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Elaboration of poly(lactic acid)/halloysite nanocomposites by means of water assisted extrusion: structure, mechanical properties and fire performance

机译:用水辅助挤出加工聚乳酸/半硅酸盐纳米复合材料:结构,力学性能和防火性能

摘要

Poly(lactic acid) (PLA)/halloysite nanotube (HNT) nanocomposites were prepared using a water assisted extrusion process. Morphology, structure, thermomechanical properties and flame retardant properties of these nanocomposites were compared to those obtained in the case of nanocomposites obtained via the conventional extrusion process. Whatever the synthesis route used, mechanical tests indicate that HNTs have a reinforcing effect ascribed, at least partially, to the dispersion of the HNTs in the PLA matrix. Differential scanning calorimetry also shows that HNTs improve PLA crystallization and play the role of a nucleating agent. Moreover, cone calorimeter experiments show a drastic improvement in the reaction to fire of PLA when HNTs are added, especially at high filler content. This improvement arises from the fact that HNTs induce the formation of a protective inorganic layer at the surface of the sample. As the main results of this study, it has been shown that water assisted extrusion not only induced a better dispersion of the HNTs into the matrix but also that this process prevents polymer degradation during the extrusion. This unusual effect has been ascribed to a barrier effect of the water molecules that preferentially locate at the HNT–matrix interface. Even if not fully explained, it could be ascribed to a decrease in local shear levels (mechanochemical effect) and/or to a decrease in the catalytic effect of the HNT surface (chemical effect). Consequently this study reveals that water-assisted extrusion is a reliable route to prepare PLA/halloysite nanocomposites with enhanced properties.
机译:聚乳酸(PLA)/硅藻土纳米管(HNT)纳米复合材料是使用水辅助挤出工艺制备的。将这些纳米复合材料的形态,结构,热机械性能和阻燃性能与通过常规挤出方法获得的纳米复合材料的情况进行了比较。无论采用哪种合成途径,机械测试均表明HNT具有增强作用,至少部分归因于HNT在PLA基质中的分散。差示扫描量热法还显示,HNTs改善了PLA的结晶并发挥了成核剂的作用。此外,锥形量热仪实验表明,当添加HNT时,尤其是在高填料含量下,PLA对火的反应有了显着改善。这种改进源于HNT诱导在样品表面形成保护性无机层的事实。作为该研究的主要结果,已表明水辅助挤出不仅诱导HNT更好地分散到基体中,而且该过程可防止挤出过程中聚合物降解。这种不寻常的作用归因于优先位于HNT-基质界面的水分子的屏障作用。即使没有完全解释,也可以归因于局部剪切水平的降低(机械化学作用)和/或HNT表面催化作用的降低(化学作用)。因此,本研究表明水辅助挤出是制备具有增强性能的PLA /卤石纳米复合材料的可靠途径。

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