Magnetorheological materials based actuators have been currently exciting research topic for more than half-decades. Some actuators have been developed based on magnetorheological fluids and elastomers such as dampers, brakes, haptic devices, clutches, mountings, etc. These devices have their exciting properties which are capable of changing characteristic based on the amount of magnetic flux applied to them. Due to this capability, they are usually called semi-active devices. These devices employ an electromagnetic coil for magnetic flux production. Therefore, during the design process, magnetostatic simulation using the finite element method magnetic is carried out to make a better magnetic circuit. This chapter will consider several disc...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
The ability of a pre-structure device for curing the fountain-like alignment of CIPs in a magnetorhe...
Covers the practical numerical method for the analysis and design of magnets Extensively covers th...
Modelling of realistic electromagnetic problems is presented by partial differential equations (FDEs...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Abstract The finite element method (FEM) has shown its reliability when it deals with electromagneti...
An accessible, comprehensive guide on magnetic actuators and sensors, this fully updated second edit...
Purpose: The purpose of this paper is to investigate the accuracy of different force calculation met...
In this paper, a parametrical method is developed to design a magnetic microactuator. The method is ...
© SAGE Publications. Available magnetorheological elastomer devices normally consist one to two laye...
The dynamic behaviour of magneto-mechanical sensors and actuators can be completely described by Max...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
The ability of a pre-structure device for curing the fountain-like alignment of CIPs in a magnetorhe...
Covers the practical numerical method for the analysis and design of magnets Extensively covers th...
Modelling of realistic electromagnetic problems is presented by partial differential equations (FDEs...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Design and optimization of an actuators based on magnetostrictive technology requires computation of...
Abstract The finite element method (FEM) has shown its reliability when it deals with electromagneti...
An accessible, comprehensive guide on magnetic actuators and sensors, this fully updated second edit...
Purpose: The purpose of this paper is to investigate the accuracy of different force calculation met...
In this paper, a parametrical method is developed to design a magnetic microactuator. The method is ...
© SAGE Publications. Available magnetorheological elastomer devices normally consist one to two laye...
The dynamic behaviour of magneto-mechanical sensors and actuators can be completely described by Max...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...
This dissertation is a study of new modeling techniques developed for magnetic suspension systems. T...