A local equivalent linearization methodology is proposed to simulate non‐linear shock absorbers and dual‐phase dampers in the convenient frequency domain. The methodology based on principle of energy similarity, characterizes the non‐linear dual‐phase dampers via an array of local damping constants as function of local excitation frequency and amplitude, response, and type of non‐linearity. The non‐linear behaviour of the dual‐phase dampers can thus be predicted quite accurately in the entire frequency range. The frequency response characteristics of a vehicle model employing non‐linear dual‐phase dampers, evaluated using local linearization algorithm, are compared to those of the non‐linear system, established via numerical integration, to demonstrate the effectiveness of the algorithm. An error analysis is performed to quantify the maximum error between the damping forces generated by non‐linear and locally linear simulations. The influence of damper parameters on the ride improvement potentials of dual‐phase dampers is further evaluated using the proposed methodology and discussed.
Article navigation
1 April 1991
Review Article|
April 01 1991
SIMULATION OF NON‐LINEAR VARIABLE DAMPERS USING ENERGY SIMILARITY Available to Purchase
S. RAKHEJA;
S. RAKHEJA
Department of Mechanical Engineering, Concordia Unversity, Montreal, Quebec H3G IM8, Canada
Search for other works by this author on:
A.K.W. AHMED
A.K.W. AHMED
Department of Mechanical Engineering, Concordia Unversity, Montreal, Quebec H3G IM8, Canada
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 1758-7077
Print ISSN: 0264-4401
© MCB UP Limited
1991
Engineering Computations (1991) 8 (4): 333–344.
Citation
RAKHEJA S, AHMED A (1991), "SIMULATION OF NON‐LINEAR VARIABLE DAMPERS USING ENERGY SIMILARITY". Engineering Computations, Vol. 8 No. 4 pp. 333–344, doi: https://doi.org/10.1108/eb023843
Download citation file:
Suggested Reading
Compact guide cylinder incorporates shock absorber
Assembly Automation (June,2002)
Shock resistance
Anti-Corrosion Methods and Materials (December,2002)
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
