Browse Publications Technical Papers 1999-01-3404
1999-10-12

Analysis of Friction-Induced Instabilities in a Simplified Aircraft Brake 1999-01-3404

The stability and dynamic characteristics of frictioninduced vibrations in a simplified aircraft brake model are investigated. A finite element model equipped with nonlinear frictional contact algorithm is used. The constitutive model of the interface is based on an extended version of the Oden-Martins law [1]. The interface material constants are obtained via asperity-based homogenization methodology from the profilometric information on the surface. Initial uncoupled analyses are performed to identify the basic dynamic modes of the model. Frequencies of normal vibrations of the model are found to be dependent on the interface stiffness and the piston pressure. To study the dynamic behavior of the system, its transient response is computed after a perturbation of the steadystate sliding position. It is found that, while the vibrations are subdued in some cases categorized as stable, they grow in other, unstable cases. It is also shown that the triggering mechanism of instability can be either the velocity-dependent coefficient of friction or the dynamic coupling of certain vibration modes of the system (even without velocity-dependent friction). These two unstable modes exhibit different dynamic characteristics.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
Special Offer: Download multiple Technical Papers each year? TechSelect is a cost-effective subscription option to select and download 12-100 full-text Technical Papers per year. Find more information here.
We also recommend:
TECHNICAL PAPER

The Rolls-Royce Civil Engine Family - Today and into the Future

881205

View Details

TECHNICAL PAPER

Application of Mathematical Models to Detect and Diagnose Reciprocating Compressor Valve Leakage

2001-01-1724

View Details

TECHNICAL PAPER

Numerical Modeling of Vane Oil Pump with Variable Displacement

2012-01-0637

View Details

X