404
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Computational fluid dynamics (CFD) analysis and numerical aerodynamic investigations of automotive disc brake rotor

&
Pages 188-205 | Received 23 Jan 2017, Accepted 26 Apr 2017, Published online: 23 May 2017

References

  • Abu Bakar, A. R., H. Ouyang, L. Chiing Khaia, and M. S. Abdullaha. 2010. “Thermal Analysis of a Disc Brake Model Considering a Real Brake Pad Surface and Wear.” International Journal of Vehicle Structures and Systems 2, 20–27.
  • Anders, J., and B. Christer. 2001. Numerical Study of Brake Disc Cooling Accounting for Both Aerodynamic Drag Force and Cooling Efficiency. SAE 2001-01-0948.
  • Anderson, A. E., and R. A. Knapp. 1990. “Hot Spotting in Automotive Friction Systems.” Wear 135: 319–337.10.1016/0043-1648(90)90034-8
  • Belhocine, A. 2017. “FE Prediction of Thermal Performance and Stresses in an Automotive Disc Brake System.” The International Journal of Advanced Manufacturing Technology 89 (9–12): 3563–3578.10.1007/s00170-016-9357-y
  • Belhocine A, and W. Z. Wan Omar. 2017. “Three-dimensional Finite Element Modeling and Analysis of the Mechanical Behavior of Dry Contact Slipping between the Disc and the Brake Pads.” The International Journal of Advanced Manufacturing Technology, 88 (1): 1035–1051.10.1007/s00170-016-8822-y
  • Cruceanu, C. 2007. Frâne Pentru Vehicle Feroviare [Brakes for Railway Vehicles]. Edited by MATRIXROM, 388. Bucureşti, ISBN 978-973-755-200-6.
  • David, A., B. Johnson, A. Sperandei, and R. Gilbert. 2003. “Analysis of the Flow through a Vented Automotive Brake Rotor.” Journal of Fluids Engineering 125: 979–986.
  • Dittrich, R., and R. Lang. 1984. “Finite-element Analysis of the Thermal Loads Acting on a Passenger Car Brake Disk.” Automobiltechnische Zeitschrift 86 (6): 265–269.
  • Dufrenoy, P. 2004. “Two-/three-dimensional Hybrid Model of the Thermomechanical Behaviour of Disc Brakes.” Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit 218: 17–30.10.1243/095440904322804402
  • Eisengraber R., J. Grochowicz, M. Schuster, K. Augsburg, and L. Kock. 1999. Comparison of Different Methods for the Determination of the Friction Temperature of Disc Brakes. SAE 1999-01-0132.
  • Fukano A., and H. Matsui.1986. “Development of Disc-brake Design Method Using Computer Simulation of Heat Phenomena.” SAE 860634.
  • Gao, C. H., and X. Z. Lin. 2002. “Transient Temperature Field Analysis of a Brake in a Non-axisymmetric Three-dimensional Model.” Journal of Materials Processing Technology 129: 513–517.10.1016/S0924-0136(02)00622-2
  • Gotowicki, P. F., V. Nigrelli, and M. Gabriele Virzi. 2005. “Numerical and Experimental Analysis of a Pegs-wing Ventilated Disk Brake Rotor with Pads and Cylinders.” 10th EAEC European Automotive Congress – Paper EAEC05YUAS04 – p. 5, June.
  • Hassan, M. Z., P. C. Brooks, and D. C. Barton. 2009. “A Predictive Tool to Evaluate Disk Brake Squeal Using a Fully Coupled Thermo-mechanical Finite Element Model.” International Journal of Vehicle Design 51 (1/2): 124–142.10.1504/IJVD.2009.027118
  • Hudson, D., and R. L. Ruhl. 1997. Ventilated Brake Rotor Air Flow Investigation. SAE 971033.
  • Khalid, M. K., M. R. Mansor, S. I. Abdul Kudus, M. M. Tahir, and M. Z. Hassan. 2011. “Performance Investigation of the UTeM Eco-car Disc Brake System .” International Journal of Engineering & Technology IJET-IJENS 11 (06): 1–6.
  • Kuciej, M, and P. Grzes. 2011. “The Comparable Analysis of Temperature Distributions Assessment in Disc Brake Obtained Using Analytical Method and FE Model.” Journal of Kones Powertrain and Transport 18 (2): 236–250.
  • Lee, K., and R. B. Dinwiddie. 1998. Conditions of Frictional Contact in Disk Brakes and Their Effects on Brake Judder. SAE 980598.
  • Lee, S., and T. Yeo. 2000. “Temperature and Coning Analysis of Brake Rotor Using an Axisymmetric Finite Element Technique.” Proceedings of 4th Korea-Russia International Symposium on Science & Technology 3: 17–22.
  • Limpert, R. 1999. Brake Design and Safety. 2nd ed. Warrendale, PA: Society of Automotive Engineering 137–144.
  • Lisa, W., L. Eddie, and B. Milton. 2002. “Air Flow and Heat Transfer in Ventilated Disc Brake Rotors with Diamond and Tear-drop Pillars.” Numerical Heat Transfer, Part A 41: 643–655.
  • Oschwald, M. 2004. “Development of a Methodology for Design and Optimization of Multi-material Objects for Enhanced Thermal Behavior Application: Brake Disk Rotor.” Diploma Thesis WS/SS 2004, Mechanical Engineering Department, College of Engineering & Science, Clemson University, South Caroline.
  • Ouyang, H., A. R. Abu Bakar, and L. Li. 2009. “A Combined Analysis of Heat Conduction, Contact Pressure and Transient Vibration of a Disk Brake.” International Journal of Vehicle Design 51 (1/2): 190–206.10.1504/IJVD.2009.027121
  • Parish, D., and D. G. MacManus. 2005. “Aerodynamic Investigations of Ventilated Brake Discs.” Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 219: 471–486.10.1243/095440705X11121
  • Reimpel, J. 1998. Braking Technology. Würzburg: Vogel Verlag.
  • Sivarao, S., M. Amarnath, M. S. Rizal, and A. Kamely. 2009. “An Investigation toward Development of Economical Brake Lining Wear Alert System.” International Journal of Engineering & Technology IJET 9 (9): 251–256.
  • Söderberg, A., and S. Andersson. 2009. “Simulation of Wear and Contact Pressure Distribution at the Pad to-rotor Interface, in the Disc Brake Using General Purpose Finite Element Analysis Software.” Wear 267 (12): 2243–2251.
  • Valvano, T., and K. Lee. 2000. An Analytical Method to Predict Thermal Distortion of a Brake Rotor. Detroit, MI. SAE 2000-01-0445.
  • Voldrich, J. 2006. “Frictionally Excited Thermoelastic Instability Indisc Brakes –Transient Problem in the Full Contact Regime.” International Journal of Mechanical Sciences 49 (2): 129–137.
  • Voller, G. P., M. Tirovic, R. Morris, and P. Gibbens. 2003. “Analysis of Automotive Disc Brake Cooling Characteristics.” Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 217: 657–666.10.1243/09544070360692050
  • Zhang, J., and C. Xia. 2012. “Research of the Transient Temperature Field and Friction Properties on Disc Brakes.” In Proceedings of the 2012 2nd International Conference on Computer and Information Application (ICCIA 2012), 201–204. Taiyuan, China.
  • Zhang, L., Q. Yang, D. Weichert, and N. Tan. 2009. “Simulation and Analysis of Thermal Fatigue Based on Imperfection Model of Brake Discs.” PAMM 9, 533–534.10.1002/pamm.v9:1

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.