Portrait of Dr. Luis Trueba

Dr. Luis Trueba

  • Associate Professor at Department of Engineering Technology, College of Science & Engineering

Scholarly and Creative Works

2023

  • Rios, R., & Trueba, L. (2023). 3D Printed Sand Molds and Cores Using Selective Powder Deposition. International Journal of Metalcasting, 18, 40–45.

2022

  • Na, H., Byoung-Hee, & Trueba, L. (2022). A Study on the Mechanical Properties of Biaxial and Triaxial Braided Composites for an Automotive Propeller Shaft. Fibers and Polymers, Vol. 23(Issue 9), 2712–2718. https://doi.org/10.1007/s12221-022-0061-2
  • Desavale, S., Ameri, F., Trueba, L., & Igveh, O. (2022). Direct Part Marking (DPM) Supported by Additively Manufactured Tags to Improve the Traceability of Castings. In Advances in Production Management Systems: Smart Manufacturing and Logistics Systems: Turning Ideas into Action (pp. 244–251). Springer Nature Switzerland. https://doi.org/10.1007/978-3-031-16407-1_29
  • Lek, D. R., Song, I.-H., Kim, N., Trueba, L., Haejoong, N., & You, B.-H. (2022). Passive Mold Alignment for the Fabrication of Polymer Through-Holes Using Punching and Double-Sided Hot Embossing. Sensors and Actuators A: Physical, Vol. 340, 113560. https://doi.org/https://doi.org/10.1016/j.sna.2022.113560
  • Trueba, L., & Torrres, A. S. (2022). Incorporating a Milestone-Based Project Based Learning Method in a Foundry Course.
  • Trueba, L., Gaston, T., Blackin, J. B., Miller, & You, B.-H. (2022). Effective Strategies to Reduce Triethylene Glycol Consumption in Natural Gas Processing Plants. Case Studies in Chemical and Environmental Engineering, Vol. 5, 100196. https://doi.org/https://doi.org/10.1016/j.cscee.2022.100196
  • Lek, D. R., Song, I.-H., Trueba, L., Kim, N., Na, H., & You, B. H. (2022). Passive mold alignment for the fabrication of polymer through-holes using punching and double-sided hot embossing. Sensors and Actuators A:Physical, 340.

2020

  • Trueba, L., & Habingreither, R. B. (2020, October). The Saugus Pot: The Birth of the Foundry Industry in Colonial America. Modern Casting, (October, 2020), 24–29.

2018

  • Trueba, L., Torres, M. A., Johannes, L. B., & Rybicki, D. (2018). Process optimization in the self-reacting friction stir welding of aluminum 6061-T6. International Journal of Material Forming, 11(4), 559–570. https://doi.org/10.1007/s12289-017-1365-4

2015

  • Trueba, L., Heredia, G., Rybicki, D., & Johannes, L. B. (2015). Effect of tool shoulder features on defects and tensile properties of friction stir welded aluminum 6061-T6. Journal of Materials Processing Technology, 219, 271–277. https://doi.org/10.1016/j.jmatprotec.2014.12.027
  • Stafford, S. W., & Trueba, L. (2015). Fatigue Cracking of a 3-MW Electric Motor Shaft. Journal of Failure Analysis and Prevention, 15(2), 211–218. https://doi.org/10.1007/s11668-015-9935-6

2010

  • Trueba, L., Schmidt, E., Corbari, R., & Kan, M. (2010). Thermodynamic modeling to improve foamy slag practice in the EAF. In AISTech - Iron and Steel Technology Conference Proceedings (pp. 859–873). Retrieved from https://api.elsevier.com/content/abstract/scopus_id/79952926905
  • Camacho, N., Stafford, S. W., & Trueba, L. (2010). Progressive wear damage analysis on retrieved UHMWPE tibial implants. In IFMBE Proceedings (Vol. 32 IFMBE, pp. 165–170). https://doi.org/10.1007/978-3-642-14998-6_43

2009

  • Camacho, N., Trueba, L., & Stafford, S. W. (2009). Computational wear damage analysis on retrieved tibial components. In IFMBE Proceedings (Vol. 24, pp. 273–278). https://doi.org/10.1007/978-3-642-01697-4_96

2006

  • Trueba, L., Peaslee, K. D., & Smith, J. D. (2006). Simulation of nozzle clogging during the continuous casting of aluminum-killed steel. Iron and Steel Technology (2nd ed., Vol. 3, pp. 123–133). Retrieved from https://api.elsevier.com/content/abstract/scopus_id/32644490535
  • Trueba, L., Peaslee, K. D., Smith, J. D., & Karakus, M. (2006). Effect of nozzle base material on the rate of clogging during the continuous casting of aluminum-killed steels. Steel Research International, 77(1), 37–48. Retrieved from https://api.elsevier.com/content/abstract/scopus_id/32544447396