IJIRST (International Journal for Innovative Research in Science & Technology)ISSN (online) : 2349-6010

 International Journal for Innovative Research in Science & Technology

Review on Thermal Analysis of Disc Brake


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International Journal for Innovative Research in Science & Technology
Volume 3 Issue - 11
Year of Publication : 2017
Authors : Mr. Sumeet S. Satope ; Akshaykumar Bote; Parikshit patil; Arvind Yadav; Swapneel Rawool

BibTeX:

@article{IJIRSTV3I11087,
     title={Review on Thermal Analysis of Disc Brake},
     author={Mr. Sumeet S. Satope, Akshaykumar Bote, Parikshit patil, Arvind Yadav and Swapneel Rawool},
     journal={International Journal for Innovative Research in Science & Technology},
     volume={3},
     number={11},
     pages={293--299},
     year={},
     url={http://www.ijirst.org/articles/IJIRSTV3I11087.pdf},
     publisher={IJIRST (International Journal for Innovative Research in Science & Technology)},
}



Abstract:

An automotive disc brake is a device which creates resistance to the motion of wheel under running conditions. The basic function of disc brake is to stop or slow down the motion of wheel by applying frictional force through calliper assembly. During this process kinetic energy converts in heat energy and dissipate into surrounding atmosphere. The conversion of energy results in speed retardation, and brings the vehicle in steady state. The heat dissipation properties during actuation have significant impact on the brake performance. During operation the high stresses are built up, results in wear and fading. The performance parameters can be improved by considering thermal characteristics of disc brake materials. The objective of this study is to investigate, under extreme working conditions, the thermochemical behaviour of different brake rotors in order to evaluate their efficiency and stability, also to identify any compromising weakness on them. In this paper the investigation is done by considering different material used for brake disc manufacturing and the thermal behaviour of the same in loading condition analysis of different shapes with different material of disc rotor.


Keywords:

Analysis, brake, disc, heat, thermal


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