We investigate a L-shaped vibrational energy harvesting device using magnetostrictive material (Galfenol) for high output generation and efficiency. Galfenol is ductile magnetostrictive material with large inverse magnetostrictive effect. The device features higher output and efficiency compared with our conventional type. The device is a pair of L-shaped parallel beams consisting of Galfenol plate wound coil and stainless yoke and bias magnet. When a bending force is applied at the tip of the beam, bending moment is exerted on the Galfenol plate which yields uniform axial stress inside plate. Due to the inverse magnetostrictive effect, this stress causes flux change which time variation generates voltage on the wound coils. Prototype was v...
The paper addresses the problem of vibration-to-electric energy conversion using magnetostrictive ma...
Structural vibrations in rotating machinery may lead to imprecise motion control, excessive noise, o...
This paper develops a numerical model to examine the performance of the vibration energy harvester w...
The interest in research and development of smart actuators, sensors and power generators that used ...
We propose a micro energy-harvesting device, using an iron-gallium alloy (Galfenol), capable of gene...
In this paper the novel design of Galfenol based vibration energy harvester is presented. The device...
The field of harvesting electrical energy from ambient vibration has grown with rapid interest. Perp...
A new class of vibration energy harvester based on magnetostrictive material (MsM), Metglas 2605SC, ...
The paper addresses the problem of vibration-to-electric energy conversion using magnetostrictive ma...
In the last decades, the growth in energy demand, the decrease of fossil fuels available in the mark...
This paper presents the validation of a thermodynamic magneto-mechanical model to analyze a galfenol...
Vibration energy harvesting is becoming increasingly attractive in line with the development of wire...
The paper deals with application of giant magnetostrictive materials for power harvesting from vibra...
Vibration energy harvesting is a new alternative to lithium battery power for low-power devices, att...
Rising requirements for a new constructions, force engineers to monitor them all day long. An attrac...
The paper addresses the problem of vibration-to-electric energy conversion using magnetostrictive ma...
Structural vibrations in rotating machinery may lead to imprecise motion control, excessive noise, o...
This paper develops a numerical model to examine the performance of the vibration energy harvester w...
The interest in research and development of smart actuators, sensors and power generators that used ...
We propose a micro energy-harvesting device, using an iron-gallium alloy (Galfenol), capable of gene...
In this paper the novel design of Galfenol based vibration energy harvester is presented. The device...
The field of harvesting electrical energy from ambient vibration has grown with rapid interest. Perp...
A new class of vibration energy harvester based on magnetostrictive material (MsM), Metglas 2605SC, ...
The paper addresses the problem of vibration-to-electric energy conversion using magnetostrictive ma...
In the last decades, the growth in energy demand, the decrease of fossil fuels available in the mark...
This paper presents the validation of a thermodynamic magneto-mechanical model to analyze a galfenol...
Vibration energy harvesting is becoming increasingly attractive in line with the development of wire...
The paper deals with application of giant magnetostrictive materials for power harvesting from vibra...
Vibration energy harvesting is a new alternative to lithium battery power for low-power devices, att...
Rising requirements for a new constructions, force engineers to monitor them all day long. An attrac...
The paper addresses the problem of vibration-to-electric energy conversion using magnetostrictive ma...
Structural vibrations in rotating machinery may lead to imprecise motion control, excessive noise, o...
This paper develops a numerical model to examine the performance of the vibration energy harvester w...