IP Library › Granted Patent US 10,088,089
Granted Patent B2
US 10,088,089 · App. 15/263,013 · Granted Oct 2, 2018

Rotary joint

Inventors: Yoshinori Kikuyama (Osaka, JP); Osamu Suzuki (Osaka, JP)
Assignee: NIPPON PILLAR PACKING CO., LTD.
F16L39/04A61M1/00F16L27/087F16L19/06
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Quick Facts
Patent No.
US 10,088,089
App. No.
15/263,013
Granted
Oct 2, 2018
Kind
B2
Abstract

Provided is a rotary joint that allows a case body to be made compact. A rotary joint includes: a cylindrical case body having a plurality of first flow passages formed therein; a shaft body having a plurality of second flow passages formed therein; rolling bearings and provided in an annular space formed between the case body and the shaft body; a plurality of tubular members provided in the annular space and each having a third flow passage formed for connecting the first flow passage and the second flow passage; a first seal configured to prevent leak of a fluid flowing through the first flow passage and the third flow passage; and a second seal configured to prevent leak of a fluid flowing through the third flow passage and the second flow passage.

Claims (29)

1. A rotary joint comprising: a cylindrical case body having a plurality of first flow passages formed to be opened in an inner peripheral surface thereof and at different positions in an axial direction;

a shaft body provided inside the cylindrical case body and having a plurality of second flow passages formed to be opened in an outer peripheral surface thereof and at different positions in the axial direction;

a bearing portion provided in an annular space formed between the case body and the shaft body, the bearing portion supporting the case body and the shaft body such that the case body and the shaft body are rotatable relative to each other;

a plurality of tubular members provided in the annular space and each having a third flow passage formed for connecting a respective one of the plurality of the first flow passages and a respective one of the plurality of the second flow passages; and

a first seal configured to prevent a fluid flowing through the respective first flow passage and the third flow passage from leaking through between the case body and the tubular member; and a second seal configured to prevent a fluid flowing through the third flow passage and the respective second flow passage from leaking through between the tubular member and the shaft body, wherein

the case body is composed of an integral and inseparable tube member that is longer in the axial direction than a dimension, in the axial direction, of an internal structure body including the bearing portion and the tubular members provided in the annular space to be aligned in the axial direction, and

wherein the first seal is an O-ring, an inclined surface is formed in each tubular member so as to be inclined relative to the inner peripheral surface of the case body, and the O-ring is mounted in a triangular cross-section space formed by the inclined surface, a portion of the inner peripheral surface of the case body, and a portion of a side surface of a member provided adjacently to the tubular member in the axial direction.

2. The rotary joint according to claim 1 , wherein the second seal includes an annular main body portion and an inner cylindrical lip portion and an outer cylindrical lip portion extending in the axial direction from a radially inner portion and a radially outer portion of the main body portion, respectively.

3. The rotary joint according to claim 1 , wherein the second seal is mounted in a recess portion formed in each tubular member.

4. A rotary joint comprising: a cylindrical case body having a plurality of first flow passages formed to be opened in an inner peripheral surface thereof and at different positions in an axial direction;

a shaft body provided inside the cylindrical case body and having a plurality of second flow passages formed to be opened in an outer peripheral surface thereof and at different positions in the axial direction;

a bearing portion provided in an annular space formed between the case body and the shaft body, the bearing portion supporting the case body and the shaft body such that the case body and the shaft body are rotatable relative to each other;

a plurality of tubular members provided in the annular space and each having a third flow passage formed for connecting a respective one of the plurality of the first flow passages and a respective one of the plurality of the second flow passages; and

a first seal configured to prevent a fluid flowing through the respective first flow passage and the third flow passage from leaking through between the case body and the tubular member; and a second seal configured to prevent a fluid flowing through the third flow passage and the respective second flow passage from leaking through between the tubular member and the shaft body, wherein

the case body is composed of an integral and inseparable tube member that is longer in the axial direction than a dimension, in the axial direction, of an internal structure body including the bearing portion and the tubular members provided in the annular space to be aligned in the axial direction, and

wherein the second seal includes an annular main body portion and an inner cylindrical lip portion and an outer cylindrical lip portion extending in the axial direction from a radially inner portion and a radially outer portion of the main body portion, respectively.

5. The rotary joint according to claim 4 , further comprising a stopper detachably provided in the annular space, wherein relative movement, in the axial direction, of the shaft body and the case body between which the bearing portion and the tubular members are interposed is restricted in a state where the stopper is mounted, and is enabled in a state where the stopper is disengaged.

6. The rotary joint according to claim 4 , wherein the second seal is mounted in a recess portion formed in each tubular member.

7. The rotary joint according to claim 6 , further comprising a stopper detachably provided in the annular space, wherein relative movement, in the axial direction, of the shaft body and the case body between which the bearing portion and the tubular members are interposed is restricted in a state where the stopper is mounted, and is enabled in a state where the stopper is disengaged.

8. The rotary joint according to claim 7 , wherein the first seal is an O-ring, an inclined surface is formed in each tubular member so as to be inclined relative to the inner peripheral surface of the case body, and the O-ring is mounted in a triangular cross-section space formed by the inclined surface, a portion of the inner peripheral surface of the case body, and a portion of a side surface of a member provided adjacently to the tubular member in the axial direction.

9. A rotary joint comprising: a cylindrical case body having a plurality of first flow passages formed to be opened in an inner peripheral surface thereof and at different positions in an axial direction;

a shaft body provided inside the cylindrical case body and having a plurality of second flow passages formed to be opened in an outer peripheral surface thereof and at different positions in the axial direction;

a bearing portion provided in an annular space formed between the case body and the shaft body, the bearing portion supporting the case body and the shaft body such that the case body and the shaft body are rotatable relative to each other;

a plurality of tubular members provided in the annular space and each having a third flow passage formed for connecting a respective one of the plurality of the first flow passages and a respective one of the plurality of the second flow passages;

a first seal configured to prevent a fluid flowing through the respective first flow passage and the third flow passage from leaking through between the case body and the tubular member; and a second seal configured to prevent a fluid flowing through the third flow passage and the respective second flow passage from leaking through between the tubular member and the shaft body, wherein

the case body is composed of an integral and inseparable tube member that is longer in the axial direction than a dimension, in the axial direction, of an internal structure body including the bearing portion and the tubular members provided in the annular space to be aligned in the axial direction; and

comprising a stopper detachably provided in the annular space, wherein relative movement, in the axial direction, of the shaft body and the case body between which the bearing portion and the tubular members are interposed is restricted in a state where the stopper is mounted, and is enabled in a state where the stopper is disengaged,

wherein the first seal is an O-ring, an inclined surface is formed in each tubular member so as to be inclined relative to the inner peripheral surface of the case body, and the O-ring is mounted in a triangular cross-section space formed by the inclined surface, a portion of the inner peripheral surface of the case body, and a portion of a side surface of a member provided adjacently to the tubular member in the axial direction.

10. The rotary joint according to claim 9 , wherein the second seal is mounted in a recess portion formed in each tubular member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2016
From: KIKUYAMA, YOSHINORI; SUZUKI, OSAMU
To: NIPPON PILLAR PACKING CO., LTD.
Reel/Frame 039720/0595 →
Priority Claims (1)
JP 2015-180666 · Sep 14, 2015 · national
Continuity (1)
Related Publication 20170074445A1 · Mar 16, 2017
Cited By (1)
US 12,292,144