CANTILEVERED SCREW ASSEMBLY WITH SPEED REDUCER AND PIVOTING TORQUE ARM
20190002205 ยท 2019-01-03
Inventors
Cpc classification
B65G33/265
PERFORMING OPERATIONS; TRANSPORTING
B30B3/00
PERFORMING OPERATIONS; TRANSPORTING
B02C19/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G33/32
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cantilevered screw assembly comprising a speed reducer to facilitate rotation of a screw. The speed reducer may be connected to a torque arm that is adapted to control or limit undesired movement (e.g., wobbling, orbital movement, etc.) of the screw during operation. In effect, one exemplary embodiment of a speed reducer may essentially float on a pivoting torque arm (and the shaft of the screw) such that the torque arm is adapted to limit undesired movement of the speed reducer and screw. As a result, an exemplary embodiment may eliminate the need for alternative drive systems or other means to control undesired movement of the screw. An exemplary embodiment may be particularly useful for light or infrequent duty or other small-scale applications to reduce the likelihood of a breakage of a screw or another portion of a cantilevered screw assembly (e.g., the bearing(s) or bearing assembly, the gears, etc.).
Claims
1. A screw assembly comprising: a wall assembly; a screw comprising a shaft cantilevered to said wall assembly; a speed reducer associated with said shaft of said screw, said speed reducer adapted to facilitate rotation of said screw; and a torque arm connected to said wall assembly and said speed reducer such that said torque arm is adapted to resist undesired movement of said speed reducer during rotation of said screw.
2. The screw assembly of claim 1 wherein said shaft of said screw is hollow.
3. The screw assembly of claim 1 wherein said speed reducer is a hollow shaft reducer.
4. The screw assembly of claim 1 wherein: said shaft of said screw is hollow; and said speed reducer is a hollow shaft reducer.
5. The screw assembly of claim 1 wherein: a proximal portion of said torque arm is connected to said wall assembly; and a distal portion of said torque arm extends completely around said shaft of said screw.
6. The screw assembly of claim 1 wherein said torque arm is connected to said speed reducer by at least one fastener.
7. The screw assembly of claim 1 wherein said torque arm is adapted to limit orbital movement of said speed reducer during rotation of said screw.
8. The screw assembly of claim 1 wherein said torque arm is adapted to limit at least one of the following types of movement of said speed reducer during rotation of said screw: clockwise movement, counterclockwise movement, curved movement, angular movement, vertical movement, horizontal movement, and tilting movement.
9. A screw assembly comprising: a wall assembly; a screw comprising a shaft cantilevered to said wall assembly; a speed reducer associated with said shaft of said screw, said speed reducer adapted to facilitate rotation of said screw; and a torque arm connected to said wall assembly and associated with said shaft of said screw such that said torque arm is adapted to resist undesired movement of said shaft during rotation of said screw.
10. The screw assembly of claim 9 wherein said shaft of said screw is hollow.
11. The screw assembly of claim 9 wherein said speed reducer is a hollow shaft reducer.
12. The screw assembly of claim 9 wherein: said shaft of said screw is hollow; and said speed reducer is a hollow shaft reducer.
13. The screw assembly of claim 9 wherein: a proximal portion of said torque arm is connected to said wall assembly; and a distal portion of said torque arm extends completely around said shaft of said screw.
14. The screw assembly of claim 9 wherein said torque arm is connected to said speed reducer by at least one fastener.
15. The screw assembly of claim 9 wherein said torque arm is adapted to limit orbital movement of an end portion of said shaft of said screw during rotation of said screw.
16. The screw assembly of claim 9 wherein said torque arm is adapted to limit at least one of the following types of movement of said end portion of said shaft of said screw during rotation of said screw: clockwise movement, counterclockwise movement, curved movement, angular movement, vertical movement, horizontal movement, and tilting movement.
17. A screw assembly comprising: a wall assembly; a screw comprising a shaft cantilevered to said wall assembly; a speed reducer associated with said shaft of said screw, said speed reducer adapted to facilitate rotation of said screw; and a torque arm connected to said wall assembly and said speed reducer such that said torque arm is adapted to pivot relative to said wall assembly to resist undesired movement of said speed reducer during rotation of said screw.
18. The screw assembly of claim 17 wherein said shaft of said screw is hollow.
19. The screw assembly of claim 17 wherein said speed reducer is a hollow shaft reducer.
20. The screw assembly of claim 17 wherein: said shaft of said screw is hollow; and said speed reducer is a hollow shaft reducer.
21. The screw assembly of claim 17 wherein: a proximal portion of said torque arm is connected to said wall assembly; and a distal portion of said torque arm extends completely around said shaft of said screw.
22. The screw assembly of claim 17 wherein said torque arm is connected to said speed reducer by at least one fastener.
23. The screw assembly of claim 17 wherein said torque arm is adapted to limit orbital movement of said speed reducer during rotation of said screw.
24. The screw assembly of claim 17 wherein said torque arm is adapted to limit at least one of the following types of movement of said speed reducer during rotation of said screw: clockwise movement, counterclockwise movement, curved movement, angular movement, vertical movement, horizontal movement, and tilting movement.
25. The screw assembly of claim 17 wherein said torque arm comprises at least two pivots to facilitate resistance to undesired movement of said speed reducer during rotation of said screw.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENT(S)
[0018] Exemplary embodiments of the present invention are directed to a cantilevered screw assembly, which may also be referred to as a cantilevered auger assembly herein.
[0019] The shaft 14 (in association with a bearing assembly 15) is cantilevered to a wall assembly 16 of cantilevered screw assembly 10. The wall assembly 16 may include at least one wall 18 to which the shaft 14 is cantilevered. The wall assembly 16 may also include at least one frame structure 20 that is associated with the at least one wall 18. Such frame structure(s) 20 may, for example, serve any of a number of different purposes, including but not limited to: a base structure to facilitate the connection of other components, devices, systems, etc.; a shielding, protective, and/or safety purpose; and/or to connect multiple walls; etc.
[0020] Such as shown in the example of
[0021] In this exemplary embodiment, a distal portion 32 of torque arm 30 is connected to speed reducer 40. In particular, at least one bolt 50 (see, e.g.,
[0022] Such as shown in
[0023] In the example of
[0024] This embodiment of cantilevered screw assembly 100 may also include a link 180 that assists with connecting the torque arm 130 to the wall assembly. The cantilevered screw assembly 100 also includes a different frame structure 120 to which the pin link 160 is connected. Otherwise, the configuration and operation of cantilevered screw assemblies 10 and 100 may be similar.
[0025] Other exemplary embodiments may utilize other pivoting mechanisms. For instance,
[0026] Each of the aforementioned examples show a torque arm that includes or may be considered to be connected to a pivot assembly that comprises two pivots to facilitate the connection to a wall assembly. However, as mentioned, there may be more than two pivot points. Embodiments that comprise multiple pivot points may be adapted to provide particularly improved resistance to undesired movement(s) due to the added flexibility and/or adjustability that may further compensate for loads on the screw (while still providing desired resistance to at least one undesired movement of a speed reducer and/or an associated or end portion of a screw shaft). Nevertheless, some exemplary embodiments may only implement a single pivot point in the connection of a torque arm to a wall assembly.
[0027] Any suitable type of speed reducer may be utilized, unless otherwise specified. An example of a hollow shaft reducer (e.g., a keyed hollow bore) is perhaps best shown in
[0028] In addition, a speed reducer may be powered by any suitable type of motor (see, e.g., motor 290 in
[0029] Any embodiment of the present invention may include any of the optional or preferred features of the other embodiments of the present invention. In view of the aforementioned design advantages, one exemplary embodiment of a speed reducer may essentially float on a torque arm (and the shaft of a screw) such that the torque arm is adapted to control or limit undesired movement of the speed reducer and screw during operation. As a result, an exemplary embodiment may effectively eliminate the need for alternative drive systems (e.g., chain and sprocket or hydraulic drives) or other means to control undesired movement of the screw. In addition, an example of a speed reducer may be substantially self-contained and therefore eliminate or limit potential problems associated with other heavy duty systems such as a misalignment of gears or leakage of fluids. Furthermore, in light of the aforementioned advantages, an exemplary embodiment may be particularly useful for light or infrequent duty or other small-scale applications to reduce the likelihood of a breakage of a screw or another portion of a cantilevered screw assembly (e.g., the bearing(s) or bearing assembly, the gears, etc.). Nevertheless, as aforementioned, some exemplary embodiments may also be utilized for heavy or frequent duty or other large-scale applications.
[0030] The exemplary embodiments herein disclosed are not intended to be exhaustive or to unnecessarily limit the scope of the invention. The exemplary embodiments were chosen and described in order to explain the principles of the present invention so that others skilled in the art may practice the invention. Having shown and described exemplary embodiments of the present invention, those skilled in the art will realize that many variations and modifications may be made to the described invention. Many of those variations and modifications will provide the same result and fall within the spirit of the claimed invention. It is the intention, therefore, to limit the invention only as indicated by the scope of the claims.