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Articles

Manufacturability evaluation: a CFD approach for Jominy hardenability test

Pages 1881-1888 | Received 15 Mar 2018, Accepted 10 Jul 2018, Published online: 05 Nov 2018

References

  • Krauss, G.;. Steels – Processing, Structure and Performance. ASM International: New York, USA, 2015, 341.
  • Liscic, B.; Tensi, H. M.; Canale, L. C.; Totten, G. E. Quenching Theory and Technology 2nd Edition. CRC Press: Florida, USA, 2010, 20.
  • Gojic, M.; Kosec, B.; Anzel, I.; Kosec, L.; Preloscan, A. Hardenability of Steels for Oil Industry. Journal of Achievements in Materials and Manufacturing Engineering 2007, 23(2), 23–26.
  • Hadi, S.; Widiyono, E.; Winarto Noor, D. Z. EMS-45 Tool Steels Hardenability Experiment using Jominy ASTM A255 Test Method. The Journal for Technology and Science 2013, 24(1), 7–12.
  • Jominy, W. E.; Boegehold, A. L. A Hardenability Test for Carburizing Steel. ASM Transactions 1938, 26, 574–599.
  • Newkirk, J. W.; MacKenzie, D. S. The Jominy End Quench for Light-Weight Alloy Development. Journal of Materials Engineering and Performance 2008, 9(4), 408–415.
  • Homberg, D. A.;. Numerical Simulation of the Jominy End-Quench Test. Acta Materialia 1996, 44(11), 4375–4385.
  • Ko, D. H.; Ko, D. C.; Lim, H. J.; Kim, B. M. Application of QFA Coupled with CFD Analysis to Predict the Hardness of T6 Heat Treated Al-6061 Cylinder. Journal of Mechanical Science and Technology 2013, 27(9), 2839–2844.
  • Lapin, J.; Marek, K. Effect of Continuous Cooling on Solid Phase Transformations in TiAl-Based Alloy during Jominy End-Quench Test. Journal of Alloys and Compounds 2018, 735, 338–348.
  • Song, Y. P.; Liu, G. Q.; Liu, S. X.; Liu, J. T.; Feng, C. M. Improved Nonlinear Equation Method for Numerical Prediction of Jominy End-Quench Curves. International Journal of Iron and Steel Research 2007, 14(1), 37–41.
  • Le Masson, P.; Loulou, T.; Artioukhine, E.; Rogeon, P.; Carron, D.; Quemener, J. J. A Numerical Study for the Estimation of a Convection Heat Transfer Coefficient during a Metallurgical “Jominy End-Quench” Test. International Journal of Thermal Sciences 2002, 41, 517–527.
  • Barrena-Rodríguez, M. J.; González-Melo, M. A.; Acosta-González, F. A.; Alfaro-López, E.; García-Pastor, F. A. An Efficient Fluid-Dynamic Analysis to Improve Industrial Quenching Systems. Metals 2017, 7(6), 190.
  • Test, J.;. Standard Method for End-Quench Test for Hardenability of Steel. ASTM A255: Annual Book of ASTM Standards, ASTM:Philadelphia, USA.
  • Balabel, A.; El-Askary, W. A. On the Performance of Linear and Nonlinear k-ε Turbulence Models in Various Jet Flow Applications. European Journal of Mechanics B/Fluids 2011, 30, 325–340.
  • ANSYS FLUENT 12.0. Theory Guide. ANSYS Inc, 2009.
  • Nunura, C. R. N.; Dos Santos, C. A.; Spim, J. A. Numerical – Experimental Correlation of Microstructures, Cooling Rates, and Mechanical Properties of Aisi 1045 Steel during the Jominy End-Quench Test. Materials and Design 2015, 76, 230–243.
  • Totten, G. E.; Bates, C. E.; Clinton, N. A. Handbook of Quenchants and Quenching Technology. ASM International: New York, USA, 1993, 19.
  • Landek, D.; Liscic, B.; Filetin, T.; Lübben, T.; Lisjak, D. Hardenability Testing and Simulation of Gas-Quenched Steel. Materials and Manufacturing Processes 2009, 24(7–8), 879–886.

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