Borja Erice, PhD

Senior Lecturer | Ramón y Cajal & Ikerbasque Research Fellow

A mechanistic-finite element hybrid approach to modelling cutting forces when drilling GFRP-AISI 304 stacks


Journal article


F. Ducobu, T. Beuscart, B. Erice, M. Cuesta, B. Lauwers, P.-J. Arrazola
CIRP Annals, vol. 72, 2023, pp. 69-72

Cite

Cite

APA   Click to copy
Ducobu, F., Beuscart, T., Erice, B., Cuesta, M., Lauwers, B., & Arrazola, P.-J. (2023). A mechanistic-finite element hybrid approach to modelling cutting forces when drilling GFRP-AISI 304 stacks. CIRP Annals, 72, 69–72.


Chicago/Turabian   Click to copy
Ducobu, F., T. Beuscart, B. Erice, M. Cuesta, B. Lauwers, and P.-J. Arrazola. “A Mechanistic-Finite Element Hybrid Approach to Modelling Cutting Forces When Drilling GFRP-AISI 304 Stacks.” CIRP Annals 72 (2023): 69–72.


MLA   Click to copy
Ducobu, F., et al. “A Mechanistic-Finite Element Hybrid Approach to Modelling Cutting Forces When Drilling GFRP-AISI 304 Stacks.” CIRP Annals, vol. 72, 2023, pp. 69–72.


BibTeX   Click to copy

@article{ducobu2023a,
  title = {A mechanistic-finite element hybrid approach to modelling cutting forces when drilling GFRP-AISI 304 stacks},
  year = {2023},
  journal = {CIRP Annals},
  pages = {69-72},
  volume = {72},
  author = {Ducobu, F. and Beuscart, T. and Erice, B. and Cuesta, M. and Lauwers, B. and Arrazola, P.-J.}
}


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