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首页> 外文期刊>Composites >Drop-weight impact behaviour of woven hybrid basalt-carbon/epoxy composites
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Drop-weight impact behaviour of woven hybrid basalt-carbon/epoxy composites

机译:混合玄武岩-碳/环氧树脂复合材料的落锤冲击性能

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摘要

This study addresses the effects of basalt fibre hybridization on quasi-static mechanical properties and low velocity impact behaviour of carbon/epoxy laminates. Interply hybrid specimens with two different stacking sequences (sandwich-like and intercalated) are tested at three different energies, namely 5,12.5 and 25 J. Residual post-impact properties of the different configurations of carbon/basalt hybrid laminates are characterized by quasi static four point bending tests. Post-impact flexural tests and interlam-inar shear tests are used for the mechanical characterization along with two non-destructive methods, namely acoustic emission and ultrasonic phased array, in order to get further information on both the extent of damage and failure mechanisms. Results indicate that hybrid laminates with intercalated configuration (alternating sequence of basalt and carbon fabrics) have better impact energy absorption capability and enhanced damage tolerance with respect to the all-carbon laminates, while hybrid laminates with sandwich-like configuration (seven carbon fabric layers at the centre of the laminate as core and three basalt fabric layers for each side of the composite as skins) present the most favourable flexural behaviour.
机译:这项研究解决了玄武岩纤维混杂对碳/环氧树脂层压板的准静态机械性能和低速冲击行为的影响。在三种不同的能量(即512.5和25 J)下测试了具有两种不同堆叠顺序(夹层式和插层式)的层间混合试样。不同构造的碳/玄武岩层合层压板的残余后碰撞特性以准静态为特征四点弯曲测试。冲击后弯曲试验和层间剪切试验与两种非破坏性方法(即声发射和超声相控阵)一起用于机械表征,以便获得有关破坏程度和破坏机理的进一步信息。结果表明,相对于全碳层压板,插层结构的混合层压板(玄武岩和碳纤维织物的交替顺序)具有更好的冲击能量吸收能力和增强的损伤耐受性,而夹层式复合层压板(7个碳纤维层层压板的中心为芯,复合材料的每一面为三个玄武岩织物层(如蒙皮),则表现出最佳的抗弯性能。

著录项

  • 来源
    《Composites 》 |2014年第3期| 204-220| 共17页
  • 作者单位

    Department of Chemical Engineering Materials Environment, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Chemical Engineering Materials Environment, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Chemical Engineering Materials Environment, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Chemical Engineering Materials Environment, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Chemical Engineering Materials Environment, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Mechanical and Aerospace Engineering, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Department of Mechanical and Aerospace Engineering, Sapienza-Universita di Roma, Via Eudossiana 18, 00184 Rome, Italy;

    Institute for Composite and Biomedical Materials, National Research Council, Piazzale Enrico Fermi 1, Localita Cranatello, Portia (NA) 80055, Italy;

    Institute for Composite and Biomedical Materials, National Research Council, Piazzale Enrico Fermi 1, Localita Cranatello, Portia (NA) 80055, Italy;

    Institute for Composite and Biomedical Materials, National Research Council, Piazzale Enrico Fermi 1, Localita Cranatello, Portia (NA) 80055, Italy;

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

    A.Polymer-matrix composites (PMCs); Basalt fibres; A.Hybrid; B.Impact behaviour; D.Non-destructive testing;

    机译:A.聚合物基复合材料(PMC);玄武岩纤维;A.Hybrid;B.影响行为;D.无损检测;

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