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首页> 外文期刊>Journal of Applied Polymer Science >Effect of beta-nucleating agents on crystallization and melting behavior of isotactic polypropylene
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Effect of beta-nucleating agents on crystallization and melting behavior of isotactic polypropylene

机译:β成核剂对全同立构聚丙烯结晶和熔融行为的影响

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摘要

Two kinds of beta-nucleating agents, named a rare earth complex (WBG) and a N,N'-dicyclohexylterephthalamide (TMB5), were introduced into isotactic polypropylene (IPP), and their effect on crystallization and melting behavior of iPP was comparatively investigated. Wide angle X-ray diffraction measurements revealed that both the two additives were highly effective in inducing beta modification. At their respective optimum concentrations of 0.08 wt % for WBG and 0.06 wt % for TMB5, the relative amount of beta-form calculated by Turner-Jones equation both exceeds 92%. However, the isothermal crystallization kinetics investigated by differential scanning calorimetry demonstrated that WBG had more pronounced effect than TMB5 in accelcrating the overall crystallization rate. The Lauritzen-Hoffman theory analysis also revealed that WBG was more effective not only in increasing the nucleus number but also in accelerating the growth rate of crystallization. After completing isothermal crystallization process, the subsequent melting behavior examination suggested that the addition of WBG expanded the upper limit temperature of forming beta modification, and therefore was more effective in delaying the beta-alpha transformation than TMB5. (C) 2008 Wiley Periodicals, Inc.
机译:将两种β成核剂分别命名为稀土配合物(WBG)和N,N'-二环己基对苯二甲酰胺(TMB5)引入等规聚丙烯(IPP)中,并比较了它们对iPP结晶和熔融行为的影响。 。广角X射线衍射测量表明,两种添加剂在诱导β修饰方面都非常有效。在其各自的最佳浓度(WBG为0.08 wt%,TMB5为0.06 wt%)下,通过Turner-Jones方程计算得出的β-形式的相对量都超过92%。但是,通过差示扫描量热法研究的等温结晶动力学表明,WBG在提高总体结晶速率方面比TMB5具有更明显的作用。 Lauritzen-Hoffman理论分析还表明,WBG不仅在增加核数方面更有效,而且在加速结晶生长速率方面更有效。等温结晶过程完成后,随后的熔融行为检查表明,WBG的添加扩大了形成β修饰的上限温度,因此比TMB5更有效地延迟了β-α的转化。 (C)2008 Wiley期刊公司

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