Next Article in Journal
Pulsed Laser Deposition of Mixed Sn@SnOx Phases Under Different Pressures of Reactive Oxygen Environments
Next Article in Special Issue
Novel Electrochemically Responsive Porous Glass Matrix Composites from a Printable Silicone-Based Emulsion
Previous Article in Journal
Experimental Fracture Characterization from Uniaxial to Plane Strain Tension Using the Tight Radius V-Bend Test with Application to Machined and Sheared Edge Conditions
Previous Article in Special Issue
Diamond-Based Solvated Electron Generators: A Perspective on Applications in NRR, CO2RR, and Pollutant Degradation
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Innovative Surface Treatment Techniques for Carbon Fiber-Based Polymer Matrix Composites

1
Structural Design Engineering, Turkish Aerospace, Ankara 06980, Türkiye
2
Department of Mechanical Engineering, Graduate School of Natural and Applied Sciences, Gazi University, Ankara 06570, Türkiye
3
Department of Mechanical Engineering, Izmir Institute of Technology, Izmir 35430, Türkiye
*
Author to whom correspondence should be addressed.
Solids 2026, 7(1), 11; https://doi.org/10.3390/solids7010011
Submission received: 31 December 2025 / Revised: 30 January 2026 / Accepted: 5 February 2026 / Published: 9 February 2026
(This article belongs to the Special Issue Young Talents in Solid-State Sciences)

Abstract

Adhesive bonding has emerged as a promising technology for joining carbon fiber reinforced polymer (CFRP) structures in aircraft, offering advantages over traditional mechanical fastening such as weight reduction and uniform stress distribution. This study evaluates the effectiveness of innovative laser ablation and electrospinning surface treatments compared to the conventional peel-ply method for secondary bonding. Surface features and wetting behavior were characterized using scanning electron microscopy (SEM) and contact angle measurements, while mechanical performance was assessed via single lap shear tests. Results demonstrate that laser ablation (30 W power, 10 m/s speed) achieved the highest bond strength at 20.68 MPa, followed by electrospinning (18.20 MPa) using 10 wt% PA-66 nanofibers. Both advanced techniques significantly outperformed the peel-ply method, which yielded the lowest shear strength of 15.18 MPa. SEM analysis confirmed that laser treatment facilitated direct fiber exposure with minimal damage, while nanofibers provided enhanced physical interlocking. In conclusion, laser ablation proved to be the most effective technique for enhancing interfacial bonding in aerospace-grade CFRP structures, followed by electrospinning, offering a superior alternative to traditional surface preparation.
Keywords: electrospinning; joining; laser ablation; peel-ply; surface treatment electrospinning; joining; laser ablation; peel-ply; surface treatment

Share and Cite

MDPI and ACS Style

Iris, M.E.; Tanoglu, M.; Salamci, E.; Dehneliler, S.; Iplikci, H.; Esenoglu, G. Innovative Surface Treatment Techniques for Carbon Fiber-Based Polymer Matrix Composites. Solids 2026, 7, 11. https://doi.org/10.3390/solids7010011

AMA Style

Iris ME, Tanoglu M, Salamci E, Dehneliler S, Iplikci H, Esenoglu G. Innovative Surface Treatment Techniques for Carbon Fiber-Based Polymer Matrix Composites. Solids. 2026; 7(1):11. https://doi.org/10.3390/solids7010011

Chicago/Turabian Style

Iris, Mehmet Erdem, Metin Tanoglu, Elmas Salamci, Serkan Dehneliler, Hande Iplikci, and Gozde Esenoglu. 2026. "Innovative Surface Treatment Techniques for Carbon Fiber-Based Polymer Matrix Composites" Solids 7, no. 1: 11. https://doi.org/10.3390/solids7010011

APA Style

Iris, M. E., Tanoglu, M., Salamci, E., Dehneliler, S., Iplikci, H., & Esenoglu, G. (2026). Innovative Surface Treatment Techniques for Carbon Fiber-Based Polymer Matrix Composites. Solids, 7(1), 11. https://doi.org/10.3390/solids7010011

Article Metrics

Back to TopTop