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首页> 外文期刊>Journal of Applied Polymer Science >Impact fracture behavior and damage mechanisms of PP/EVOH blends compatibilized with ionomer Zn~(2+)
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Impact fracture behavior and damage mechanisms of PP/EVOH blends compatibilized with ionomer Zn~(2+)

机译:与离聚物Zn〜(2+)相容的PP / EVOH共混物的冲击断裂行为和破坏机理

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In this work, the impact fracture behavior and the damage mechanisms of PP/EVOH blends compatibilized with ionomer Zn ~(2+) were investigated, focusing on the effect of the compatibilizer and the EVOH content. Initiation energy release rate (GIC) values for the blends with EVOH content lower than 30 wt % were slightly lower or similar to that of neat PP, probably due to the premature failure induced by the presence of critical-size flaws derived from debonding of second phase particles. However, blends with 40 wt % EVOH exhibited higher G _(IC) values than neat PP as a result of the increased number of EVOH particles able to induce energy-absorption mechanisms. An increase in the work of fracture values with EVOH content was also observed, especially for the blends with EVOH content above 30 wt %. Therefore, the incorporation of EVOH to PP led to blends more prone to ductile behavior than neat PP. Furthermore, Pukánszky and Maurer model was successfully applied to fit experimental data of GIC as a function of EVOH content and to confirm the lack of a significant effect of the ionomer Zn ~(2+) on the impact fracture properties observed. Finally, from the study of the main deformation mechanisms it was established that the toughening effect of debonding of EVOH particles and subsequent ductile tearing of PP matrix around them which developed under quasi-static stresses were not able to develop under impact loading conditions.
机译:在这项工作中,研究了与离聚物Zn〜(2+)相容的PP / EVOH共混物的冲击断裂行为和破坏机理,重点研究了相容剂和EVOH含量的影响。 EVOH含量低于30 wt%的共混物的起始能量释放速率(GIC)值略低或与纯PP的相似,这可能是由于第二次脱胶而产生的临界尺寸缺陷导致的过早失效相颗粒。然而,由于能够诱导能量吸收机理的EVOH颗粒数量增加,因此与40 wt%EVOH的共混物比纯PP表现出更高的G_(IC)值。还观察到随着EVOH含量的断裂值功增加,特别是对于EVOH含量高于30wt%的共混物。因此,与纯PP相比,EVOH与PP的掺混导致掺混物更易于延展。此外,Pukánszky和Maurer模型已成功地应用于拟合GIC作为EVOH含量的函数的实验数据,并证实离聚物Zn〜(2+)对观察到的冲击断裂性能没有显着影响。最后,从对主要变形机理的研究中可以确定,在准静态应力下,EVOH颗粒的脱粘以及随后在准静态应力下产生的PP基体周围的延性撕裂的增韧作用无法发挥。

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