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首页> 外文期刊>Journal of Applied Polymer Science >Compatibilization of polyhedral oligomeric silsesquioxane for polypropylene-titanium dioxide composites and effect of the processing temperature
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Compatibilization of polyhedral oligomeric silsesquioxane for polypropylene-titanium dioxide composites and effect of the processing temperature

机译:聚丙烯 - 二氧化钛复合材料聚丙烯寡聚二氧化二氧化二氧化钛复合材料的相容性及加工温度的效果

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Polyhedral oligomeric silsesquioxanes (POSSs), with inorganic cores, offer excellent mechanical properties and have exte-rnal organic substituents. On the basis of their hybrid organic-inorganic characteristics, which allow for a tunable reaction or misci-bility with various materials, in this study, we introduced a bifunctional POSS as a novel rigid compatibilizer for polypropylene (PP)-titanium dioxide (TiO2) composites and evaluated its compatibilizing effects at different processing temperatures. The results show that the attached hydroxyl and isobutyl groups allowed for the reaction with TiO2 and miscibility with the PP matrix. However, at lower processing temperatures, POSS existed in the form of solid particles, and its interfacial absorption was too poor for sufficient coverage of the TiO2 surface; this resulted in a weak compatibilization effect on the PP-TiO2 composite. When the processing tem-perature was increased to 240 degrees C, the solid POSS turned into a liquid and thus had strong mobility; this was favorable for the diffu-sion of TiO2 onto the surface and the construction of a strong interfacial phase. Because the rigid characteristic of POSS made a positive contribution to the performances of the composites, the PP-TiO2 composites prepared at higher processing temperatures exhibited better mechanical properties, with the maximum increases occurring in the compositions containing 5 wt % POSS. (C) 2017 Wiley Periodicals, Inc.
机译:具有无机核心的多面体低聚Silsesquioxanes(POSSS)提供优异的机械性能并具有exte-RNAL有机取代基。在其杂种有机无机特性的基础上,在本研究中允许具有各种材料的可调节反应或含量的含量的无数的材料,我们将双功能与二氧化二氧化钛(TiO2)的新型刚性相容剂引入新型刚性相容剂复合材料并评估其在不同加工温度下的相容效应。结果表明,连接的羟基和异丁基允许与TiO 2的反应和与PP基质的混溶性。然而,在较低的加工温度下,足以以固体颗粒的形式存在,并且其界面吸收太差,可过于覆盖TiO 2表面;这导致PP-TiO2复合材料的相容效应较弱。当处理TEM-CENRATION增加到240℃时,固体可能变成液体并因此具有强烈的迁移率;这对TiO2的差异和强烈界面阶段的构建有利。因为足够的刚性特性对复合材料的性能进行了阳性贡献,所以在较高的加工温度下制备的PP-TiO2复合材料表现出更好的机械性能,其在含有5wt%的组合物中发生的最大增加。 (c)2017 Wiley期刊,Inc。

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