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A reduced-order model for complex modes of brake squeal model and its application to a flexible pin-on-disc system

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Publication:1664601
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DOI10.1155/2015/103809zbMath1394.70044OpenAlexW2130113220WikidataQ59118410 ScholiaQ59118410MaRDI QIDQ1664601

Dejian Meng, Jun Wu, Li-jun Zhang

Publication date: 27 August 2018

Published in: Mathematical Problems in Engineering (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1155/2015/103809



Mathematics Subject Classification ID

Problems involving a system of particles with friction (70F40)





Cites Work

  • Analytical investigation of steady-state stability and Hopf-bifurcations occurring in sliding friction oscillators with application to low-frequency disc brake noise
  • Analytical formulation of mode-coupling instability in disc-pad coupled system
  • Dynamic Instability of an Elastic Disk Under the Action of a Rotating Friction Couple
  • An Efficient Approach to Estimate Critical Value of Friction Coefficient in Brake Squeal Analysis
  • Friction Induced Vibrations in Moving Continua and Their Application to Brake Squeal




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