Universal remote control system for hydrocarbon recovery tools
US-2016076356-A1 · Mar 17, 2016 · US
US10472906B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10472906-B2 |
| Application number | US-201715682427-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 21, 2017 |
| Priority date | Aug 21, 2017 |
| Publication date | Nov 12, 2019 |
| Grant date | Nov 12, 2019 |
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A tong includes a frame having jaws configured to engage a tubular and a tong control assembly disposed on the frame. The tong control assembly includes a housing connected to the frame, a shutoff switch, and a toggle lever located at a suitable position on the housing, whereby the toggle lever is configured to be operated while the shutoff switch is depressed, and wherein the toggle lever is configured to control at least one of: a rotational speed of the jaws and a rotational direction of the jaws. A method of operating a tong includes clamping a first tubular using first jaws of a tong, clamping a second tubular using second jaws of the tong, rotating the first tubular relative to the second tubular, and controlling a rotational speed of the first tubular using a toggle lever disposed on a frame of the tong.
Opening claim text (preview).
The invention claimed is: 1. A tong for engaging a tubular, comprising: a frame having jaws configured to engage the tubular; and a tong control assembly disposed on the frame, including: a housing connected to the frame; a handle immovably connected to the housing; a shutoff switch; and a toggle lever located at a suitable position on the housing, whereby the toggle lever is configured to be operated while the shutoff switch is depressed, and wherein the toggle lever is configured to control at least one of: a rotational speed of the jaws; a rotational direction of the jaws; or a combination thereof; wherein the handle and the toggle lever are positioned such that a single hand can grasp the handle and operate the toggle lever. 2. The tong of claim 1 , wherein the toggle lever is configured to control a continuous range of rotational speeds of the jaws. 3. The tong of claim 1 , wherein the toggle lever is pivotally movable. 4. The tong of claim 1 , wherein the toggle lever is configured to control a rotational speed and a rotational direction of the tubular engaged by the jaws. 5. The tong of claim 1 , the tong control assembly further including: an indicator light; and a push-button control. 6. The tong of claim 5 , wherein the indicator light is configured to indicate an operational mode of the tong. 7. The tong of claim 5 , wherein the push-button control is configured to initiate an automatic make-up sequence of the tong. 8. The tong of claim 5 , wherein the shutoff switch, the indicator light, and the push-button control are disposed on the handle. 9. The tong of claim 1 , wherein the handle is integrally formed with the housing. 10. The tong of claim 1 , wherein the shutoff switch is disposed on the handle. 11. The tong of claim 1 , wherein the toggle lever is a push-button. 12. A tong for engaging a tubular, comprising: a frame having jaws configured to engage the tubular; and a tong control assembly disposed on the frame, comprising: a housing connected to the frame; a handle connected to the housing; and a toggle lever configured to control a rotational speed and a rotational direction of the jaws; wherein the handle and the toggle lever are positioned such that a single hand can grasp the handle and operate the toggle lever. 13. The tong of claim 12 , wherein the toggle lever is pivotally movable. 14. The tong of claim 12 , the tong control assembly further comprising: an indicator light configured to indicate an operational mode of the tong; a push-button control configured to initiate an automatic make-up sequence of the tong; and a shutoff switch disposed on the handle. 15. The tong of claim 14 , wherein the push-button control is located at a position on the handle such that the single hand can grasp the handle and operate the push-button control. 16. The tong of claim 12 , wherein the toggle lever is configured to control a rotational speed and a rotational direction of the tubular engaged by the jaws. 17. The tong of claim 12 , wherein the toggle lever is configured to control a continuous range of rotational speeds of the jaws. 18. A method of operating a tong, comprising: clamping a first tubular using first jaws of the tong; clamping a second tubular using second jaws of the tong; rotating the first tubular relative to the second tubular; and controlling a rotational speed of the first tubular by operating a toggle lever disposed on a frame of the tong, wherein a handle disposed on the frame and the toggle lever are positioned such that a single hand can operate the toggle lever and grasp the handle. 19. The method of claim 18 , further comprising while controlling the rotational speed of the first tubular, connecting the first tubular and the second tubular. 20. The method of claim 18 , further comprising while controlling the rotational speed of the first tubular, breaking a connection between the first tubular and the second tubular. 21. The method of claim 18 , further comprising controlling the rotational speed of the first tubular to reach a set torque. 22. The method of claim 21 , further comprising pressing a push-button control to initiate an automatic connection sequence after reaching the set torque. 23. The method of claim 18 , further comprising while controlling the rotational speed of the first tubular, depressing a shutoff switch of a tong control assembly disposed on the tong. 24. The method of claim 18 , wherein controlling the rotational speed of the first tubular comprises pivotally moving the toggle lever.
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