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Research Article

Experimental and Investigation of Heat Transfer for Radiator by Changing Composite (Bronze And Copper Oxide) Using Pin-Fin Apparatus

Aandhavelu.K1 Vembaiyan.C2 Mahabubadha.S3 Sethuraman.S4 Rajavel.C5 Sathish.S6
1 Professor, Department of Mechanical Engineering, MRK Institute of Technology, Tamilnadu, India. 23Assistant professor, Department of Mechanical Engineering, MRK Institute of Technology, Tamilnadu, India. 456 UG Final year, Department of Mechanical Engineering, MRK Institute of Technology, Tamilnadu, India.

Published Online: May-June 2023

Pages: 333-337

References

1. Akira Kawahara et al, Development of Aluminum Alloy Fin Stock for Heat Exchangers Using Twin-Roll Continuous Casting Method,
Furukawa Review, No. 24 2003.
2. Ack Howell Fair Oaks CA, Copper Radiator Application Analysis, USA 1993.
3. Brandon Fell et. Al., High Efficiency Radiator Design for Advanced Coolant, ME450 Fall 2007.
4. CAP A., Automotive Cooling System, Research & development of HCV Germany.
5. D. S. Kumar, Heat & Mass Transfer, S. K. Kataria & Sons, 6th Edition 2001.
6. D. Siddhartha, et al, Experimental and Numerical analysis of the thermal performance of Copper, Aluminium and Brass alloy radiators,
Journal of Emerging Technology in Mechanical Science and Technology, (ISSN No.: 0976-2558), Volume 4, 2013, 16-22.
7. Ganga, C. D. Singh, et al., Performance evaluation of a radiator in a diesel engine-a case study, Applied Thermal Engineering 19 (6)
(1999) 625– 639.
8. Hui zhao et al, Controlled Atmosphere Brazing of Aluminum Heat Exchangers, Creative Thermal Solutions, Inc., Urbana, I ll. Feb 2013.
9. International Copper Association (ICA), Aluminium Radiator in Trucks, USA 2004.
10. J. Hirsch, Automotive Trends in Aluminium - The European Perspective, Institute of Materials Engineering Australasia Ltd Hydro
Aluminium Deutschland GmbH R&D, D-53014 Bonn, Germany MATERIALS FORUM VOLUME 28 - Published 2004.

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