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Toughness Enhancement of Nanostructured Amorphous and Semicrystalline Polymers

机译:纳米结构无定形和半结晶聚合物的韧性增强

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An overview is given of different micromechanical deformation processes leading to an enhancement of toughness in heterophase polymers. The well-known mechanism of rubber or particle toughening of semicrystalline polymers was studied in HDPE and PP blends. In particular, the micromechanical processes in the semicrystalline polymer strands between modifier particles were investigated in detail, revealing processes of separation, yielding, breaking and twisting of lamellae. These processes are compared with lamellae forming amorphous SBS block copolymers with alternating soft (polybutadiene) and hard (polystyrene) layers. Depending on the deformation direction, the mechanism of thin layer yielding or chevron formation appears. In both polymeric systems, the initial stage of deformation is characterized by a plastic yielding of the soft phase with a reorganization of the hard (glassy or crystalline) lamellae. The second stage is determined by the alignment of the hard phase towards the deformation direction and the plastic yielding. Detailed comparison of these similar mechanisms in very different polymers with similar nanostructured morphology should help to improve toughening of amorphous as well as semicrystalline polymers.
机译:概述具有不同的微机械变形过程,导致异相酶聚合物中的韧性增强。在HDPE和PP共混物中研究了半结晶聚合物的橡胶或颗粒增韧机理。特别地,在改性剂颗粒之间的半结晶聚合物链上的微机械工艺进行了详细的研究,揭示了分离的过程,产生,断裂和薄片的扭曲。将这些方法与形成无定形SBS嵌段共聚物的薄片与交替的软(聚丁二烯)和硬质(聚苯乙烯)层进行比较。根据变形方向,出现薄层屈服或脚轮形成的机制。在两个聚合物系统中,变形的初始阶段的特征在于软相的塑料屈服,重组硬(玻璃或结晶)薄片。第二阶段由硬相朝向变形方向的对准和塑料屈服来确定。这些类似机制在具有相似纳米结构形态的非常不同的聚合物中的详细比较应该有助于改善无定形和半晶体聚合物的增韧。

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