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Isotactic polypropylene modified with sorbitol-based derivative and siloxane-silsesquioxane resin

机译:用山梨醇基衍生物和硅氧烷-倍半硅氧烷树脂改性的等规聚丙烯

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摘要

This study details new polypropylene-based materials containing a sfloxane-silsesquioxane resin and a sorbitol derivative. Molecular adducts originating from the synergistic interactions of siloxane-silsesquioxane resin (SiOPh) containing phenyl functionalities and 1,3:2,4-bis(3,4-dimethylbenzylidene)sorbitol, Millad 3988 (DMDBS), strongly influence crystallization of isotactic polypropylene (iPP) as well as its morphology, transparency and mechanical properties. DMDBS is a commonly used clarifying agent for a variety of iPP grades. However, its disadvantage is that when added into iPP during extrusion, it allows only low draw ratios, because it increases crystallization temperature of iPP. Addition of SiOPh allows for control of the nucleation efficiency of the sorbitol derivative and adjust crystallization rate of iPP, to attain transparent formulations suitable for extrusion processes. iPP-based compounds were produced by co-rotating twin screw extrusion and further analyzed by differential scanning calorimetry, wide-angle X-ray diffraction, scanning electron microscopy and Fourier transform infrared spectroscopy. Moreover, rheological, haze and static tensile measurements were conducted to determine the influence of composition on material properties. It was found that the best combination of properties is achieved when 1 wt% of SiOPh and 0.25 waDMDBS are added to iPP. This formulation can significantly change the crystallization behavior of iPP to be tailored for production of highly oriented and transparent products. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究详细介绍了新的基于聚丙烯的材料,该材料包含斯氟烷-倍半硅氧烷树脂和山梨糖醇衍生物。源自具有苯基官能团的硅氧烷-倍半硅氧烷树脂(SiOPh)与1,3:2,4-双(3,4-二甲基亚苄基)山梨醇Millad 3988(DMDBS)的协同相互作用的分子加合物,对等规聚丙烯( iPP)及其形态,透明度和机械性能。 DMDBS是各种iPP等级的常用澄清剂。但是,其缺点在于,在挤出过程中添加到iPP中时,由于它会提高iPP的结晶温度,因此它仅允许低拉伸比。 SiOPh的添加可控制山梨糖醇衍生物的成核效率并调节iPP的结晶速率,以获得适用于挤出工艺的透明配方。通过同向旋转双螺杆挤出生产iPP基化合物,并通过差示扫描量热法,广角X射线衍射,扫描电子显微镜和傅里叶变换红外光谱进一步进行分析。此外,进行了流变,雾度和静态拉伸试验,以确定组成对材料性能的影响。已发现,当将1 wt%的SiOPh和0.25 waDMDBS添加到iPP中时,可以实现性能的最佳组合。这种配方可以显着改变iPP的结晶行为,以适合生产高度取向和透明的产品。 (C)2016 Elsevier Ltd.保留所有权利。

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