This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Brake Squeal Prevention through Suspension Design and Adaptive Suspension

Journal Article
10-03-03-0011
ISSN: 2380-2162, e-ISSN: 2380-2170
Published September 03, 2019 by SAE International in United States
Brake Squeal Prevention through Suspension Design and Adaptive Suspension
Sector:
Citation: Saxena, S. and Dutt, J., "Brake Squeal Prevention through Suspension Design and Adaptive Suspension," SAE Int. J. Veh. Dyn., Stab., and NVH 3(3):153-163, 2019, https://doi.org/10.4271/10-03-03-0011.
Language: English

References

  1. Kinkaid , N.M. , OReilly , O.M. , and Papadopoulos , P. Automotive Disc Brake Squeal Journal of Sound and Vibration 267 105 166 2003
  2. Hassan , M.Z. , Brooks , P.C. , and Barton , D.C. The Evaluation of Disc Brake Squeal Propensity through a Fully Coupled Transient Thermomechanical Model Journal of Automobile Engineering 227 3 361 375 2013
  3. Lou , G. , Wu , T.W. , and Bai , Z. Disk Brake Squeal Prediction Using the ABLE Algorithm Journal of Sound and Vibration 272 731 748 2004
  4. von Wagner , U. , Hochlenert , D. , and Hagedorn , P. Minimal Models for Disk Brake Squeal Journal of Sound and Vibration 302 527 539 2007
  5. Triches Jr , M. , Gerges , S.N.Y. , and Jordan , R. Reduction of Squeal Noise from Disc Brake Systems Using Constrained Layer Damping Journal of the Brazilian Society of Mechanical Sciences and Engineering 2004
  6. Kim , C. , Kwon , Y. , and Kim , D. Analysis of Low-Frequency Squeal in Automotive Disc Brake by Optimizing Groove and Caliper Shapes International Journal of Precision Engg. and Manufacturing 19 4 505 512 2018
  7. Wagner , A. 2013
  8. Spelsberg-Korspeter , G. , Hochlenert , D. , and Hagedorn , P. Non-Linear Investigation of an Asymmetric Disk Brake Model Journal of Mechanical Engineering Science, Proc. IMechE 225 Part C 2325 2332 2011
  9. Wehner , J.-H. , Jekel , D. , Sampaio , R. , and Hagedorn , P. Damping Optimization in Simplified and Realistic Disc Brakes Heidelberg Springer Briefs in Applied Sciences and Technology, Springer 2017
  10. Kessler , P. , OReilly , O.M. , Raphael , A.-L. , and Maciej , Z. On Dissipation-Induced Destabilization and Brake Squeal: A Perspective Using Structured Pseudospectra Journal of Sound and Vibration 308 111 2007
  11. Denou , Y. and Nishiwaki , M. First Order Analysis of Low Frequency Disk Brake Squeal SAE Technical Paper 2001-01-3136 2001 10.4271/2001-01-3136
  12. Jearsiripongkul , T. and Hochlenert , D.
  13. Hochlenert , D. and Hagedorn , P. Control of Disc Brake Squeal Modelling and Experiments Structural Control and Health Monitoring 13 260 276 2006
  14. Dutt , J.K. and Nakra , B.C. Stability of Rotor Systems with Viscoelastic Supports Journal of Sound and Vibration 153 l 89 96 1992
  15. Lee , N.-J. and Kang , C.-G. The Effect of a Variable Disc Pad Friction Coefficient for the Mechanical Brake System of a Railway Vehicle PLoS One 10 8 e0135459 10.1371/journal.pone.0135459
  16. Tondl , A. Some Problems of Rotor Dynamics Prague Publishing House of the Czechoslovak Academy of Sciences 1965
  17. Marcus , M. Mathematical Association of America The College Mathematics Journal 21 2 130 135 March 1990

Cited By