1,394
Views
45
CrossRef citations to date
0
Altmetric
Research Article

Thick-walled composite tubes for offshore applications: an example of stress and failure analysis for filament-wound multi-layered pipes

, &
Pages 304-322 | Received 31 Dec 2014, Accepted 24 Jun 2015, Published online: 19 Aug 2015

References

  • Ajit KR. 1991. Response of thick laminated composite rings to thermal stresses. Compos Struct. 18:125–138.
  • Alexander C. 2007. Development of a composite repair system for reinforcing offshore risers [Ph.D. thesis]. Texas A&M University, College Station, TX.
  • Ansari R, Alisafaei F, Ghaedi P. 2010. Dynamic analysis of multi-layered filament-wound composite pipes subjected to cyclic internal pressure and cyclic temperature. Compos Struct. 92:1100–1109.
  • Bai Y, Ruan W, Cheng P, Yu B, Xu W. 2014. Buckling of reinforced thermoplastic pipe (RTP) under combined bending and tension. Ships Offshore Struct. 9(5):525–539.
  • Bai Y, Xu W, Cheng P, Wang N, Ruan W. 2014. Behaviour of reinforced thermoplastic pipe (RTP) under combined external pressure and tension. Ships Offshore Struct. 9(4):464–474.
  • Bakaiyan H, Hosseini H, Ameri E. 2009. Analysis of multi-layered filament-wound composite pipes under combined internal pressure and thermomechanical loading with thermal variations. Compos Struct. 88:532–541.
  • Bouchonneau N, Sauvant-Moynot V, Choqueuse D, Grosjean F, Poncet E, Perreux D. 2010. Experimental testing and modelling of an industrial insulated pipeline for deep sea application. J Pet Sci Eng. 73:1–12.
  • Bouchonneau N, Sauvant-Moynot V, Grosjean F, Choqueuse D, Poncet E, Perreux D. 2007. Thermal insulation material for subsea pipelines: benefits of instrumented full scale testing to predict the long term thermo-mechanical behavior. Proceedings of the Offshore Technology Conference — OTC 18679; Houston (TX).
  • Bouhafs M, Sereir Z, Chateauneuf A. 2012. Probabilistic analysis of the mechanical responce of thick composite pipes under internal pressure. Int J Press Vessels Piping. 95:7–15.
  • Choqueuse D, Chomard A, Bucherie C. 2002. Insulation materials for ultra deep seaflow assurance: evaluation of the material properties. Proceedings of the Offshore Technology Conference — OTC 14115; Houston (TX).
  • Chouchaoui CS, Ochoa OO. 1999. Similitude study for laminated cylindrical tube under tension, torsion, bending, internal & external pressure. Part I: governing equations and Part II: scale models. Compos Struct. 44(4):221–236.
  • d'Almeida JRM, de Almeida RC, de Lima WR. 2008. Effect of water absorption of the machanical behavior of fiberglass pipes used for offshore service water. Compos Struct. 83:221–225.
  • Davies P, Carlsson LA. 2009. Delamination of composite cylinders. Major Accomplishments Compos Mater Sandwich Struct. I:67–82.
  • Davies P, Riou L, Mazeas F, Warnier P. 2005. Thermoplastic composite cylinders for underwater applications. J Thermoplast Compos Mater. 18(5):417–443.
  • Deniz M, Karakuzu R. 2012. Seawater effect on impact behaviour of glass-epoxy composite pipes. Composites. 43:1130–1138.
  • Deniz M, Ozdemir O, Ozen M, Karakuzu R. 2013. Failure pressure and impact response of glass-epoxy pipes exposed to seawater. Composites. 53:355–361.
  • Fine T, Sautereau H, Sauvant-Moynot V. 2003. Innovative processing and mechanical properties of high temperature syntactic foams based on a thermoplastic/thermoset matrix. J Mater Sci. 38:2709–2716.
  • Friedrich R. 1999. Composite Materials for Offshore Operations-2 (CMOO-2). In: Wang SS, Williams JG, Lo KH, editors.Houston (TX): American Bureau of Shipping; p. 183–196.
  • Gibson AG. 2000. Composite materials in the offshore industry. Comprehensive Compos Mater. 6:459–478.
  • Grant TS, Bradley WL. 1995. In situ observations in SEM of degradation of graphite/epoxy composite materials due to seawater immersion. J Compos Mater. 29(7):852–867.
  • Grosjean F, Bouchonneau N, Choqueuse D, Sauvant-Moynot V. 2009. Comprehensive analyses of syntactic foam behaviour in deepwater environment. J Mater Sci. 44(6):1462–1468.
  • Gu H. 2009a. Behaviours of glass/fiber unsaturated polyester composites under seawater environment. Mater Des. 30(4):1337–1340.
  • Gu H. 2009b. Dynamic mechanical analysis of the seawater treated glass/polyester composites. Mater Des. 30(7):2774–2777.
  • Guedes RM. 2010. Nonlinear viscoelastic analysis of thick-walled cylindrical composite pipes. Int J Mech Sci. 52:1064–1073.
  • Guz IA. 1998. Composites with interlaminar imperfections: substantiation of the bounds for failure parameters in compression. Compos B. 29(4):343–350.
  • Guz IA, Herrmann KP. 2003. On the lower bounds for critical loads under large deformations in non-linear hyperelastic composites with imperfect interlaminar adhesion. Eur J Mech A/Solids. 22(6):837–849.
  • Guz IA, Rodger AA, Guz AN, Rushchitsky JJ. 2008. Predicting the properties of micro and nanocomposites: from the microwhiskers to bristled nano-centipedes. Philos Trans Royal Soc A. 366(1871):1827–1833.
  • Guz IA, Rushchitsky JJ. 2004. Theoretical description of a debonding mechanism in fibrous micro- and nano-composites. Int Appl Mech. 40(10):1129–1136.
  • Hale JM, Gibson AG. 1998. Coupon tests of fibre reinforced plastics at elevated temperatures in offshore processing environments. J Compos Mater. 32(6):526–543.
  • Hale JM, Gibson AG, Speake SD. 2002. Biaxial failure envelope and creep testing of fibre reinforced plastic pipes in high temperature aqueous environments. J Compos Mater. 36:257–270.
  • Herakovich CT. 1998. Mechanics of fibrous composites. New York (NY): John Wiley and Sons, Inc.
  • Hinton MJ, Kaddour AS, Soden PD, editors. 2004. Failure criteria in fibre reinforced polymer composites: the World-Wide Failure Exercise. Oxford: Elsevier.
  • Hull D, Legg MJ, Spencer B. 1978. Failure of glass/polyester filament wound pipe. Composites. 9:17–24.
  • Kashtalyan M. 2004. Three-dimensional elasticity solution for bending of functionally graded rectangular plates. Eur J Mech A/Solids. 23:853–864.
  • Kashtalyan M, Menshykova M. 2009. Three-dimensional elasticity solution for sandwich panels with a functionally graded core. Compos Struct. 87:36–43.
  • Kawai M, Saito S. 2009. Off-axis strength differential effects in unidirectional carbon/epoxy laminates at different strain rates and predictions of associated failure envelopes. Composites. 40:1632–1649.
  • Kochetkov VA, Maksimov RD. 1996. Water absorption and swelling of glass/epoxy syntactic foams. Mech Compos Mater. 32:61–70.
  • Lekhnitskii SG. 1981. Theory of elasticity of an anisotropic body. Moskow: MIR Publishers.
  • Mally TS, Johnston AL, Chann M, Walker RH, Keller MW. 2013. Performance of a carbon-fibre/epoxy composite for the underwater repair of pressure equipment. Compos Struct. 100:542–547.
  • Menshykova M, Guz IA. 2014. Stress analysis of layered thick-walled composite pipes subjected to bending loading. Int J Mech Sci. 88:289–299.
  • Menshykova MV, Guz IA, Menshykov OV. 2009. A unified computational approach to instability of periodic laminated materials. CMES. 51(3):239–259.
  • Mistry J, Gibson AG, Wu Y-S. 1992. Failure of composite cylinders under combined external pressure and axial loading. Compos Struct. 22:193–200.
  • Natsuki T, Takayanagi H, Tsuda H. 2003. Prediction of bending strength for filament-wound composite pipes. J Reinf Plast Compos. 22(8):695–710.
  • Ochoa OO, Ross GR. 1998. Hybrid composites: models and tests for environmental aging. J Reinf Plast Compos. 17(9):787–799.
  • Ogi K, Takeda N. 1997. Effect of moisture content on nonlinear deformation behavior of CF/epoxy composites. J Compos Mater. 31(6):530–551.
  • Pae KD, Rhee KY. 1995. Effects of hydrostatic pressure on the compressive behavior of thick laminated 450 and 900 unidirectional graphite-fiber/epoxy-matrix composites. Compos Sci Technol. 53(3):281–287.
  • Rhee KY, Ha SR, Park SJ, Kim HJ, Jung DH. 2006. Fracture behavior of seawater-absorbed carbon/epoxy laminated composites in the hydrostatic pressure condition. Mater Sci Eng A. 419:209–213.
  • Rhee KY, Lee SM, Park SJ. 2004. Effect of hydrostatic pressure on the mechanical behavior of seawater-absorbed carbon/epoxy composite. Mater Sci Eng A. 384:308–313.
  • Rhee KY, Pae KD. 1995. Effects of hydrostatic pressure on the compressive properties of laminated, 00 unidirectional, graphite fiber/epoxy matrix thick-composite. J Compos Mater. 29(10):1295–1307.
  • Rodriguez DE, Ochoa OO. 2004. Flexural response of spoolable composite tubulars: an integrated experimental and computational assessment. Compos Sci Technol. 64(13–14):2075–2088.
  • Rosenow MWK. 1984. Wind angle effects in glass fiber-reinforced polyester filament wound pipes. Composites. 15:144–52.
  • Russell AJ, Street KN. 1989. Moisture and temperature effects on the Mode I and Mode II interlaminar fracture of graphite/epoxy composites. Key Eng Mater. 37:199–208.
  • Sauvant-Moynot V, Duval S, Gimenez N, Kittel J. 2007. Hot wet aging of glass syntactic foam coating monitored by impedance spectroscopy. Prog Org Coat. 59:179–185.
  • Sauvant-Moynot V, Gimenez N, Sautereau H. 2006. Hydrolytic ageing of syntactic foams for thermal insulation in deep water: degradation mechanisms and water uptake model. J Mater Sci. 41(13):4047–4054.
  • Shamsuddoha M, Islam MM, Aravinthan T, Manalo A, Lau K. 2013. Effectiveness of using fibre-reinforced polymer composites for underwater steel pipeline repairs. Compos Struct. 100:40–54.
  • Shin ES, Pae KD. 1992a. Effects of hydrostatic pressure on in-plane shear properties of graphite/epoxy composites. J Compos Mater. 26(6):828–868.
  • Shin ES, Pae KD. 1992b. Effects of hydrostatic pressure on the torsional shear behavior of graphite/epoxy composites. J Compos Mater. 26(4):462–485.
  • Sloan FE, Seymour RJ. 1992. The effect of seawater exposure on mode I interlaminar fracture and crack growth in graphite epoxy. J Compos Mater. 26(18):2655–2673.
  • Soden PD, Kitching R, Tse PC. 1989. Experimental failure stresses for ±550 filament wound glass fiber reinforced plastic tubes under biaxial loads. Composites. 20:125–135.
  • Song B, Chen W, Yanagita T, Frew DJ. 2005. Temperature effects on dynamic compressive behavior of an epoxy syntactic foam. Compos Struct. 67:289–298.
  • Soutis C, Guz IA. 2001. Predicting fracture of layered composites caused by internal instability. Composites. 32(9):1243–1253.
  • Spencer B, Hull D. 1978. Effect of winding angle on the failure of filament wound pipe. Composites. 9:263–271.
  • Starbuck JM, Eberle C. 2000. Analytical solution for the design of spoolable composite tubing. Third International Conference on Composite Materials for Offshore Operations; 2000 Oct 31–Nov 2; Houston (TX).
  • Taheri F. 2013. Advanced fiber-reinforced polymer (FRP) composites for the manufacture and rehabilitation of pipes and tanks in the oil and gas industry. In: Bai J, editor. Advanced fiber-reinforced polymer (FRP) composites for structural applications. Sawston: Woodhead Publishing Limited. p. 662–704.
  • Togo M, Nakamura T, Takahashi K. 2000. Effects of moisture absorption on the dynamic interlaminar fracture toughness of carbon/epoxy composites. J Compos Mater. 34(8), 630–648.
  • Uemura M, Fukunaga H. 1981. Probabilistic burst strength of filament wound cylinders under internal pressure. J Compos Mater. 15:462–480.
  • Watkins L. 1988. 7th International Conference on Offshore Mechanics and Arctic Engineering; Houston (TX).
  • Weitsman YJ. 1998. Effects of fluids on polymeric composites – a review. Knoxville, TX: University of Tennessee. Report MAES98-5.0-CM.
  • Weitsman YJ, Elahi M. 2000. Effects of fluids on the deformation, strength and durability of polymeric composites - An overview. Mech Time-Dependent Mater. 4(2):107–126.
  • Wild PM, Vickers GW. 1997. Analysis of filament-wound cylindrical shells under combined centrifugal, pressure and axial loading. Compos Part A. 28(1):47–55.
  • Xia M, Kemmochi K, Takayanagi H. 2001. Analysis of filament-wound fibre-reinforced sandwich pipe under combined internal pressure and thermomechanical loading. Compos Struct. 51:273–283.
  • Xia M, Takayanagi H, Kemmochi K. 2001. Analysis of multi-layered filament-wound composite pipes under internal pressure. Compos Struct. 53:483–491.
  • Xia M, Takayanagi H, Kemmochi K. 2002. Bending behaviour of filament-wound fiber-reinforced sandwich pipes. Compos Struct. 56:201–210.
  • Zinoviev PA, Tsvetkov SV, Kulish GG, van den Berg RW, Van Schepdael LJMM. 2001. The behavior of high-strength unidirectional composites under tension with superposed hydrostatic pressure. Compos Sci Technol. 61(8):1151–1161.

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.