975
Views
78
CrossRef citations to date
0
Altmetric
Original Articles

Experimental investigations on fused deposition modelling of polymer-layered silicate nanocomposite

&
Pages 109-121 | Received 25 Feb 2016, Accepted 28 Mar 2016, Published online: 27 Apr 2016

References

  • Alexandre, M., and Dubois, P., 2000. Polymer-layered silicate nanocomposites: preparation properties and uses of a new class of materials. Materials Science and Engineering: R: Reports, 28, 1–63. doi: 10.1016/S0927-796X(00)00012-7
  • Azhari, A., Toyserkani, E., and Villain, C., 2015. Additive manufacturing of graphene-hydroxyapatite nanocomposite structures. International Journal of Applied Ceramic Technology, 12, 8–17. doi: 10.1111/ijac.12309
  • Bellehumeur, C., et al. 2004. Modeling of bond formation between polymer filaments in the fused deposition modeling process. Journal of Manufacturing Processes, 6 (2), 170–178. doi: 10.1016/S1526-6125(04)70071-7
  • Chua, C.K., Leong, K.F., and Lim, C.S., 2003. Rapid prototyping: principles and applications. 2nd ed. Singapore: World Scientific.
  • Ciocca, L., et al. 2009. CAD/CAM and rapid prototyped scaffold construction for bone regenerative medicine and surgical transfer of virtual planning: a pilot study. Computerized Medical Imaging and Graphics, 33, 58–62. doi: 10.1016/j.compmedimag.2008.10.005
  • Fornes, T.D., and Paul, D.R., 2003. Formation and properties of nylon 6 nanocomposites. Polímeros, 13, 212–217.
  • Francis, V., and Jain, P.K., 2015. Advances in nanocomposite for additive manufacturing. International Journal of Rapid Manufacturing, 5 (3/4), 215–233. doi: 10.1504/IJRAPIDM.2015.074804
  • Gaikwad, S., et al. 2012. Electrical and mechanical properties of PA11 blended with nanographene platelets using industrial twin-screw extruder for selective laser sintering. Journal of Composite Materials, 47, 2973–2986. doi: 10.1177/0021998312460560
  • Giannelis, Emmanuel P. 1998. Polymer-layered silicate nanocomposite: synthesis, properties and applications. Applied Organometallic Chemistry, 12, 675–680. doi: 10.1002/(SICI)1099-0739(199810/11)12:10/11<675::AID-AOC779>3.0.CO;2-V
  • Gu, D., et al. 2012. Selective laser melting of TiC/Ti bulk nanocomposites: influence of nanoscale reinforcement. Scripta Materialia, 67, 185–188. doi: 10.1016/j.scriptamat.2012.04.013
  • Ho, M., et al. 2006. Mechanical properties of epoxy-based composites using nanoclays. Composite Structures, 75, 415–421. doi: 10.1016/j.compstruct.2006.04.051
  • Jain, P.K., Pandey, P.M., and Rao, P.V.M., 2009. Selective laser sintering of clay-reinforced polyamide. Polymer Composites 31, 732–743.
  • Koo, J.H., 2006. Polymer nanocomposite processing, characterization and applications. New York: McGraw-Hill.
  • Koo, J.H., et al. 2006. Polyamide nanocomposites for selective laser sintering. Solid Freeform Fabrication Symposium Proceedings, 392–409.
  • Lebaron, P.C., Wang, Z., and Pinnavaia, T.J., 1999. Polymer-layered silicate nanocomposites: an overview. Applied Clay Science, 15, 11–29. doi: 10.1016/S0169-1317(99)00017-4
  • Liu, X., and Bertilsson, H., 1999. Recycling of ABS and ABS / PC Blends. Journal of Applied Polymer Science, 74, 510–515. doi: 10.1002/(SICI)1097-4628(19991017)74:3<510::AID-APP5>3.0.CO;2-6
  • Masood, S.H., and Song, W.Q., 2004. Development of new metal/polymer materials for rapid tooling using fused deposition modelling. Materials & Design, 25, 587–594. doi: 10.1016/j.matdes.2004.02.009
  • Mittal, V., 2009. Polymer layered silicate nanocomposites: a review. Materials, 2, 992–1057. doi: 10.3390/ma2030992
  • Nikzad, M., Masood, S.H., and Sbarski, I., 2011. Thermo-mechanical properties of a highly filled polymeric composites for Fused Deposition Modeling. Materials & Design, 32, 3448–3456. doi: 10.1016/j.matdes.2011.01.056
  • Ning, F., et al. 2015. Additive manufacturing of carbon fiber reinforced thermoplastic composites using fused deposition modeling. Composites Part B: Engineering, 80, 369–378. doi: 10.1016/j.compositesb.2015.06.013
  • Paul, D.R., and Robeson, L.M., 2008. Polymer nanotechnology: nanocomposites. Polymer, 49, 3187–3204. doi: 10.1016/j.polymer.2008.04.017
  • Pavlidou, S., and Papaspyrides, C.D., 2008. A review on polymer-layered silicate nanocomposites. Progress in Polymer Science, 33, 1119–1198. doi: 10.1016/j.progpolymsci.2008.07.008
  • Peydro, M.A., et al. 2014. Study of the mechanical properties of recycled abs and recovery through mixing with SEBS. Annals of Oradea University, XXIII (XIII), 2014/1, 1–4.
  • Pokluda, O., Bellehumeur, C.T., and Vlachopoulos, J., 1997. Modification of Frenkel's model for sintering. American Institute of Chemical Engineers Journal, 43, 3253–3256. doi: 10.1002/aic.690431213
  • Prashantha, K., et al. 2008. Multi-walled carbon nanotube filled polypropylene nanocomposites based on masterbatch route: Improvement of dispersion and mechanical properties through PP-g-MA addition. eXPRESS Polymer Letters, 2 (10), 735–745. doi: 10.3144/expresspolymlett.2008.87
  • Prashantha, K., et al. 2009. Masterbatch-based multi-walled carbon nanotube filled polypropylene nanocomposites: Assessment of rheological and mechanical properties. Composites Science and Technology, 69 (2009), 1756–1763. doi: 10.1016/j.compscitech.2008.10.005
  • Rajesh, J.J., et al. 2012. Effect of injection molding parameters on nanofillers dispersion in masterbatch based PP-clay nanocomposites. eXPRESS Polymer Letters, 6 (3), 237–248. doi: 10.3144/expresspolymlett.2012.26
  • Rosenzweig, D.H., et al. 2015. 3D-Printed ABS and PLA Scaffolds for Cartilage and Nucleus Pulposus Tissue Regeneration. International Journal of Molecular Sciences, 16, 15118–15135. doi: 10.3390/ijms160715118
  • Shishavan, S.M., Azdast, T., and Ahmadi, S.R., 2014. Investigation of the effect of nanoclay and processing parameters on the tensile strength and hardness of injection molded acrylonitrile butadiene styrene – organoclay nanocomposites. Materials & Design, 58, 527–534. doi: 10.1016/j.matdes.2014.02.014
  • Shofner, M.L., Lozano, K., and Rodrı, F.J., 2003. Nanofiber-reinforced polymers prepared by fused deposition modeling. Journal of Applied Polymer Science, 89, 3081–3090. doi: 10.1002/app.12496
  • Singh, P., and Ghosh, A.K., 2014. Torsional tensile and structural properties of acrylonitrile – butadiene – styrene clay nanocomposites. Materials and Design, 55, 137–145. doi: 10.1016/j.matdes.2013.09.036
  • Singh, R., and Singh, S., 2014. Development of nylon based FDM filament for rapid tooling application. Journal of The Institution of Engineers (India): Series C, 95, 103–108. doi: 10.1007/s40032-014-0108-2
  • Sinha Ray, S., and Okamoto, M., 2003. Polymer/layered silicate nanocomposites: A review from preparation to processing. Progress in Polymer Science, 28, 1539–1641. doi: 10.1016/j.progpolymsci.2003.08.002
  • Sun, Q., et al. 2008. Effect of processing conditions on the bonding quality of FDM polymer filaments. Rapid Prototyping Journal, 14 (2), 72–80. doi: 10.1108/13552540810862028
  • Taufik, M., and Jain, P.K., 2015. A study of build edge profile for prediction of surface roughness in Fused Deposition Modelling. ASME Journal of Manufacturing Science and Engineering. doi:10.1115/1.4032193.
  • Too, M.H., et al. 2002. Investigation of 3D non-random porous structures by fused deposition modelling. International Journal of Advanced Manufacturing Technology, 19, 217–223.
  • Vaia, R.A., and Giannelis, E.P., 1997. Polymer melt intercalation in organically-modified layered silicates: model predictions and experiment. Macromolecules, 30, 8000–8009. doi: 10.1021/ma9603488
  • Wahab, M.S., et al. 2009. Development of polymer nanocomposites for rapid prototyping process. Proceedings of the World Congress on Engineering, London, UK, II, 1–6.
  • Yan, C., et al. 2011a. Preparation, characterisation and processing of carbon fibre/polyamide-12 composites for selective laser sintering. Composites Science and Technology, 71, 1834–1841. doi: 10.1016/j.compscitech.2011.08.013
  • Yan, C.Z., et al. 2011b. An organically modified montmorillonite/nylon-12 composite powder for selective laser sintering. Rapid Prototyping Journal, 17, 28–36. doi: 10.1108/13552541111098608
  • Zhong, W., et al. Short fiber reinforced composites for fused deposition modeling. Materials Science and Engineering: A, 301, 125–130. doi: 10.1016/S0921-5093(00)01810-4

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.