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In situ polymer/polymer composites from poly(ethylene terephthalate), polyamide-6, and polyamide-66 blends

机译:聚对苯二甲酸乙二醇酯,聚酰胺6和聚酰胺66的原位聚合物/聚合物复合材料

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In situ reinforced binary and ternary polymer/polymer composites are obtained by the melt blending of poly(ethylene terephthalate) (PET), polyamide-6 (PA-6), and polyamide-66 (PA-66) in an extruder in the presence of a catalyst, followed by drawing of the extrudate and annealing of the drawn blends. The blends were studied by DSC, X-ray, SEM, and mechanical testing. After drawing, all the components were found to be oriented, forming microfibrils with diameters of about 1-2 mu m. The chemical nature of the homopolymers affects the blends' morphologies; while the PA-66/PA-6 blend is homogeneous, phase separation is established in the case of PET/PA-6. The decrease in the enthalpy of melting of the blend components as well as the depression of their peaks of crystallization from the melt, compared to pure homopolymers, are indications that block copolymers have been formed via interchange reactions during the blending process. On the one hand, these copolymers improve the compatibility of the homopolymers, and on the other hand, they alter the chemical composition of the blends. After thermal treatment at 245 degrees C, i.e., above the T-m of PA-6, the latter undergoes some disorientation, while PET and PA-66 retain their microfibrillar shape, and in this way, a compositelike structure is created. The presence of chemical bonds between the separate phases via copolymers favors the cocrystallization of PA-66 and PA-6 as well as the cooperative crystallization of PET, PA-6, and PA-66, both modes fostering improved compatibility (adhesion) of the blend components. (C) 1998 John Wiley & Sons, Inc. [References: 27]
机译:通过在存在下的挤出机中熔融共混聚对苯二甲酸乙二醇酯(PET),聚酰胺6(PA-6)和聚酰胺66(PA-66)来获得原位增强的二元和三元聚合物/聚合物复合材料。制备催化剂,然后拉伸挤出物并退火拉伸的共混物。通过DSC,X射线,SEM和机械测试研究了共混物。拉伸后,发现所有组分均已取向,形成直径约1-2微米的微纤维。均聚物的化学性质影响共混物的形态。尽管PA-66 / PA-6共混物是均匀的,但在PET / PA-6的情况下却建立了相分离。与纯均聚物相比,共混物组分熔化焓的降低以及它们从熔体中结晶峰的降低,表明嵌段共聚物是在共混过程中通过交换反应形成的。一方面,这些共聚物改善了均聚物的相容性,另一方面,它们改变了共混物的化学组成。在245摄氏度(即高于PA-6的T-m处)进行热处理后,后者会发生一些取向错误,而PET和PA-66保持其微原纤形状,并以此方式形成复合结构。分离相之间通过共聚物的化学键的存在有利于PA-66和PA-6的共结晶以及PET,PA-6和PA-66的协同结晶,这两种模式都促进了共聚物的相容性(粘合力)的改善。混合成分。 (C)1998 John Wiley&Sons,Inc. [参考:27]

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