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Experimental and numerical investigation on fracture behavior of glass/carbon fiber hybrid composites using acoustic emission method and refined zigzag theory

机译:基于声发射法和精细曲折理论的玻璃/碳纤维混杂复合材料断裂行为的实验和数值研究

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摘要

In this study, damage evolution in glass/carbon fiber hybrid composites with various stacking sequences is investigated under pure bending and tensile loading conditions. Based on the experimental tests results, the hybrid effect and ratio is calculated for all laminates. Damage occurrence is recorded using acoustic emission method and then damage types are classified by means of K-means algorithm. Results show four clusters of acoustic data corresponding to four failure types, i.e., matrix cracking, interface failure, fiber pullout, and fiber breakage. Microscopic images together with the results of acoustic emission data point out that the stacking sequence of hybrid composites becomes a dominant factor for hybrid effect in comparison to volume fraction of carbon or glass fibers under flexural loading. Moreover, the presence of glass layers beneath surface carbon layers causes a level off in acoustic emission activity which is associated with a drop and increase in stress of the stress-strain curve of the flexural test. The experimental tests are numerically simulated through finite element method (FEM) based on refined zigzag theory (RZT). Deformation results of RZT-FEM analysis demonstrate the presence of considerable amount of out-of-plane displacements in the hybrid fiber laminates. This important fact is readily captured during the RZT-FEM simulation, which leads to the interlaminar delaminations observed in the samples under tensile loading. The RZT-FEM results are also validated against the experimental strain-stress results within the linear-elastic region. Finally, the comparison of experimentally and numerically calculated strain-stress curves shows that the onset of the damage inside the material is demarcated as the deviation of experiment results from numerical ones. Remarkably, at this deviation instant, the acoustic emission activity also initiates for both tensile and bending specimens, hence confirming major damage evolution inside the laminates.
机译:在这项研究中,研究了在纯弯曲和拉伸载荷条件下具有不同堆叠顺序的玻璃/碳纤维混杂复合材料的损伤演化。根据实验测试结果,计算所有层压板的混合效应和比率。使用声发射法记录损坏的发生,然后通过K-means算法对损坏的类型进行分类。结果显示对应于四种失效类型的四个声学数据簇,即基体破裂,界面失效,光纤拉出和光纤断裂。显微图像以及声发射数据的结果表明,与弯曲载荷下碳纤维或玻璃纤维的体积分数相比,杂化复合材料的堆叠顺序成为杂化效应的主要因素。而且,在表面碳层下面的玻璃层的存在导致声发射活动的稳定,这与挠曲测试的应力-应变曲线的应力的下降和增大有关。通过基于改进的之字形理论(RZT)的有限元方法(FEM)进行了数值模拟。 RZT-FEM分析的变形结果表明,混合纤维层压板中存在大量的面外位移。在RZT-FEM仿真过程中很容易捕捉到这一重要事实,这导致在拉伸载荷下在样品中观察到层间分层。还针对线性弹性区内的实验应变应力结果验证了RZT-FEM结果。最后,通过实验和数值计算得出的应变-应力曲线的比较表明,由于实验结果与数值结果的偏差,材料内部损伤的发生被划定了。值得注意的是,在该偏离瞬间,拉伸和弯曲样品的声发射活动也都开始了,因此确认了层压板内部主要的损伤发展。

著录项

  • 来源
    《Composite Structures》 |2019年第9期|110971.1-110971.|共21页
  • 作者单位

    Sabanci Univ, Integrated Mfg Technol Res & Applicat Ctr, TR-34956 Istanbul, Turkey|Sabanci Univ Kordsa, Istanbul Technol Dev Zone, Composite Technol Ctr Excellence, Teknopk Blvd 1-1B, TR-34906 Istanbul, Turkey|Sabanci Univ, Fac Engn & Nat Sci, Mat Sci & Nano Engn, TR-34956 Istanbul, Turkey;

    Istanbul Tech Univ, Fac Naval Architecture & Ocean Engn, TR-34469 Istanbul, Turkey;

    Sabanci Univ, Integrated Mfg Technol Res & Applicat Ctr, TR-34956 Istanbul, Turkey|Sabanci Univ Kordsa, Istanbul Technol Dev Zone, Composite Technol Ctr Excellence, Teknopk Blvd 1-1B, TR-34906 Istanbul, Turkey|Sabanci Univ, Fac Engn & Nat Sci, Mat Sci & Nano Engn, TR-34956 Istanbul, Turkey;

    Sabanci Univ Kordsa, Istanbul Technol Dev Zone, Composite Technol Ctr Excellence, Teknopk Blvd 1-1B, TR-34906 Istanbul, Turkey;

    Sabanci Univ, Integrated Mfg Technol Res & Applicat Ctr, TR-34956 Istanbul, Turkey|Sabanci Univ Kordsa, Istanbul Technol Dev Zone, Composite Technol Ctr Excellence, Teknopk Blvd 1-1B, TR-34906 Istanbul, Turkey|Sabanci Univ, Fac Engn & Nat Sci, Mat Sci & Nano Engn, TR-34956 Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hybrid structures; Acoustic emission; Damage accumulation; Refined zigzag theory; Finite element method; Laminated composite plates;

    机译:混合结构声发射损伤累积曲折形理论有限元法复合材料层合板;

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