Pipe Cutting Apparatus, Kit, and Method
US-2016375509-A1 · Dec 29, 2016 · US
US9901997B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9901997-B2 |
| Application number | US-201514749076-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 24, 2015 |
| Priority date | Jun 24, 2015 |
| Publication date | Feb 27, 2018 |
| Grant date | Feb 27, 2018 |
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Official abstract text for this publication.
An apparatus for cutting pipes internally includes at least one cutting member, at least one drive member, at least one feed member, and at least one clamping member. The at least one cutting member cuts a pipe internally. The at least one drive member rotates the at least one cutting member to cut the pipe internally. The at least one feed member extend the at least one cutting member against the pipe internally and retracts the at least one cutting member from the pipe internally. The at least one clamping member secures the apparatus to the pipe internally.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for cutting pipes internally comprising: at least one cutting member to cut a pipe internally; at least one drive member to rotate the at least one cutting member to cut the pipe internally; at least one feed member to extend the at least one cutting member against the pipe internally and to retract the at least one cutting member from the pipe internally; and at least one clamping member to secure the apparatus to the pipe internally; wherein at least one of the following 7 limitations is present: (1) the at least one drive member comprises at least one motor connected to a plurality of gears which use a gear ratio to drive the at least one drive member; (2) the at least one feed member comprises at least one motor connected to a plurality of gears which use a gear ratio to feed the at least one feed member; (3) further comprising at least one motor connected to a plurality of gears which drive the at least one drive member and feed the at least one feed member at different speeds due to a gear ratio of the plurality of gears; (4) when the apparatus is inserted into a pipe the at least one clamping member is configured to extend outwardly away from a shaft against which it is disposed towards and against an inner surface of the pipe, and to retract inwardly towards the shaft away from the inner surface of the pipe; (5) the at least one clamping member comprises a wedge-shaped member and at least one foot member which extends and retracts due to a shape of the wedge-shape member; (6) further comprising a clutch assembly and at least one motor, wherein the clutch assembly automatically decouples the at least one feed member from the at least one motor when a force placed on the at least one cutting member exceeds a limit; and/or (7) further comprising a clutch assembly comprising a manually operated clutch member which, when moved to a position, decouples the at least one feed member from at least one motor. 2. The apparatus of claim 1 wherein (1) the at least one drive member comprises the at least one motor connected to the plurality of gears which use the gear ratio to drive the at least one drive member. 3. The apparatus of claim 1 wherein the at least one feed member comprises a wedge-shaped member. 4. The apparatus of claim 1 wherein (2) the at least one feed member comprises the at least one motor connected to the plurality of gears which use the gear ratio to feed the at least one feed member. 5. The apparatus of claim 1 wherein (3) further comprising the at least one motor connected to the plurality of gears which drive the at least one drive member and feed the at least one feed member at different speeds due to the gear ratio of the plurality of gears. 6. The apparatus of claim 1 wherein (4) when the apparatus is inserted into the pipe the at least one clamping member is configured to extend outwardly away from the shaft against which it is disposed towards and against the inner surface of the pipe, and to retract inwardly towards the shaft away from the inner surface of the pipe. 7. The apparatus of claim 1 wherein (5) the at least one clamping member comprises the wedge-shaped member and the at least one foot member which extends and retracts due to the shape of the wedge-shaped member. 8. The apparatus of claim 1 wherein the at least one drive member, the at least one feed member, and the at least one clamping member are located coaxially relative to one another. 9. The apparatus of claim 1 further comprising at least one centering member which centers the apparatus in a pipe. 10. The apparatus of claim 9 wherein the at least one centering member comprises a cone slideably moveable over a shaft. 11. The apparatus of claim 1 further comprising a stationary member which is fixed in position relative to the at least one drive member, the at least one feed member, and the at least one clamping member. 12. The apparatus of claim 1 wherein (6) further comprising the clutch assembly and the at least one motor, wherein the clutch assembly automatically decouples the at least one feed member from the at least one motor when the force placed on the at least one cutting member exceeds the limit. 13. The apparatus of claim 1 wherein (7) further comprising the clutch assembly comprising the manually operated clutch member which, when moved to the position, decouples the at least one feed member from the at least one motor. 14. An apparatus for cutting pipes internally comprising: at least one cutting member to cut a pipe internally; at least one drive member to rotate the at least one cutting member to cut the pipe internally; at least one feed member to extend the at least one cutting member against the pipe internally and to retract the at least one cutting member from the pipe internally; at least one motor; and a plurality of connected differing sized gears connected to the at least one motor, to the at least one drive member, and to the at least one feed member; wherein the at least one drive member rotates at a different drive rate than a feed rate of the at least one feed member due to a gear ratio of the plurality of connected differing sized gears. 15. A method of cutting pipes internally comprising: disposing a pipe cutting apparatus into a pipe; clamping the pipe cutting apparatus within the pipe using at least one clamping member of the pipe cutting apparatus; extending at least one cutting member of the pipe cutting apparatus against an internal surface of the pipe using at least one feed member of the pipe cutting apparatus; and rotating the at least one cutting member with at least one drive member of the pipe cutting apparatus in order to cut the internal surface of the pipe with the at least one cutting member; wherein at least one of the following 7 limitations is present: (1) the at least one drive member comprises at least one motor connected to a plurality of gears, and further comprising driving the at least one drive member using a gear ratio; (2) the at least one feed member comprises at least one motor connected to a plurality of gears, and further comprising feeding the at least one feed member using a gear ratio; (3) further comprising at least one motor connected to a plurality of gears driving the at least one drive member and feeding the at least one feed member at different speeds due to a gear ratio of the plurality of gears; (4) further comprising extending the at least one clamping member outwardly away from a shaft against which it is disposed towards and against an inner surface of the pipe, and retracting the at least one clamping member inwardly towards the shaft away from the inner surface of the pipe; (5) the at least one clamping member comprises a wedge-shaped member and at least one foot member, and further comprising extending and retracting the at least one foot member due to a shape of the wedge-shape member; (6) further comprising automatically decoupling, using a clutch assembly, the at least one feed member from the at least one motor when a force placed on the at least one cutting member exceeds a limit; and/or (7) further comprising manually moving a clutch member of a clutch assembly decoupling the at least one feed member from at least one motor. 16. The method of claim 15 wherein (1) the at least one drive member comprises the at least one motor connected to the plurality of gears, and further comprising driving the at least one drive member using the gear ratio. 17. The method of claim 15 wherein (2) the at least one feed member comprises the at least one motor co
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