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Research Article

Friction and Wear Characteristics of Additive Manufactured CNT-Reinforced HDPE Composites in Dry Contact

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Pages 1043-1056 | Received 04 May 2023, Accepted 21 Sep 2023, Published online: 09 Oct 2023

References

  • Gao, W., et al. (2015), “The Status, Challenges, and Future of Additive Manufacturing in Engineering,” Computer-Aided Design, 69, pp 65–89. doi:10.1016/j.cad.2015.04.001
  • Beaman, J. J., Bourell, D. L., Seepersad, C. C., and Kovar, D. (2020), “Additive Manufacturing Review: Early Past to Current Practice,” Journal of Manufacturing Science and Engineering, 142, p 110812. doi:10.1115/1.4048193
  • ASTM (2010), “Standard Terminology for Additive Manufacturing Technologies,” ASTM International, West Conshohocken, PA, F2792–12a.
  • Srivastava, M., Rathee, S., Patel, V., Kumar, A., and Koppad, P. G. (2022), “A Review of Various Materials for Additive Manufacturing: Recent Trends and Processing Issues,” Journal of Materials Research and Technology, 21, pp 2612–2641. doi:10.1016/j.jmrt.2022.10.015
  • Dave, H. K., and Patel, S. T. (2021), “Introduction to Fused Deposition Modelling Based 3D Printing Process.” In Fused Deposition Modelling Based 3D Printing, ed. H. K. Dave and J.P. Davim, pp 1–21.Springer Nature: Switzerland.
  • Wang, X., Jiang, M., Zhou, Z., Gou, J., and Hui, D. (2017), “3D Printing of Polymer Matrix Composites: A Review and Prospective,” Composites Part B: Engineering, 110, pp 442–458. doi:10.1016/j.compositesb.2016.11.034
  • Fu, J., and Ma, Y. (2016), “Mold Modification Methods to Fix Warpage Problems for Plastic Molding Products,” Computer-Aided Design & Applications, 13, pp 138–151. doi:10.1080/16864360.2015.1059203
  • Koffi, A., Toubal, L., Jin, M., Koffi, D., Döpper, F., Schmidt, H.-W., and Neuber, C. (2015), “Extrusion-Based 3D Printing With High-Density Polyethylene Birch-Fiber Composites,” Journal of Applied Polymer Science, 139, p e51937. doi:10.1002/app.51937
  • Dalloul, F., Mietner, J., and Navarro, J. (2022), “Production and 3D Printing of a Nanocellulose-Based Composite Filament Composed of Polymer-Modified Cellulose Nanofibrils and High-Density Polyethylene (HDPE) for the Fabrication of 3D Complex Shapes,” Fibers, 10, p 91. doi:10.3390/fib10100091
  • Kim, H., Wang, M., Lee, S. K., Kang, J., Nam, J., Ci, L., and Suhr, J. (2017), “Tensile Properties of Millimeter-Long Multi-Walled Carbon Nanotubes,” Scientific Reports, 7 article9512. doi:10.1038/s41598-017-10279-0
  • Kashyap, K. T., Koppad, P. G., Puneeth, K. B., Ram, H. R. A., and Mallikarjuna, H. M. (2011), “Elastic Modulus of Multiwalled Carbon Nanotubes Reinforced Aluminium Matrix Nanocomposite—A Theoretical Approach,” Computational Materials Science, 50, pp 2493–2495. doi:10.1016/j.commatsci.2011.03.032
  • Koppad, P. G., Singh, V. K., Ramesh, C. S., Koppad, R. G., and Kashyap, K. T. (2013), “Metal Matrix Nanocomposites Reinforced With Carbon Nanotubes.” In Advanced Carbon Materials and Technology, ed. A. Tiwari and S. K. Shukla, pp 331–376. John Wiley & Sons: Hoboken, NJ.
  • Stan, F., Stanciu, N., and Fetecau, C. (2019), “On the 3D Printability of Multi-Walled Carbon Nanotube/High Density Polyethylene Composites,” Proceedings of the ASME 2019 14th International Manufacturing Science and Engineering Conference, Vol. 2, Processes; Materials. Erie, Pennsylvania, June 10–14. V002T04A004.
  • Kumar, S., Ramesh, M. R., and Doddamani, M. (2022), “Compressive Behavior of 3D Printed MWCNT/HDPE Nanocomposites,” Composites Communications, 35, p 101317. doi:10.1016/j.coco.2022.101317
  • Pan, S., Shen, H., and Zhang, L. (2021), “Effect of Carbon Nanotube on Thermal, Tribological and Mechanical Properties of 3D Printing Polyphenylene Sulfide,” Additive Manufacturing, 47, p 102247. doi:10.1016/j.addma.2021.102247
  • Arif, M. F., Alhashmi, H., Varadarajan, K. M., Koo, J. H., Hart, A. J., and Kumar, S. (2020), “Multifunctional Performance of Carbon Nanotubes and Graphene Nanoplatelets Reinforced PEEK Composites Enabled via FFF Additive Manufacturing,” Composites Part B, 184, p 107625. doi:10.1016/j.compositesb.2019.107625
  • Chand, N., Sharma, P., and Fahim, M. (2010), “Correlation of Mechanical and Tribological Properties of Organosilane Modified Cenosphere Filled High Density Polyethylene,” Materials Science and Engineering A, 527, pp 5873–5878. doi:10.1016/j.msea.2010.06.022
  • Salem, A., Guezmil, M., Bensalah, W., and Mezlini, S. (2019), “Tribological Behavior of Molybdenum Disulphide Particles–High Density Polyethylene Composite,” Materials Research Express, 6, p 075402. doi:10.1088/2053-1591/ab10d1
  • Maro, M. D., Malucelli, G., and Faga, M. G. (2021), “High Density Polyethylene Composites Containing Alumina-Toughened Zirconia Particles: Mechanical and Tribological Behavior,” Composites Part B, 217, p 108892. doi:10.1016/j.compositesb.2021.108892
  • Huang, H., Jiang, G., and Mao, S. (2006), “Microstructure and On-Line Shear Viscosity of PP/Nano-CaCO3 Composites Prepared by Twin-Screw Extruder,” Journal of Materials Science, 41, pp 4985–4988. doi:10.1007/s10853-006-0128-2
  • Yan, X., et al. (2017), “Effect of High-Shear Mixing by Twin-Screw Extruder on the Dispersion and Homogeneity of Polyacrylonitrile/Carbon Nanotube Composite Solution,” Polymer Composites, 38, pp 719–726. doi:10.1002/pc.23631
  • Schirmeister, C. G., Hees, T., Licht, E. H., and Mulhaupt, R. (2019), “3D Printing of High Density Polyethylene by Fused Filament Fabrication,” Additive Manufacturing, 28, pp 152–159. doi:10.1016/j.addma.2019.05.003
  • Spoerk, M., Savandaiah, C., Arbeiter, F., Sapkota, J., and Holzer, C. (2019), “Optimization of Mechanical Properties of Glass-Spheres-Filled Polypropylene Composites for Extrusion-Based Additive Manufacturing,” Polymer Composites, 40, pp 638–651. doi:10.1002/pc.24701
  • Wu, Y., Dong, C., Yuan, C., Bai, X., Zhang, L., and Tian, Y. (2021), “MWCNTs Filled High-Density Polyethylene Composites to Improve Tribological Performance,” Wear, 477 (2021) p 203776. doi:10.1016/j.wear.2021.203776
  • Azam, M. U., and Samad, M. A. (2018), “Tribological Evaluation of a UHMWPE Hybrid Nanocomposite Coating Reinforced With Nanoclay and Carbon Nanotubes Under Dry Conditions,” Journal of Tribology, 140, p 051304. doi:10.1115/1.4039956
  • Liu, T., Li, B., Lively, B., Eyler, A., and Zhong, W. (2014), “Enhanced Wear Resistance of High-Density Polyethylene Composites Reinforced by Organosilane-Graphitic Nanoplatelets,” Wear, 309, pp 43–51. doi:10.1016/j.wear.2013.10.013
  • Lee, S. M., Shin, M. W., and Jang, H. (2014), “Effect of Carbon-Nanotube Length on Friction and Wear of Polyamide 6,6 Nanocomposites,” Wear, 320, pp 103–110. doi:10.1016/j.wear.2014.08.011
  • Xu, S., et al. (2012), “Wear and Friction of Carbon Nanofiber-Reinforced HDPE Composites,” Journal of Tribology, 134, p 041602. doi:10.1115/1.4007016
  • Cardoso, P. H., Oliveira, M. F., Oliveira, M. G., and Thire, R. M. (2020), “3D Printed Parts of Polylactic Acid Reinforced With Carbon Black and Alumina Nanofillers for Tribological Applications,” Macromolecular Symposia, 394, p 2000155. doi:10.1002/masy.202000155
  • Bobbili, R., and Madhu, V. (2016), “Sliding Wear Behavior of E-Glass-Epoxy/MWCNT Composites: An Experimental Assessment,” Engineering Science and Technology, 19, pp 8–14. doi:10.1016/j.jestch.2015.07.008
  • Lin, L., Zhao, Y., Hua, C., and Schlarb, A. K. (2021), “Effects of the Velocity Sequences on the Friction and Wear Performance of PEEK‑Based Materials,” Tribology Letters, 69, p 68. doi:10.1007/s11249-021-01452-8

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