Open Access

Design and Optimization of Forced-Air Cooling System for Commercial Vehicle Brake System

Journal Article
02-14-04-0031
ISSN: 1946-391X, e-ISSN: 1946-3928
Published March 12, 2021 by SAE International in United States
Design and Optimization of Forced-Air Cooling System for Commercial
                    Vehicle Brake System
Citation: Peng, D., Tan, G., Tang, J., and Guo, X., "Design and Optimization of Forced-Air Cooling System for Commercial Vehicle Brake System," SAE Int. J. Commer. Veh. 15(1):15-25, 2022, https://doi.org/10.4271/02-14-04-0031.
Language: English

References

  1. Wang , Q. , Qi , G. , Zhang , G. , and Pu , X. Study on Brake Durability Dynamometer Experimental Method for Brake NVH and Wear SAE Technical Paper 2014-01-2520 2014 https://doi.org/10.4271/2014-01-2520
  2. Yang , Y.C. and Chen , W.L. A Nonlinear Inverse Problem in Estimating the Heat Flux of the Disc in a Disc Brake System Applied Thermal Engineering 31 14-15 2439 2448 https://doi.org/10.1016/j.applthermaleng.2011.04.008
  3. Singh , O.P. , Mohan , S. , Venkata Mangaraju , K. , Jayamathy , M. et al. Thermal Seizures in Automotive Drum Brakes Engineering Failure Analysis 17 5 1155 1172 https://doi.org/10.1016/j.engfailanal.2010.02.001
  4. Mule , N. , Pilane , D. , Mahale , P. , and Raajha , M. FEA Analysis and Correlation of Thermo-Mechanical Deformations of a Disc Brake Rotor SAE Technical Paper 2015-26-0206 2015 https://doi.org/10.4271/2015-26-0206
  5. Hwang , P. and Xuan , W. Investigation of Temperature and Thermal Stress in Ventilated Disc Brake Based on 3D Thermo-Mechanical Coupling Model Journal of Mechanical Science and Technology 24 1 81 84 https://doi.org/10.1007/s12206-009-1116-7
  6. Martinez Laurent , J. , Jordan , A. , and Canales , F. CFD-CAE Multi-Physics Simulation Approach for Brake Disc Thermal Coning SAE Technical Paper 2014-01-2493 2014 https://doi.org/10.4271/2014-01-2493
  7. Bhambare , K. , Haffey , M. , and Jelic , S. Brake Duty Cycle Simulation for Thermal Design of Vehicle Braking System SAE Technical Paper 2013-36-0015 2013 https://doi.org/10.4271/2013-36-0015
  8. Travaglia , C.A.P. , Araujo , J. , Bochi , M. , Yoneda , A. et al. Analysis of Drum Brake System with Computational Methods SAE Technical Paper 2013-36-0022 2013 https://doi.org/10.4271/2013-36-0022
  9. Anil Shah , A. and Patidar , A. Conversion of Drum Brake System to Disc Brake with CAE and CFD: Resulted in Optimized Brake Rotor Design and Improved Performance SAE Technical Paper 2017-26-0261 2017 https://doi.org/10.4271/2017-26-0261
  10. Mahammad , I. , Nagaraj , V. , and Prabhakar , S. CFD and CAE Approach for Brake Rotor Thermal Analysis SAE Technical Paper 2017-26-0292 2017 https://doi.org/10.4271/2017-26-0292
  11. Raja , T. , Mathiselvan , G. , Sreenivasulureddy , M. , and Goldwin Xavier , X. Design and Analysis of Air Flow Duct for Improving the Thermal Performance of Disc Brake Rotor IOP Conference Series: Materials Science and Engineering Chennai, India Jan. 1-3, 2017
  12. Ocampo , J. , Jelic , S. , and Han , J. Simulation-Driven Process to Evaluate Vehicle Integration Aspects in Brake Thermal Design SAE Technical Paper 2017-36-0011 2017 https://doi.org/10.4271/2017-36-0011
  13. Kim , G. , Park , J. , Lee , B. , and Hwang , H. A Study on Optimization of Brake Cooling System Considering Aerodynamics SAE Technical Paper 2018-01-1875 2018 https://doi.org/10.4271/2018-01-1875
  14. Sunday , B. , Aminu , U. , Yahaya , P.O. , and Ndaliman , M.B. Development and Analysis of Finned Brake Drum Model Using Solidworks Simulation International Journal of Innovative Research in Science, Engineering and Technology 4 5 3651 3658 2015 https://doi.org/10.15680/IJIRSET.2015.0405115
  15. Wei , D. , Alian , C. , Bo , S. , and Chenghui , Z. Multi-Objective Optimal Operation and Energy Coupling Analysis of Combined Cooling and Heating System Energy 98 296 307 2016 https://doi.org/10.1016/j.energy.2016.01.027
  16. Soheyli , S. , Mohamad , H. , and Mehri , M. Modeling a Novel CCHP System Including Solar and Wind Renewable Energy Resources and Sizing by a CC-MOPSO Algorithm Applied Energy 184 375 395 2016 https://doi.org/10.1016/j.apenergy.2016.09.110
  17. Li , C. , Jie , J. , and Liangkun , Y. A Comparative Experimental Study on Thermal Fade Performance of Disc and Drum Brakes Qiche Gongcheng/Automotive Engineering 39 12 1397 1401 2017 https://doi.org/10.19562/j.chinasae.qcgc.2017.12.007
  18. Holmberg , K. , Peter , A. , Nils-Olof , N. , Kari , M. et al. Global Energy Consumption due to Friction in Trucks and Buses Tribology International 78 94 114 2014 https://doi.org/10.1016/j.triboint.2014.05.004
  19. Newcomb , T.B. and Spurr , R.T. 103 105 https://doi.org/10.4271/J2627_200209
  20. Gohring , E. and Von Glasner , E.C. Performance Comparison of Drum and Disc Brakes for Heavy Duty Commercial Vehicles SAE Technical Paper 902206 1990 https://doi.org/10.4271/902206
  21. Chiaroni , A.B. and Silveira , Z.C. Thermal Analysis of a Rear Drum Brake for Lightweight Passenger Vehicles SAE Technical Paper 2014-36-0112 2014 https://doi.org/10.4271/2014-36-0112
  22. Palmer , E. and Jansen , W. Development of a High Fidelity CAE Model for Predicting Brake System Temperatures SAE Technical Paper 2017-01-0145 2017 https://doi.org/10.4271/2017-01-0145
  23. Zeng , S. , Zhang , H. , and Meng , Y. Research on Heat Conduction Inverse Problem of Continuous Long Downhill Truck Brake 2016 International Conference on Civil, Transportation and Environment Guangzhou, China Jan. 30-31, 2016
  24. Vdovin , A. , Mats , G. , and Simone , S. A Coupled Approach for Vehicle Brake Cooling Performance Simulations International Journal of Thermal Sciences 132 257 266 2018 https://doi.org/10.1016/j.ijthermalsci.2018.05.016
  25. Antanaitis , D.B. and Lowe , B. Braking with a Trailer and Mountain Pass Descent SAE Technical Paper 2019-01-2116 2019 https://doi.org/10.4271/2019-01-2116
  26. Xu , Y. , Mei , B. , Xiao , L. , Xia , W. et al. Combined Hill Descent Braking Strategy for Heavy Truck in the Featured-Slope SAE Technical Paper 2017-01-2535 2017 https://doi.org/10.4271/2017-01-2535
  27. Montgomery , D.C. Design and Analysis of Experiments Fourth New York Wiley 1997
  28. Eberhart , R. and Kennedy , J. A New Optimizer Using Particle Swarm Theory MHS’95. Proceedings of the Sixth International Symposium on Micro Machine and Human Science Nagoya, Japan 1995 39 43
  29. Shi , Y. and Eberhart , R. A Modified Particle Swarm Optimizer 1998 IEEE International Conference on Evolutionary Computation Proceedings. IEEE World Congress on Computational Intelligence Anchorage, AK 1998 69 73
  30. Lanlan , K. 2017

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