Microscopic analysis of failure in woven carbon fabric laminates coupled with digital image correlation and acoustic emission

Journal article


Ali, H.Q., Emami Tabrizi, I., Awais Khan, R.M., Tufani, A. and Yildiz, M. 2019. Microscopic analysis of failure in woven carbon fabric laminates coupled with digital image correlation and acoustic emission. Composite Structures. 230, pp. 1-9. https://doi.org/10.1016/j.compstruct.2019.111515
AuthorsAli, H.Q., Emami Tabrizi, I., Awais Khan, R.M., Tufani, A. and Yildiz, M.
Abstract

This study focuses on the failure analysis of woven fabric carbon-reinforced polymeric composites under tensile and flexural loading. To conduct a detailed investigation acoustic emission is used to attain damage evolution under flexural loading conditions. For the first time, the GAP function is suggested to find the optimal number of clusters for acoustic emission data. The advantage of this function is its suitability for classifying elongated data points in the vector space of acoustic data. Three clusters of data are determined with this new approach, indicating various failure types in composite laminates which show that simultaneous occurrence of all failures results in a major change of material stiffness. These failures are also substantiated by scanning electron microscope studies of fracture surfaces. Further studies on tensile behavior of the same laminates are conducted with the help of scanning electron micrographs and 3D-digital image correlation technique. Remarkably, the presence of the shear and transverse strain fields at the surface of the tensile specimen obtained through the digital image correlation technique can be correlated to shear dominant and high energy failure (interlaminar delamination and fiber pull-outs), respectively, which are also confirmed by microscopic images of the same fracture regions.

KeywordsAcoustic emission; Cluster evaluation; Digital image correlation; Fractography
Year2019
JournalComposite Structures
Journal citation230, pp. 1-9
PublisherElseiver
ISSN0263-8223
Digital Object Identifier (DOI)https://doi.org/10.1016/j.compstruct.2019.111515
Web address (URL)https://research.sabanciuniv.edu/id/eprint/39735/
https://www.sciencedirect.com/science/article/abs/pii/S0263822319323414
Output statusPublished
Publication dates
Online26 Sep 2019
Publication process dates
Deposited25 Jul 2024
Permalink -

https://repository.derby.ac.uk/item/q74w1/microscopic-analysis-of-failure-in-woven-carbon-fabric-laminates-coupled-with-digital-image-correlation-and-acoustic-emission

  • 10
    total views
  • 0
    total downloads
  • 0
    views this month
  • 0
    downloads this month

Export as

Related outputs

An experimental implementation of inverse finite element method for real-time shape and strain sensing of composite and sandwich structures
Kefal, A., Emami Tabrizi, I., Tansan, M., Kisa, E. and Yildiz, M. 2024. An experimental implementation of inverse finite element method for real-time shape and strain sensing of composite and sandwich structures. Composite Structures. 258, pp. 1-20. https://doi.org/10.1016/j.compstruct.2020.113431
Comprehensive Analysis of Damage Progression in High-performance Thermoplastic Composites Through Multi-instrumental Structural Health Monitoring Approaches
Yildiz, M., Emami Tabrizi, I., Yildirim, C., Topal, S., Beylergil, B. and Al-Nadhari, A. 2024. Comprehensive Analysis of Damage Progression in High-performance Thermoplastic Composites Through Multi-instrumental Structural Health Monitoring Approaches. 21st European Conference on Composite Materials.
Characterizing damage evolution of CF/PEKK composites under tensile loading through multi-instrument structural health monitoring techniques
Yildirim, C., Emami Tabrizi, I., Al-Nadhari, a., Yildiz, M., Beylergil, B. and Topal, S. 2024. Characterizing damage evolution of CF/PEKK composites under tensile loading through multi-instrument structural health monitoring techniques. Composites Part A: Applied Science and Manufacturing. 175, pp. 1-14. https://doi.org/10.1016/j.compositesa.2023.107817
Towards automated characterisation of fatigue damage in composites using thermoelastic stress analysis
Lambert, P., Christian, W.J.R., Emami Tabrizi, I., Patterson, E.A., Middleton, C.A. and Przybyla, C. 2024. Towards automated characterisation of fatigue damage in composites using thermoelastic stress analysis. Composites Part A: Applied Science and Manufacturing. 183, pp. 1-10. https://doi.org/10.1016/j.compositesa.2024.108205
A novel damage evaluation of CFRPs under mode-I loading by using multi-instrument structural health monitoring methods
Akgun , S., Senol, C.O., Kilic, G., Emami Tabrizi, I. and Yildiz, M. 2023. A novel damage evaluation of CFRPs under mode-I loading by using multi-instrument structural health monitoring methods. Engineering fracture Mechanics. 286, pp. 1-15. https://doi.org/10.1016/j.engfracmech.2023.109291
An experimental multi-instrumental approach to understand the size effect on the damage propagation of plain-woven CFRP composites under shear loading
Yildiz, M., Ali, H.Q, Emami Tabrizi, I. and Awais Khan, R.M. 2023. An experimental multi-instrumental approach to understand the size effect on the damage propagation of plain-woven CFRP composites under shear loading. Journal of Composite Materials. 57 (5). https://doi.org/10.1177/00219983221148087
Buckling and fracture analysis of thick and long composite cylinders with cutouts under axial Compression: An experimental and numerical campaign
Wagner, H.N.R., Yildiz, M., Akalin, C., Emami Tabrizi, I., Huhne, C. and Ali, H.Q. 2023. Buckling and fracture analysis of thick and long composite cylinders with cutouts under axial Compression: An experimental and numerical campaign. Composite Structures. 324, pp. 1-15. https://doi.org/10.1016/j.compstruct.2023.117530
Comparing 3D Matrix Rich Zones in Ceramic Matrix Composites Using Orthogonal Decomposition
Emami Tabrizi, I., Christian, W.J.R., Patterson, E.A. and Przybyla, C. 2023. Comparing 3D Matrix Rich Zones in Ceramic Matrix Composites Using Orthogonal Decomposition. 17th International Conference on Advances in Experimental Mechanics.
The effect of additively and subtractively created center internal features on microstructure and mechanical performance of inconel-718 parts
Yildiz, M, Emami Tabrizi, I., Isik, M, Awais Khan, R.M., Aydogan, E. and Koc, B. 2023. The effect of additively and subtractively created center internal features on microstructure and mechanical performance of inconel-718 parts. Rapid Prototyping Journal. 30 (2), pp. 287-304. https://doi.org/10.1108/RPJ-12-2022-0420
Damage growth and failure detection in hybrid fiber composites using experimental in-situ optical strain measurements and smoothing element analysis
Emami Tabrizi, I., Kefal, A., Zanjani, J.S.M. and Yildiz, M. 2021. Damage growth and failure detection in hybrid fiber composites using experimental in-situ optical strain measurements and smoothing element analysis. International Journal of Damage Mechanics. 31 (4), pp. 479-507. https://doi.org/10.1177/10567895211045121
A new methodology for thermoelastic model identification in composite materials using digital image correlation
de Sá Rodrigues, F., Marques, R., Emami Tabrizi, I., Suleman, A., Yildiz, M., Kefal, A. and Ali, H.Q. 2021. A new methodology for thermoelastic model identification in composite materials using digital image correlation. Optics and lasers in Engineering. 146, pp. 1-17. https://doi.org/10.1016/j.optlaseng.2021.106689
Failure sequence determination in sandwich structures using concurrent acoustic emission monitoring and postmortem thermography
Emami Tabrizi, I., Oz, F.E., Mandal, S.K., Zanjani, J.S.M. and Yildiz, M. 2021. Failure sequence determination in sandwich structures using concurrent acoustic emission monitoring and postmortem thermography. Mechanics of Materials. 164, pp. 1-11. https://doi.org/10.1016/j.mechmat.2021.104113
A smoothed iFEM approach for efficient shape-sensing applications: Numerical and experimental validation on composite structures
Kefal, A., Emami Tabrizi, I., Yildiz, M. and Tessler, A. 2020. A smoothed iFEM approach for efficient shape-sensing applications: Numerical and experimental validation on composite structures. Mechanical Systems and Signal Processing. 152, pp. 1-34. https://doi.org/10.1016/j.ymssp.2020.107486