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Research Article

Self-healing composites structure using multiple through-thickness microvascular channels

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Pages 1-18 | Received 27 Jan 2020, Accepted 03 Mar 2020, Published online: 22 Mar 2020

References

  • Blaiszik BJ, Kramer SL, Olugebefola SC, et al. Self-healing polymers and composites. Annu Rev Mater Res. 2010;40:179–211.
  • Cohades A, Branfoot C, Rae S, et al. Progress in self‐healing fiber‐reinforced polymer composites. Adv Mater Interfaces. 2018;5(17):1800177.
  • Voß M, Ilse D, Hillger W, et al. Numerical simulation of the propagation of Lamb waves and their interaction with defects in C-FRP laminates for non-destructive testing. Adv Compos Mater. 2019;1–19. DOI:10.1080/09243046.2019.1692273
  • Tanabi H, Erdal M. Development of strain monitoring system for glass fiber reinforced composites via embedded electrically conductive pathways. Adv Compos Mater. 2019;28(6):653–673.
  • Toyama N, Yamamoto T, Urabe K, et al. Ultrasonic inspection of adhesively bonded CFRP/aluminum joints using pulsed laser scanning. Adv Compos Mater. 2019;28(1):27–35.
  • White SR, Sottos NR, Geubelle PH, et al. Autonomic healing of polymer composites. Nature. 2001;409(6822):794–797.
  • Patel AJ, Sottos NR, Wetzel ED, et al. Autonomic healing of low-velocity impact damage in fiber-reinforced composites. Compos Part A Appl Sci Manuf. 2010;41(3):360–368.
  • Raimondo M, Longo P, Mariconda A, et al. Healing agent for the activation of self-healing function at low temperature. Adv Compos Mater. 2015;24(6):519–529.
  • Melo JDD, Barbosa APC, Costa MCB, et al. Encapsulation of solvent into halloysite nanotubes to promote self-healing ability in polymers. Adv Compos Mater. 2014;23(5–6):507–519.
  • Murphy EB, Bolanos E, Schaffner-Hamann C, et al. Synthesis and characterization of a single-component thermally remendable polymer network: staudinger and stille revisited. Macromolecules. 2008;41(14):5203–5209.
  • Chen X, Dam MA, Ono K, et al. A thermally re-mendable cross-linked polymeric material. Science. 2002;295(5560):1698–1702.
  • Saeed MU, Li BB, Chen ZF. Mechanical effects of microchannels on fiber-reinforced composite structure. Compos Struct. 2016;154:129–141.
  • Patrick JF, Hart KR, Krull BP, et al. Continuous self‐healing life cycle in vascularized structural composites. Adv Mater. 2014;26(25):4302–4308.
  • Toohey KS, Sottos NR, Lewis JA, et al. Self-healing materials with microvascular networks. Nat Mater. 2007;6(8):581–585.
  • Cullinan JF, Velut P, Michaud V, et al. In-situ repair of composite sandwich structures using cyanoacrylates. Compos Part A Appl Sci Manuf. 2016;87:203–211.
  • Pang JW, Bond IP. A hollow fibre reinforced polymer composite encompassing self-healing and enhanced damage visibility. Compos Sci Technol. 2005;65(11–12):1791–1799.
  • Dong H, Esser-Kahn AP, Thakre PR, et al. Chemical treatment of poly (lactic acid) fibers to enhance the rate of thermal depolymerization. ACS Appl Mater Interfaces. 2012;4(2):503–509.
  • Luterbacher R, Trask RS, Bond IP. Static and fatigue tensile properties of cross-ply laminates containing vascules for self-healing applications. Smart Mater Struct. 2015;25(1):015003.
  • Norris CJ, White JAP, McCombe G, et al. Autonomous stimulus triggered self-healing in smart structural composites. Smart Mater Struct. 2012;21(9):094027.
  • Sakurayama N, Minakuchi S, Takeda N. Sensing and healing of disbond in composite stiffened panel using hierarchical system. Compos Struct. 2015;132:833–841.
  • Minakuchi S, Sun D, Takeda N. Hierarchical system for autonomous sensing-healing of delamination in large-scale composite structures. Smart Mater Struct. 2014;23(11):115014.
  • Russell, A. J., and Bowers, C. P. Repairing Delaminations with Low Viscosity Epoxy Resins. Rep. no. AGARD-CP-530-PAP-25. Victoria BC (CAN): Defence Research Establishment Pacific, 1992.
  • Hall J, Qamar IPS, Rendall TCS, et al. A computational model for the flow of resin in self-healing composites. Smart Mater Struct. 2015;24(3):037002.
  • Luterbacher R, Coope TS, Trask RS, et al. Vascular self-healing within carbon fibre reinforced polymer stringer run-out configurations. Compos Sci Technol. 2016;136:67–75.
  • Trask RS, Williams GJ, Bond IP. Bioinspired self-healing of advanced composite structures using hollow glass fibres. J Royal Soc Interface. 2007;4(13):363–371.
  • Minakuchi S, Takai M, Otake H, et al. Rapid repair concept for CFRP structures monitored by structural health monitoring systems: on uncertainty of detecteddamage information materials system. 2012;30:47–51.
  • Minakuchi S, Yokota K, Takeda N. Ultra-lightweight composite stiffened panel designed based on shm and rapid repair system. Struct Health Monit. 2015;2015.

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