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Articles

Experimental characterization of dynamic crack growth behavior in CFRP adhesive interface

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Pages 397-411 | Received 11 Apr 2017, Accepted 02 Nov 2017, Published online: 23 Nov 2017

References

  • Blackman BRK, Kinloch AJ, Paraschi M, et al. Measuring the mode I adhesive fracture energy, GIC, of structural adhesive joints: the results of an international round-robin. Int J Adhes Adhes. 2003;23:293–305.10.1016/S0143-7496(03)00047-2
  • Ji G, Ouyang Z, Li G, et al. Effects of adhesive thickness on global and local Mode-I interfacial fracture of bonded joints. Int J Solids Struct. 2010;47:2445–2458.10.1016/j.ijsolstr.2010.05.006
  • Imanaka M, Takeuchi Y, Nakamura Y, et al. Fracture toughness of spherical silica-filled epoxy adhesives. Int J Adhes Adhes. 2001;21:389–396.10.1016/S0143-7496(01)00016-1
  • Yang QD, Thouless MD, Ward SM. Elastic–plastic mode-II fracture of adhesive joints. Int J Solids Struct. 2001;38:3251–3262.10.1016/S0020-7683(00)00221-3
  • Blackman BRK, Kinloch AJ, Paraschi M. The determination of the mode II adhesive fracture resistance, GIIC, of structural adhesive joints: an effective crack length approach. Eng Fract Mech. 2005;72:877–897.10.1016/j.engfracmech.2004.08.007
  • Ouyang Z, Li G. Nonlinear interface shear fracture of end notched flexure specimens. Int J Solids Struct. 2009;46:2659–2668.10.1016/j.ijsolstr.2009.02.011
  • Samborsky DD, Sears AT, Agastra P, et al. Mixed mode static and fatigue crack growth in wind blade paste adhesives. 52nd AIAA, ASME, ASCE, AHS, ASC Structures, Structural Dynamics and Materials Conference; 2011 Apr 4–7; Denver (CO) USA. Reston: American Institute of Aeronautics and Astronautics; 2011.
  • Reeder JR, Crews JH Jr. Mixed-mode bending method for delamination testing. AIAA J. 1990;28:1270–1276.10.2514/3.25204
  • Fernlund G, Spelt JK. Mixed-mode fracture characterization of adhesive joints. Compos Sci Technol. 1994;50:441–449.10.1016/0266-3538(94)90052-3
  • Alfredsson KS, Högberg JL. Energy release rate and mode-mixity of adhesive joint specimens. Int J Fract. 2007;144:267–283.10.1007/s10704-007-9099-9
  • Parvatareddy H, Dillard DA. Effect of mode-mixity on the fracture toughness of Ti-6Al-4V/FM-5 adhesive joints. Int J Fract. 1999;96:215–228.10.1023/A:1018609418627
  • Blackman BRK, Kinloch AJ, Taylor AC, et al. The impact wedge-peel performance of structural adhesives. J Mater Sci. 2000;35:1867–1884.10.1023/A:1004793730352
  • Blackman BRK, Dear JP, Kinloch AJ, et al. The failure of fibre composites and adhesively bonded fibre composites under high rates of test: Part I Mode I loading-experimental studies. J Mater Sci. 1995;30:5885–5900.10.1007/BF01151502
  • Blackman BRK, Kinloch AJ, Rodriguez-Sanchez FS, et al. The fracture behaviour of adhesively-bonded composite joints: Effects of rate of test and mode of loading. Int J Solids Struct. 2012;49:1434–1452.10.1016/j.ijsolstr.2012.02.022
  • Japanese Industrial Standard. JIS K 7086: Testing methods for interlaminar fracture toughness of carbon fiber reinforced plastics. Tokyo: Japanese Standards Association; 1993 . (in Japanese).
  • Kusaka T, Hojo M, Mai YW, et al. Rate dependence of mode I fracture behaviour in carbon-fibre/epoxy composite laminates. Compos Sci Technol. 1998;58:591–602.10.1016/S0266-3538(97)00176-0
  • Chen W, Song B. Split Hopkinson (Kolsky) Bar: design, testing and application. New York (NY): Springer; 2011. Chapter 1, Conventional Kolsky bars; p. 1–27.10.1007/978-1-4419-7982-7
  • Cardarelli F. Materials handbook: a concise desktop reference. London: Springer; 2000.10.1007/978-1-4471-3648-4
  • Kusaka T, Masuda M, Horikawa N. Experimental characterization of mixed mode fracture toughness of polymer matrix composite under impact loading. In: Chiba A, Tanimura S, Hokamoto K, editors. Impact Engineering and Application. Proceeding of the 4th International Symposium on Impact Engineering; 2001 Jul 16–18; Kumamoto, Japan. Amsterdam: Elsevier; 2001.
  • Hashemi S, Kinloch AJ, Williams JG. The analysis of interlaminar fracture in uniaxial fiber-polymer composite. Proc R Soc A. 1990;427:173–199.10.1098/rspa.1990.0007
  • Williams JG. End correction for orthotropic DCB specimen. Compos Sci Technol. 1989;35:367–376.10.1016/0266-3538(89)90058-4
  • Kageyama K, Kobayashi T, Chou TW. Analytical compliance method for Mode I interlaminar fracture toughness testing of composites. Composites. 1987;18:393–399.10.1016/0010-4361(87)90364-8
  • Kusaka T, Kurokwa T. Estimation of mode I interlaminar fracture toughness of CFRP laminates by using wedge insert fracture test. J Soc Mater Sci Jpn. 1996;45:445–450 . (in Japanese).
  • Yoneyama S. Basic principle of digital image correlation for in-plane displacement and strain measurement. Adv Compos Mater. 2016;25:105–123.10.1080/09243046.2015.1129681
  • Blackman BRK, Kinloch AJ, Wang Y, et al. The failure of fibre composites and adhesively bonded fibre composites under high rates of test: Part II Mode I loading–dynamic effects. J Mater Sci. 1996;31:4451–4466.10.1007/BF00366341
  • Javidrad F. An investigation into the mixed-mode delamination growth in unidirectional T800/924C laminates. Adv Compos Mater. 2016;25:403–421.10.1080/09243046.2015.1012286
  • Williams JG. On the calculation of energy release rates for cracked laminates. Int J Fract. 1998;36:101–119.
  • Kusaka T, Horikawa N, Masuda M, et al. Estimation method for mixed mode (I + II) interlaminar fracture toughness of composite laminates under low-velocity impact loading. J Soc Mater Sci Jpn. 2001;50:235–241 . (in Japanese).10.2472/jsms.50.235
  • Kusaka T, Horikawa N, Masuda M. Low-velocity impact fracture behaviour of impact-resistant polymer matrix composite laminates under mixed mode loading. J Phys IV France. 2000;10:317–322.
  • Horikawa N, Kusaka T, Masuda M. Rate dependence of interlaminar fracture toughness in carbon fiber/epoxy composite laminates under mixed mode loading. In: Zhang Y. editor. Proceedings of International Conference on Composite Materials; 2001 Jun 25–29; Beijing China.

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