An experimental multi-instrumental approach to understand the size effect on the damage propagation of plain-woven CFRP composites under shear loading

Journal article


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
AuthorsYildiz, M., Ali, H.Q, Emami Tabrizi, I. and Awais Khan, R.M.
Abstract

Damage propagation and failure mechanisms in woven carbon fiber composites are complex due to their anisotropic nature and are affected by the percentage of constituents of the composite materials named fiber, matrix, and void. The “size effect” that relies on these parameters can be influenced by the volume fraction percentages of these constituents and composite manufacturing parameters. This research introduces a multi-instrumental structural health monitoring approach to understand damage progression due to the size effect under the Iosipescu configuration. Acoustic emission (AE) signals are classified via a K-means clustering algorithm to distinguish the damage activities based on their frequencies. It is shown that both size effect and void content are relatable based on cumulative AE energy jumps attributed to the accumulation of micro-damages inside these laminates. The thermal variations observed by passive infrared thermography are associated with the nonlinear response of the shear behavior. The outcomes of the thermal analysis are depicted to show the relationship between damage progress and laminate thickness. The digital image correlation analysis is performed to measure the full-field strain measurement during the testing. The correspondence of material thickness with elastic shear behavior is investigated via a comparison of shear strain maps.

KeywordsDamage propagation ; failure mechanisms; woven carbon fiber composites
Year2023
JournalJournal of Composite Materials
Journal citation57 (5)
PublisherSAGE Publishing
ISSN0021-9983
Digital Object Identifier (DOI)https://doi.org/10.1177/00219983221148087
Web address (URL)https://journals.sagepub.com/doi/10.1177/00219983221148087
Output statusPublished
Publication dates
Online23 Dec 2023
Publication process dates
Deposited25 Jul 2024
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https://repository.derby.ac.uk/item/q74w9/an-experimental-multi-instrumental-approach-to-understand-the-size-effect-on-the-damage-propagation-of-plain-woven-cfrp-composites-under-shear-loading

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