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The role of interface strength on the low velocity impact behaviour of PP/glass fibre laminates

机译:界面强度对PP /玻璃纤维层压板低速冲击行为的影响

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摘要

The low velocity impact behaviour of composites made of polypropylene (PP) as matrix and glass fibre fabric as reinforcement has been investigated. Two PP grades, differing for their melt flow index, have been used as matrix, and maleic anhydride has been used to manage the polymer/glass fibre interface strength. Impact tests at four energies (5, 20, 40 and 105 J) have been carried out to evaluate the main dissipation mechanisms occurring in each impact condition and to identify the role of the interface strength. Quasi-static flexural tests confirmed that the compatibilizer improves both flexural modulus and strength, as well as strain at yield. A different performance trend is shown by low velocity impact tests. Not compatibilized samples have exhibited, since the lowest impact energy (5 J), significant energy dissipation resulting from the interface failure occurring at very low strains, as confirmed by lock-in ther-mographic analysis. Conversely, compatibilized samples showed no or small damages. As the impact energy increases not compatibilized samples outperformed compatibilized samples by large margins showing better impact resistance. This result has been related to the large energy dissipation occurring at the polymer/fibre interface. Furthermore, the broad interface failure and slipping act as crack blocker, preserving the integrity of fibres and allowing for higher load bearing. Managing the interface strength can be a viable option to design thermoplastic based composites with improved impact damage tolerance and balanced quasi-static properties.
机译:研究了以聚丙烯(PP)为基质和玻璃纤维织物为增强材料的复合材料的低速冲击行为。两种PP级的熔体流动指数不同,已被用作基质,而顺丁烯二酸酐已用于控制聚合物/玻璃纤维的界面强度。已经进行了四种能量(5、20、40和105 J)的冲击试验,以评估每种冲击条件下发生的主要耗散机制,并确定界面强度的作用。准静态挠曲测试证实,增容剂可提高挠曲模量和强度,以及屈服应变。低速冲击试验显示出不同的性能趋势。锁定热成像分析证实,由于最低的冲击能量(5 J),在非常低的应变下由于界面失效而导致的大量能量耗散,因此不相容的样品已展现出来。相反,相容的样品没有显示出很小的损坏。随着冲击能量的增加,不相容的样品在表现出更好的耐冲击性时,其相容性样品的表现要比相容性样品大得多。该结果与在聚合物/纤维界面处发生的大能量耗散有关。此外,广泛的界面失效和打滑可作为裂纹的阻断剂,从而保持纤维的完整性并允许更高的承载力。管理界面强度可能是设计具有改善的冲击破坏耐受性和平衡的准静态性能的热塑性基复合材料的可行选择。

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  • 来源
    《Composites 》 |2014年第6期| 88-96| 共9页
  • 作者单位

    Department of Materials and Production Engineering, University of Naples Federico Ⅱ, P.le V. Tecchio 80, 80125 Naples, Italy;

    Department of Materials and Production Engineering, University of Naples Federico Ⅱ, P.le V. Tecchio 80, 80125 Naples, Italy;

    Department of Industrial Engineering, Aerospace Division, University of Naples Federico Ⅱ, Via Claudio 21, 80125 Naples, Italy;

    Institute of Polymers, Composites and Biomaterials (IPCB - CNR), Via Campi Flegrei, 34 - c/o Comprensorio 'Adriano Olivetti', Pozzuoli (Na), Italy;

    Institute of Polymers, Composites and Biomaterials (IPCB - CNR), Via Campi Flegrei, 34 - c/o Comprensorio 'Adriano Olivetti', Pozzuoli (Na), Italy;

    Institute of Polymers, Composites and Biomaterials (IPCB - CNR), Via Campi Flegrei, 34 - c/o Comprensorio 'Adriano Olivetti', Pozzuoli (Na), Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Thermoplastic resin; A. Glass fibres; B. Impact behaviour; B. Interface/interphase;

    机译:A.热塑性树脂;A.玻璃纤维;B.影响行为;B.接口/相间;

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