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Effects of specimen geometry and anisotropic material response on the tensile strain capacity of flawed spiral welded pipes

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Keywords
Spiral welded pipe, Tensile strain capacity, Material strength anisotropy, Finite element modelling, PIPELINES, STEELS

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Citation

Please use this url to cite or link to this publication:

MLA
Van Minnebruggen, Koen, et al. “Effects of Specimen Geometry and Anisotropic Material Response on the Tensile Strain Capacity of Flawed Spiral Welded Pipes.” ENGINEERING FRACTURE MECHANICS, vol. 148, 2015, pp. 350–62.
APA
Van Minnebruggen, K., Hertelé, S., Thibaux, P., & De Waele, W. (2015). Effects of specimen geometry and anisotropic material response on the tensile strain capacity of flawed spiral welded pipes. ENGINEERING FRACTURE MECHANICS, 148, 350–362.
Chicago author-date
Van Minnebruggen, Koen, Stijn Hertelé, Philippe Thibaux, and Wim De Waele. 2015. “Effects of Specimen Geometry and Anisotropic Material Response on the Tensile Strain Capacity of Flawed Spiral Welded Pipes.” ENGINEERING FRACTURE MECHANICS 148: 350–62.
Chicago author-date (all authors)
Van Minnebruggen, Koen, Stijn Hertelé, Philippe Thibaux, and Wim De Waele. 2015. “Effects of Specimen Geometry and Anisotropic Material Response on the Tensile Strain Capacity of Flawed Spiral Welded Pipes.” ENGINEERING FRACTURE MECHANICS 148: 350–362.
Vancouver
1.
Van Minnebruggen K, Hertelé S, Thibaux P, De Waele W. Effects of specimen geometry and anisotropic material response on the tensile strain capacity of flawed spiral welded pipes. ENGINEERING FRACTURE MECHANICS. 2015;148:350–62.
IEEE
[1]
K. Van Minnebruggen, S. Hertelé, P. Thibaux, and W. De Waele, “Effects of specimen geometry and anisotropic material response on the tensile strain capacity of flawed spiral welded pipes,” ENGINEERING FRACTURE MECHANICS, vol. 148, pp. 350–362, 2015.
@article{6874929,
  author       = {Van Minnebruggen, Koen and Hertelé, Stijn and Thibaux, Philippe and De Waele, Wim},
  issn         = {0013-7944},
  journal      = {ENGINEERING FRACTURE MECHANICS},
  keywords     = {Spiral welded pipe,Tensile strain capacity,Material strength anisotropy,Finite element modelling,PIPELINES,STEELS},
  language     = {eng},
  pages        = {350--362},
  title        = {Effects of specimen geometry and anisotropic material response on the tensile strain capacity of flawed spiral welded pipes},
  url          = {http://dx.doi.org/10.1016/j.engfracmech.2015.04.031},
  volume       = {148},
  year         = {2015},
}

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