Transient Thermal and Structural Analysis of Indian Two-Wheeler Disc Brakes

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Brakes have huge importance on a bike with regards to safety. Proper structural sturdiness and superior heat dissipating capabilities provide better performance while braking and longevity to the system. Transient thermal and structural analysis of four Indian two-wheeler disc brakes is completed by using ANSYS 2021 R2 student version software. The comparison results provide comprehensive insight into the thermal and structural characteristics of all four-disc rotors used in the industry. A comparative conclusion with respect to performance of each disc rotor in the respective components of the analysis like, temperature, heat-flux, total deformation and equivalent stress analysis is presented in this paper.

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77-88

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January 2023

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© 2023 Trans Tech Publications Ltd. All Rights Reserved

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[1] Pranta M.H, Rabbi M.S, Banik S.C, Hafez M.G and Yu-Ming Chu, 2021, A computational study on structural and thermal behaviour of modified disk brake rotors, Alexandria Engineering Journal, ISSN 1110-0168.

DOI: 10.1016/j.aej.2021.07.013

Google Scholar

[2] Jaenudin, Jamari J and Tauviqirrahman M, 2017, Thermal Analysis of Disc Brakes using Finite Element Method,, American Institute of Physics, 1788, 030028 (2017); doi: 10.1063/ 1.4968281.

DOI: 10.1063/1.4968281

Google Scholar

[3] Bhat, Adarsh, Pal, Bhaskar, Dandotiya and Devendra, 2021, Structural Analysis of A Two- Wheeler Disc Brake. IOP Conference Series: Materials Science and Engineering, 1013. 10.1088/1757-899X/1013/1/012024.

DOI: 10.1088/1757-899x/1013/1/012024

Google Scholar

[4] Da Silva S A M and Kallon D V V, 2019, FEA on different disc brake rotors, Procedia Manufacturing, Volume 35, Pages 181-186, ISSN 2351-9789.

DOI: 10.1016/j.promfg.2019.05.025

Google Scholar

[5] Sb, Kumaragurubaran & Sivakumar, S & Boobalan, Saravanan. (2015). Design and Analysis of Disc Brake Rotor.

Google Scholar

[6] Dhavamani, Rajkamal. (2018). Structural Analysis of Disc Brake. 9.

Google Scholar

[7] SimulTech Group, accessed 6 November 2021, <https://simutechgroup.com/>.

Google Scholar

[8] Reimpel, J, 1998, Braking technology. Vogel, Verlag, Würzburg.

Google Scholar

[9] Atharva R. Kulkarni, Rohan Mahale, 2020, Impact of Design Factors of Disc Brake Rotor on Braking Performance, INTERNATIONAL JOURNAL OF ENGINEERING RESEARCH & TECHNOLOGY (IJERT) Volume 09, Issue 06 (June 2020).

DOI: 10.17577/ijertv9is060817

Google Scholar

[10] Belhocine A, Bouchetara M, 2013, Investigation of temperature and thermal stress in ventilated disc brakes based on 3D thermomechanical coupling model, Ain Shams Engineering Journal, Volume 4, Issue 3, 2013, Pages 475-483.

DOI: 10.1016/j.asej.2012.08.005

Google Scholar