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Blends of propylene-ran-ethylene and propylene-ran-(1-butene) copolymers: Crystal superstructure and mechanical properties

机译:丙烯-ran-乙烯和丙烯-ran-(1-丁烯)共聚物的共混物:晶体超结构和机械性能

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摘要

Blends of isotactic propylene-ran-ethylene (EP) and propylene-ran-(1-butene) (BP) copolymers with various comonomer content (2-3.1 wt.% ethylene, 9.9 wt.% 1-butene), were prepared in Brabender internal mixer at various compositions (25/75, 50150, 75/25). Static, impact and dynamic mechanical behavior of copolymers and their blends was investigated. The crystalline structure was studied by DSC and SAXS analysis. For all copolymers the lamellar thickness, crystallinity degree and glass transition temperature are lower than those of iPP homopolymer, depending on the comonomer content. It was found that the copolymers exhibit improved impact strength as compared to plain iPP, due to lower crystallinity and higher mobility of chains within amorphous component. Moreover, the elastic modulus as well as the yield behavior of the examined samples resulted to depend primarily on the amount of the crystalline phase and the thickness of the lamellar crystals, respectively. A linear dependence of yield stress on the logarithm of reciprocal lamellar thickness was observed for blends and copolymers, supporting the concept of thermal nucleation of dislocations which control the crystallographic slip processes initiated at the yield point. The blends of BPS with either EPS or EP2 display complete miscibility in the entire range of composition and their mechanical properties are intermediate between those of plain components, changing gradually with the composition. (c) 2006 Elsevier Ltd. All rights reserved.
机译:制备具有各种共聚单体含量(2-3.1 wt。%乙烯,9.9 wt。%1-丁烯)的等规丙烯-丙烯-乙烯(EP)和丙烯-丙烯-(1-丁烯)(BP)共聚物的共混物。各种组成(25 / 75、50150、75 / 25)的Brabender内部混合器。研究了共聚物及其共混物的静态,冲击和动态力学行为。通过DSC和SAXS分析研究晶体结构。对于所有共聚物,取决于共聚单体含量,层状厚度,结晶度和玻璃化转变温度均低于iPP均聚物。已经发现,与普通的iPP相比,该共聚物表现出改进的冲击强度,这是由于较低的结晶度和较高的非晶态组分链的迁移率。此外,所检查样品的弹性模量以及屈服行为分别主要取决于结晶相的量和层状晶体的厚度。对于共混物和共聚物,观察到屈服应力对相互的层状厚度的对数呈线性关系,这支持了位错的热成核概念,该位错控制了在屈服点引发的晶体滑移过程。 BPS与EPS或EP2的共混物在整个组成范围内均表现出完全的可混溶性,其机械性能介于普通组分之间,并随组成逐渐变化。 (c)2006 Elsevier Ltd.保留所有权利。

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