IP Library Granted Patent US 10,451,108
Granted Patent B2
US 10,451,108 · App. 15/898,929 · Granted Oct 22, 2019

Squeeze film damper bearing device

Inventors: Yoshio Nakayama (Wako, JP); Kenji Saito (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
F16C27/045F01D25/164F01D25/183F16C19/06F16C33/581F16F15/0237F01D25/20F05D2240/53F05D2240/54F05D2260/96F16C2360/23F16C2360/24
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Quick Facts
Patent No.
US 10,451,108
App. No.
15/898,929
Granted
Oct 22, 2019
Kind
B2
Abstract

In a squeeze film damper bearing device, a pair of annular projections projecting toward an inner periphery of a bearing retaining member are provided on an outer periphery of opposite end parts in an axial direction of an outer race. When a load in a radial direction acting on a rotating shaft is less than a predetermined value, a state in which an extremity face of the annular projection is not in contact with the inner periphery of the bearing retaining member is maintained. When the load in the radial direction acting on the rotating shaft is the predetermined value or greater, the extremity face of the annular projection is in contact with the inner periphery of the bearing retaining member. The annular projection does not abut against the inner periphery of the bearing retaining member at a time other than when a large load is inputted.

Claims (9)

1. A squeeze film damper bearing device comprising an inner race that is fitted around an outer periphery of a rotating shaft, a bearing retaining member, an outer race that is supported on an inner periphery of the bearing retaining member via an annular space forming a squeeze film, and a plurality of rolling bodies that are disposed between the inner race and the outer race,

wherein a pair of annular projections projecting toward the inner periphery of the bearing retaining member are provided on an outer periphery of opposite end parts in an axial direction of the outer race, wherein a distance between the inner periphery of the bearing retaining member and an extremity face of each of the pair of annular projections is less than a distance between the inner periphery of the bearing retaining member and all portions of the outer periphery of the outer race between the pair of annular projections in the axial direction of the outer race, and

wherein when a load in a radial direction acting on the rotating shaft is less than a predetermined value, a state in which the extremity face of each of the pair of annular projections is not in contact with the inner periphery of the bearing retaining member is maintained, and when the load in the radial direction acting on the rotating shaft is the predetermined value or greater, the extremity face of each of the pair of annular projections contacts the inner periphery of the bearing retaining member.

2. The squeeze film damper bearing device according to claim 1 , wherein a height of projection in the radial direction of each of the pair of annular projections is 20% to 70% of a height in the radial direction of the annular space in the state in which the extremity face of each of the pair of annular projections is not in contact with the inner periphery of the bearing retaining member.

3. A squeeze film damper bearing device comprising an inner race that is fitted around an outer periphery of a rotating shaft, a bearing retaining member, an outer race that is supported on an inner periphery of the bearing retaining member via an annular space forming a squeeze film, and a plurality of rolling bodies that are disposed between the inner race and the outer race,

wherein a pair of annular projections projecting toward an outer periphery of opposite end parts in an axial direction of the outer race are provided on the inner periphery of the bearing retaining member, wherein a distance between the outer periphery of the outer race and an extremity face of each of the pair of annular projections is less than a distance between the outer periphery of the outer race and all portions of the inner periphery of the bearing retaining member between the pair of annular projections in the axial direction of the outer race, and

wherein when a load in a radial direction acting on the rotating shaft is less than a predetermined value, a state in which the extremity face of each of the pair of annular projections is not in contact with the outer periphery of the outer race is maintained, and when the load in the radial direction acting on the rotating shaft is the predetermined value or greater, the extremity face of each of the pair of annular projections contacts the outer periphery of the outer race.

4. The squeeze film damper bearing device according to claim 3 , wherein a pair of seal rings are fitted in the outer periphery of the outer race at positions axially inside the pair of annular projections, the seal rings resiliently abutting against the inner periphery of the bearing retaining member and defining opposite ends in the axial direction of the annular space, and at least one of the pair of annular projections comprises a pair of cutouts at positions having phases displaced by 180°.

5. The squeeze film damper bearing device according to claim 3 , wherein a height of projection in the radial direction of each of the pair of annular projections is 20% to 70% of a height in the radial direction of the annular space.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2018
From: NAKAYAMA, YOSHIO; SAITO, KENJI
To: HONDA MOTOR CO., LTD.
Reel/Frame 044982/0717 →
Priority Claims (1)
JP 2017-033475 · Feb 24, 2017 · national
Continuity (1)
Related Publication 20180245631A1 · Aug 30, 2018
Cited By (1)
US 12,352,208