rheological properties are measured with small amplitude oscillatory shear and start-up uniaxial extension experiments. A model is developed for the polymerization process with the mass balance during synthesis providing strong constraints on the rate constants. In silico ensembles of molecules, generated via Monte Carlo sampling, are used to reproduce the experimental results. The computer model allows us to infer the detailed branching structure of the molecules and to predict the optimum range of reactor conditions for this synthesis.
机译:支链缠结树脂的流动响应受组成分子的支链拓扑支配,使用工业相关的复杂树脂的实验分析工具无法直接获得该特性。在本文中,报道了在具有茂金属催化剂的连续搅拌釜反应器中乙烯,1,9-癸二烯以及己烯或辛烯的受控三元聚合。合成的样品使用各种分析工具进行了广泛表征,并通过小振幅振荡剪切和启动单轴延伸实验测量了其流变性。开发了用于聚合过程的模型,其中合成期间的质量平衡对速率常数提供了严格的约束。通过蒙特卡洛采样生成的分子计算机电子集成,用于再现实验结果。计算机模型使我们能够推断出分子的详细分支结构,并预测该合成反应器条件的最佳范围。

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