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Modelling of a semi-active hydropneumatic spring-damper unit

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The mathematical modelling of a suspension unit is considered. The unit comprises a hydraulic cylinder connecting the vehicle body to the unsprung mass, two nitrogen-filled accumulator springs and two damper ports. The model takes the deflection rate as input and iteratively employs simple fluid dynamics theory to calculate the flow-rates from each accumulator to the cylinder. It calculates the pressure in the accumulators by time-integrating the flow rates to determine the gas volumes and then invoking ideal gas theory. This renders the dynamic force of the unit as output. Model predictions are compared with measurements.

semi-active suspensionhydropneumatictwin accumulator spring-dampervehicle dynamicsoff-roadmathematical modelsimulationmodel verification

N.J. Theron、P.S. Els

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Dynamic Systems Group, Department of Mechanical and Aeronautical Engineering, University of Pretoria, Pretoria 0002, South Africa

2007

International journal of vehicle design

International journal of vehicle design

EISCI
ISSN:0143-3369
年,卷(期):2007.45(4)