A belt conveyor wing pulley is comprised of a plurality of V-shaped wings radially spaced about and connected to circumferential surfaces of a pair of spaced hubs. Gussets are connected to facing surfaces of adjacent wings and to the circumferential surfaces of the hubs.
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13. A pulley for a conveyor belt comprising:
spaced first and second hubs aligned along a common axis, each of the first and second hubs having a circumferential surface;
a plurality of V-shaped wings radially spaced about and connected to the circumferential surfaces of the first and second hubs; and
a gusset connected between a first surface of each wing and a second surface of an adjacent wing.
25. A pulley having a length for supporting a conveyor belt having a width, the width of the conveyor belt extending along the length of the pulley, the pulley comprising:
spaced first and second hubs aligned along a common axis, each of the first and second hubs having a circumferential surface;
a plurality of wings radially spaced about and connected to the circumferential surfaces of the first and second hubs, each wing of the plurality of wings configured to define a contact surface radially spaced from the first and second hubs for contacting the conveyor belt, wherein the contact surface of a first wing of the plurality of wings overlaps with the contact surface of a second wing of the plurality of wings along the length of the pulley, the width of the conveyor belt thereby being supported by the first and second wings; and
a gusset connected between a first surface of each wing and a second surface of an adjacent wing.
0. 26. A wing pulley comprising a pair of spaced hubs and a plurality of wings radially spaced about the hubs, each wing of the plurality of wings including a first wing portion having an outer end generally aligned with a first end of the wing pulley, the first wing portion extending from the first end of the wing pulley towards a midpoint of the wing pulley and a second wing portion having an outer end generally aligned with a second end of the wing pulley, the second wing portion extending from the second end of the wing pulley towards the midpoint of the wing pulley, wherein the midpoint is oriented forward of an imaginary line that extends between respective outer ends of the first and second wing portions relative to the direction of rotation of the wing pulley, the first and second wing portions defining planar surfaces, the planar surfaces oriented at an angle defined by the respective outer ends of the first and second wing portions relative to a respective radial of the hub.
1. A pulley for a conveyor belt comprising:
spaced first and second hubs aligned along a common axis, each of the first and second hubs having a circumferential surface;
a plurality of radially spaced wings connected to the circumferential surface of the first and second hubs, each wing comprising:
a metal plate having a length defined by a first end and a second end opposite the first end, a width defined by first and second surfaces of the plate, and a height defined by a first edge and a second edge opposite the first edge, the plate configured to define a first plate portion and a second plate portion, the first and second plate portions extending at an angle relative to one another from a location generally midway between the first and second end of the plate, each metal plate having an end portion near the first and second end that is connected to the circumferential surface of the first and second hubs; and
a gusset connected between the first surface of each plate and the second surface of an adjacent plate.
0. 31. A wing pulley comprising a pair of spaced hubs and a plurality of wings radially spaced about the hubs, each wing of the plurality of wings including a first wing portion having an outer end generally aligned with a first end of the wing pulley, the first wing portion extending from the first end of the wing pulley towards a midpoint of the wing pulley and a second wing portion having an outer end generally aligned with a second end of the wing pulley, the second wing portion extending from the second end of the wing pulley towards the midpoint of the wing pulley, wherein the midpoint is oriented forward of an imaginary line that extends between respective outer ends of the first and second wing portions relative to the direction of rotation of the wing pulley, the first and second wing portions defining planar surfaces, the planar surfaces being canted forward relative to a respective radial of the hub, such that a lower portion of each outer end of the first and second wing portions is generally positioned on the radial of the hub, and an upper portion of each outer end is located forward of the radial relative to the direction of rotation of the wing pulley.
0. 30. A belt conveyor for carrying material on an endless conveyor belt from a feed end to a discharge end, the belt conveyor comprising a wing pulley for supporting the endless belt of a conveyor at the feed end of the conveyor, the wing pulley comprising a pair of spaced hubs and a plurality of wings that are generally equally radially spaced about the hubs, each wing of the plurality of metal wings including a first wing portion having an outer end generally aligned with a first end of the wing pulley, the first wing portion extending from the first end of the wing pulley towards a midpoint of the wing pulley and a second wing portion having an outer end generally aligned with a second end of the wing pulley, the second wing portion extending from the second end of the wing pulley towards the midpoint of the wing pulley, wherein the midpoint is oriented forward of an imaginary line that extends between respective outer ends of the first and second wing portions relative to the direction of rotation of the wing pulley, wherein the outer end of each wing portion has a height greater than a spacing relative to adjacent wings to allow solid material to be discharged from the end of the wing pulley.
0. 29. A wing pulley for supporting an endless belt of a conveyor at a feed end of the conveyor, the wing pulley comprising a pair of spaced hubs and a plurality of metal wings that are generally equally radially spaced about the hubs, and a metal floor extending between each pair of adjacent metal wings, each wing of the plurality of wings including a first wing portion having an outer end generally aligned with a first end of the wing pulley, the first wing portion extending from the first end of the wing pulley towards a midpoint of the wing pulley and a second wing portion having an outer end generally aligned with a second end of the wing pulley, the second wing portion extending from the second end of the wing pulley towards the midpoint of the wing pulley, wherein the midpoint is oriented forward of an imaginary line that extends between respective outer ends of the first and second wing portions relative to the direction of rotation of the wing pulley, wherein each wing has a height relative to the floor and spacing relative to adjacent wings to allow solid material to be discharged from the end of the wing pulley, the height at the outer end of each wing portion being greater than the spacing.
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19. The pulley of
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24. The pulley of
0. 27. The wing pulley of claim 26 wherein the planar surfaces are oriented at an angle of about 30 degrees relative to the respective radial of the hub.
0. 28. The wing pulley of claim 26 wherein the planar surfaces are oriented at an angle of greater than 0 degrees and less than 30 degrees relative to the respective radial of the hub.
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The present invention is directed to belt conveyor pulleys and in particular to wing-type pulleys. Wing pulleys are known for supporting an endless belt of a conveyor at the feed end of the conveyor, where material such as sand, gravel, or the like is deposited on the conveyor belt. Wing pulleys comprise separate radially spaced plates emanating from a central hub that define separate contact surfaces on the pulley. The contact surfaces of a wing pulley beat the underside of the conveyor belt to remove debris and direct it as well as any other material away from the pulley to prevent wear and/or damage to the conveyor belt. There is a need to improve the effectiveness of a wing pulley in expelling debris from the belt.
The present invention is directed to a wing pulley for a belt conveyor. The pulley has a length for supporting a conveyor belt along its width. The pulley comprises spaced first and second hubs aligned along a common axis. Each of the first and second hubs has a circumferential surface. Radially spaced about and connected to the circumferential surfaces of the first and second hubs are a plurality of wings. Each wing of the plurality of wings is configured to define a contact surface radially spaced from the first and second hubs for contacting the conveyor belt. The contact surface of a first wing of the plurality of wings is configured to overlap with the contact surface of a second wing of the plurality of wings along the length of the pulley such that the width of the conveyor belt is supported by the first and second wings. A gusset is connected between a first surface of each wing and a second surface of an adjacent wing.
Adjacent wings 14 are connected together via gussets 19, which are shown in phantom in
The V-shaped wing configuration of the wing pulley of the present invention deflects material away from the wing pulley and conveyor belt more efficiently and effectively than standard wing pulleys. As a result, material is less apt to get wedged between adjacent wings and the conveyor belt and belt damage is minimized. The V-shaped wing configuration also results in wing overlap along the length of the wing pulley to permit a conveyor belt to be supported by multiple wings along the belt width and ease the transition of belt contact from one wing to the next. This in turn minimizes vibration to the belt, extends belt life and reduces the amount of noise generated from the wings contacting the belt.
Although specific embodiments have been illustrated and described herein, it will be appreciated by those of ordinary skill in the art that a variety of alternate and/or equivalent implementations may be substituted for the specific embodiments shown and described without departing from the scope of the present invention. This application is intended to cover any adaptations or variations of the specific embodiments discussed herein. Therefore, it is intended that this invention be limited only by the claims and the equivalents thereof.
Zeltwanger, Micah D., Solvie, James M.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
May 03 2011 | Superior Industries, Inc. | (assignment on the face of the patent) | / | |||
May 31 2013 | Superior Industries, LLC | SUPERIOR INDUSTRIES, INC | CHANGE OF NAME SEE DOCUMENT FOR DETAILS | 031347 | /0325 | |
Aug 15 2013 | SUPERIOR INDUSTRIES, INC , FORMERLY KNOWN AS SUPERIOR INDUSTRIES, LLC | JPMORGAN CHASE BANK, N A , AS ADMINISTRATIVE AGENT | SECURITY AGREEMENT | 031075 | /0435 |
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