IP Library Granted Patent US 11,255,407
Granted Patent B2
US 11,255,407 · App. 16/638,496 · Granted Feb 22, 2022

Eddy current damper

Inventors: Kenji Imanishi (Tokyo, JP); Hiroyuki Yamaguchi (Tokyo, JP); Ryohsuke Masui (Tokyo, JP); Shigeki Nakaminami (Tokyo, JP); Hidenori Kida (Tokyo, JP)
Assignees: Nippon Steel Corporation; Aseismic Devices Co., Ltd.
F16F15/035F16F6/005E04B1/98
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Quick Facts
Patent No.
US 11,255,407
App. No.
16/638,496
Granted
Feb 22, 2022
Kind
B2
Abstract

An eddy current damper includes a screw shaft, first permanent magnets, second permanent magnets, a cylindrical magnet holding member, a cylindrical conductive member, and a ball nut meshing with a screw shaft. The screw shaft is movable in the axial direction. The first permanent magnets are arrayed along the circumferential direction around the screw shaft. The second permanent magnet is arranged between the first permanent magnets, wherein the arrangement of magnet poles is inverted between the second permanent magnet and the first permanent magnet. The magnet holding member holds the first permanent magnet and the second permanent magnet. The conductive member is opposed to the first permanent magnets and the second permanent magnets with a gap therebetween. The ball nut is disposed inside the magnet holding member and the conductive member, and is fixed to the magnet holding member or the conductive member.

Claims (32)

1. An eddy current damper, comprising:

a screw shaft movable in an axial direction;

a plurality of first permanent magnets arrayed along a circumferential direction around the screw shaft;

a plurality of second permanent magnets each arranged between the first permanent magnets leaving gaps with the first permanent magnets, wherein arrangement of magnetic poles is inverted between the second permanent magnets and the first permanent magnets;

a cylindrical magnet holding member for holding the first permanent magnets and the second permanent magnets;

a cylindrical conductive member which has conductivity and is opposed to the first permanent magnets and the second permanent magnets with a gap between the conductive member, and the first permanent magnets and the second permanent magnets; and

a ball nut which is arranged inside the magnet holding member and the conductive member and meshes with the screw shaft, wherein

the magnet holding member is arranged inside the conductive member,

the first permanent magnets and the second permanent magnets are attached to an outer peripheral surface of the magnet holding member,

the ball nut is fixed to the magnet holding member, and

the eddy current damper includes:

a distal end side bearing attached to an inner peripheral surface of the conductive member at a position closer to the distal end side of the screw shaft than the first permanent magnets and the second permanent magnets, the distal end side bearing supporting the outer peripheral surface of the magnet holding member; and

a root side bearing attached to the inner peripheral surface of the conductive member at a position closer to the root side of the screw shaft than the first permanent magnets and the second permanent magnets, the root side bearing supporting the outer peripheral surface of the magnet holding member.

2. The eddy current damper according to claim 1 , wherein

the first permanent magnets are arranged in a plurality of rows along an axial direction of the magnet holding member, and

the second permanent magnets are arranged in a plurality of rows along the axial direction of the magnet holding member.

3. An eddy current damper, comprising:

a screw shaft movable in an axial direction;

a plurality of first permanent magnets arrayed along a circumferential direction around the screw shaft;

a plurality of second permanent magnets each arranged between the first permanent magnets leaving gaps with the first permanent magnets, wherein arrangement of magnetic poles is inverted between the second permanent magnets and the first permanent magnets;

a cylindrical magnet holding member for holding the first permanent magnets and the second permanent magnets;

a cylindrical conductive member which has conductivity and is opposed to the first permanent magnets and the second permanent magnets with a gap between the conductive member, and the first permanent magnets and the second permanent magnets; and

a ball nut which is arranged inside the magnet holding member and the conductive member and meshes with the screw shaft, wherein

the conductive member is arranged inside the magnet holding member,

the first permanent magnets and the second permanent magnets are attached to an inner peripheral surface of the magnet holding member,

the ball nut is fixed to the conductive member, and

the eddy current damper includes:

a distal end side bearing attached to the inner peripheral surface of the magnet holding member at a position closer to the distal end side of the screw shaft than the first permanent magnets and the second permanent magnets, the distal end side bearing supporting an outer peripheral surface of the conductive member; and

a root side bearing attached to the inner peripheral surface of the magnet holding member at a position closer to the root side of the screw shaft than the first permanent magnets and the second permanent magnets, the root side bearing supporting the outer peripheral surface of the conductive member.

4. The eddy current damper according to claim 3 , wherein

the first permanent magnets are arranged in a plurality of rows along an axial direction of the magnet holding member, and

the second permanent magnets are arranged in a plurality of rows along the axial direction of the magnet holding member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2020
From: IMANISHI, KENJI; YAMAGUCHI, HIROYUKI; MASUI, RYOHSUKE; NAKAMINAMI, SHIGEKI; KIDA, HIDENORI
To: NIPPON STEEL CORPORATION; ASEISMIC DEVICES CO., LTD.
Reel/Frame 051792/0244 →
Priority Claims (1)
JP JP2017-164572 · Aug 29, 2017 · national
Continuity (1)
Related Publication 20200263759A1 · Aug 20, 2020
Cited By (1)
US 12,674,319