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Effect of the Molecular Structure of the Polymer and Nucleation on the Optical Properties of Polypropylene Homo- and Copolymers

机译:聚合物分子结构和成核对聚丙烯均聚物和共聚物光学性能的影响

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Two soluble nucleating agents were used to modify the optical properties of nine PP homo- and random copolymers. The ethylene content of the polymers changed between 0 and 5.3 wt %. Chain regularity was characterized by the stepwise isothermal segregation technique (SIST), while optical properties by the measurement of the haze of injection molded samples. Crystallization and melting characteristics were determined by differential scanning calorimetry (DSC). The analysis of the results proved that lamella thickness and change in crystallinity influence haze only slightly. A model was introduced which describes quantitatively the dependence of nucleation efficiency and haze on the concentration of the nucleating agent. The model assumes that the same factors influence the peak temperature of crystallization and optical properties. The analysis of the results proved that the assumption is valid under the same crystallization conditions. The parameters of the model depend on the molecular architecture of the polymer. Chain regularity determines supermolecular structure and thus the dependence of optical properties on nucleation.
机译:使用两种可溶性成核剂来改变9种PP均聚物和无规共聚物的光学性能。聚合物的乙烯含量在0至5.3重量%之间变化。通过逐步等温偏析技术(SIST)表征链的规则性,同时通过测量注塑样品的雾度来表征光学特性。结晶和熔融特性通过差示扫描量热法(DSC)测定。结果分析证明,薄层厚度和结晶度变化对雾度的影响很小。引入了一个模型,该模型定量描述了成核效率和雾度对成核剂浓度的依赖性。该模型假设相同的因素会影响结晶峰温度和光学性能。结果分析证明该假设在相同的结晶条件下是有效的。模型的参数取决于聚合物的分子结构。链规则性决定了超分子的结构,从而决定了光学性质对成核的依赖性。

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