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Blends of polyester ionomers with polar polymers: Interactions, reactions, and compatibilization.

机译:聚酯离聚物与极性聚合物的共混物:相互作用,反应和相容性。

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摘要

The compatibility of amorphous and semicrystalline polyester ionomers with various polar polymers (i.e., polyesters and polyamides) has been investigated for their potential use as minor component compatibilizers. The degree of compatibility (i.e., ranging from incompatible to miscible) between the polyester ionomers and the polar polymers was determined by evaluating the effect of blend composition on the melting behavior and phase behavior of binary blends. In addition, the origin of compatibility and/or incompatibility for each of the binary blends (i.e., polyamide/ionomer and polyester/ionomer) was determined by evaluating blends prepared by both solution and melt mixed methods. Subsequent to investigation of the binary blends, the effect of polyester ionomer addition on the compatibility of polyamide/polyester blends was investigated by evaluating the mechanical properties and phase morphology of ionomer compatibilized polyamide/polyester blends.; Polyester ionomers (amorphous and semicrystalline) were shown to exhibit a high degree of compatibility (even miscibility) with polyamides, such as nylon 6,6 (N66). Compatibility was attributed to specific interactions between the metal counterion of the polyester ionomer and the amide groups of N66. The degree of compatibility (or miscibility) was shown to be dependent on the counterion type of the ionomer, with the highest degree exhibited by blends containing the divalent form of the polyester ionomers. Although polyester ionomers were shown to exhibit incompatibility with both poly(ethylene terephthalate) (PET) and poly(butylene terephthalate) (PBT), increasing the time of melt processing significantly enhanced the compatibility of the polyester ionomers with both PET and PBT. The observed enhancement in compatibility was attributed to ester-ester interchange between the polyester blend components, which was confirmed by NMR spectroscopy.; The addition of polyester ionomers as a minor component compatibilizer (i.e., 2 to 5 wt%) resulted in significant enhancement in the impact strength and a dramatic improvement in the tensile properties compared to uncompatibilized blends of nylon 6,6 (N66) with poly(butylene terephthalate) (PBT). This behavior was attributed to an increase in the interfacial adhesion between the phase-separated domains due to strong interactions between the polyester ionomer and N66. The placement of the ionomer compatibilizer at the N66/PBT interface was facilitated by pre-extrusion of the polyester ionomer with PBT, prior to extrusion with N66.
机译:已经研究了无定形和半结晶聚酯离聚物与各种极性聚合物(即聚酯和聚酰胺)的相容性,因为它们潜在地用作次要组分增容剂。通过评估共混物组成对二元共混物的熔融行为和相行为的影响来确定聚酯离聚物与极性聚合物之间的相容性程度(即,从不相容性到可混溶性)。另外,每种二元共混物(即聚酰胺/离聚物和聚酯/离聚物)的相容性和/或不相容性的起源是通过评价由溶液和熔融混合方法制备的共混物来确定的。在研究二元共混物之后,通过评估离聚物相容的聚酰胺/聚酯共混物的机械性能和相形态,研究了聚酯离聚物添加对聚酰胺/聚酯共混物相容性的影响。聚酯离聚物(非晶和半结晶)显示出与聚酰胺(如尼龙6,6(N66))的高度相容性(甚至互溶)。相容性归因于聚酯离聚物的金属抗衡离子与N66的酰胺基之间的特定相互作用。相容性(或混溶性)程度取决于离聚物的抗衡离子类型,其中含有二价形式的聚酯离聚物的共混物表现出最高程度。尽管显示聚酯离聚物与聚对苯二甲酸乙二酯(PET)和聚对苯二甲酸丁二酯(PBT)均不相容,但增加熔融加工时间显着增强了聚酯离聚物与PET和PBT的相容性。所观察到的相容性增强归因于聚酯共混物组分之间的酯-酯交换,这通过NMR光谱证实。与不相容的尼龙6混合物相比,添加聚酯离聚物作为次要组分增容剂(即2至5 wt%)可显着提高冲击强度并显着改善拉伸性能。 6(N66)与聚对苯二甲酸丁二酯(PBT)。该行为归因于由于聚酯离聚物与N66之间的强相互作用而引起的相分离域之间的界面粘附性的增加。通过将聚酯离聚物与PBT进行预挤出,然后再使用N66进行挤出,可将离聚物增容剂置于N66 / PBT界面处。

著录项

  • 作者

    Boykin, Timothy Lamar.;

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Chemistry Polymer.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);工程材料学;
  • 关键词

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