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Determination of residual welding stresses in a steel bridge component by finite element modeling of the incremental hole-drilling method

Evy Van Puymbroeck (UGent) , Wim Nagy (UGent) , Ken Schotte (UGent) , Zain Ul-Abdin (UGent) and Hans De Backer (UGent)
(2019) APPLIED SCIENCES. 9(3). p.1-20
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Chicago
Van Puymbroeck, Evy, Wim Nagy, Ken Schotte, Zain Ul-Abdin, and Hans De Backer. 2019. “Determination of Residual Welding Stresses in a Steel Bridge Component by Finite Element Modeling of the Incremental Hole-drilling Method.” Applied Sciences 9 (3): 1–20.
APA
Van Puymbroeck, E., Nagy, W., Schotte, K., Ul-Abdin, Z., & De Backer, H. (2019). Determination of residual welding stresses in a steel bridge component by finite element modeling of the incremental hole-drilling method. APPLIED SCIENCES, 9(3), 1–20.
Vancouver
1.
Van Puymbroeck E, Nagy W, Schotte K, Ul-Abdin Z, De Backer H. Determination of residual welding stresses in a steel bridge component by finite element modeling of the incremental hole-drilling method. APPLIED SCIENCES. MDPI AG; 2019;9(3):1–20.
MLA
Van Puymbroeck, Evy et al. “Determination of Residual Welding Stresses in a Steel Bridge Component by Finite Element Modeling of the Incremental Hole-drilling Method.” APPLIED SCIENCES 9.3 (2019): 1–20. Print.
@article{8609984,
  articleno    = {536},
  author       = {Van Puymbroeck, Evy and Nagy, Wim and Schotte, Ken and Ul-Abdin, Zain and De Backer, Hans},
  issn         = {2076-3417},
  journal      = {APPLIED SCIENCES},
  language     = {eng},
  number       = {3},
  pages        = {536:1--536:20},
  publisher    = {MDPI AG},
  title        = {Determination of residual welding stresses in a steel bridge component by finite element modeling of the incremental hole-drilling method},
  url          = {http://dx.doi.org/10.3390/app9030536},
  volume       = {9},
  year         = {2019},
}

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