Modeling Approach for Estimation of Contact and Friction Behavior of Rolling Elements in Linear Bearings

Author:

Reuss Matthias,Sakai Taku,Matsubara Atsushi, , ,

Abstract

The improvement in the positioning accuracy of machine tools necessitates reliable friction models for compensation. Friction and damping are primarily caused by mechanical contacts, and they have a wide influence on the dynamics of machine tools. Particularly in the linear motor driven axis, linear bearings induce majority of the friction; contact is observed between the ball and raceway in linear bearings. Based on the Hertzian contact theory and a tangential force model, a model is developed for the friction behavior during the contact between the ball and raceway. This model determines the stick and slip areas, and the relative velocity at the contact surface. Hence, the calculation of the friction force, its hysteresis characteristics, and the stick and slip portions becomes possible.

Publisher

Fuji Technology Press Ltd.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference20 articles.

1. S. Ito, “Analysis of rolling friction between steel ball and raceway,” Bearing Engineer, Vol.6, No.1, pp. 784-792, 1957 (in Japanese).

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3. R. Teutsch, “Contact models and strategies for simulation of rolling bearings and linear motion guides,” Ph.D. Thesis, University of Kaiserslautern, 2005 (in German).

4. T. Fujita, A. Matsubara, and K. Yamazaki, “Experimental characterization of disturbance force in a linear drive system with high precision rolling guideways,” Int. J. Mach. Tools Manuf., Vol.51, No.2, pp. 104-111, 2011.

5. T. Tanaka, J. Otsuka, and T. Oiwa, “Precision positioning control by modeling frictional behaviors of linear ball guideway,” Int. J. Automation Technol., Vol.3 No.3, pp. 334-342, 2009.

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