Transient thermal analyses of an integrated brake rotor and wheel hub for heavy duty vehicles

被引:4
|
作者
Guleryuz, Ibrahim Can [1 ]
Karadeniz, Ziya Haktan [2 ]
机构
[1] Ege Fren Inc, Dept Prod Design & Dev, 7405-2 Sokak 4, TR-35060 Zmir, Turkey
[2] Izmir Katip Celebi Univ, Dept Mech Engn, Zmir, Turkey
关键词
Integrated brake rotor and wheel hub; CFD analysis; transient thermal analysis; regulation; 13; heavy duty vehicle; DISC;
D O I
10.1177/09544070211029533
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In this study, transient thermal analyses for a new integrated rotor and wheel hub concept are performed by consideration of convection, conduction and radiation effects. Test methods used for the characterization and certification purposes are constructed in a simulation environment and the effect of different ventilation vanes and rotor-hub arrangements on heat transfer mechanism is examined and the details are summarized for a reliable simulation process. Validated procedures are used to report a series of characterization and certification analyses, namely; CFD analyses including wheel assembly, cooldown analyses, R13 repeated stop fade and alpine hot descent analyses for current design and new integrated rotor and hub pair for alternative ventilation vane designs. The analyses are especially focused on predicting the cooling period and predicting maximum bearing temperatures for normal and excessive loading scenarios. To provide benchmark a commercial integrated rotor and hub pair used in heavy duty vehicles is also analysed. The average convective heat transfer coefficient and cooldown period of proposed integrated brake rotor are improved by 117.3% and 30.5% compared to the base design. The maximum wheel bearing temperature is decreased by 27.0% and by 27.1% for the proposed integrated brake rotor and wheel hub compared to the benchmark model, in accordance with the repeated stop and alpine hot descent analyses. In addition, the total weight reduction of 10 kg (15%) according to the base design is achieved.
引用
收藏
页码:971 / 986
页数:16
相关论文
共 50 条
  • [31] Heavy Vehicles Brake Drums — An Accurate Evaluation on Thermal Loads in Severe Service Conditions
    Eduardo Umaras
    Ahmad Barari
    Marcos Sales Guerra Tsuzuki
    International Journal of Automotive Technology, 2021, 22 : 371 - 382
  • [32] Integrated Energy and Thermal Management for Hybrid Electric Heavy Duty Trucks
    Pham, H. T.
    van den Bosch, P. P. J.
    Kessels, J. T. B. A.
    Huisman, R. G. M.
    2012 IEEE VEHICLE POWER AND PROPULSION CONFERENCE (VPPC), 2012, : 932 - 937
  • [33] Heavy Vehicles Brake Drums - An Accurate Evaluation on Thermal Loads in Severe Service Conditions
    Umaras, Eduardo
    Barari, Ahmad
    Guerra Tsuzuki, Marcos Sales
    INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY, 2021, 22 (02) : 371 - 382
  • [34] Testing and performance analysis of an integrated electromagnetic and hydraulic retarder for heavy-duty vehicles
    Zhang, Kai
    Shang, Huichao
    Xu, Jing
    Niu, Jigao
    Yue, Yonggao
    ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 2023, 126
  • [35] Reliability Assessment of Integrated Power and Road System for Decarbonizing Heavy-Duty Vehicles
    Zuo, Wei
    Li, Kang
    ENERGIES, 2024, 17 (04)
  • [36] Impact of Effective Tire Radius on Wheel Slip Estimation and Antilock Brake System Performance of Heavy Road Vehicles
    Gaurkar, Pavel Vijay
    Challa, Akhil
    Ramakrushnan, Karthik
    Vivekanandan, Gunasekaran
    Sivaram, Sriram
    Subramanian, Shankar C. C.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2022, 71 (12) : 12722 - 12733
  • [37] Energy consumption analysis of heavy-duty vehicles for transient emissions evaluation on chassis dynamometer
    Wang, WG
    Lyons, DW
    Clark, NN
    Luo, JD
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 1999, 213 (D3) : 205 - 214
  • [38] Integrated Braking Control for Electric Vehicles with In-Wheel Propulsion and Fully Decoupled Brake-by-Wire System
    Heydrich, Marius
    Ricciardi, Vincenzo
    Ivanov, Valentin
    Mazzoni, Matteo
    Rossi, Alessandro
    Buh, Joze
    Augsburg, Klaus
    VEHICLES, 2021, 3 (02): : 145 - 161
  • [39] Laboratory measurement and machine learning-based analysis of driving factors for brake wear particle emissions from light-duty electric vehicles and heavy-duty vehicles
    Yin, Jiawei
    Xu, Zhou
    Wei, Wendi
    Jia, Zhenyu
    Fang, Tiange
    Jiang, Zhiwen
    Cao, Zeping
    Wu, Lin
    Wei, Ning
    Men, Zhengyu
    Guo, Quanyou
    Zhang, Qijun
    Mao, Hongjun
    JOURNAL OF HAZARDOUS MATERIALS, 2025, 488
  • [40] Model Predictive Braking Control for Heavy-Duty Commercial Vehicles Considering Response Delay of Air-Brake
    Nakahara R.
    Sekiguchi K.
    Nonaka K.
    Takasugi M.
    Hasebe H.
    Matsubara K.
    International Journal of Automotive Engineering, 2020, 11 (04) : 177 - 184