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Production of modified clays and their use in polypropylene-based nanocomposites

机译:改性粘土的生产及其在聚丙烯基纳米复合材料中的用途

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摘要

The use of modified bentonite as a reinforcement in polypropylene (PP)/organoclay/maleic anhydride grafted polypropylene (MAPP) nanocomposites was investigated. The modified bentonites (organoclays) were prepared from raw (unpurified) bentonite (RB) and two quaternary ammonium salts with long alkyl tails: hexadecyl trimethyl ammonium bromide [HDA][Br] and tetrakisdecyl ammonium bromide [TKA][Br]. The ternary composites were produced by using a corotating twin screw extruder, followed by injection molding, and they exhibited microcomposite structure as observed by XRD. In order to observe the effects of purification of the bentonite, purified bentonite (PB) was obtained through sedimentation of raw bentonite, and later modified with two quaternary ammonium salts: dimethyl dioctadecylammonium chloride [DMDA][Cl] and [TKA][Br], and one quaternary phosphonium salt: tributyl hexadecyl phosphonium bromide [TBHP][Br]. Ternary nanocomposites (PP/organoclay/MAPP) with these organoclays were produced by using a corotating twin screw extruder, followed by batch mixing in an intensive batch mixer, and by injection molding. The use of [DMDA][Cl] and [TBHP][Br] resulted in nanocomposite formation, whereas the use of [TKA][Br] resulted in microcomposite formation as observed by XRD and TEM. Young's modulus of PP was increased by 30% with DMDA and 9% with TBHP. The yield strength of PP was increased by 15% with DMDA and 8.3% with TBHP.
机译:研究了改性膨润土在聚丙烯(PP)/有机粘土/马来酸酐接枝聚丙烯(MAPP)纳米复合材料中的增强作用。改性膨润土(有机粘土)是由未加工的(未经纯化的)膨润土(RB)和两种带有长烷基尾部的季铵盐制备的:十六烷基三甲基溴化铵[HDA] [Br]和十四烷基溴化铵[TKA] [Br]。三元复合材料是通过使用同向旋转双螺杆挤出机进行生产,然后进行注塑成型的,它们具有XRD观察到的微复合结构。为了观察膨润土的提纯效果,通过沉淀膨润土获得了纯膨润土(PB),然后用两种季铵盐进行了改性:二甲基二十八烷基氯化铵[DMDA] [Cl]和[TKA] [Br] ,以及一种季phospho盐:三丁基十六烷基溴化[[TBHP] [Br]。具有这些有机粘土的三元纳米复合材料(PP /有机粘土/ MAPP)是通过使用同向旋转双螺杆挤出机,然后在强力批量混合器中进行批量混合,并通过注塑成型来生产的。通过XRD和TEM观察,[DMDA] [Cl]和[TBHP] [Br]的使用导致纳米复合物的形成,而[TKA] [Br]的使用导致纳米复合物的形成。 PP的杨氏模量在DMDA中提高了30%,在TBHP中提高了9%。 DMDA使PP的屈服强度提高15%,TBHP使PP的屈服强度提高8.3%。

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