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Modal Analysis of the Floating Caliper Brake Assembly through Complex Eigenvalue Analysis: A Weighted Bolt Approach Cover

Modal Analysis of the Floating Caliper Brake Assembly through Complex Eigenvalue Analysis: A Weighted Bolt Approach

Open Access
|Nov 2025

References

  1. Mills, H.R. “Brake Squeak”, Institution of Automobile Engineers, 1938.
  2. Zhiqiang, W., Zhenyu, L. “Study on Stick-Slip Oscillations as a Formation Mechanism of Rail Corrugation on Metro Lines and Parameter Analysis”, Strojnícky časopis – Journal of Mechanical Engineering 74 (3), pp. 131 – 144, 2024. DOI: 10.2478/scjme-2024-0040
  3. Úradníček, J., Kraus, P., Musil, M., Bachratý, M. “Investigation of Frictional Stick-Slick Effect in Disk Brake NVH”, Strojnícky časopis – Journal of Mechanical Engineering 67(1), pp. 93 – 100, 2017. DOI: 10.1515/scjme-2017-0010
  4. Nouby, M., Srinivasan, K. “Simulation of the Structural Modifications of a Disc Brake System to Reduce Brake Squeal”, Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 225, pp. 653 – 672, 2011. DOI: 10.1177/2041299110394515.
  5. Park, J.S., Lee, J.C., Cho, S., Yoon, K. “Reduction of Brake Squeal Analyzed in Terms of Coupling Between In-Plane and Out-of-Plane Modes”, SAE International Journal of Passenger Cars - Mechanical Systems 5, pp. 1230 – 1243, 2012. DOI: 10.4271/2012-01-1828.
  6. Lv, H.M., Zhang, L.J., Yu, Z.P. “Influence of Surface Run-out on Disc Brake Squeal”, Journal of Vibroengineering 15, pp. 520 – 531, 2013.
  7. De Simone, M.; Guida, D. “Modal Coupling in Presence of Dry Friction”, Machines 6 (8), 2018. DOI: 10.3390/machines6010008
  8. Lamarque, P., Williams, C. “Brake Squeak: The Experiences of Manufacturers and Operators and Some Preliminary Experiments”, Institution of Automobile Engineers, 1938.
  9. Liles, G.D. “Analysis of Disc Brake Squeal Using Finite Element Methods”, In Proceedings of the SAE Noise and Vibration Conference and Exposition, p. 891150, 1989. DOI: 10.4271/891150
  10. Graf, M.; Ostermeyer, G.P. “Instabilities in the Sliding of Continua with Surface Inertias: An Initiation Mechanism for Brake Noise. Journal of sound and vibration 330 (22), pp. 5269 – 5279, 2011. DOI: 10.1016/j.jsv.2011.06.002
  11. Denimal, E., Sinou, J.J., Nacivet, S., Nechak, L. “Squeal Analysis Based on the Effect and Determination of the Most Influential Contacts between the Different Components of an Automotive Brake System”, International Journal of Mechanical Sciences 151, pp. 192 – 213, 2019. DOI: 10.1016/j.ijmecsci.2018.10.054
  12. Dunlap, K.B., Riehle, M.A., Longhouse, R.E. “An Investigative Overview of Automotive Disc Brake Noise”, In Proceedings of the International Congress & Exposition, 1999–01–0142, 1999. DOI: 10.4271/1999-01-0142
  13. Kharate, N., Chaudhari, S. “Effect of Material Properties on Disc Brake Squeal and Performance Using FEM and EMA Approach”, Materials Today: Proceedings 5, pp. 4986 – 4994, 2018. DOI: 10.1016/j.matpr.2017.12.076
  14. Pastor, M., Binda, M., Hařcarik, T. “Modal assurance criterion”, Procedia Engineering 48, pp. 543 – 548, 2012.
DOI: https://doi.org/10.2478/scjme-2025-0031 | Journal eISSN: 2450-5471 | Journal ISSN: 0039-2472
Language: English
Page range: 1 - 12
Published on: Nov 28, 2025
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2025 Pavel Beňo, Zuzana Brodnianská, Marek Lipnický, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.