Technological solution, frequently used to suppress vibrations in rotating machines, consists in adding damping devices between the rotor and its frame. This is enabled by dampers working on the principle of a squeezing thin classical or magnetorheological fluid film. The Navier-Stokes equations, Reynolds equation, and modified Navier-Stokes equations are used to determine the pressure distribution in the thin fluid film. The damping and stiffness coefficients are computed by the developed procedure presented in this paper. The proposed computational approach is based on the perturbation of the synchronous circular whirling motion. The carried-out computational simulations show that the investigated mathematical models of the squeeze film d...
Rotor vibration attenuation is achieved with damping devices which work on different, often mutually...
Magneto-rheological (MR) fluids react to magnetic fields undergoing changes in their mechanical char...
The rotors working in real technological devices are always slightly imbalanced. This excites their ...
Technological solution, frequently used to suppress vibrations in rotating machines, consists in add...
The magnetorheological squeeze film damping devices for vibration suppression of rigid rotors are st...
Unbalance is the principal cause of excitation of lateral vibrations of rotors and generation of the...
This article presents the evaluation of force effects on squeeze film damper rotor. The rotor is pla...
A technological solution frequently used to suppress vibrations in rotating machines consists in add...
Rotors of all rotating machines are always slightly imbalanced. When they rotate, the imbalance indu...
Lateral vibration of rotors can be significantly reduced by inserting the damping elements between t...
To achieve optimum performance of rotating machines the damping effect of the damping devices added ...
An adaptive squeeze film damper is one whose properties can be continuously adapted to minimize the ...
Placing damping devices between the rotor and its frame is a frequently used engineering solution fo...
A frequently used technological solution for reducing oscillations of rotors excited by imbalance, t...
Magneto-rheological (MR) fluids react to magnetic fields undergoing changes in their mechanical char...
Rotor vibration attenuation is achieved with damping devices which work on different, often mutually...
Magneto-rheological (MR) fluids react to magnetic fields undergoing changes in their mechanical char...
The rotors working in real technological devices are always slightly imbalanced. This excites their ...
Technological solution, frequently used to suppress vibrations in rotating machines, consists in add...
The magnetorheological squeeze film damping devices for vibration suppression of rigid rotors are st...
Unbalance is the principal cause of excitation of lateral vibrations of rotors and generation of the...
This article presents the evaluation of force effects on squeeze film damper rotor. The rotor is pla...
A technological solution frequently used to suppress vibrations in rotating machines consists in add...
Rotors of all rotating machines are always slightly imbalanced. When they rotate, the imbalance indu...
Lateral vibration of rotors can be significantly reduced by inserting the damping elements between t...
To achieve optimum performance of rotating machines the damping effect of the damping devices added ...
An adaptive squeeze film damper is one whose properties can be continuously adapted to minimize the ...
Placing damping devices between the rotor and its frame is a frequently used engineering solution fo...
A frequently used technological solution for reducing oscillations of rotors excited by imbalance, t...
Magneto-rheological (MR) fluids react to magnetic fields undergoing changes in their mechanical char...
Rotor vibration attenuation is achieved with damping devices which work on different, often mutually...
Magneto-rheological (MR) fluids react to magnetic fields undergoing changes in their mechanical char...
The rotors working in real technological devices are always slightly imbalanced. This excites their ...