This study examined the control performance of a multi-layer smart beam structure in which the middle layer was partially filled with magnetorheological (MR) fluid. A galloping profile was connected to the endpoint to obtain vibration from this smart beam element in a regular regime. Flow-induced continuous vibration was created on the beam element by giving wind load from a certain distance to this galloping profile. The natural frequency values of the smart beam element were obtained analytically using the lumped parameter mathematical model, and their accuracy was compared with numerical methods. An electromagnet was placed opposite to MR fluid region to suppress vibrations by creating an actuator relationship with the smart beam....
Special dampers for structural control of earthquake induced vibrations are considered herein. The s...
Magnetorheological (MR) fluid is known to exhibit rapid variations in their rheological properties w...
Abstract Recent research work on the development of smart damping systems using electro-rheological ...
A method for the control of the transmission of bending vibrations in beams is described. A composit...
An adaptive tuned vibration absorber (ATVA) can be used to suppress unwanted vibrations. If the exci...
The concept of vibration controllability with smart fluids within flexible structures has been in th...
In this paper, the vibration suppression capabilities of magnetorheological (MR) layer in smart beam...
Summarization: This paper presents the design of a vibration control mechanism for a beam with bonde...
An aluminium sandwich beam structure embedded with MR fluids was designed as a new type of distribut...
This paper presents the synthesis of full state and limited state flexible mode shape (FMS) based co...
A new type of distributed active vibration absorber using MR fluids embedded in a sandwich beam stru...
In the work a model predictive control method was applied to control the beam vibrations. Model pred...
A new type of distributed active vibration absorber using MR fluids embedded in a sandwich beam stru...
University of Technology Sydney. Faculty of Engineering and Information Technology.Engineering struc...
Abstract: This paper deals with the problem of identification and semiactive control of smart struct...
Special dampers for structural control of earthquake induced vibrations are considered herein. The s...
Magnetorheological (MR) fluid is known to exhibit rapid variations in their rheological properties w...
Abstract Recent research work on the development of smart damping systems using electro-rheological ...
A method for the control of the transmission of bending vibrations in beams is described. A composit...
An adaptive tuned vibration absorber (ATVA) can be used to suppress unwanted vibrations. If the exci...
The concept of vibration controllability with smart fluids within flexible structures has been in th...
In this paper, the vibration suppression capabilities of magnetorheological (MR) layer in smart beam...
Summarization: This paper presents the design of a vibration control mechanism for a beam with bonde...
An aluminium sandwich beam structure embedded with MR fluids was designed as a new type of distribut...
This paper presents the synthesis of full state and limited state flexible mode shape (FMS) based co...
A new type of distributed active vibration absorber using MR fluids embedded in a sandwich beam stru...
In the work a model predictive control method was applied to control the beam vibrations. Model pred...
A new type of distributed active vibration absorber using MR fluids embedded in a sandwich beam stru...
University of Technology Sydney. Faculty of Engineering and Information Technology.Engineering struc...
Abstract: This paper deals with the problem of identification and semiactive control of smart struct...
Special dampers for structural control of earthquake induced vibrations are considered herein. The s...
Magnetorheological (MR) fluid is known to exhibit rapid variations in their rheological properties w...
Abstract Recent research work on the development of smart damping systems using electro-rheological ...