The presented paper deals with dynamical and experimental investigations of a hybrid energy harvester containing shape memory alloy (SMA) wire and elastic cantilever with piezoelectric layer. The SMA wire periodically changes its temperature under the influence of a heated plate that approaches and moves away from the SMA wire. The change of SMA wire length causes rotation of the hot plate. The plate is heated by a heater with constant temperature. The repeated SMA wire extensions and contractions bend the piezoelectric cantilever which generates electric charges. The shape memory effect is presented as a temperature approximation of the Young’s modulus. A dynamical model of the energy harvester is created and some analytical investigations...
EXTENDED ABSTRACT I n t r o d u c t i o n Certain alloys of two or more metallic elements exhibit a ...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
ABSTRACT: Mathematical models and circuitry necessary for optimal energy conversion have been develo...
The presented paper deals with dynamical and experimental investigations of a hybrid energy harveste...
International audienceThis work gives experimental evidence of a promising method of thermal-to-elec...
Recently, there has been an increased demand for power harvesting as a source of providing renewabl...
International audienceWithin the ENHANCE European project, hybrid energy harvesters have to be desig...
This thesis aims to establish a transient electro-thermomechanical model capable of characterizing t...
This thesis experimentally studies the possibility of thermal energy harvesting using coupled shape ...
Abstract. A thermomechanical model is developed to predict the structural response of a flexible bea...
This project investigated the energy conversion efficiency of one way shape memory alloys (SMA). Ene...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
The studies on the so-called smart materials have grown in the last years due to the diverse possibi...
The discovery of shape memory effect in materials has enabled the direct conversion of low-grade the...
EXTENDED ABSTRACT I n t r o d u c t i o n Certain alloys of two or more metallic elements exhibit a ...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
ABSTRACT: Mathematical models and circuitry necessary for optimal energy conversion have been develo...
The presented paper deals with dynamical and experimental investigations of a hybrid energy harveste...
International audienceThis work gives experimental evidence of a promising method of thermal-to-elec...
Recently, there has been an increased demand for power harvesting as a source of providing renewabl...
International audienceWithin the ENHANCE European project, hybrid energy harvesters have to be desig...
This thesis aims to establish a transient electro-thermomechanical model capable of characterizing t...
This thesis experimentally studies the possibility of thermal energy harvesting using coupled shape ...
Abstract. A thermomechanical model is developed to predict the structural response of a flexible bea...
This project investigated the energy conversion efficiency of one way shape memory alloys (SMA). Ene...
An experimental study was carried out to investigate the shape control of plates via embedded shape ...
The studies on the so-called smart materials have grown in the last years due to the diverse possibi...
The discovery of shape memory effect in materials has enabled the direct conversion of low-grade the...
EXTENDED ABSTRACT I n t r o d u c t i o n Certain alloys of two or more metallic elements exhibit a ...
International audienceThis work proposes an enhanced method for thermal energy harvesting exploiting...
ABSTRACT: Mathematical models and circuitry necessary for optimal energy conversion have been develo...