首页> 外文期刊>Journal of Macromolecular Science. Physics >Simultaneously Boosting Toughness and Tensile Strength for Polyamide 6/montmorillonite Nanocomposite by a Pressure-Induced Flow Field
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Simultaneously Boosting Toughness and Tensile Strength for Polyamide 6/montmorillonite Nanocomposite by a Pressure-Induced Flow Field

机译:通过压力诱导流场同时提高聚酰胺6 /蒙脱土纳米复合材料的韧性和拉伸强度

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摘要

Nanocomposites of polymers and montmorillonite (MMT) represent a type of important hybrid material. However, unlike in some natural hybrid materials where much improved mechanical properties are achieved by an ordered assembly (layered, sheet-like or fibrous morphology) of complementary hard and soft components on nano-and microscopic scales, the exfoliated MMT nano-sheets are generally randomly dispersed in bulk polymeric matrices. In this paper we utilized a pressure-induced flow (PIF) field to orient MMT nano-sheets and generate stratified morphologies in polyamide 6 (PA6)/MMT nanocomposite bulk material. The toughness and tensile strength can be simultaneously increased. In particular, the impact strength increased up to 10 fold higher than the same material obtained by conventional processing methods. The mechanism for enhancement could be the confinement of crack propagations and the tortuous energy dissipating paths, which are attributed to the oriented MMT and the anisotropic hierarchical morphologies formed during PIF-processing.
机译:聚合物和蒙脱土(MMT)的纳米复合材料是一种重要的杂化材料。但是,与某些天然杂化材料不同的是,剥离的MMT纳米片通常是通过在纳米和微观尺度上通过有序的组装(分层,片状或纤维形态)互补的硬质和软质成分而获得显着改善的机械性能的,无规分散在本体聚合物基质中。在本文中,我们利用压力诱导流(PIF)场来定向MMT纳米片,并在聚酰胺6(PA6)/ MMT纳米复合散装材料中生成分层形貌。韧性和拉伸强度可以同时增加。特别地,冲击强度比通过常规加工方法获得的相同材料高多达10倍。增强的机制可能是裂纹扩展和弯曲的能量耗散路径的限制,这归因于定向MMT和在PIF处理过程中形成的各向异性分层形态。

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