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Rheological, Crystal Structure, Barrier, and Mechanical Properties of PA6 and MXD6 Nanocomposite Films

机译:PA6和MXD6纳米复合薄膜的流变,晶体结构,阻挡层和力学性能

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摘要

In this study, rheological, crystal structure, barrier, and mechanical properties of polyamide 6 (PA6), poly(m-xylene adipamide) (MXD6) and their in situ polymerized nano-composites with 4 wt % clay were studied. The extent of intercalation and exfoliation as well as type of crystals, crystallinity, and thermal transitions were investigated using X-ray diffraction (XRD) and differential scanning cal-orimetry (DSC), respectively. Dynamic rheological measurements revealed that incorporation of nanoclay significantly increases complex viscosity of MXD6 nano-composites at low frequencies, which was related to the formation of a nanoclay network and exchange reaction between MXD6 chains. The comparative study of dynamic characteristics (G' (ω) and G" (ω)) for aliphatic and aromatic polyamide nanocomposites with their neat resins as well as the relaxation spectra for both polymer systems confirmed the possibility of the aforementioned phenomena. Although, the crystallinity of MXD6 films was lower as compared to PA6 films, the permeability to oxygen was more than 5 times better for the former. Incorporating 4 wt% clay enhanced the barrier property, tensile modulus, and yield stress of PA6 and MXD6 nanocomposite films in both machine and transverse directions without sacrificing much puncture and tear resistances. The PA6-based films showed higher tear and puncture strength as compared to MXD6 films.
机译:在这项研究中,研究了聚酰胺6(PA6),聚(间二甲苯己二酰胺)(MXD6)及其具有4 wt%粘土的原位聚合纳米复合材料的流变,晶体结构,阻挡层和力学性能。分别使用X射线衍射(XRD)和差示扫描量热法(DSC)研究了嵌入和剥落的程度以及晶体的类型,结晶度和热转变。动态流变学测量表明,纳米粘土的掺入在低频下显着增加了MXD6纳米复合材料的复数粘度,这与纳米粘土网络的形成和MXD6链之间的交换反应有关。脂族和芳族聚酰胺纳米复合材料与纯树脂的动态特性(G'(ω)和G“(ω))的对比研究以及两种聚合物体系的弛豫谱都证实了上述现象的可能性。 MXD6薄膜的结晶度比PA6薄膜低,对氧气的渗透性是后者的5倍以上;掺入4 wt%的粘土可增强PA6和MXD6纳米复合薄膜的阻隔性,拉伸模量和屈服应力在纵向和横向方向上都不会牺牲很多耐穿刺性和抗撕裂性,与MXD6膜相比,基于PA6的薄膜具有更高的抗撕裂性和穿刺强度。

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