首页> 外文期刊>Journal of Applied Polymer Science >Crystallization Behavior of Elastomeric Block Copolymers: Thermoplastic Polyurethane and Polyether-block-Amide
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Crystallization Behavior of Elastomeric Block Copolymers: Thermoplastic Polyurethane and Polyether-block-Amide

机译:弹性嵌段共聚物的结晶行为:热塑性聚氨酯和聚醚嵌段酰胺

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摘要

The isothermal crystallization kinetics of melt-blown webs produced from a series of elastomeric block copolymers was studied through differential scanning calorimetry (DSC). Three hardness grades were selected for a polyester and a polyether ElastollanVVR thermoplastic polyurethane and PebaxVVR polyether-block-amide copolymers. The Avrami crystallization kinetics parameters, k and n, were derived from two different methods: (1) traditional Avrami model and (2) derivative of the Avrami model proposed by Kurajica et al. (Croat Chem Acta 2002, 75, 693). The kinetic parameters from both models were consistent and showed good correlation. For all polymer types and hardness grades, crystallization kinetics were interpreted with the derivative model (Kurijica et al.) since it could be directly fitted to untransformed DSC isothermal crystallization data, and thus reduces the errors involved in Avrami analysis. The values of the Avrami exponent, n ranged between 2.59 and 3.41, indicating similar nucleation and growth mechanisms. These n values and morphological observations indicate that crystallization occurs in these copolymers in three dimensions from pre-existing nuclei and the crystals grow under isothermal conditions. This suggests that, in these elastomeric copolymers, crystallization of the hard segments drives microphase separation into crystalline and amorphous regions rather than formation of hard and soft domains.
机译:通过差示扫描量热法(DSC)研究了由一系列弹性体嵌段共聚物生产的熔喷纤网的等温结晶动力学。为聚酯和聚醚ElastollanVVR热塑性聚氨酯和PebaxVVR聚醚-嵌段-酰胺共聚物选择了三种硬度等级。 Avrami结晶动力学参数k和n来源于两种不同的方法:(1)传统的Avrami模型和(2)Kurajica等人提出的Avrami模型的导数。 (Croat Chem Acta 2002,75,693)。来自两个模型的动力学参数是一致的,并显示出良好的相关性。对于所有类型和硬度等级的聚合物,均可以用导数模型(Kurijica等人)解释结晶动力学,因为该模型可以直接拟合未转化的DSC等温结晶数据,从而减少了Avrami分析涉及的误差。 Avrami指数的n值介于2.59和3.41之间,表明相似的成核和生长机制。这些n值和形态学观察表明,这些共聚物从预先存在的核开始在三个维度上发生结晶,晶体在等温条件下生长。这表明,在这些弹性体共聚物中,硬链段的结晶驱动微相分离成结晶区和非晶区,而不是形成硬区和软区。

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