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Titlebook: Insight into Magnetorheological Shock Absorbers; Janusz Gołdasz,Bogdan Sapiński Book 2015 Springer International Publishing Switzerland 20

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Modelling of Control Valves,mpers. Electromagnetic coupling is provided through a magneto-static axisymmetric model of the control valve assembly or a (transient) lumped parameter model of the electromagnetic circuit of the control valve. A simple design algorithm for optimising the performance of the dampers is demonstrated in the chapter, too.
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of flow-mode magnetorheological shock absorbers, which are cThis book deals with magnetorheological fluid theory, modeling and applications of automotive magnetorheological dampers. On the theoretical side a review of MR fluid compositions and key factors affecting the characteristics of these fluid
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Configurations of MR Dampers,e flow path, etc. The significance of the secondary flow paths on the low velocity performance of the valves is highlighted, too. The authors conclude the chapter with fail-safe valves and velocity- as well as field-sensing valves utilising search coils as well as other structures with sensory capabilities.
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Experimental Verification of an MR Monotube Damper Model,totype dampers is presented and results discussed. Finally, based on the prototype geometry and the properties of the fluid and damper component materials, the authors carry out simulations of the damper behaviour and compare them against the real-life data.
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Energy Harvesting MR Dampers,ormulated electromagnetic field equations and discuss the results of its experimental testing compared against numerical data. They describe the design structure and model of the MR damper, and then compare the experimental characteristics of the device with those obtained in numerical procedures.
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