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Finite element simulation of the woven geometry and mechanical behaviour of a 3D woven dry fabric under tensile and shear loading using the digital element method

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Mechanical properties, Finite element analysis, Modelling, Multiscale modelling, Digital element, Micro-CT, REINFORCED COMPOSITES, PREFORM DEFORMATIONS, TEXTILE COMPOSITES, MICRO-GEOMETRY, SCALE, CRIMP

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MLA
Daelemans, Lode, et al. “Finite Element Simulation of the Woven Geometry and Mechanical Behaviour of a 3D Woven Dry Fabric under Tensile and Shear Loading Using the Digital Element Method.” COMPOSITES SCIENCE AND TECHNOLOGY, vol. 137, 2016, pp. 177–87, doi:10.1016/j.compscitech.2016.11.003.
APA
Daelemans, L., Faes, J., Allaoui, S., Hivet, G., Dierick, M., Van Hoorebeke, L., & Van Paepegem, W. (2016). Finite element simulation of the woven geometry and mechanical behaviour of a 3D woven dry fabric under tensile and shear loading using the digital element method. COMPOSITES SCIENCE AND TECHNOLOGY, 137, 177–187. https://doi.org/10.1016/j.compscitech.2016.11.003
Chicago author-date
Daelemans, Lode, Jana Faes, Samir Allaoui, Gilles Hivet, Manuel Dierick, Luc Van Hoorebeke, and Wim Van Paepegem. 2016. “Finite Element Simulation of the Woven Geometry and Mechanical Behaviour of a 3D Woven Dry Fabric under Tensile and Shear Loading Using the Digital Element Method.” COMPOSITES SCIENCE AND TECHNOLOGY 137: 177–87. https://doi.org/10.1016/j.compscitech.2016.11.003.
Chicago author-date (all authors)
Daelemans, Lode, Jana Faes, Samir Allaoui, Gilles Hivet, Manuel Dierick, Luc Van Hoorebeke, and Wim Van Paepegem. 2016. “Finite Element Simulation of the Woven Geometry and Mechanical Behaviour of a 3D Woven Dry Fabric under Tensile and Shear Loading Using the Digital Element Method.” COMPOSITES SCIENCE AND TECHNOLOGY 137: 177–187. doi:10.1016/j.compscitech.2016.11.003.
Vancouver
1.
Daelemans L, Faes J, Allaoui S, Hivet G, Dierick M, Van Hoorebeke L, et al. Finite element simulation of the woven geometry and mechanical behaviour of a 3D woven dry fabric under tensile and shear loading using the digital element method. COMPOSITES SCIENCE AND TECHNOLOGY. 2016;137:177–87.
IEEE
[1]
L. Daelemans et al., “Finite element simulation of the woven geometry and mechanical behaviour of a 3D woven dry fabric under tensile and shear loading using the digital element method,” COMPOSITES SCIENCE AND TECHNOLOGY, vol. 137, pp. 177–187, 2016.
@article{8526374,
  author       = {{Daelemans, Lode and Faes, Jana and Allaoui, Samir and Hivet, Gilles and Dierick, Manuel and Van Hoorebeke, Luc and Van Paepegem, Wim}},
  issn         = {{0266-3538}},
  journal      = {{COMPOSITES SCIENCE AND TECHNOLOGY}},
  keywords     = {{Mechanical properties,Finite element analysis,Modelling,Multiscale modelling,Digital element,Micro-CT,REINFORCED COMPOSITES,PREFORM DEFORMATIONS,TEXTILE COMPOSITES,MICRO-GEOMETRY,SCALE,CRIMP}},
  language     = {{eng}},
  pages        = {{177--187}},
  title        = {{Finite element simulation of the woven geometry and mechanical behaviour of a 3D woven dry fabric under tensile and shear loading using the digital element method}},
  url          = {{http://dx.doi.org/10.1016/j.compscitech.2016.11.003}},
  volume       = {{137}},
  year         = {{2016}},
}

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