Submit your paper : editorIJETjournal@gmail.com Paper Title : Static Structural and Thermal Analysis of Brake Pads Design ISSN : 2395-1303 Year of Publication : 2021 10.29126/23951303/IJET-V7I1P12 MLA Style: -Ashutosh Dubey, Dr. Sudhir Tiwari , " Static Structural and Thermal Analysis of Brake Pads Design " Volume 7 - Issue 1 January - February,2021 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org APA Style: -Ashutosh Dubey, Dr. Sudhir Tiwari , " Static Structural and Thermal Analysis of Brake Pads Design " Volume 7 - Issue 1 January - February,2021 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org Abstract - — In ensuring excellent brake performance, brake pad and disc design are essential factors. But environmental particles can easily reach and disrupt the braking process and decrease braking efficiency. Friction depends on the pad and the disc's geometry and surface properties. Passenger car disc brakes are safety-critical components whose output at the pad-to-rotor interface depends heavily on the contact conditions. It is possible to describe the pad-to-rotor interface as a conformal dry sliding contact. This thesis aims to present a study of automotive disc brake thermo-mechanical behaviour of brake pad of different design during the braking process using finite elemental disc and pad model analysis in Static Structural and Transient Thermal Analysis for a system of vehicle disc brake pads. Static and thermal analysis was carried out on solid discs and brake pad of different design using ANSYS 18 in this work Reference 1. A. Rashid, Overview of Disc Brakes and Related Phenomenon – a review, International Journal of Vehicle Noise and Vibration, 2014,10(4). 2. K. Lee, Numerical Prediction of Brake Fluid Temperature Rise During Braking and Heat Soaking, The Society of Automotive Engineer Technical Paper, 1999. 3. A. Belhocine, M. Bouchetara, N.M. Ghazali, O.I. Abdullah, Structural and Contact Analysis of a 3- Dimensional Disc-Pad Model With and Without Thermal Effects, Turkish Journal of Engineering, Science and Technology,2014,(04). 4. K.N. Kumar, B.N. Raju, M.R. Roy, Static and Thermal Analysis of Disc Brake With Pad , International Journal of Engineering Trends and Technology,2015, 23(8). 5. V. Parab, K. Naik, A.D. Dhale, Structural and Thermal Analysis of Brake Disc, International Journal of Engineering Development and Re search,2014,2(2). 6. V.C. Reddy, M.G. Reddy, G.H. Gowd, Modelling and Analysis of FSAE Car Disc Brake Using FEM, International Journal of Emerging Technology and Advanced Engineering,2013,3(9). 7. R. Jaiswal, A.R. Jha, A. Karki, D. Das, P. Jaiswal, S. Rajgadia, Structural and Thermal Analysis of Disc Brake Using Solidworks and Ansys, International Journal of Mechanical Engineering and Technology,2016,7(1). 8. A. Belhocine, M. Bouchetara, Simulation of Fully Coupled Thermomechanical Analysis of Automotive Brake Discs, Transactions of the Society for Modelling and Simulation International,2014,88(8). 9. M. Patel, J. Raval, J. Patel, Design of Disc Brake’s Rotor, International Journal of Engineering Development and Research,2.16,4(4). 10. F. Talati and S. Jalalifer, Analysis of Heat Conduction in a Disc Brake System, Springer, 2009,45(12) Keywords Ansys, Brake Pad, Brake Pad Design, Catia, Friction Material, Non-Asbestos Material, Thermal Analysis. |