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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >The effects of SEBS-g-maleic anhydride reaction on the morphology and properties of polypropylene/PA6/SEBS ternary blends
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The effects of SEBS-g-maleic anhydride reaction on the morphology and properties of polypropylene/PA6/SEBS ternary blends

机译:SEBS-g-马来酸酐反应对聚丙烯/ PA6 / SEBS三元共混物形态和性能的影响

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摘要

Ternary blends,based on 70% by weight of polypropylene (PP) with 30% by weight of a dispersed phase,consisting of 15% polyamide-6 (PA6) and 15% of a mixture comprising varying ratios of an unreactive poly[styrene-b-(ethylene-co-9-butylene)-b-styrene] (SEES) triblock copolymer and a reactive maleic anhydride-grafted SEBS-g-MA,were produced via melt blending in a co-rotating twin-screw extruder.TEM revealed the blend containing only non-reactive SEBS to exhibit individual PA6 and SEBS dispersed phases.However,the progressive replacement of SEBS with reactive SEBS-g-MA increased the degree of interfacial reaction between the SEBS and PA6 phases,thus reducing interfacial tension and providing a driving force for encapsulation of the PA6 by the SEBS.Consequently,the dispersed-phase morphology was observed to transform from two separate phases to acorn-type composite particles,then to individual core-shell particles and finally to agglomerates of the core-shell particles.The resultant blends exhibited significant morphology-induced variations in both thermal and mechanical properties.DSC showed that blends in which the diameter of the PA6 particles was reduced to <= 3 mum by the increasing interfacial reaction exhibited fractionated PA6 crystallisation.In general,mechanical testing showed the blends to exhibit inferior low-strain tensile properties (modulus and yield stress) compared to the matrix PP,but superior ultimate tensile properties (stress and strain at break) and impact strength.These changes are discussed with reference to composite models.
机译:三元共混物,基于70%的聚丙烯(PP)和30%的分散相,由15%的聚酰胺-6(PA6)和15%的混合物组成,这些混合物包含不同比例的未反应的聚[苯乙烯-在同向旋转双螺杆挤出机中通过熔融共混制备了三元共聚物中的b-(乙烯-co-9-丁烯基-b-苯乙烯)(SEES)和反应性马来酸酐接枝的SEBS-g-MA.TEM揭示了仅包含非反应性SEBS的共混物表现出单独的PA6和SEBS分散相。但是,用反应性SEBS-g-MA逐步取代SEBS会增加SEBS和PA6相之间的界面反应程度,从而降低界面张力和因此,观察到分散相形态从两个独立的相转变为橡子型复合颗粒,然后转变为单个核-壳颗粒,最后转变为核-壳的团聚体。壳颗粒。生成的混合物DSC显示,随着界面反应的增加,PA6颗粒的直径减小至<= 3um的共混物表现出分步的PA6结晶。一般而言,机械测试表明该共混物与基体PP相比,具有较低的低应变拉伸性能(模量和屈服应力),但具有优异的极限拉伸性能(断裂时的应力和应变)和冲击强度。

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