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Organoclay polybutylene terephthalate nanocomposites using dual surfactant modified montmorillonite prepared by the masterbatch method

机译:母料法制备的双表面活性剂改性蒙脱土有机粘土聚对苯二甲酸丁二醇酯纳米复合材料

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This paper reports the application of dual-surfactant thermally stable organoclays (OC) to the production of poly(butylene terephthalate) (PBT) nanocomposites by the masterbatch method. A common failing of single surfactant organoclays is their thermal instability at high polymer processing temperatures, such as that used for PBT (235 °C). This can be overcome by first modifying the clay mineral with a thermally stable surfactant such as aminopropyl-POSS (AP-POSS). In this study, sodium montmorillonite (Na+Mt) was sequentially modified with AP-POSS and ditallowdimethylammonium chloride by ion-exchange reaction to give dual-surfactant organoclay (OC). This dual surfactant clay mineral was then used to prepare masterbatches comprising 40% clay mineral intercalated with CBT polymerized by ring-opening polymerization. The masterbatches were then processed with PBT by melt compounding to give PBT-clay nanocomposites whose morphology was studied by XRD and TEM and mechanical properties were assessed by tensile testing. Spectral examination showed that the dual surfactant clay mineral was readily intercalated by PBT, while electron microscopy revealed that an intercalated/exfoliated micromorphology was achieved. The elastic modulus and tensile strength of PBT were increased by inclusion of dual-surfactant clay, while the reduction in elongation typically associated with nanoclay inclusion was mitigated by the dual surfactant clay. The possible antagonism of the catalyst used in the ring-opening polymerization and the reinforcing effect of the dual surfactant clay is also discussed.
机译:本文报道了双表面活性剂热稳定有机粘土(OC)在通过母料法生产聚对苯二甲酸丁二酯(PBT)纳米复合材料中的应用。单一表面活性剂有机粘土的常见故障是它们在高聚合物加工温度下(例如用于PBT(235°C)的温度)下的热不稳定性。这可以通过首先用热稳定的表面活性剂(如氨丙基-POSS(AP-POSS))改性粘土矿物来克服。在这项研究中,将蒙脱土钠(Na + Mt)依次通过离子交换反应用AP-POSS和二牛脂二甲基氯化铵进行改性,得到双表面活性剂有机粘土(OC)。然后将这种双重表面活性剂粘土矿物用于制备母料,该母料包含嵌入有通过开环聚合而聚合的CBT的40%粘土矿物。然后通过熔融混合将母料与PBT加工,得到PBT-粘土纳米复合材料,其形貌通过XRD和TEM进行了研究,并通过拉伸测试评估了机械性能。光谱检查表明,双表面活性剂粘土矿物很容易被PBT嵌入,而电子显微镜显示获得了嵌入/剥落的微观形态。通过加入双表面活性剂粘土可以增加PBT的弹性模量和拉伸强度,而通过双重表面活性剂粘土可以减轻通常与纳米粘土夹杂物相关的伸长率降低。还讨论了在开环聚合中使用的催化剂可能的拮抗作用以及双表面活性剂粘土的增强作用。

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