Effect of fiber bending induced matrix shear behavior on machined surface quality in carbon fiber reinforced plastic milling

  • Kim, Gyuho; 
  • Song, Kyeongeun; 
  • Jun, Martin Byung-Guk; 
  • Jeong, Young Hun; 
  • Kim, Tae-Gon; 
  • 외 1명
Citations

WEB OF SCIENCE

11
Citations

SCOPUS

15

초록

Fiber bending by the cutting tool is one of the dominant causes of fiber pull-out on machined surfaces during CFRP milling. During the bending, the polymer matrix between the fibers is subjected to shear stress resulting in fiber-matrix debonding. The increase in the debonding length causes an increase in the fiber pull-out length. In milling, not all the new surfaces created by tool-workpiece engagement become the machined surface. However, during this process, the strain energy absorbed by the deformed matrix is released into fiber-matrix debonding along the fibers which can cause fiber pull-out on the machined surface. In this study, shear strain energy of polymer matrix due to fiber bending during milling tool-workpiece engagement was calculated with the geometrical relationship between fibers and a cutting edge. We found that the increase in R-a and R-z of the machined surface had clear tendencies to the increase in the calculated energy.

키워드

Fiber bending; fiber-matrix debonding; Fiber pull-out; Surface roughness; FORMATION MECHANISM; DAMAGE; MACHINABILITY; DELAMINATION; DEFECTS
제목
Effect of fiber bending induced matrix shear behavior on machined surface quality in carbon fiber reinforced plastic milling
저자
Kim, Gyuho; Song, Kyeongeun; Jun, Martin Byung-Guk; Jeong, Young Hun; Kim, Tae-Gon; Min, Byung-Kwon
DOI
10.1016/j.compstruct.2022.115343
발행일
2022-05-01
유형
Article
저널명
Composite Structures
권
287