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Year 2023, Volume: 2 Issue: 1, 1 - 10, 30.03.2023

Abstract

References

  • [1] Christensen, S.S., (2000). "Radiator Charge Air Cooler and Condenser Mounting Method" United States Patent, 6-11.
  • [2] Beldam, R.P., (1998). "Radiator Thermal Expansion Joint and Method for Making the Same" United States Patent, 2-6.
  • [3] Young, D.L., Rhodes, E.E., Hirmann, J.., (1992)., "Apparatus for Producing a Stress Relieving Zone in a Heat Exchanger" Unit-ed States Patent, 5-9.
  • [4] Lin, S., Jachuck, R., McGlen, R.J., (2004). “Integrated Thermal Management Techniques for High Power Electronic Devices,” Applied Thermal Engineering, 1144-1154.
  • [5] Li, F., Wu, M., Wang, S., Rao, Z., Lin, Z., (2013). “Experimental Investigation on Thermal Management of Electric Vehicle Battery with Heat Pipe,” Energy Conversion and Management, 92-98.
  • [6] Zweben, C., (1998). "Advances in Composite Materials for Thermal Management in Electronic Packaging", 47-51.
  • [7] Babapoor, A., Karimi, G., Azizi, M., (2015). “Thermal Management of a Li-ion Battery using Carbon Fiber-PCM Composites,” Applied Thermal Engineering, 281-292.
  • [8] Goli, P., Dhar A., Legedza, S., Goli, P., (2014). “Graphene-Enhanced Hybrid Phase Change Materials for Thermal Manage-ment of Li-ion Batteries,” Journal of Power Sources, 36-42.
  • [9] Egemen, B., Alper, A., (2012). " Arkadan Motorlu Araçlar İçin Soğutma Sistemi Tasarımı." OTEKON 2012 6. Otomotiv Teknolojileri Kongresi, Bursa, 1-7.
  • [10] Burak, T., Akın, B. E., Ümit, Ç.,(2020). "Poliüretan Kaplı Araç Direksiyonunun Soğutulmasının Simülasyonu". El-Cezeri Fen ve Mühendislik Dergisi, Bursa, 593-600.
  • [11] Yaşar, M., (2011). "Elektrikli Araç Motorunun Soğutma Sistem Tasarımı", Thesis (M.Sc.), İstanbul Technical University, Insti-tute of Science and Technology.

Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System

Year 2023, Volume: 2 Issue: 1, 1 - 10, 30.03.2023

Abstract

Today, studies are carried out to extend the life of the oils used in commercial vehicles. There are many parameters which should be taken into account in these studies. In the study, especially due to the overheating problem of the hydraulic oil of the axles steered by hydraulic pressure, the radiator integration into the system was made in response to the oil overheating problem experienced in the 5th steerable axle of the Akia 25 meter bus. In this paper, subjects such as oil cooler selection, fan selection and frame application around the radiator were emphasized. Necessary measurements were made on the system and compared with the results before and after integration. Evaluations were made in line with the results obtained from these comparisons. Oil cooler was applied with 600 mm length and 200 mm width, 2 fans with Ø268.5 mm diameter and 10''LP blowing capacity and 24V power were preferred. The system consists of 7 main parts: steering axle, hydraulic unit, hydraulic accumulator, oil cooler, oil filter, pump and oil tank. Steel pipes of Ø18 mm and Ø15 mm diameter are used on the line, and oil cooler connection is provided with 5/8'', 1/2'' and 3/4'' hoses. The hoses and pipes used in the connection line have been selected to be suitable for use in the discharge and return lines. When the connection temperatures reach 80° degrees, the fans of oil cooler is activated through the integrated system, and the oil temperature is reduced to 65°, thus eliminating the risk of temperatures reaching 130° degrees before integration. As a result, the problems arising from high temperatures have been prevented, and with the more efficient operation of the system, both the oil life has been extended and the service costs have been reduced.

References

  • [1] Christensen, S.S., (2000). "Radiator Charge Air Cooler and Condenser Mounting Method" United States Patent, 6-11.
  • [2] Beldam, R.P., (1998). "Radiator Thermal Expansion Joint and Method for Making the Same" United States Patent, 2-6.
  • [3] Young, D.L., Rhodes, E.E., Hirmann, J.., (1992)., "Apparatus for Producing a Stress Relieving Zone in a Heat Exchanger" Unit-ed States Patent, 5-9.
  • [4] Lin, S., Jachuck, R., McGlen, R.J., (2004). “Integrated Thermal Management Techniques for High Power Electronic Devices,” Applied Thermal Engineering, 1144-1154.
  • [5] Li, F., Wu, M., Wang, S., Rao, Z., Lin, Z., (2013). “Experimental Investigation on Thermal Management of Electric Vehicle Battery with Heat Pipe,” Energy Conversion and Management, 92-98.
  • [6] Zweben, C., (1998). "Advances in Composite Materials for Thermal Management in Electronic Packaging", 47-51.
  • [7] Babapoor, A., Karimi, G., Azizi, M., (2015). “Thermal Management of a Li-ion Battery using Carbon Fiber-PCM Composites,” Applied Thermal Engineering, 281-292.
  • [8] Goli, P., Dhar A., Legedza, S., Goli, P., (2014). “Graphene-Enhanced Hybrid Phase Change Materials for Thermal Manage-ment of Li-ion Batteries,” Journal of Power Sources, 36-42.
  • [9] Egemen, B., Alper, A., (2012). " Arkadan Motorlu Araçlar İçin Soğutma Sistemi Tasarımı." OTEKON 2012 6. Otomotiv Teknolojileri Kongresi, Bursa, 1-7.
  • [10] Burak, T., Akın, B. E., Ümit, Ç.,(2020). "Poliüretan Kaplı Araç Direksiyonunun Soğutulmasının Simülasyonu". El-Cezeri Fen ve Mühendislik Dergisi, Bursa, 593-600.
  • [11] Yaşar, M., (2011). "Elektrikli Araç Motorunun Soğutma Sistem Tasarımı", Thesis (M.Sc.), İstanbul Technical University, Insti-tute of Science and Technology.
There are 11 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Research Articles
Authors

Esat Tekin 0000-0002-7181-9684

İbrahim Yönel 0000-0003-1812-3482

İbrahim Bilen 0000-0001-9985-5823

Publication Date March 30, 2023
Published in Issue Year 2023 Volume: 2 Issue: 1

Cite

APA Tekin, E., Yönel, İ., & Bilen, İ. (2023). Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System. Cukurova University Journal of Natural and Applied Sciences, 2(1), 1-10.
AMA Tekin E, Yönel İ, Bilen İ. Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System. Cukurova University Journal of Natural and Applied Sciences. March 2023;2(1):1-10.
Chicago Tekin, Esat, İbrahim Yönel, and İbrahim Bilen. “Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System”. Cukurova University Journal of Natural and Applied Sciences 2, no. 1 (March 2023): 1-10.
EndNote Tekin E, Yönel İ, Bilen İ (March 1, 2023) Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System. Cukurova University Journal of Natural and Applied Sciences 2 1 1–10.
IEEE E. Tekin, İ. Yönel, and İ. Bilen, “Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System”, Cukurova University Journal of Natural and Applied Sciences, vol. 2, no. 1, pp. 1–10, 2023.
ISNAD Tekin, Esat et al. “Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System”. Cukurova University Journal of Natural and Applied Sciences 2/1 (March 2023), 1-10.
JAMA Tekin E, Yönel İ, Bilen İ. Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System. Cukurova University Journal of Natural and Applied Sciences. 2023;2:1–10.
MLA Tekin, Esat et al. “Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System”. Cukurova University Journal of Natural and Applied Sciences, vol. 2, no. 1, 2023, pp. 1-10.
Vancouver Tekin E, Yönel İ, Bilen İ. Design and Application of Integrated Cooling System Against Temperature Risks of Metrobus 5th Axle Steering System. Cukurova University Journal of Natural and Applied Sciences. 2023;2(1):1-10.