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首页> 外文期刊>Polymer engineering and science >Effects of Organoclay on Morphology and Properties of Nanocomposites Based on LDPE/PA-6 Blends Without and With SEBS-g-MA Compatibilizer
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Effects of Organoclay on Morphology and Properties of Nanocomposites Based on LDPE/PA-6 Blends Without and With SEBS-g-MA Compatibilizer

机译:有机粘土对有和无SEBS-g-MA增容剂的LDPE / PA-6共混物纳米复合材料形态和性能的影响

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摘要

LDPE/PA-6 blends (75/25 wt/wt) were added with SEBS-g-MA (S) and/or an organoclay (20A) using different compounding sequences and the morphology and the properties of the blends or composites were investigated. An XRD study of the nanocomposites with pure polymers showed that 20A is intercalated by LDPE or PA-6 chains, whereas it is exfoliated by S if the clay concentration does not exceed 10 wt%. The SEM investigation showed that both S and 20A behave as efficient emulsifying agents for the LDPE/PA-6 blends. However, their effect on the mechanical properties was found to be opposite: S enhanced toughness but lowered the stiffness, whereas 20A improved the elastic modulus but impaired the impact properties. When used together, these additives failed to have synergistic effects and the blends mechanical properties could not be improved strongly. A possible interpretation for this behavior was suggested, considering that the anhydride groups of S can competitively interact with the amine end groups of PA-6 and with the surface of the silicate layer of 20A. Nevertheless, an optimization of the compounding procedure and the use of appropriate proportions of S and 20A allow the preparation of composites with excellent morphology and a satisfactory balance of stiffness and toughness.
机译:使用不同的混合顺序将LDPE / PA-6共混物(75/25 wt / wt)与SEBS-g-MA(S)和/或有机粘土(20A)添加在一起,并研究了共混物或复合物的形态和性能。对具有纯聚合物的纳米复合材料的XRD研究表明,如果粘土浓度不超过10 wt%,则20A被LDPE或PA-6链嵌入,而S被剥落。 SEM研究表明,S和20A均可作为LDPE / PA-6共混物的有效乳化剂。但是,发现它们对机械性能的影响相反:S增强了韧性,但降低了刚度,而20A改善了弹性模量,但削弱了冲击性能。当一起使用时,这些添加剂没有协同作用,并且共混物的机械性能不能得到很大改善。考虑到S的酸酐基团可以与PA-6的胺端基以及与20A的硅酸盐层的表面竞争性相互作用,因此提出了对此行为的可能解释。然而,通过优化配混程序以及使用适当比例的S和20A,可以制备出具有优异形态和令人满意的刚度和韧性平衡的复合材料。

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