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Control on the topological structure of polyolefin elastomer by reactive processing

机译:通过反应控制聚烯烃弹性体的拓扑结构

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摘要

The feasibility of preliminary tailoring of the long chain branched (LCB) polymer through complex flow field was evaluated in the torque rheometer, for the reaction of melt polyolefin elastomer (POE) with peroxides at elevated temperatures. With the compensation of temperature, the strength of complex shear flow could be the only factor affecting the reaction kinetics and mechanism. The results of sample characterization by the theological and dilute polymer solution methods indicated that the degradation mainly made the length of LCB arm shorter and shorter as the rotational speed increases. Extremely, a certain amount of LCB degraded to be linear chains again due to the scission approaching the branching point at intense mixing condition. One new LCB index (D-LCB) was defined from nonlinear oscillatory shear, and a nearly linear relationship between it and long chain branching index (LCBI) was found, which can be a map to quantify LCB level by Fourier Transform Rheology (FTR).
机译:在扭矩流变仪中评估了通过复杂的流场对长链支化(LCB)聚合物进行初步剪裁的可行性,以用于熔融聚烯烃弹性体(POE)与过氧化物在高温下的反应。在温度补偿下,复数剪切流的强度可能是影响反应动力学和机理的唯一因素。通过神学和稀聚合物溶液法对样品进行表征的结果表明,降解主要是随着转速的增加,LCB臂的长度越来越短。极端地,由于在强烈混合条件下分裂接近分支点,一定量的LCB再次降解为线性链。从非线性振荡剪切中定义了一种新的LCB指数(D-LCB),并且发现它与长链支化指数(LCBI)之间存在近乎线性的关系,这可以作为通过傅立叶变换流变学(FTR)量化LCB水平的图。

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