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Structure and properties of nylon 6-clay nanocomposites: Effect of temperature and reprocessing

机译:尼龙6-粘土纳米复合材料的结构和性能:温度和后处理的影响

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摘要

Melt-compounding is a technique which has been commonly used for producing polymer-clay nanocomposites with enhanced mechanical, thermal, and physical properties. Twin-screw extruders have been found to effectively exfoliate the clay platelets due to their high shear intensity. However, concerns about polymer and organoclay degradation have been raised in some studies. In this investigation, a composite of nylon 6-Cloisite 30B with fully exfoliated and well-dispersed clay particles was produced using a single-screw extruder and hence with limited polymer degradation. We show that processing temperature plays an important role in enhancing dispersion and that reprocessing at a higher temperature can enhance both dispersion and exfoliation and thus can result in composites with superior properties. We attempt to elucidate how the change in melt viscosity-coupled with the change in processing temperature-affects clay exfoliation and dispersion.
机译:熔融复合是一种通常用于生产具有增强的机械,热和物理性能的聚合物-粘土纳米复合材料的技术。已经发现双螺杆挤出机由于其高剪切强度而有效地剥落了粘土薄片。然而,在一些研究中已经引起了对聚合物和有机粘土降解的关注。在这项研究中,使用单螺杆挤出机生产了尼龙6-氯陶土30B与完全剥落且分散良好的粘土颗粒的复合物,因此聚合物降解受到限制。我们表明加工温度在增强分散性方面起着重要作用,并且在较高温度下进行的后处理可同时增强分散性和剥落性,因此可以得到具有优异性能的复合材料。我们试图阐明熔体粘度的变化与加工温度的变化如何影响粘土的剥落和分散。

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