Integrated roller-gearbox for spinner wrench
10247279 ยท 2019-04-02
Assignee
Inventors
Cpc classification
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B13/5016
PERFORMING OPERATIONS; TRANSPORTING
E21B19/168
FIXED CONSTRUCTIONS
F16H57/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B13/50
PERFORMING OPERATIONS; TRANSPORTING
E21B19/16
FIXED CONSTRUCTIONS
Abstract
A gearbox for a roller in a spinner wrench is provided. In some embodiments, the gearbox can be disposed internally to the roller and can include a sun and planet type epicyclical gear-reduction assembly. In further embodiments, the gearbox can include a second sun and planet type epicyclical gear-reduction assembly to provide for a second, or final, stage reduction. Some embodiments can provide for reduction-ratios close to 3:1 and can be driven by a relatively small motor. The planet gears can be used to drive an annular gear which can spin the roller. In some embodiments, the gearbox can use high-capacity bearings.
Claims
1. A roller gearbox assembly comprising a gearbox disposed within a roller in a spinner wrench, the gearbox having a sun and planet epicyclical gear-reduction to rotate the roller to spin a drill pipe or other tubular, the gearbox comprising: a sun-gear rotationally driven by a drive motor; at least one planet-gear in meshing arrangement with the sun-gear, the at least one planet-gear housed within a rotationally grounded planet carrier; and an annulus gear, disposed within the roller, in meshing arrangement with the at least one planet-gear and configured to be in rotational communication with the roller; wherein, when driven by the drive motor, the sun gear rotates the at least one planet-gear to rotate the annulus gear, which in turn rotates the roller to spin the drill pipe or other tubular.
2. The roller gearbox assembly of claim 1, wherein the sun-gear and the at least one planet-gear provide a second-stage sun and planet epicyclical gear-reduction to rotate the roller, and the gearbox further comprises a first-stage sun and planet epicyclical gear-reduction, wherein the second-stage gear-reduction is rotationally connected to the first-stage gear-reduction, the gearbox further comprising: a first-stage sun-gear in a meshing arrangement with at least one first-stage planet-gear, the at least one first-stage planet-gear housed within a planet carrier configured to be in rotation with the roller, and wherein, when driven by the drive motor, the first-stage gear-reduction rotates the second-stage sun-gear, which rotates the at least one second-stage planet-gear to rotate the annulus gear which in turn rotates the roller to spin the drill pipe or other tubular.
3. The roller gearbox assembly of claim 1 further comprising high-capacity bearings in bearing assemblies.
4. The roller gearbox assembly of claim 3 wherein the bearings are spherical roller bearings.
5. The roller gearbox assembly of claim 1 wherein the gearbox produces a reduction ratio of approximately 3:1.
6. The roller gearbox assembly of claim 1 wherein the drive motor is a hydraulic motor.
7. The roller gearbox assembly of claim 1 wherein the roller gearbox assembly comprises a mounting bracket to mount the roller gearbox assembly to a supporting structure on the spinner wrench.
8. A roller for a spinner wrench to spin a drill pipe or other tubular, the roller comprising the roller gearbox assembly of claim 1 configured to rotate the roller when the roller gearbox assembly is driven.
9. A spinner wrench for use to spin a drill pipe or other tubular, the wrench comprising: at least one powered roller, said roller comprising the roller gearbox assembly of claim 1 configured to rotate the roller when the gearbox is driven.
10. A method of spinning a drill pipe or other tubular by using a spinning wrench, the method comprising: providing the roller gearbox assembly of claim 1; driving the roller gearbox assembly with the drive motor; spinning the roller with the driven roller gearbox assembly; contacting the spinning roller with the drill pipe or other tubular; and spinning the drill pipe or other tubular with the spinning roller.
11. The method of claim 10 wherein the drive motor is a hydraulic motor.
12. The method of claim 10 wherein the spinning of the drill pipe or other tubular is done in a clockwise manner.
13. The method of claim 10 wherein the spinning of the drill pipe or other tubular is done in a counter clockwise manner.
14. A method of using a roller gearbox assembly to rotate a roller of a spinner wrench in order to spin a drill pipe or other tubular, the roller gearbox assembly comprising a gearbox disposed within the roller, the gearbox having a sun and planet epicyclical gear-reduction, the method comprising: providing the gearbox having a sun-gear rotationally driven by a drive motor, at least one planet-gear in meshing arrangement with the sun-gear, and an annulus gear in meshing arrangement with the at least one planet-gear and configured to be in rotational communication with the roller; wherein the epicyclical gear-reduction and the annulus gear are configured to be disposed within the roller; driving the gearbox with the drive motor, wherein, the sun-gear drives the at least one planet-gear when the sun-gear is driven by the drive motor, the driven planet-gear in turn drives the annulus gear, which in turn rotates the roller; and contacting the rotating roller with the drill pipe or other tubular.
15. The method of claim 14 wherein the sun and planet epicyclical gear-reduction is a first-stage gear-reduction, and the roller gearbox assembly further comprises: a second-stage sun and planet epicyclical gear-reduction in communication with the first-stage sun and planet epicyclical gear-reduction; wherein, the second-stage sun-gear is in a meshing arrangement with a first-stage planet-gear and when the first-stage planet-gear is driven, the second-stage sun-gear is driven and in turn drives at least one second-stage planet-gear, said second-stage planet-gear in meshing arrangement with the annulus gear.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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DETAILED DESCRIPTION OF EMBODIMENTS
(6) A gearbox for a roller in a spinner wrench is provided. In some embodiments, the gearbox can be disposed internally to the roller and can include a sun and planet type epicyclical gear-reduction assembly. In further embodiments, the gearbox can include a second sun and planet type epicyclical gear-reduction assembly to provide for a second, or final, stage reduction. Some embodiments can provide for reduction-ratios close to 3:1 and can be driven by a relatively small motor. The planet gears can be used to drive an annular gear which can spin the roller. In some embodiments, the gearbox can use high-capacity bearings.
(7) In some embodiments, gearboxes as described herein, can be used with rollers and spinner wrenches know in the art and those as described in U.S. 61/928,888, hereby incorporated by reference in its entirety. It would be understood that gearbox assemblies as described herein can also be used with rollers and spinner wrenches of similar functions.
(8) Referring to
(9) The terms top and bottom, as well as up and down, are used herein as terms of convenience for the purposes of description, and in no way are meant to limit the invention. It would be understood that orientation of certain components can be reversed without departing from the function of assembly 10.
(10) Input side mounting hub 17 can features boltholes for bolts 20 on the mounting face; the boltholes and bolts 20 can serve the purpose of connecting the input side mounting hub 17 to a supporting structure. Disposed coaxially with input side mounting hub 17 can be a high-speed sun gear 38 (see
(11) Referring now to
(12) In operation, integrated roller-gearbox assembly 10 can be mounted inside a supporting structure 24 and mounting bracket 26 that can also support a prime mover 28 such as a drive motor. In some embodiments, mounting bracket 26 can then further be connected to, and positioned on, a spinner wrench. One possible embodiment of such assembly 10 and support is shown in
(13)
(14) A first-stage (high-speed) sun gear 38 can be configured to be rotationally connected to a drive-motor (not shown in
(15) Still referring to
(16) Referring to
(17) It is to be understood that the disclosure herein concentrates on one, relatively complex embodiment or example of the invention with a two-stage epicyclical reduction. However other embodiments with a simpler, single-stage epicyclical reduction can also be used. In some embodiments, the first-stage epicyclical components can be omitted altogether in which case integrated roller-gearbox assembly 10 can become a single-stage reduction, the benefits of which can become apparent.
(18) Those skilled in the art can understand that the gearbox embodiments described herein can address concerns and/or shortcomings of a typical prior art spinner-rollers. The use of an inside-the-roller epicyclical reduction can provide for a high torque density which, in turn, can allow for use of smaller, less powerful, drive motors. Bearing architectures of the gearboxes with outer-race rotating (stationary inner race) can allow for use of large, high-capacity bearings which can allow higher clamping forces as compared to traditional spinner-roller designs. A high clamping force can allow for high friction between the roller and a tubular (such as, but not limited to drilling pipe). The availability of a high friction force can allow for quality torque transfer from the roller to a tubular, the torque being available by the high reduction ratio referred herein, such as reduction-ratios close to 3:1.
(19) A method is provided for spinning a drill pipe or other tubular by using a spinning wrench, the method including driving a gearbox as disclosed herein with a prime mover, such as a hydraulic motor, where the gearbox is disposed within a roller on the spinning wrench. The driven gearbox can then spin the roller, which can then be placed in contact with the drill pipe or other tubular in order to spinning the drill pipe or other tubular with the spinning roller. The spinning of the drill pipe or other tubular can be done in a clockwise or counter clockwise manner.
(20) Although a few embodiments have been shown and described, it will be appreciated by those skilled in the art that various changes and modifications can be made to these embodiments without changing or departing from their scope, intent or functionality. The terms and expressions used in the preceding specification have been used herein as terms of description and not of limitation, and there is no intention in the use of such terms and expressions of excluding equivalents of the features shown and described or portions thereof, it being recognized that the invention is defined and limited only by the claims that follow.