1. Field of the Invention
The present invention relates to a magnetic shielding system comprising a magnetic ribbon arranged in the cylindrical shape with open ends, the magnetic shielding system having a shielding function against a magnetic field at the axial direction of the ribbon.
2. Prior Art
Conventionally, the magnetic shielding system is utilized in a field requiring a magnetically shielding space (screen a magnetic field in the DC and low frequency region). In such a magnetic shielding system, for example, a plurality of cylinders with open ends are arranged concentrically with one another. In order to obtain a large shielding effect on the magnetic field at the radial direction of each of the cylinders, a ribbon composed of a rectangular magnetic body forms the outer face of at least one cylinder ordered from the innermost so that the longitudinal direction of the ribbon is parallel or substantially parallel to the circular direction of the cylinder and a coil for flowing the magnetic shaking current is wound on the cylinder. Also, in order to obtain a large shielding effect on the magnetic field at the axial direction of each of the cylinders, a ribbon composed of a rectangular magnetic body forms the outer face of at least one cylinder ordered from the outermost so that the longitudinal direction of the ribbon is parallel or substantially parallel to the axial direction of the cylinder and a coil for flowing the magnetic shaking current is wound on the cylinder (see
However, in such a magnetic shielding system, it is necessary to generate a large shaking current required for obtaining an optimum shielding effect against a magnetic field at a axial direction of each of the cylinders. Concretely, it is necessary to generate the shaking current about ten times of the current required for obtaining an optimum shielding effect against a magnetic field in a radial direction of each of the cylinders.
It is an object of the present invention to provide a magnetic shielding system achieving a sufficient shield effect against the magnetic field at a axial direction of the system with a relative small shaking current.
The present invention provides a magnetic shielding system with a magnetic ribbon arranged at the cylindrical shape, the easy axis of magnetization of the magnetic ribbon corresponding to the longitudinal direction of the magnetic ribbon and the axial direction of the cylindrical shape being parallel or substantially parallel to the longitudinal direction, the system comprising a coil for generating the magnetic shaking field in the magnetic ribbon, the winding direction of the coil being perpendicular or substantially perpendicular to the longitudinal direction,
According to the present invention, as the winding direction of the coil is perpendicular or substantially perpendicular to the longitudinal direction of magnetic ribbons, the magnetic shaking field is applied along the easy axis of magnetization and the magnetic path of the magnetic shaking field is closed by arranging the magnetic ribbons so as to close the coil. Thereby, it is possible to generate the shaking current required for obtaining an optimum shielding effect against a magnetic field in the axial direction of the cylindrical shape substantially same as a current required for obtaining an optimum shielding effect against the magnetic field in a radial direction of the cylindrical direction. Therefore, it is possible to achieve an optimum shielding function against the magnetic field in the axial direction with a relative small shaking current.
Preferably, the system further comprises a winding core composed of a deformable non-magnetic material or an inner core composed of a non-magnetic material. In order to obtain a sufficient shield function with light weight, it is preferable to compose the magnetic ribbon of a material with a small coercitity and a rectangular hysteresis characteristic such as Metglas 2705M.
Embodiments of a magnetic shielding system according to the present invention are described in detail with reference to the drawings.
In this embodiment, the magnetic ribbons 1 are composed of Metglas 2705M (brand name by Allied, Inc. in USA) for example, and the winding core formed of the sponge 2 is composed of a deformable non-magnetic material such as a paper, a resin or the like. A winding direction of the coil 3 is perpendicular or substantially perpendicular to the longitudinal direction of each of the magnetic ribbons 1. Further, each of the magnetic ribbons 1 has an easy axis of magnetization in the longitudinal direction thereof, and is formed so that the magnetic flux path of a magnetic shaking field is closed by arranging the magnetic ribbons so as to close the coil 3, as described after in detail.
Next, a coil 13 is wound around the pipe 11 and the magnetic ribbons 12 at perpendicular or substantially perpendicular to the easy axis of magnetization of magnetic ribbons 12 (
Here, the principle of operation of a magnetic shielding system according to the present invention is described in comparison with that of a conventional magnetic shielding system described in U.S. Pat. No. 6,229,423 B1 filed on May 8, 2001. In case of a conventional magnetic shielding system, as shown in
On the other hand, in case of a magnetic shielding system according to the present invention, as shown in
In case of a cylindrical magnetic shielding system with open ends having an aspect ratio of 2.5 in L/D, the theoretical maximum shield ratio ASF is about 100 however large the magnetic permeability and thickness of a magnetic body to be used are made. In a magnetic shielding system according to the present invention, as the axial direction of the magnetic ribbon and the direction of a magnetic shaking field to be applied are parallel to each other and the magnetic flux path of the magnetic shaking field is closed, the maximum value of the shield ratio ASF is realized by a magnetic shaking field of about 2.4 A/m.
As there is no non-linearity in magnetic permeability even if an external magnetic field is in the order of 10,000 nT similar to the conventional magnetic shielding system because of an effect of magnetic shaking, harmonic components of an external magnetic field do not exist in the shield space. And a high ASF is kept because of a high incremental permeability even in a weak magnetic field as in the order of 100 nT.
According to the present invention, it is possible to generate a shaking current required for obtain an optimum shielding effect against a magnetic field in the axial direction of the cylinder about {fraction (1/10)} smaller than that of a conventional magnetic shielding system as shown in
In the conventional magnetic shielding system as shown in
The present invention is not limited to the above-described embodiments but can be modified and deformed in various manners.
For example, in the above-mentioned embodiment, the magnetic shielding system according to the present invention is formed with the winding core or the inner core composed of a non-magnetic material, however, it is also possible to make the magnetic shielding system according to the present invention without the winding core or the inner core. Also, the magnetic material for forming the magnetic ribbon can be composed of an amorphous alloy, a nano-crystalline alloy or the like other than Metglas 2705M (trade name by Allied, Inc. in USA).
Further, in
The magnetic shielding system according to the present invention is utilized in a field requiring a magnetically shielded space and the following are examples thereof:
Number | Date | Country | Kind |
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2003-320422 | Sep 2003 | JP | national |