Halbach array magnetic gearboxes have been discussed as being able to create high torque density. However, Halbach arrays are difficult to mechanically assembly and often the effective air-gap must be made larger in order to provide space for a retaining sleeve. This paper investigates the benefits of using an additional ferromagnetic retaining pole within the Halbach array structure. It is shown that utilizing this flux concentration ferromagnetic pole improves the torque density and can also help retain the magnets in place
This paper reports an electromagnetic vibration energy harvester using an improved Halbach array. A ...
Due to the particular arrangement of permanent magnets, a Halbach array has an significant effect of...
The steady-state performance of Halbach magnetized brushless ac machines when operated in constant t...
This paper presents the design, analysis, and experimental testing results for a 5.67:1 Halbach roto...
This paper presents the performance comparison between a flux concentration and triple permanent mag...
This paper proposes a coaxial magnetic gear that offers higher torque density, lower cogging torque,...
This paper presents the design investigation and experimental testing of a flux-focusing magnetic ge...
By utilizing magnetic field space modulation magnetic gearboxes (MGs) are able to create speed ampli...
The design of the second stage of a 59:1 multi-stage magnetic gearbox for a wind turbine demonstrato...
NASA Glenn Research Center is investigating hybrid electric and turboelectric propulsion concepts fo...
We develop analytical models for predicting the magnetic field distribution in Halbach magnetized ma...
Permanent magnets are often preferred over electromagnets for smaller applications, as the latter ar...
The ever increasing necessity to improve torque density while simultaneously maintaining high effici...
It has been traditionally thought that a coaxial magnetic gear (MG) can only have a high volumetric ...
This paper derives the closed form 3-D analytical torque equations for an ideal radial Halbach rotor...
This paper reports an electromagnetic vibration energy harvester using an improved Halbach array. A ...
Due to the particular arrangement of permanent magnets, a Halbach array has an significant effect of...
The steady-state performance of Halbach magnetized brushless ac machines when operated in constant t...
This paper presents the design, analysis, and experimental testing results for a 5.67:1 Halbach roto...
This paper presents the performance comparison between a flux concentration and triple permanent mag...
This paper proposes a coaxial magnetic gear that offers higher torque density, lower cogging torque,...
This paper presents the design investigation and experimental testing of a flux-focusing magnetic ge...
By utilizing magnetic field space modulation magnetic gearboxes (MGs) are able to create speed ampli...
The design of the second stage of a 59:1 multi-stage magnetic gearbox for a wind turbine demonstrato...
NASA Glenn Research Center is investigating hybrid electric and turboelectric propulsion concepts fo...
We develop analytical models for predicting the magnetic field distribution in Halbach magnetized ma...
Permanent magnets are often preferred over electromagnets for smaller applications, as the latter ar...
The ever increasing necessity to improve torque density while simultaneously maintaining high effici...
It has been traditionally thought that a coaxial magnetic gear (MG) can only have a high volumetric ...
This paper derives the closed form 3-D analytical torque equations for an ideal radial Halbach rotor...
This paper reports an electromagnetic vibration energy harvester using an improved Halbach array. A ...
Due to the particular arrangement of permanent magnets, a Halbach array has an significant effect of...
The steady-state performance of Halbach magnetized brushless ac machines when operated in constant t...