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Unique Slow Crack Growth Behavior of Isotactic Polypropylene: The Role of Shear Layer-Spherulites Layer Alternated Structure

机译:单位聚丙烯独特的缓慢裂纹生长行为:剪切层 - 球晶层交替结构的作用

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摘要

With the development of polymer science, more attention is being paid to the longevity of polymer products. Slow crack growth (SCG), one of the most important factors that reveal the service life of the products, has been investigated widely in the past decades. Here, we manufactured an isotactic polypropylene (iPP) sample with a novel shear layer–spherulites layer alternated structure using multiflow vibration injection molding (MFVIM). However, the effect of the alternated structure on the SCG behavior has never been reported before. Surprisingly, the results showed that the resistivity of polymer to SCG can be enhanced remarkably due to the special alternated structure. Moreover, this sample shows unique slow crack propagation behavior in contrast to the sample with the same thickness of shear layer, presenting multiple microcracks in the spherulites layer, which can explain the reason of the resistivity improvement of polymer to SCG.
机译:随着高分子科学的发展,高分子产品的寿命,更多地关注。缓慢裂缝增长(SCG)是揭示了产品使用寿命的最重要因素之一,在过去几十年中被广泛调查。在这里,我们使用多利振动注塑(MFVIM)制造具有新型剪切层 - 球晶层交替结构的全同立构聚丙烯(IPP)样品。然而,从未报道过的交替结构对SCG行为的影响。令人惊奇的是,结果表明,由于特殊的交替结构,可以显着提高聚合物对SCG的电阻率。此外,该样品与具有相同剪切层厚度厚度的样品形成独特的缓慢裂纹传播行为,呈现在球晶层中的多个微裂纹,这可以解释聚合物对SCG的电阻率改善的原因。

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