317
Views
6
CrossRef citations to date
0
Altmetric
Research Article

Tensile strength of composite bonded scarf joint in various thermal environmental conditions

, , , , &
Pages 285-300 | Received 15 Nov 2019, Accepted 28 Dec 2019, Published online: 01 Jan 2020

References

  • Hocheng H, Tsao CC. Effects of special drill bits on drilling-induced delamination of composite materials. Int J Mach Tools Manuf. 2006;46:1403–1416.
  • Isbilir O, Ghassemieh E. Numerical investigation of the effects of drill geometry on drilling induced delamination of carbon fiber reinforced composites. Compos Struct. 2013;105:126–133.
  • Yun JH, Choi JH, Kweon JH. Fabrication and evaluation of composite panel with L-shaped stiffeners. Compos Res. 2013;26(2):99–104.
  • Kannan TG, Wu CM, Cheng KB. Influence of laminate lay-up, hole size and coupling agent on the open hole tensile properties of flax yarn reinforced polypropylene laminates. Composite B Eng. 2015;57:80–85.
  • CMH-17 Vol. 3. Polymer matrix composites materials usage, design, and analysis, composite structures. Warrendale: SAE International; 2012.
  • Harman AB, Wang CH. Improved design methods for scarf repairs to highly strained composite aircraft structure. Compos Struct. 2005;75:132–144.
  • Truong VH, Yoo JS, Kim CH, et al. Failure load prediction of laminates repaired with a scarf-bonded patch using the damage zone method. Adv Compos Mater. 2017;26(2):115–133.
  • Kim CH, Yoo JS, Byeon CS, et al. Failure characteristics of scarf patch-repaired composite single-lap joint. Compos Res. 2016;29(3):117–124.
  • Zhang T, Yan Y, Jin C. Experimental and numerical investigations of honeycomb sandwich composite panels with open-hole damage and scarf repair subjected to compressive loads. J Adhes. 2016;92(5):380–401.
  • Chae SS, Lee GE, Ahn HS, et al. Tensile strength of composite laminate repaired using heat-blanket and a novel pressurization system. Compos Res. 2018;31(1):1–7.
  • Campilho RDSG, Moura MFSFD, Pinto AMG, et al. Modelling the tensile fracture behavior of CFRP scarf repairs. Composite B Eng. 2009;40:149–157.
  • Xiaoquan C, Baig Y, Renwei H, et al. Study of tensile failure mechanisms in scarf repaired CFRP laminates. Int J Adhes Adhes. 2013;41:177–185.
  • Yoo JS, Truong VH, Park MY, et al. Parametric study on static and fatigue strength recovery of scarf-patch-repaired composite laminates. Compos Struct. 2016;140:417–432.
  • Sato M, Yokobori AT, Ozawa Y, et al. Experimental study of repair efficiency for single-sided composite patches bonded to aircraft structural panels. Adv Compos Mater. 2002;11(1):51–59.
  • Truong VH, Kwak BS, Roy R, et al. Cohesive zone method for failure analysis of scarf patch repaired composite laminates under bending load. Compos Struct. 2019;222:110895.
  • Kumazawa H, Kasahara T. Analytical investigation of thermal and mechanical load effects on stress distribution in adhesive layer of double-lap metal-composite bonded joints. Adv Compos Mater. 2019;28(4):425–444.
  • Bae JH, Hong JH, Chang SH. A study on the bonding strength of co-cured T800/epoxy composite–aluminum single-lap joint under out-of-plane compressive pressure condition. Adv Compos Mater. 2012;21:389–399.
  • Bendemra H, Compston P, Crothers PJ. Optimisation study of tapered scarf and stepped-lap joints in composite repair patches. Compos Struct. 2016;130:1–8.
  • Banea MD, Silva LFMD. Adhesively bonded joints in composite materials: an overview. Proc Inst Mech Eng L. 2009;223(1):1–18.
  • Park YB, Song MG, Kim JJ, et al. Strength of carbon/epoxy composite single-lap bonded joints in various environmental conditions. Compos Struct. 2010;92:2173–2180.
  • Ko MG, Choi JH, Kweon JH. Fatigue characteristics of jagged pin-reinforced composite single-lap joints in hygrothermal environments. Compos Struct. 2015;119:59–66.
  • J K K, Lee DG. Characteristics of plasma surface treated composite adhesive joints at high environmental temperature. Compos Struct. 2002;57:37–46.
  • Liljedahl CDM, Crocombe AD, Wahab MA, et al. Modelling the environmental degradation of adhesively bonded aluminium and composite joints using a CZM approach. Int J Adhes Adhes. 2007;27:505–518.
  • Hayes-Griss JM, Gunnion AJ, Khatibi AA. Damage tolerance investigation of high-performance scarf joints with bondline flaws under various environmental, geometrical and support conditions. Composite A App Sci Manuf. 2016;84:246–255.
  • Elaldi F, Elaldi P. A study on curing processes and environmental effects for rapid composite repair. J Reinf Plast Compos. 2011;30(9):749–755.
  • Standard test method for tensile properties of polymer matrix composite materials. West Conshohocken, PA: ASTM International; 2000. ( ASTM D3039/D3039M-00).
  • Standard test method for tensile properties of plastics. West Conshohocken, PA: ASTM International; 2000. ( ASTM D638).
  • Advanced general aviation transport experiments. Wichita: National Institute for Aviation Research Wichita State University Wichita; 2002. ( AGATE WP3.3-033051-134).
  • Gunnion AJ, Herszberg I. Parametric study of scarf joints in composite structures. Compos Struct. 2006;75(1–4):364–376.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.