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首页> 外文期刊>Journal of thermal analysis and calorimetry >Preparation and crystallization of isotactic polypropylene composites filled by titanium dioxide-supported montmorillonite with a beta-nucleating surface
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Preparation and crystallization of isotactic polypropylene composites filled by titanium dioxide-supported montmorillonite with a beta-nucleating surface

机译:用β-成核表面填充二氧化钛 - 支撑的蒙脱石填充的全同立方聚丙烯复合材料的制备和结晶

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摘要

To obtain multi-functional beta-iPP composites, beta-iPP composites are always filled by multiple fillers with alpha-nucleating ability. To prepare beta-iPP/TiO2/MMT composites, TiO2-supported MMT with a beta-nucleating surface was prepared through hydrolysis reaction of Tetra-n-butyl titanate and chemical reaction between pimelic acid and calcium ion. X-ray diffraction and scanning electron micrograph confirmed the formation of TiO2 on the surface of MMT. The differential scanning calorimeter and X-ray diffraction illustrated that the beta-iPP composites filled by TiO2 and MMT had lower relative beta-phase contents than beta-iPP. It is observed by polarized optical microscope that addition of TiO2-supported MMT with a beta-nucleating surface into iPP can increase the spherulite nuclei density and decrease the spherulite size significantly and obtain the beta-iPP/TiO2/MMT composites with high relative beta-phase content.
机译:为了获得多功能的β-IPP复合材料,β-IPP复合材料始终由多个填料填充具有α成核能力。 为了制备β-IPP / TiO 2 / MMT复合材料,通过Tetra-N-丁基钛酸盐和钙离子之间的化学反应的水解反应来制备具有β成核表面的TiO 2支持的MMT。 X射线衍射和扫描电子显微照片证实了MMT表面上的TiO2的形成。 差分扫描量热计和X射线衍射示出了由TiO2和MMT填充的β-IPP复合材料具有比β-IPP更低的相对β相含量。 通过偏振光学显微镜观察,将TiO 2支持的MMT与β成核表面加入IPP,可以增加球晶核密度并显着降低球晶尺寸,并获得高相对β的β-IPP / TiO2 / MMT复合材料 相含量。

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