Surface Friction Guiding for Reduced High-Frequency Lateral Vibration of Moving Media

Author:

Kartik V.12,Wickert J. A.34

Affiliation:

1. Mem. ASME

2. IBM Research Laboratory, CH-8803 Rueschlikon, Zurich, Switzerland

3. Fellow ASME

4. Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213

Abstract

The free and forced vibration of a moving medium is examined in an application where distributed friction guiding is used to control lateral position passively. Subambient pressure features formed in the guides intentionally modify the naturally occurring self-pressurized air bearing and increase the contact force between the medium and the guide’s surface. These features increase friction to a level beyond that achievable based on the nominal wrap pressure. The moving medium is modeled as a beam that is transported over frictional regions and subjected to prescribed boundary disturbances arising from runout of a supply or take-up roll. For axial transport at a speed that is high compared to the velocity of lateral vibration, Coulomb friction between the guides and the moving medium can be well approximated by a derived expression for equivalent viscous damping. The equation of motion is developed for the cases of a single cylindrical guide and of a multiplicity of guides having arbitrary placement. The level of equivalent damping for each mode decreases with transport speed, and critical speeds exist where each vibration mode transitions between the overdamped and underdamped regimes. Parameter studies in the contact pressure, transport speed, and guide geometry identify preferred design configurations for maximizing dissipation in particular modes and for attenuating high-frequency response.

Publisher

ASME International

Subject

General Engineering

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1. Stability transitions of an axially moving string subjected to a distributed follower force;Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences;2018-05

2. Lateral Friction Behavior of a Thin, Tensioned Tape Wrapped Over a Grooved Roller: Experiments and Theory;Journal of Tribology;2016-08-11

3. Coupling between the in-plane and lateral tape dynamics in high capacity linear tape transport systems;IFAC Proceedings Volumes;2014

4. Study on the Vibration Response of Axially Moving Continua;Volume 2: Control, Monitoring, and Energy Harvesting of Vibratory Systems; Cooperative and Networked Control; Delay Systems; Dynamical Modeling and Diagnostics in Biomedical Systems; Estimation and Id of Energy Systems; Fault Detection; Flow and Thermal Systems; Haptics and Hand Motion; Human Assistive Systems and Wearable Robots; Instrumentation and Characterization in Bio-Systems; Intelligent Transportation Systems; Linear Systems and Robust Control; Marine Vehicles; Nonholonomic Systems;2013-10-21

5. Transversal vibration analysis of an axially moving string with unilateral constraints using the HHT method;Mechanical Systems and Signal Processing;2013-08

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