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Original Articles

Interphase analysis of hierarchical composites via transmission electron microscopy

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Pages 849-859 | Received 06 Dec 2016, Accepted 22 Feb 2017, Published online: 05 Mar 2017

References

  • Sharpe LH. The interphase in adhesion. J Adhes. 1972;4:51–64.10.1080/00218467208072210
  • Manson JA, Sperling LH. Polymer blends and composites. Boston (MA): Springer; 1976.10.1007/978-1-4615-1761-0
  • Ishida H, Koenig JL. The reinforcement mechanism of fiber-glass reinforced plastics under wet conditions: a review. Polym Eng Sci. 1978;18:128–145.10.1002/(ISSN)1548-2634
  • Miller JD, Ishida H. Adhesive – adherend interface and interphase BT – fundamentals of adhesion. In: Lee L-H, editor. Boston (MA): Springer; 1991. p. 291–324.
  • Jancar J. Review of the role of the interphase in the control of composite performance on micro- and nano-length scales. J Mater Sci. 2008;43:6747–6757.10.1007/s10853-008-2692-0
  • Karger-Kocsis J, Mahmood H, Pegoretti A. Recent advances in fiber/matrix interphase engineering for polymer composites. Prog Mater Sci. 2015;73:1–43.10.1016/j.pmatsci.2015.02.003
  • Ishida H. A review of recent progress in the studies of molecular and microstructure of coupling agents and their functions in composites, coatings and adhesive joints. Polym Compos. 1984;5:101–123.10.1002/(ISSN)1548-0569
  • Ishida H, Koenig JL. Fourier transform infrared spectroscopic study of the silane coupling agent/porous silica interface. J Colloid Interface Sci. 1978;64:555–564.10.1016/0021-9797(78)90398-3
  • Culler SR, Ishida H, Koenig JL. Nondestructive FT-IR sampling technique to study glass fiber composite interfaces. Appl Spectrosc. 1984;38:1–7.10.1366/0003702844554341
  • Culler SR, Ishida H, Koenig JL. FT-IR characterization of the reaction at the silane/matrix resin interphase of composite materials. J Colloid Interface Sci. 1986;109:1–10.10.1016/0021-9797(86)90275-4
  • Hoh K-P, Ishida H, Koenig JL. Spectroscopic studies of the gradient in the silane coupling agent/matrix interface in fiberglass-reinforced epoxy. Polym Compos. 1988;9:151–157.10.1002/(ISSN)1548-0569
  • Garton A. FT-IR of reinforced plastics. Proceedings SPIE 0553. Fourier and computerized infrared spectroscopy; 1985 Dec 20; Ottawa; 1985. p. 190–191.
  • Garton A, Daly JH. Characterization of the aramid: epoxy and carbon: epoxy interphases. Polym Compos. 1985;6:195–200.10.1002/(ISSN)1548-0569
  • Ikuta N, Yanagawa A, Suzuki Y, et al. Investigation of resin interphase produced near silane-treated glass fiber in vinyl ester resin. Compos Interfaces. 2001;7:511–515.
  • Díez-Pascual AM, Gómez-Fatou MA, Ania F, et al. Nanoindentation assessment of the interphase in carbon nanotube-based hierarchical composites. J Phys Chem C. 2012;116:24193–24200.10.1021/jp309067e
  • Hodzic A, Stachurski ZH, Kim JK. Nano-indentation of polymer – glass interfaces part I. Experimental and mechanical analysis. Polymer. 2000;41:6895–6905.
  • Hodzic A, Kim JK, Stachurski ZH. Nano-indentation and nano-scratch of polymer glass interfaces II model of interphases in water. Polymer. 2001;42:5701–5710.10.1016/S0032-3861(01)00029-5
  • Hodzic A, Kalyanasundaram S, Kim JK, et al. Application of nano-indentation, nano-scratch and single fibre tests in investigation of interphases in composite materials. Micron. 2001;32:765–775.10.1016/S0968-4328(00)00084-6
  • Kim J-K, Sham M-L, Wu J. Nanoscale characterisation of interphase in silane treated glass fibre composites. Compos Part A Appl Sci Manuf. 2001;32:607–618.10.1016/S1359-835X(00)00163-9
  • Young TJ, Monclus M, Broughton WR, et al. Observations on interphase characterisation in polymer composites by nanoscale indentation and use of AFM cantilever torsion to identify measurement artefacts. Plast Rubber Compos. 2012;41:240–246.
  • Griswold C, Cross WM, Kjerengtroen L, et al. Interphase variation in silane-treated glass-fiber-reinforced epoxy composites. J Adhes Sci Technol. 2005;19:279–290.
  • Gohil PP, Shaikh AA. Analytical investigation and comparative assessment of interphase influence on elastic behavior of fiber reinforced composites. J Reinf Plast Compos. 2009;29:685–699.
  • Belec L, Nguyen TH, Nguyen DL, et al. Comparative effects of humid tropical weathering and artificial ageing on a model composite properties from nano- to macro-scale. Compos Part A Appl Sci Manuf. 2015;68:235–241.10.1016/j.compositesa.2014.09.028
  • Gu Y, Li M, Wang J, et al. Characterization of the interphase in carbon fiber/polymer composites using a nanoscale dynamic mechanical imaging technique. Carbon 2010;48:3229–3235.10.1016/j.carbon.2010.05.008
  • Li M, Wang J, Zhang Z, et al. Characterization of the interphase width in carbon fibre reinforced epoxy resin composites. Proceedings of the 17th ICCM. Edinburgh, United Kingdom. 2009. p. 1–8.
  • Wu Q, Li M, Gu Y, et al. Imaging the interphase of carbon fiber composites using transmission electron microscopy: preparations by focused ion beam, ion beam etching, and ultramicrotomy. Chin J Aeronaut. 2015;28:1529–1538.10.1016/j.cja.2015.05.005
  • Uribe BEB, Carvalho AJF, Tarpani JR. Low-cost, environmentally friendly route to produce glass fiber-reinforced polymer composites with microfibrillated cellulose interphase. J Appl Polym Sci. 2016;44183:1–9.
  • Díez-Pascual AM, Gómez-Fatou MA, Ania F, et al. Nanoindentation in polymer nanocomposites. Prog Mater Sci. 2015;67:1–94.10.1016/j.pmatsci.2014.06.002
  • Langlois C, Benzo P, Arenal R, et al. Fully crystalline faceted Fe–Au core-shell nanoparticles. Nano Lett. 2015;15:5075–5080.10.1021/acs.nanolett.5b02273
  • Deepak FL, Mayoral A, Arenal R, editors. Advanced transmission electron microscopy. Cham: Springer International Publishing; 2015.
  • Carvalho AJ. Nanocelluloses from eucalyptus wood pulp. J Renew Mater. 2014;2:118–122.10.7569/JRM.2014.634108
  • Saito T, Nishiyama Y, Putaux J-L, et al. Homogeneous suspensions of individualized microfibrils from TEMPO-catalyzed oxidation of native cellulose. Biomacromolecules. 2006;7:1687–1691.10.1021/bm060154s
  • Poorzeinolabedin M, Parnas L, Dashatan SH. Resin infusion under flexible tooling process and structural design optimization of the complex composite part. Mater Des. 2014;64:450–455.10.1016/j.matdes.2014.08.008
  • Uribe BEB, Chiromito EMS, Carvalho AJF, et al. Low-cost, environmentally friendly route for producing CFRP laminates with microfibrillated cellulose interphase. Express Polym Lett. 2017;11:47–59.10.3144/expresspolymlett.2017.6
  • Qian H, Greenhalgh ES, Shaffer MSP, et al. Carbon nanotube-based hierarchical composites: a review. J Mater Chem. 2010;20:4751–4762.10.1039/c000041h
  • Habibi Y, Chanzy H, Vignon MR. TEMPO-mediated surface oxidation of cellulose whiskers. Cellulose. 2006;13:679–687.10.1007/s10570-006-9075-y
  • Saito T, Kimura S, Nishiyama Y, et al. Cellulose nanofibers prepared by TEMPO-mediated oxidation of native cellulose. Biomacromolecules. 2007;8:2485–2491.10.1021/bm0703970
  • Li ZK, Fu HM, Sha PF, et al. Atomic interaction mechanism for designing the interface of W/Zr-based bulk metallic glass composites. Sci Rep. 2015;5:8967.10.1038/srep08967
  • Jeanguillaume C, Colliex C. Spectrum-image: the next step in EELS digital acquisition and processing. Ultramicroscopy. 1989;28:252–257.10.1016/0304-3991(89)90304-5
  • Arenal R, de la Peña F, Stéphan O, et al. Extending the analysis of EELS spectrum-imaging data, from elemental to bond mapping in complex nanostructures. Ultramicroscopy. 2008;109:32–38.10.1016/j.ultramic.2008.07.005

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