IP Library Granted Patent US 10,036,447
Granted Patent B2
US 10,036,447 · App. 15/542,563 · Granted Jul 31, 2018

Stabilizer and ship

Inventors: Tsuyoshi Nohara (Tokyo, JP); Takashi Miura (Tokyo, JP); Hiroshi Takeuchi (Tokyo, JP); Katsuya Umemura (Tokyo, JP)
Assignee: TOHMEI INDUSTRIES CO., LTD.
F16F15/129B63B39/005B63B39/04F16F15/16B60G2202/22F16F9/145
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Quick Facts
Patent No.
US 10,036,447
App. No.
15/542,563
Granted
Jul 31, 2018
Kind
B2
Abstract

A stabilizer ( 10 ) includes a base ( 20 ) fixed on a motion reduction target ( 1 ); a gimbal ( 40 ) supported by the base to be rotatable around a first axis (RA); a damper mechanism ( 30 ) disposed to damp a relative rotary motion of the gimbal ( 40 ) to the base ( 20 ); a flywheel ( 50 ) disposed to be rotatable around a second axis (RB) orthogonal to the first axis (RA). The damper mechanism ( 30 ) is a passive-type damper mechanism. A first value (D 1 ) of a damping coefficient (D) of the damper mechanism ( 30 ) when an angular velocity of the gimbal ( 40 ) is a first angular velocity is larger than a second value (D 2 ) of the damping coefficient (D) of the damper mechanism ( 30 ) when the angular velocity of the gimbal ( 40 ) is a second angular velocity smaller than the first angular velocity.

Claims (30)

1. A stabilizer comprising:

a base fixed on a motion reduction target;

a gimbal supported by the base to be rotatable around a first axis;

a damper mechanism disposed to damp a relative rotary motion of the gimbal to the base;

a flywheel configuring a part of the gimbal and disposed to be rotatable around a second axis orthogonal to the first axis; and

a motor configured to rotate the flywheel,

wherein the damper mechanism is a passive-type damper mechanism, and

wherein a first value of a damping coefficient of the damper mechanism when an angular velocity of the gimbal is a first angular velocity is larger than a second value of the damping coefficient of the damper mechanism when the angular velocity of the gimbal is a second angular velocity smaller than the first angular velocity.

2. The stabilizer according to claim 1 , wherein the first value is 1.1 times or more as large as the second value.

3. The stabilizer according to claim 1 , wherein any electric control signal is not inputted to the damper mechanism to change a characteristic of the damper mechanism.

4. The stabilizer according to claim 1 , wherein the damper mechanism comprises:

a housing;

a first liquid chamber disposed in the housing;

a second liquid chamber disposed in the housing;

a partition member disposed between the first liquid chamber and the second liquid chamber to be relatively rotatable to the housing;

a passage connecting the first liquid chamber and the second liquid chamber; and

an orifice section disposed to define a minimum cross-sectional area of the passage, and

wherein the shape of the orifice section is set such that the value of the damping coefficient increase as the angular velocity of the gimbal increases.

5. The stabilizer according to claim 4 , wherein in at least a part of the orifice section, the passage cross-sectional area orthogonal to the longitudinal direction of the passage changes continuously along the longitudinal direction of the passage.

6. The stabilizer according to claim 4 , wherein the orifice section has an annular edge section in a part where the passage cross-sectional area orthogonal to the longitudinal direction of the passage becomes minimum.

7. The stabilizer according to claim 4 , wherein the orifice section is of a fixation-type.

8. A ship in which a stabilizer is installed,

wherein the stabilizer comprises:

a base fixed on a motion reduction target;

a gimbal supported by the base to be rotatable around a first axis;

a damper mechanism disposed to damp a relative rotary motion of the gimbal to the base;

a flywheel configuring a part of the gimbal and disposed to be rotatable around a second axis orthogonal to the first axis; and

a motor configured to rotate the flywheel,

wherein the damper mechanism is a passive-type damper mechanism, and

wherein a first value of a damping coefficient of the damper mechanism when an angular velocity of the gimbal is a first angular velocity is larger than a second value of the damping coefficient of the damper mechanism when the angular velocity of the gimbal is a second angular velocity smaller than the first angular velocity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2017
From: NOHARA, TSUYOSHI; MIURA, TAKASHI; TAKEUCHI, HIROSHI; UMEMURA, KATSUYA
To: TOHMEI INDUSTRIES CO., LTD.
Reel/Frame 042953/0944 →
Priority Claims (1)
JP 2015-136531 · Jul 7, 2015 · national
Continuity (1)
Related Publication 20170370443A1 · Dec 28, 2017
Cited By (1)
US 12,312,050