Advances in the application of multi-body simulation technology to real world problems have led to an ever increasing demand for higher fidelity modeling techniques. Of these, accurate modeling of friction is of strategic interest in applications such as control system design, automotive suspension analysis, robotics etc. Joints (sometimes referred to as constraints) play an important role in defining the dynamics of a multi-body system. Hence, it is imperative to accurately account for friction forces arising at these joints due to the underlying interface dynamics. In this paper, we discuss the application of LuGre, a dynamic friction model to simulate joint friction. We choose the LuGre model due to its ability to capture important effects such as the Stribeck effect and the Dahl effect. The native 1-d LuGre model is extended to formulate friction computations for non-trivial joint geometries and dynamics in 2 and 3 dimensions. It is also extended to work in the quasi-static regime. Specific applications to revolute, cylindrical and spherical joints in multi-body systems are discussed. Finally, an engineering case study on the effects of joint friction in automotive suspension analysis is presented.
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ASME 2011 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference
August 28–31, 2011
Washington, DC, USA
Conference Sponsors:
- Design Engineering Division and Computers and Information in Engineering Division
ISBN:
978-0-7918-5481-5
PROCEEDINGS PAPER
On the Application of the Lu-Gre Model to Simulate Joint Friction in Multi-Body Systems Available to Purchase
Kedar Gajanan Kale,
Kedar Gajanan Kale
Altair Engineering, Bangalore, KA, India
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Rajiv Rampalli
Rajiv Rampalli
Altair Engineering, Troy, MI
Search for other works by this author on:
Kedar Gajanan Kale
Altair Engineering, Bangalore, KA, India
Rajiv Rampalli
Altair Engineering, Troy, MI
Paper No:
DETC2011-47360, pp. 187-196; 10 pages
Published Online:
June 12, 2012
Citation
Kale, KG, & Rampalli, R. "On the Application of the Lu-Gre Model to Simulate Joint Friction in Multi-Body Systems." Proceedings of the ASME 2011 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Volume 4: 8th International Conference on Multibody Systems, Nonlinear Dynamics, and Control, Parts A and B. Washington, DC, USA. August 28–31, 2011. pp. 187-196. ASME. https://doi.org/10.1115/DETC2011-47360
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