탄소섬유 강화플라스틱의 레이저 표면처리 적용에 의한 이종 접합부의접합강도 개선에 관한 연구

Translated title of the contribution: A Study on the Improvement of Bonding Strength of Heterojunctions by Applying Laser Surface Treatment to Carbon Fiber Reinforced Plastics

Huan Wang, Seong Cheol Woo, Chung Ki Sim, Seong Kyun Cheong, Joohan Kim

Research output: Contribution to journalArticlepeer-review

Abstract

The adhesive bonding technology of carbon fiber reinforced plastics (CFRP) and aluminum alloys, is one of the lightweight joining technologies for automobiles. The strength and properties of the bonded joint, depend on the surface of the bonded part that the adhesive touches. Thus, proper surface treatment is one of the most important steps in the bonding process. The laser surface treatment of carbon fiber composites is a new form of green and environmental surface treatment technology, which can effectively clean coatings and pollutants on the surface of materials. It is also possible to improve the bonding shear strength, by changing the microstructure and roughness of the material surface through laser micro texture processing, to form a mechanically interlocked structure. In this study, a pulsed laser was used to treat the surface of CFRP. By changing the scanning line spacing during laser micro texturing, the effect of laser micro texturing on the surface morphology of CFRP and the strength of aluminum alloy bonded joints was investigated. Results show that in the laser micro texturing process, when the scanning line spacing was 0.3 mm, the maximum tensile shear strength was 14.5 MPa, approximately 200% higher than that without laser treatment.

Translated title of the contributionA Study on the Improvement of Bonding Strength of Heterojunctions by Applying Laser Surface Treatment to Carbon Fiber Reinforced Plastics
Original languageKorean
Pages (from-to)683-689
Number of pages7
JournalJournal of the Korean Society for Precision Engineering
Volume39
Issue number9
DOIs
StatePublished - Sep 2022

Keywords

  • Adhesive joints
  • Aluminum alloy
  • CFRP
  • Laser
  • Micro texturing surface treatment

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