IP Library Granted Patent US 9,061,362
Granted Patent B2
US 9,061,362 · App. 13/522,955 · Granted Jun 23, 2015

Pipe assembling device

Inventor: Kenji Nohmi (Kitakyushu, Fukuoka, JP)
Assignee: PLUS ONE TECHNO CO., LTD.
B23K9/0288Y10T29/5367B23K9/167B23K37/0452B23K37/0536B23K2201/06B23K2201/10B23P19/00
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Quick Facts
Patent No.
US 9,061,362
App. No.
13/522,955
Granted
Jun 23, 2015
Kind
B2
Abstract

A simple, compact, lightweight, and inexpensive pipe assembling device ( 1 ) for welding and affixing connection flanges ( 3, 4 ) to both ends of a connection pipe ( 2 ) with high reproducible accuracy on the basis of electronic data for manufacturing design pipes, the connection pipe ( 2 ) comprising a straight pipe or a bent pipe for conveying fluid such as gas or running water. The pipe assembling device comprises a pair of left and right, the first and second flange positioning mechanisms ( 5, 6 ), at least one of which can move on a horizontal plane so as to approach and separate from each other in the direction in which the pair is separated from each other. The flange positioning mechanisms comprise: flange placement bases ( 7, 8 ) which are provided with X-direction slide mechanism ( 10 ) for sliding the flanges in the X-direction with the flanges affixed; θ1-direction rotation mechanism ( 11 ) which rotate the flange placement bases in a plane; θ2-direction rotation mechanism ( 12 ) which rotate the θ1-direction rotation mechanism in the vertical direction; and θ3-direction rotation mechanism ( 13 ) which rotate the θ2-direction rotation mechanism in the horizontal direction.

Claims (30)

1. A pipe assembling device for welding and affixing with high reproducible accuracy on the basis of electronic data connection flanges to both ends of a connection pipe, to connect a straight pipe or a bent pipe for conveying a fluid, said pipe assembling device comprising,

first and second flange positioning mechanisms, at least one of which can move on a horizontal plane so as to approach or separate said first and second flange positioning mechanisms from each other, said first flange positioning mechanism comprising,

a flange placement base having an X-direction slide mechanism to slide a flange along the X-direction, wherein the X-direction comprises the direction parallel to the face of the flange mounting to the placement base that the flange linearly slides,

a θ1-direction turning mechanism to planarly turn to a θ1-direction the flange placement base, wherein said θ1-direction is a direction that planarly turns around a flange axis that is perpendicular to a surface of the flange,

a θ2-direction turning mechanism to vertically turn to a θ2-direction relative to the θ1-direction turning mechanism, wherein said θ2-direction the is a direction that turns around a support axis of the θ1-direction turning mechanism, and

a θ3-direction turning mechanism to horizontally turn the θ2-direction turning mechanism to a θ3-direction, wherein the θ3-direction comprises a direction that turns said x-direction slide mechanism, said θ1-direction turning mechanism and said θ2-direction turning mechanism integrally on a horizontal plane.

2. A pipe assembling device for welding and affixing with high reproducible accuracy on the basis of electronic data a first and a second connection flanges to both ends of a connection pipe, to connect a straight pipe or a bent pipe for conveying fluid, comprising,

a movable first flange positioning mechanism, and

a fixed second flange positioning mechanism,

said first flange positioning mechanism movable on a horizontal plane so as to approach or separate said first and second flange positioning mechanisms from each other, one of said first fixed or second flange positioning mechanisms comprising,

a flange placement base with an X-direction slide mechanism to slide a first one of said first or second connection flanges along an X-direction, the X-direction comprising a direction parallel to a face of the flange mounting to the placement base,

a θ1-direction turning mechanism to planarly turn to a θ1-direction the flange placement base,

a θ2-direction turning mechanism to vertically turn the θ1-direction turning mechanism to a θ2-direction, and

a θ3-direction turning mechanism to horizontally turn the θ2-direction turning mechanism to a θ3-direction.

3. A pipe assembling device for welding and affixing with high reproducible accuracy on the basis of electronic data a first and a second connection flange to both ends of a connection pipe to connect a straight pipe or a bent pipe for conveying fluid, said pipe assembling device comprising:

first and second flange positioning mechanisms, at least one of which can move on a horizontal plane so as to approach or separate said first and second flange positioning mechanisms from each other, each of said flange positioning mechanisms comprising,

a first flange placement base to which can be fixed the first or second connection flanges,

a θ1-direction turning mechanism to planarly turn the flange placement bases to a θ1-direction,

a θ2-direction turning mechanism to vertically turn the θ1-direction turning mechanism to the θ2-direction, and

a θ3-direction turning mechanism to horizontally turn the θ2-direction turning mechanism to the θ3-direction,

and further comprising a first and second X-direction slide mechanism to slide said first and second placement bases along a direction parallel to the face of the flanges mounting to the placement bases along which the flanges linearly slide.

4. The pipe assembling device according to claim 1 , wherein said second flange positioning mechanism comprises,

a second flange placement base having an X-direction slide mechanism to slide a flange along the X-direction, wherein the X-direction comprises the direction parallel to the face of the flange mounting to the placement base that the flange linearly slides,

a second θ1-direction turning mechanism to planarly turn to a θ1-direction the flange placement base, wherein said second θ1-direction is a direction that planarly turns around a flange axis that is perpendicular to a surface of the flange,

a second θ2-direction turning mechanism to vertically turn to a θ2-direction relative to the second θ1-direction turning mechanism, wherein said θ2-direction the is a direction that turns around a support axis of the second θ1-direction turning mechanism, and

a second θ3-direction turning mechanism to horizontally turn the θ2-direction turning mechanism to a θ3-direction, wherein the second θ3-direction comprises a direction that turns said x-direction slide mechanism, said θ1-direction turning mechanism and said θ2-direction turning mechanism integrally on a horizontal plane.

5. The pipe assembling device according to claim 2 , where the other of said first fixed or second flange further comprises a second flange placement base with an X-direction slide mechanism to slide the second of said first or second connection flanges along an X-direction, the X-direction comprising a direction parallel to a face of the flange mounting to the placement base,

a second θ1-direction turning mechanism to planarly turn to a θ1-direction the flange placement base,

a second θ2-direction turning mechanism to vertically turn the θ1-direction turning mechanism to a θ2-direction, and

a second θ3-direction turning mechanism to horizontally turn the θ2-direction turning mechanism to a θ3-direction.

Assignments (3)
NUNC PRO TUNC ASSIGNMENT Recorded Nov 24, 2023
From: YUBARU TECHNO GROUP CO., LTD.
To: PLUS ONE TECHNO CO., LTD.
Reel/Frame 065655/0435 →
CHANGE OF NAME Recorded Nov 24, 2023
From: PLUS ONE TECHNO CO., LTD.
To: YUBARU TECHNO GROUP CO., LTD.
Reel/Frame 065675/0517 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2012
From: NOHMI, KENJI
To: PLUS ONE TECHNO CO.,LTD.
Reel/Frame 028875/0525 →
Priority Claims (1)
JP 2010-009494 · Jan 19, 2010 · national
Continuity (1)
Related Publication 20120324688A1 · Dec 27, 2012