This paper describes several noncontact methods of orienting objects in 3D space using Magnetic Levitation (MagLev). The methods use two permanent magnets arranged coaxially with like poles facing and a container containing a paramagnetic liquid in which the objects are suspended. Absent external forcing, objects levitating in the device adopt predictable static orientations; the orientation depends on the shape and distribution of mass within the objects. The orientation of objects of uniform density in the MagLev device shows a sharp geometry-dependent transition: an analytical theory rationalizes this transition and predicts the orientation of objects in the MagLev device. Manipulation of the orientation of the levitating objects in spac...
The magnetic levitation consists of balancing the forces of attraction and repulsion of a ferromagne...
Magnetic materials are important materials for high-tech areas and technological development, which ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
International audienceThis paper describes several noncontact methods of orienting objects in 3D spa...
Magnetic levitation (MagLev) enables rapid and non-destructive quality control of plastic parts. The...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This work demonstrates the design and development of a magnetic levitation (MagLev) system that is a...
ABSTRACT Magnetic actuation has opened a new horizon in biological/biomedical applications. A novel ...
Herein, a new method for steering liquid metals (LMs) using only a magnetic field in open 3D space i...
This work describes the development of magnetic levitation (MagLev) using ring magnets and a configu...
AbstractThis article deals with problem solution affecting the magnetic field of permanent magnets b...
Presents the fundamental principles governing levitation of material bodies by magnetic fields witho...
The magnetic levitation consists of balancing the forces of attraction and repulsion of a ferromagne...
Magnetic materials are important materials for high-tech areas and technological development, which ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
International audienceThis paper describes several noncontact methods of orienting objects in 3D spa...
Magnetic levitation (MagLev) enables rapid and non-destructive quality control of plastic parts. The...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This work demonstrates the design and development of a magnetic levitation (MagLev) system that is a...
ABSTRACT Magnetic actuation has opened a new horizon in biological/biomedical applications. A novel ...
Herein, a new method for steering liquid metals (LMs) using only a magnetic field in open 3D space i...
This work describes the development of magnetic levitation (MagLev) using ring magnets and a configu...
AbstractThis article deals with problem solution affecting the magnetic field of permanent magnets b...
Presents the fundamental principles governing levitation of material bodies by magnetic fields witho...
The magnetic levitation consists of balancing the forces of attraction and repulsion of a ferromagne...
Magnetic materials are important materials for high-tech areas and technological development, which ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...