Multi-directional roller assembly for a conveyor
10549917 ยท 2020-02-04
Assignee
Inventors
Cpc classification
International classification
B65G47/54
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A conveyor and method for moving articles employs a multi-directional roller assembly including an orienting component for orienting a roller and an actuating component for actuating the roller.
Claims
1. A housing for a roller in a conveyor, comprising: a first ring-shaped component for mounting a roller; and a second ring-shaped component that forms a cap for the first ring-shaped component to sandwich the roller between the first ring-shaped component and the second ring-shaped component, the second ring-shaped component having a central opening, wherein the second ring-shaped component is rotatable about the first ring-shaped component to induce rotation of the roller about a central axis.
2. The housing of claim 1, wherein the second ring-shaped component comprises a plurality of downward facing teeth for engaging a gear on the roller.
3. The housing of claim 1, wherein the first ring-shaped component includes opposing slots for receiving axle ends of the roller.
4. The housing of claim 1, wherein the first ring-shaped component includes an inner shelf about a central opening.
5. The housing of claim 1, wherein the first ring-shaped component includes an upper portion with a central opening and a lower portion that has a smaller central opening than the upper portion to create an inner shelf for supporting ends of the roller.
6. The housing of claim 5, wherein the first ring-shaped component includes peripheral teeth about the lower portion for orienting the housing.
7. The housing of claim 1, wherein the second ring-shaped component is concentric with the first ring-shaped component.
8. The housing of claim 1, wherein the second ring-shaped component comprises a central ring including outer peripheral teeth, an upper portion above the outer peripheral teeth and a lower portion extending below the outer peripheral teeth.
9. The housing of claim 8, wherein the inside of the central ring is stepped to form a shelf.
10. The housing of claim 9, wherein the second ring-shaped component further includes an inner ring of teeth distributed about the inner rim of the central ring and stepped up from the shelf.
11. A housing for a roller in a conveyor, comprising: a first component for mounting a roller; and a second component comprising a central ring with peripheral teeth and an inner ring of teeth distributed about an inner rim of the central ring, the inner ring of teeth facing downwards towards the first component, the second component sandwiching the roller between the first component and the second component, wherein the second component is rotatable about the first component to induce rotation of the roller about a central axis.
12. The housing of claim 11, wherein the first component comprises a ring-shaped component having peripheral teeth.
13. The housing of claim 12, wherein the first component includes opposing slots in an upper portion for receiving axle portions of a roller.
14. The housing of claim 11, wherein the second component is concentric with the first component.
15. A housing for a roller in a conveyor, comprising: a first component for mounting a roller, wherein the first component includes a central ring having opposing slots for receiving axles of the roller in an upper portion and peripheral teeth distributed about a lower portion, wherein the lower portion has a smaller central opening than the upper portion to create an inner shelf in the central ring; and a second component that forms a cap for the first component to sandwich the roller between the first component and the second component, wherein the second component is rotatable about the first component to induce rotation of the roller about a central axis.
16. The housing of claim 15, wherein the second component comprises a central ring that is concentric with the central ring of the first component.
17. The housing of claim 16, wherein the second component includes peripheral teeth on the central ring and an inner ring of teeth distributed about an inner rim of the central ring, the inner ring of teeth facing downwards towards the first component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These aspects and features of the invention are described in more detail in the following description, appended claims, and accompanying drawings, in which:
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DETAILED DESCRIPTION
(12) A conveyor system includes an array of multi-directional roller assemblies. Each multi-directional roller assembly includes a bottom gear for orienting and mounting a roller and a top gear for activating a roller. The invention will be described below relative to certain illustrative embodiments, though the invention is not limited to those illustrative embodiments.
(13)
(14) The upper plate 12 includes a plurality of openings 16 for allowing at least a portion of a multi-directional roller assembly 20 to protrude through and above the top surface of the plate 12 to allow contact with articles of conveyance.
(15) For example, as shown in
(16) In the embodiment of
(17) The resulting conveying direction of a conveyed product is based on the orientation of the rollers as well as the direction of rotation of the rollers when activated. The resulting product trajectory will be 90 plus or minus the orientation angle of the rollers 22 relative to the standard conveying direction 30. When rollers axes are perpendicular to the standard conveying direction, resulting product trajectory will be along the standard conveying direction 30, or opposite the standard conveying direction, depending on the direction of rotation of the rollers. The rollers 22 may be oriented at any suitable angle to achieve a desired output trajectory.
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(19) As shown in
(20) Other means for mounting the roller 22 to the lower gear 60 may be used. For example, the axle ends 23 may be inserted into openings in the side wall of the central ring 62 to rotatably mount the roller to the lower gear 60. In the illustrative embodiment, the roller 22 rotates freely about its longitudinal axis 24 when mounted to the lower gear, though the invention is not so limited.
(21) The roller 22 may or may not protrude through the bottom opening 67.
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(24) Referring back to
(25) The roller 22 is actuated by rotating the upper gear 70 about the lower gear 60 in a selected direction. As the gear 70 rotates, the teeth 76 rotate the gear 28, spinning the roller 22. The roller spinning direction may be reversed by rotating the gear 70 in an opposite direction.
(26) The upper surface 78 of the central ring is stepped up from the upper surface 72a of the teeth 72. Thus, when the roller plate 10 is assembled, the upper surfaces 78 of the central rings are coplanar with or extend above the upper plate 12, while the gear teeth 72 are below the upper plate 12, as shown in
(27) The assemblies 20 are spaced such that one or more or all of the roller assembly upper teeth 72 are intermeshed. Therefore, rotation of one roller assembly ring 71 will cause rotation of a connected ring, actuating multiple rollers.
(28) While the upper gear 70 actuates a roller, the lower gear 60 orients the roller 22 at a select angle relative to a default direction. The lower gear 60 is connected to an orienter, such as a rack gear, which engages the teeth 66 of a roller assembly 20 to orient the roller assembly. The roller plate 10 may also include pinion gears between lower gears 60 to simultaneously orient multiple assemblies.
(29) While the illustrative embodiment shows the actuating mechanism as a cap for the orienting mechanism, the invention is not so limited. For example, alternatively, the orienting mechanism for a roller may be a cap for the actuating mechanism. In addition, various other alternatives are envisioned, and the invention is not limited to the illustrative embodiments described above.