[1] P. Camanho and L. Lambert. A design methodology for mechanically fastened joints in laminated composite
materials. Comp. Sci. Technol.. pp. 3004-3020. 2006.
[2] P. Camanho, C. Davila, S. Pinho, I. Iannucci, and P. Robinson. Prediction of in situ strengths and matrix cracking in composites under
transverse tension and in-plane shear. Composites Part A: Applied Science and Manufacturing. No. 2. pp. 165-176. 2006.
[3] R. Cuntze. Efficient 3D and 2D failure conditions for UD laminae and their application
within the verification of the laminate design. Comp. Sci. Technol.. No. 7-8. pp. 1081-1096. 2006.
[4] C. Davila, P. Camanho, and C. Rose. Failure Criteria for FRP Laminates. Journal of Composite Materials. No. 4. 2005.
[5] Structural Materials Handbook. ECSS-HB-304. ESA2009ESA Publications Division. 2009.
[6] G. L. Ghiringhelli and P. Mantegazza. Linear, straight and untwisted anisotropic beam section properties from
solid finite elements. Composites Engineering. No. 12. pp. 1-13. 1994.
[7] V. Giavotto, M. Borri, P. Mantegazza, G. Ghiringhelli, V. Carmaschi, G. C. Maffioli, and F. Mussi. Anisotropic beam theory and applications. Computers & Structures. No. 1-4. pp. 403-413. 1983.
[8] O. Hoffman. The Brittle Strength of Orthotropic Materials. Journal of Composite Materials. pp. 200-206. 1967.
[9] A. Puck. Festigkeitsanalyse von Faser-Matrix-Laminaten. Carl Hanser. 1996.
[10] P.D. Soden, A.S. Kaddour, and M.J. Hinton. Recommendations for designers and researchers resulting from the world-wide
failure exercise. Composites Science and Technology. No. 3-4. pp. 589-604. March, 2004.
[11] R. Akrami, S. Fotouhi, M. Fotouhi, M. Bodaghi, J. Clamp, and A. Bolouri. High-performance bio-inspired composite T-joints. Composites Science and Technology. November, 2019.