IP Library Granted Patent US 8,534,170
Granted Patent B2
US 8,534,170 · App. 12/723,759 · Granted Sep 17, 2013

Rotating pipe machining device

Inventor: Scott Arnemann (Rolling Meadows, IL)
Assignee: Illinois Tool Works Inc.
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Quick Facts
Patent No.
US 8,534,170
App. No.
12/723,759
Granted
Sep 17, 2013
Kind
B2
Abstract

A machining device has a stationary member and a rotating member. A plurality of bearings on one of the members engages a surface of the other. At least one of the bearings is radially fixed, while the remainder of the bearings are radially adjustable. In another aspect of the invention, the bearings are rotatable on a first cylindrical portion of a mounting shaft that has a second cylindrical portion attachable to the machine. A radial undercut is provided around a flange between the first cylindrical portion and the second cylindrical portion.

Claims (70)

1. A machining device comprising

an annular stationary member attachable to a pipe,

an annular rotating member rotatable with respect to said stationary member,

a plurality of rotatable bearings around a circumference of one of said annular members,

said plurality of bearings having outer rims engaging a surface of another of said annular members,

at least one of said plurality of bearings rotatable about an axis that is radially fixed with respect to said first annular member,

a remainder of said plurality of bearings rotatable about axes that are radially adjustable with respect to said first annular member, and

a tool holder on said rotating member for retaining a tool.

2. The machining device of claim 1 wherein both said annular stationary member and said annular rotating member are divided into equal semicircular portions for assembly around a length of pipe.

3. The machining device of claim 1 wherein

said one of said annular members has a plurality of mounting holes therein,

each of said plurality of bearings is retained on a mounting pin having a shank,

each of said mounting holes has a diameter sized to receive said shank of one of said mounting pins, and

said mounting pin for said at least one of said bearings has a shank with a diameter different from a diameter of said shank of said mounting pins for said remainder of said plurality of bearings wherein said mounting pin for said at least one of said bearings will not be received in said mounting holes for said remainder of said plurality of bearings.

4. The machining device of claim 3 wherein two of said plurality of bearings are rotatable about axes that are radially fixed with respect to said first annular member.

5. The machining device of claim 4 and further comprising

a bull gear on said rotatable member,

a pinion on said stationary member, and

said two of said plurality of bearings are mounted on said stationary member with one of said two on each side of said pinion.

6. The machining device of claim 1 wherein

each of said plurality of bearings is mounted on a shaft having a longitudinal axis,

said longitudinal axis of said at least one of said plurality of bearings being coaxial with an axis of rotation of said outer rim thereof, and

said longitudinal axis of a remainder of said plurality of bearings being offset with respect to an axis of rotation of said outer rim thereof.

7. The machining device of claim 5 wherein

said one of said annular members has a plurality of mounting holes therein,

each of said mounting holes has a diameter sized to receive said shaft of one of said bearings, and

said shaft for said at least one of said bearings has a diameter different from a diameter of said shaft of said remainder of said plurality of bearings wherein said shaft for said at least one of said bearings will not be received in said mounting holes for said remainder of said plurality of bearings.

8. The machining device of claim 7 wherein two of said plurality of bearings are rotatable about axes that are radially fixed with respect to said first annular member and said machining device further comprises

a bull gear on said rotatable member,

a pinion on said stationary member, and

said two of said plurality of bearings are retained in mounting holes in said stationary member with one of said two on each side of said pinion.

9. The machining device of claim 1 wherein

one of said remainder of said plurality of bearings has a central bore,

and said machining device further comprising

a mounting shaft having a first cylindrical portion received in said central bore and a second cylindrical portion for attachment to said one of said annular members, and an annular flange between said first cylindrical portion and said second cylindrical portion,

a surface of said annular flange having an undercut thereon, and

said surface contacting said one of said annular members.

10. The machining device of claim 9 wherein

said first cylindrical portion has a longitudinal axis that is offset with respect to a longitudinal axis of said second cylindrical portion wherein said one of said remainder of said plurality of bearings is radially adjusted by rotating said mounting shaft within a bore in said one of said annular members.

11. A machining device comprising

an annular stationary member attachable to a pipe,

an annular rotating member rotatable with respect to said stationary member,

a plurality of rotatable bearings around a circumference of one of said annular members,

each of said plurality of bearings having a central opening and an outer rim wherein said outer rims all engage a surface of another of said annular members,

a mounting pin having a first cylindrical portion received in one of said central opening and a second cylindrical portion attachable to said one of said annular members,

a radial flange between said first cylindrical portion and said second cylindrical portion,

said radial flange having an undercut extending into a surface thereof, and

a tool holder on said rotatable member for retaining a tool.

12. The machining device of claim 11 wherein

at least one of said plurality of bearings is rotatable about an axis that is radially fixed with respect to said one of said annular members, and

a remainder of said plurality of bearings rotatable about axes that are radially adjustable with respect to said one of said annular members.

13. The machining device of claim 11 wherein both said stationary member and said annular rotating member are divided into equal semicircular portions for assembly around a length of pipe.

14. The machining device of claim 12 and further comprising

one of said mounting pins for each of said rotatable bearings, and

said mounting pins for said remainder of said plurality of bearings having a longitudinal axis for said first cylindrical section that is parallel to but offset from a longitudinal axis of said second cylindrical section.

15. The machining device of claim 14 wherein

said one of said annular members has a plurality of mounting holes therein,

each of said plurality of bearings has a mounting pin,

each of said mounting holes has a diameter sized to receive said second cylindrical portion of one of said mounting pins,

said mounting pin for said at least one of said bearings having a second cylindrical section with a diameter different from a diameter of said second cylindrical section of said mounting pins of said remainder of said plurality of bearings wherein said mounting pin for said at least one of said bearings will not be received in said mounting holes for said remainder of said plurality of bearings.

16. The machining device of claim 11 wherein two of said plurality of bearings are rotatable about axes that are radially fixed with respect to said first annular member.

17. The machining device of claim 16 and further comprising

a bull gear on said rotatable member,

a pinion on said stationary member, and

said two of said plurality of bearings are mounted on said stationary member with one of said two on each side of said pinion.

18. The machining device of claim 17 wherein

said one of said annular members has a plurality of mounting holes therein,

each of said bearings has a mounting pin,

each of said mounting holes has a diameter sized to receive said second cylindrical portion of one of said mounting pins, and

said mounting pin for said two of said plurality of bearings has a second cylindrical section with a diameter different from a diameter of said second cylindrical section of said mounting pins of said remainder of said plurality of bearings wherein said mounting pin for said two of said plurality of said bearings will not be received in said mounting holes for said remainder of said plurality of bearings.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2010
From: ARNEMANN, SCOTT
To: ILLLINOIS TOOL WORKS INC.
Reel/Frame 024077/0722 →
Continuity (1)
Related Publication 20110219920A1 · Sep 15, 2011