Autors: Ambarev, K. M., Taneva, S. P., Penchev, S. I. Title: Study of the thermal behavior of disc brake of a passenger car Keywords: Abstract: The disc brake assembly is the main unit of the braking system. In most modern passenger cars, disc brake assemblies with ventilated discs are most often used. Three-dimensional geometric models of the front ventilated brake disc and the disc-pads are made by the SolidWorks software. The values of the necessary parameters for carrying out a thermal analysis have been previously determined. The Simulation-Thermal module is used to perform steady-state and transient analysis of the disc brake. To validate the obtained results, an experimental measurement of the disc temperature at the end of the braking process is carried out when the car is moving at an initial speed of 80 km/h. The temperature is measured non-contact. An infrared thermograph is used. The simulation and experimental results are compared. References - V. Hillier, Fundamentals of Motor Vehicle Technology, 4thed (Scotprint Ltd, Musselburgh, 1991) ISBN: 0748715317.
- A. Belhocine and M. Bouchetara, "Structural and thermal analysis of automotive disk brake rotor," Archive of mechanical engineering, 61 (2014), 10.2478/meceng-2014-0005.
- C. Chavan, A. More, N. Patila and P. Baskar, "Static structural and thermal analysis of brake disc with different cut patterns," Journal of Applied Research and Technology, 16, 41-52 (2018), e-ISSN: 2448-6736. 10.22201/icat.16656423.2018.16.1.702
- V. Vinodkumar and all, "Design and analysis of disc brake rotor for all terrain vehicles," International Research Journal of Engineering and Technology (IRJET), 08, 651-659 (2021), e-ISSN: 2395-0056.
- J. Jaenudin and M. Tauviqirrahman, "Thermal analysis of disc brakes using finite element method," AIP Conference Proceedings, 1788 (2017), DOI: 10.1063/1.4968281.
- D. Dhir, "Thermo-mechanical performance of automotive disc brakes," Materials Today: Proceedings 5, 1864-1871 (2018), 10.1016/j.matpr.2017.11.287.
- A. Thakur and P. Dhakad, "Thermal Analysis of Disc brake Using ANSYS," International Journal of Technical Innovation in Modern Engineering & Science (IJTIMES), 4, 8-17 (2018), e-ISSN: 2455-2585.
- B. Türkan, A. Canbolat, M. Can and A. Etemoǧlu, "Numerical investigation into the temperature distribution on the disc brake system," The Journal of MacroTrends in Technology and Innovation, 4, 8-20 (2016), e-ISSN: 2333-102x.
- P. Hwang and X. Wu, "Investigation of temperature and thermal stress in ventilated disc brake based on 3D thermo-mechanical coupling model," Journal of Mechanical Science and Technology, 24, 81-84 (2010), DOI: 10.1007/s12206-009-1116-7.
- F. Talati and S. Jalalifar, "Investigation of Heat Transfer Phenomena in a Ventilated Disk Brake Rotor with Straight Radial Rounded Vanes," Journal of Applied Sciences, 8, 3583-3592 (2008), DOI: 10.3923/jas.2008.3583.3592.
- J. Thevenet, M. Siroux and B. Desmet, "Measurements of brake disc surface temperature and emissivity by two-color pyrometry," Applied Thermal Engineering, 30, 753-759 (2010), 10.1016/j.applthermaleng.2009.12.005.
- Paul Kurowski, Thermal Analysis with SOLIDWORKS Simulation 2022 and Flow Simulation 2022, Published March 10 (2022) ISBN: 978-1-63057-490-1, https://www.sdcpublications.com/Textbooks/Thermal-Analysis-SOLIDWORKS-Simulation-2022/ISBN/978-1-63057-490-1/.
Issue
| AIP Conference Proceedings, vol. 3078, 2024, , https://doi.org/10.1063/5.0209132 |
|