The flexible arm easily vibrates due to its thin structural characteristics, which affect the operation accuracy, so reducing the vibration of the flexible arm is a significant issue. Smart materials are very widely used in the research topic of vibration suppression. Considering the hysteresis characteristic of the smart materials, based on previous simulation research, this paper proposes an experimental system design of nonlinear vibration control by using the interactive actuation from shape memory alloy (SMA) for a flexible arm. The experiment system was an interactive actuator–sensor–controller combination. The vibration suppression strategy was integrated with an operator-based vibration controller, a designed integral compensator an...
This study is concerned with the motion and vibration control strategy for the flexible-link mechani...
This paper presents position and vibration control of a flexible robot composed of two rigid and one...
Damage to machinery due to large vibration amplitudes at or near critical speeds can be avoided by t...
This research investigates the design and control of an adaptive tuned vibration absorber (ATVA) usi...
In this study, the control of structural vibrations using shape memory alloy (SMA) actuators were de...
Abstract- This paper describes the development of an experimental platform which analyzes and contro...
This paper presents the active vibration suppression of a cantilever beam using shape memory alloy (...
The vibration control is an important field of study within mechanical engineering, whose main obje...
Active Vibration Control (AVC) has recently emerged as a superior technique in vibration suppression...
Vibration control of civil structures, machines or generators for instance, is achallenging task whe...
The tuned vibration absorber (TVA) is a well established vibration control device. An adaptive TVA (...
The purpose of this research is to present new methods of active and passive vibration control for f...
A conventional passive tuned vibration absorber (TVA) is effective when it is precisely tuned to the...
This paper describes the design and the experimental work on a force-generating Shape Memory Alloy (...
Machinery can suffer from mechanical vibrations since resonance may be generated from time-varying e...
This study is concerned with the motion and vibration control strategy for the flexible-link mechani...
This paper presents position and vibration control of a flexible robot composed of two rigid and one...
Damage to machinery due to large vibration amplitudes at or near critical speeds can be avoided by t...
This research investigates the design and control of an adaptive tuned vibration absorber (ATVA) usi...
In this study, the control of structural vibrations using shape memory alloy (SMA) actuators were de...
Abstract- This paper describes the development of an experimental platform which analyzes and contro...
This paper presents the active vibration suppression of a cantilever beam using shape memory alloy (...
The vibration control is an important field of study within mechanical engineering, whose main obje...
Active Vibration Control (AVC) has recently emerged as a superior technique in vibration suppression...
Vibration control of civil structures, machines or generators for instance, is achallenging task whe...
The tuned vibration absorber (TVA) is a well established vibration control device. An adaptive TVA (...
The purpose of this research is to present new methods of active and passive vibration control for f...
A conventional passive tuned vibration absorber (TVA) is effective when it is precisely tuned to the...
This paper describes the design and the experimental work on a force-generating Shape Memory Alloy (...
Machinery can suffer from mechanical vibrations since resonance may be generated from time-varying e...
This study is concerned with the motion and vibration control strategy for the flexible-link mechani...
This paper presents position and vibration control of a flexible robot composed of two rigid and one...
Damage to machinery due to large vibration amplitudes at or near critical speeds can be avoided by t...