IP Library › Granted Patent US 12,747,792
Granted Patent B2
US 12,747,792 · App. 18/714,415 · Granted Sep 29, 2026

Sealing device and electric motor

Inventor: Yusuke Kamiya (Fukushima, JP)
Assignee: NOK CORPORATION
F16J15/3284F16J15/324H02K5/10
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Quick Facts
Patent No.
US 12,747,792
App. No.
18/714,415
Granted
Sep 29, 2026
Kind
B2
Abstract

A sealing device includes an annular reinforcing ring fixed to a housing, an annular elastic member that includes a fixing portion fixed to the reinforcing ring, and a lip that protrudes from the fixed portion and is in slidable contact with an outer peripheral surface of a shaft, and at least one annular spring that presses the lip against the outer peripheral surface of the shaft, the lip being between the at least one spring and the outer peripheral surface of the shaft. The elastic member is made of an electrically conductive elastic material. A contact surface, which is a part of the lip and is in contact with the outer peripheral surface of the shaft, is straight when viewed in a cross section defined by a plane that includes a central axis of the elastic member. A width of the at least one annular spring is greater than its thickness.

Claims (46)

1 . A sealing device disposed between a housing with an opening and a shaft within the opening, and that seals a gap between an inner peripheral surface of the housing and an outer peripheral surface of the shaft, the sealing device comprising:

an annular reinforcing ring fixed to the housing;

an annular elastic member comprising:

a fixing portion fixed to the reinforcing ring; and

a lip that protrudes from the fixing portion and is in slidable contact with an outer peripheral surface of the shaft; and

at least one annular spring that presses the lip against the outer peripheral surface of the shaft, wherein:

the lip is between the outer peripheral surface of the shaft and the at least one spring,

the elastic member is made of an electrically conductive elastic material,

the lip includes a contact surface in contact with the outer peripheral surface of the shaft, and

the contact surface is straight in a natural state when viewed in a cross section defined by a plane that includes a central axis of the elastic member; and

wherein, a thickness of a part of the lip between the at least one spring and the outer peripheral surface of the shaft is defined as t, and a width of the contact surface in an axial direction of the shaft is defined as W 1 , and a relationship between t and W 1 satisfies the following inequality: t<W 1 .

2 . The sealing device according to claim 1 , wherein the at least one spring includes more than one spring that is arranged along an axial direction of the shaft.

3 . The sealing device according to claim 1 , wherein the at least one spring includes a spring that is flat in a radial direction of the shaft.

4 . The sealing device according to claim 1 , wherein:

the contact surface has at least one groove that extends along a circumferential direction of the shaft, and

the at least one groove holds a conductive lubricant.

5 . The sealing device according to claim 1 , wherein:

the elastic member further includes a protruding portion that protrudes from the fixing portion in a direction that differs from the lip, and

the protruding portion is in contact with the outer peripheral surface of the shaft at a position different to the lip in the axial direction of the shaft.

6 . The sealing device according to claim 5 , wherein:

the elastic member is provided with a recessed portion for defining a space surrounded by the following:

the outer peripheral surface of the shaft,

the lip, and

the protruding portion, and

the recessed portion holds a conductive lubricant.

7 . The sealing device according to claim 1 , wherein a width of the at least one spring in the axial direction of the shaft is defined as W 2 , and a relationship between W 1 and W 2 satisfies the following inequality: W 1 >W 2 .

8 . The sealing device according to claim 7 , wherein a relationship between t and W 2 satisfies the following inequality: t<W 2 .

9 . The sealing device according to claim 1 , wherein the reinforcing ring is electrically conductive.

10 . The sealing device according to claim 9 , wherein, where WD is a width of the reinforcing ring in the radial direction of the shaft, and AD is a distance between the inner peripheral surface of the housing and the outer peripheral surface of the shaft, WD/AD is 0.5 or more and 0.9 or less.

11 . The sealing device according to claim 1 , wherein the at least one spring is electrically conductive.

12 . An electric motor comprising:

a housing with an opening;

a shaft within the opening; and

a sealing device that is disposed between the housing and the shaft, and that seals a gap between an inner peripheral surface of the housing and an outer peripheral surface of the shaft, wherein the sealing device comprises:

an annular reinforcing ring fixed to the housing;

an annular elastic member comprising:

a fixing portion fixed to the reinforcing ring; and

a lip that protrudes from the fixing portion and is in slidable contact with an outer peripheral surface of the shaft; and

at least one annular spring that presses the lip against the outer peripheral surface of the shaft, wherein:

the lip is between the outer peripheral surface of the shaft and the at least one spring,

the elastic member is made of an electrically conductive elastic material,

the lip includes a contact surface in contact with the outer peripheral surface of the shaft, and

the contact surface is straight in a natural state when viewed in a cross section defined by a plane that includes a central axis of the elastic member; and

wherein, a thickness of a part of the lip between the at least one spring and the outer peripheral surface of the shaft is defined as t, and a width of the contact surface in an axial direction of the shaft is defined as W 1 , and a relationship between t and W 1 satisfies the following inequality: t<W 1 .

13 . The electric motor according to claim 12 , wherein a width of the at least one spring in the axial direction of the shaft is defined as W 2 , and a relationship between W 1 and W 2 satisfies the following inequality: W 1 >W 2 .

14 . The electric motor according to claim 13 , wherein a relationship between t and W 2 satisfies the following inequality: t<W 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2024
From: KAMIYA, YUSUKE
To: NOK CORPORATION
Reel/Frame 067553/0939 →
Priority Claims (1)
JP 2021-193933 · Nov 30, 2021 · national
Continuity (1)
Related Publication 20250020212A1 · Jan 16, 2025
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