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Selected publications

  • Saluja, A.*, Xie, J.*, Fayazbakhsh, K., (2020) A closed-loop in-process warping detection system for fused filament fabrication using convolutional neural networks. Journal of Manufacturing Processes. 58: 407-15 (PDF fileDownload, opens in new window).
  • Khan, S.*, Arian Nik, M., Fayazbakhsh, K., Fawaz, Z., (2020) Continuous curvilinear variable stiffness design for improved strength of a panel with a cutout, Mechanics of Advanced Materials and Structures. August 2020 (PDF fileDownload, opens in new window).
  • Rahimizadeh, A.*, Fayazbakhsh, K., Lessard, L. (2020) Tensile properties and interface strength of reclaimed fibers from recycled fiberglass wind turbine blades, Composites Part A, 131, 105786 (PDF fileDownload, opens in new window).
  • Nakajima, J.*, Fayazbakhsh, K., Teshima, Y. (2020) Experimental study on tensile properties of 3D printed flexible kirigami specimens. Journal of Additive manufacturing, 32, 101100 (PDF fileDownload, opens in new window).
  • Rossi, A*., Fayazbakhsh, K., Fawaz, Z. (2020) Application of LS-DYNA constitutive material model laws to simulate low velocity impact damage to composite plates. Journal of Aerospace Engineering. November 2020.
  • Desu, H*., Rossi, A*., Mankoo GK*., Fayazbakhsh, K., Fawaz, Z. (2020) Experimental characterization of 3D printed thermoplastic plates subjected to low velocity impact. International Journal of Advanced Manufacturing, 107, 1659–69 (PDF fileDownload, opens in new window).
  • Rahimizadeh, A.*, Kalman, J*., Henri, R.*, Fayazbakhsh, K., Lessard, L. (2019) Recycled glass fiber composites from wind turbine waste for 3D printing feedstock: effects of fiber content and interface on mechanical performance. Materials, 12 (23), 3929.
  • Rahimizadeh, A.*, Kalman, J*., Fayazbakhsh, K., Lessard, L. (2019) Recycling of fiberglass wind turbine blades into reinforced filaments for use in additive manufacturing. Composites Part B: Engineering 175, 107101.
  • Fayazbakhsh, K., Movahedi, M.*, Kalman, J*. (2019) The impact of defects on tensile properties of 3D printed parts manufactured by fused filament fabrication. Materials today communications. 18: 140-148.
  • Khan, S.*, Fayazbakhsh, K., Fawaz, Z., Arian Nik, M. (2018) Curvilinear variable stiffness 3D printing technology for improved open-hole tensile strength. Additive Manufacturing. 24: 378-385.
  • Mangardich, D.*, F. Abrari, and Z. Fawaz (2019) A fracture mechanics based approach for the fretting fatigue of aircraft engine fan dovetail attachments. International Journal of Fatigue, 129: p. 105213.
  • Sy, B.L.*, Z. Fawaz, and H. Bougherara (2019) Numerical simulation correlating the low velocity impact behaviour of flax/epoxy laminates. Composites Part A: Applied Science and Manufacturing, 126: p. 105582.
  • Mangardich, D.*, F. Abrari, and Z. Fawaz (2019) Modeling crack growth of an aircraft engine high pressure compressor blade under combined HCF and LCF loading. Engineering Fracture Mechanics, 214: p. 474-486.
  • Sy, B.L.*, Z. Fawaz, and H. Bougherara (2018) Damage evolution in unidirectional and cross-ply flax/epoxy laminates subjected to low velocity impact loading. Composites Part A: Applied Science and Manufacturing, 112: p. 452-467.