AbstractThis paper addresses the development of a magneto-elastic coupling dynamic loss hysteresis model for giant magnetostrictive materials (GMMs). Considering the eddy current loss and anomalous loss, a dynamic constitutive model is proposed to predict the dynamic hysteresis behavior of GMMs. The model is validated by comparing the predicted results with experiments. At first, the frequency effect and anisotropy effect on the domain distribution can be obtained. Moreover, the magnetostriction cannot return to the initial value near the coercive field as the magnetization does with the increasing frequency. It can be explained that the domain distribution changes with the increasing energy loss. The model is benefit for the design and con...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
In this paper, we propose a model for dynamic magnetostrictive hysteresisin a thin rod actuator. We ...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
This paper addresses the development of a magneto-elastic coupling dynamic loss hysteresis model for...
AbstractThis paper addresses the development of a magneto-elastic coupling dynamic loss hysteresis m...
This paper addresses the deveolopment of a magneto-elastic coupling dynamic hysteresis model for gia...
AbstractThis paper addresses the modeling of complex hysteresis behavior for giant magnetostrictive ...
Giant magnetostrictive materials (GMMs) can convert the magnetic energy to mechanical energy, and vi...
AbstractThis paper addresses the modeling of complex hysteresis behavior for giant magnetostrictive ...
Based on the thermodynamic theory, by introducing the Weiss molecular field and considering current ...
The rate-dependent hysteresis present in thin magnetostrictive actuators can be captured by a dynami...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
This paper addresses the modeling of hysteresis in magnetostrictive transducers. This is considered ...
Due to the existence of multicoupled nonlinear factors in the giant magnetostrictive actuator (GMA),...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
In this paper, we propose a model for dynamic magnetostrictive hysteresisin a thin rod actuator. We ...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
This paper addresses the development of a magneto-elastic coupling dynamic loss hysteresis model for...
AbstractThis paper addresses the development of a magneto-elastic coupling dynamic loss hysteresis m...
This paper addresses the deveolopment of a magneto-elastic coupling dynamic hysteresis model for gia...
AbstractThis paper addresses the modeling of complex hysteresis behavior for giant magnetostrictive ...
Giant magnetostrictive materials (GMMs) can convert the magnetic energy to mechanical energy, and vi...
AbstractThis paper addresses the modeling of complex hysteresis behavior for giant magnetostrictive ...
Based on the thermodynamic theory, by introducing the Weiss molecular field and considering current ...
The rate-dependent hysteresis present in thin magnetostrictive actuators can be captured by a dynami...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
This paper addresses the modeling of hysteresis in magnetostrictive transducers. This is considered ...
Due to the existence of multicoupled nonlinear factors in the giant magnetostrictive actuator (GMA),...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...
In this paper, we propose a model for dynamic magnetostrictive hysteresisin a thin rod actuator. We ...
International audienceMagnetic and mechanical behaviour are strongly coupled: an applied stress modi...