[1] M. M. Ansari, A. Chakrabarti and M. Iqbal, "An experimental and finite element investigation of the ballistic performance of laminated GFRP composite target," Composites Part B, Vol. 125, pp. 211-226, 2017.
[2] S. Job, "Recycling glass fibre reinforced composites – history and progress," Reinforced Plastics, Vol. 57, Issue 5, pp. 19-23, 2013.
[3] T. Song, Y. Li, J. Song, Z. Zhang, Airworthiness considerations of supply chain management from Boeing 787 Dreamliner battery issue, Procedia Engineering, Vol. 80, pp. 628-637, 2014.
[4] M. Roseman, R. Martin, G. Morgan, Marine Applications of Advanced Fibre-Reinforced Composites, Hitchin: Woodhead Publishing, pp. 233-257, 2016.
[5] Y. Fouad, M. El-Meniawi, A. Afifi, Erosion behaviour of epoxy based unidirectionl (GFRP) composite materials, Alexandria Engineering Journal, Vol. 50, pp. 29-34, 2011.
[6] R. Rafiee, On the mechanical performance of glass-fibre reinforced thermosetting-resin pipes: A review, Composite Structures, Vol. 143, pp. 151-164, 2016.
[7] ZCL, ZCL Dualam Inc, 2017. Available: https:// www.zcl.com /en/.
[8] S. Rush, Dual Laminate Fabrication Association, DLFA, 2017. Available: http://www.compositesworld.com/ articles/ inside manufacturing-dual-laminate-pipe-comes-of-age.
[9] R. Krueger, Virtual crack closure technique: History, approach, and applications, National Institute of Aerospace, Vol. 57, NO. 2, pp. 35, 2004.
[10] V. Mollon, J. Bonhomme, J. Vina, A. Arguelles, Mixed mode fracture toughness: An empirical formulation for GΙ/GΙΙ determination in asymmetric DCB specimens, Engineering Structures, Vol. 32, pp. 3699-3703, 2010.
[11] V. Sundararaman, B. Davidson, An Unsymmetric Double Cantilever Beam test for Interfacial Fracture Toughness Determination, Int. J. Solid Structures, Vol. 34, pp. 799-817, 1997.
[12] Y.J. Guo, Y. Weitsman, A modified DCB specimen to determine mixed mode fracture toughness of adhesives, Engineering Fracture Mechanics, Vol. 68, pp. 1647-1668, 2001.
[13] S.A. Brown, L. Tong, A localised experimental–numerical technique for determining mixed mode strain energy release rates, Composire Structures, Vol. 94, pp. 132-142, 2011.
[14] ASTM, D5528-01: Standard test method for mode I interlaminar fracture toughness of unidirectional fiber-reinforced polymer matrix composites, American Standard of Testing Methods, Vol. 03,pp. 1-14, 2014.
[15] M. Hyer, Stress Analysis of Fiber-Reinforced Composite Materials, Virginia: McGRAW-HILL, 1998.
[16] ASTM, D3039/D3039M: Standard Test Method for Tensile Properties of Polymer Matrix Composite Materials, ASTM International, Vol. 07, pp. 1-13, 2007.
[17] ASTM, D 638: Standard Test Method for Tensile Properties of Plastics, ASTM International, Vol. 14, pp. 1-17, 2014.
[18] ASTM, D 2584: Standard Test Method for Ignition Loss of Cured Reinforced Resins, ASTM International, Vol. 08, pp. 1-3, 2008.