Claims
- 1. A conveyor construction, comprising:
a pair of spaced side frame members each extending from a first end to a second end, the side frame members being spaced from each other to define a conveyor width, each of the side frame members including an inner wall and an outer wall; a plurality of cross members extending between the inner walls of the side frame members, each cross member having a center slot extending into the cross member from a top surface of the cross member; and a center bed plate positioned between the pair of spaced side frame members and secured to the top surface of each of the cross members by a plurality of connectors, each of the connectors being received in the center slot of one of the cross members.
- 2. The conveyor construction of claim 1 wherein the center bed plate includes a support flange that extends along its entire length and contacts the top surface of each cross member to support the center bed plate on the plurality of cross members.
- 3. The conveyor construction of claim 2 wherein the center bed plate includes an attachment flange extending along its entire length, wherein the connectors engage the attachment flange and are received in the center slots of the cross members to secure the attachment flange to the cross members.
- 4. The conveyor construction of claim 3 wherein the center slot extends along the entire length of each cross member.
- 5. The conveyor construction of claim 4 wherein the connectors include external threads that can be selectively received along the entire length of the center slot of the cross member.
- 6. The conveyor construction of claim 1 further comprising:
at least two bed plate strips mounted to the top surfaces of the cross members to combine with the center bed plate to define a conveyor belt support surface, and a conveyor belt extending along the length of the side frame members and positioned between the side frame members, the conveyor belt having an upper run supported by the conveyor belt support surface.
- 7. The conveyor construction of claim 6 wherein the same number of bed plate strips are positioned on opposite sides of the center bed plate such that the center bed plate is centered between the pair of side frame members, wherein the center bed plate includes a center groove sized to receive a center rib formed on the conveyor belt.
- 8. The conveyor construction of claim 6 wherein both the center bed plate and the bed plate strips include at least a pair of support flanges that contact the top surfaces of the cross members to support the center bed plate and the bed plate strips on the cross members.
- 9. The conveyor construction of claim 8 wherein both the center bed plate and the bed plate strips each include a pair of attachment flanges, wherein a plurality of connectors engage the attachment flanges and are received in the center slots of the cross members to secure the attachment flanges to the cross members.
- 10. The conveyor construction of claim 9 wherein the center slot extends along the entire length of each cross member.
- 11. The conveyor construction of claim 10 wherein the connectors include external threads that can be selectively received along the entire length of the center slot of the cross members.
- 12. The conveyor construction of claim 11 wherein each of the cross members includes a plurality of engagement bores each extending along the entire length of the cross member, each of the engagement bores being sized to receive a connector to secure the cross member between the pair of spaced side frame members.
- 13. The conveyor construction of claim 12 wherein each of the cross members is formed from extruded aluminum.
- 14. The conveyor construction of claim 6 wherein the center bed plate and the bed plate strips are formed from extruded aluminum.
- 15. A conveyor having a frame assembly extending from a first end to a second end and including a pair of spaced apart side frame members, an end assembly mounted between the pair of side frame members and movable toward and away from the first end of the frame assembly, and a conveyor belt engaged around the end assembly and positioned between the side frame members, comprising:
a tension adjustment assembly positioned between the end assembly and the frame assembly, the tension assembly being operable to move the end assembly toward and away from the first end of the frame assembly to impart tension to the conveyor belt; and a tracking adjustment assembly positioned between the end assembly and the frame assembly, the tracking adjustment assembly being operable to adjust the lateral orientation of the end assembly relative to the first end of the frame assembly; wherein the adjustment of the tension adjustment assembly does not affect the adjustment of the tracking adjustment assembly.
- 16. The conveyor of claim 15 wherein the tension adjustment assembly further comprises:
a longitudinally extending center guide channel formed in each of the side frame members; an elongated gear rack disposed in each center guide channel, each gear rack being longitudinally movable within the center guide channel; and a rotatable pinion drivingly engaged with each gear rack, wherein the pinion is rotatably mounted to and extends laterally between the side frame members, wherein rotation of the pinion results in the longitudinal movement of the gear racks in the center guide slot.
- 17. The conveyor of claim 16 wherein the end assembly includes a pair of spaced head plates and at least one end roller mounted therebetween, each of the head plates being supported by one of the spaced side members and longitudinally movable relative to the first end of the frame assembly, wherein the head plates are movable along with the gear racks upon rotation of the pinion to adjust the tension imparted to the conveyor belt.
- 18. The conveyor of claim 17 wherein the tracking adjustment assembly comprises:
a pair of main bodies each disposed in one of the center guide channels, each main body having an inner end in contact with one of the gear racks and an outer end in contact with one of the head plates, the outer end of each main body including an adjustment member movable toward and away from the outer end of the main body to adjust the position of the head plate in contact therewith.
- 19. The conveyor of claim 18 wherein each of the main bodies is longitudinally movable in the center guide channel along with the gear rack such that the adjustment of the tension adjustment assembly does not affect the adjustment of the tracking adjustment assembly.
- 20. The conveyor of claim 19 wherein each of the adjustment members is independently operable such that the lateral orientation of the end roller can be adjusted.
- 21. An adjustment arrangement for a conveyor construction including a frame assembly extending from a first end to a second end and a pair of spaced apart side frame members, comprising:
an end assembly longitudinally movable relative to the first end of the frame assembly; a conveyor belt engaged around the end assembly and positioned between the pair of spaced apart side frame members; a longitudinally extending center guide channel formed in each of the side frame members; an elongated gear rack disposed in each center guide channel, each gear rack being longitudinally movable within the center guide channel; a rotatable pinion drivingly engaged with each gear rack, wherein the pinion is rotatably mounted to and extends laterally between the side frame members, wherein rotation of the pinion results in the longitudinal movement of the gear racks in the center guide slot; a tracking adjustment assembly positioned between each gear rack and the end assembly, wherein the tracking adjustment assemblies are independent operable to adjust the lateral orientation of the end assembly relative to the side frame members, each of the tracking adjustment assemblies being longitudinally movable with the gear racks upon rotation of the pinion such that the lateral orientation of the end assembly is not affected by the longitudinal movement of the gear rack.
- 22. The adjustment arrangement of claim 21 wherein the end assembly includes a pair of spaced head plates and at least one end roller mounted therebetween, each of the head plates being supported by one of the spaced side members and longitudinally movable relative to the first end of the side frame members, wherein each of the tracking adjustment assemblies is in contact with one of the head plates.
- 23. The adjustment arrangement of claim 22 wherein each of the head plates is independently movable relative to the first end of the frame assembly such that the longitudinal movement of one head plate relative to the other head plate adjusts the lateral orientation of the end roller.
- 24. The adjustment arrangement of claim 23 wherein each tracking adjustment assembly includes a main body disposed in the center guide channel, the main body having an inner end in contact with the gear rack and an outer end in contact with one of the head plates, the outer end including an adjustment member movable toward and away from the outer end of the main body to adjust the position of the head plate in contact therewith.
- 25. The adjustment arrangement of claim 24 wherein the adjustment member is a screw threadedly movable into and out of the outer end of the main body, wherein movement of the screw laterally moves the head plate and adjusts the lateral orientation of the end roller.
- 26. The adjustment arrangement of claim 25 wherein each of the head plates includes an access slot aligned with the adjustment member such that the adjustment member can be accessed through the head plate.
- 27. The adjustment arrangement of claim 26 wherein each of the adjustment members are independently operable.
- 28. The adjustment arrangement of claim 23 wherein each of the head plates includes an upper slide member disposed in an upper guide channel of the side frame member and a lower slide member disposed in a lower guide channel of the side frame member.
- 29. The adjustment arrangement of claim 28 wherein the end assembly further comprises a cross bar having a first end rotatably supported between one of the upper slide members and one of the lower slide members and a second end rotatably supported between the other upper slide member and the other lower slide member.
- 30. A center drive assembly for a conveyor having a frame assembly extending from a first end to a second end and including a pair of spaced side frame members, at least one end assembly mounted between the side frame members and movable toward and away from the first end of the frame assembly, and a continuous conveyor belt having an upper run and a lower run and engaged around the end assembly and positioned between the side frame members, the center drive assembly comprising:
a pair of spaced side plates each configured for attachment to one of the side frame members between the first end and the second end of the frame assembly, the side plates extending below the side frame members; a guide roller assembly pivotally mounted between the pair of spaced side plates, wherein the guide roller assembly is pivotally movable between an operating position in which the lower run of the conveyor belt passes over the guide roller assembly and enters into the center drive assembly and a belt-changing position in which the guide roller assembly is pivoted away from the side frame members to reduce the tension in the conveyor belt; a drive roller rotatably mounted between the pair of spaced side plates and positioned such that the lower run of the conveyor belt passes around at least a portion of the outer circumference of the drive roller; a drive motor mounted to one of the side plates and coupled to the drive roller to rotate the drive roller and move the conveyor belt along the longitudinal length of the frame assembly; and a tension roller extending between the spaced side plates and positioned such that the lower run of the conveyor belt passes around at least a portion of the outer circumference of the tension roller, wherein the guide roller, the drive roller and the tension roller define a belt path through the center drive assembly; wherein the tension roller is movable relative to the drive roller and the guide roller to modify the length of the belt path.
- 31. The center drive assembly of claim 30 further comprising at least one tensioning cylinder coupled to the tension roller and mounted to one of the side plates, wherein operation of the tensioning cylinder moves the tension roller relative to the drive roller and the guide roller.
- 32. The center drive assembly of claim 31 wherein the tension roller is movable parallel to the longitudinal axis of the frame assembly.
- 33. The center drive assembly of claim 31 wherein each of the side plates includes a slot that receives the tension roller, wherein the tension roller is movable along the slot to modify the belt path.
- 34. The center drive assembly of claim 31 wherein the tension cylinder includes a cylinder body stationarily mounted to the side plate and a piston rod movable into and out of the cylinder body, the piston rod being coupled to the tension roller.
- 35. The center drive assembly of claim 30 wherein the belt path of the center drive assembly includes only the guide roller, the drive roller and the tension roller.
- 36. The center drive assembly of claim 30 wherein each of the side frame members includes a guide channel extending from the first end to the second end of each side frame member, wherein the pair of spaced side plates are each mounted to the guide channel in one of the side frame members such that the side plates can be mounted anywhere along the entire length of the frame assembly.
- 37. The center drive assembly of claim 30 wherein the guide roller assembly includes a pivot bracket pivotally mounted between the pair of spaced side plates and a guide roller rotatably mounted to the pivot bracket.
- 38. The center drive assembly of claim 30 further comprising:
a slot formed in each of the spaced side plates to receive one end of the tension roller such that the tension roller is movable along the pair of spaced slots to modify the belt path; and a pair of tensioning cylinders each coupled to one end of the tension roller and mounted to one of the spaced side plates, wherein operation of the tensioning cylinder moves the tension roller along the pair of spaced slots to adjust the tension in the conveyor belt.
- 39. The center drive assembly of claim 38 wherein each of the tensioning cylinders includes a piston rod movable into and out of a cylinder body, wherein each piston rod is coupled to one end of the tension roller by a mounting block secured to the piston rod.
- 40. The center drive assembly of claim 39 further comprising a collar positioned between the mounting block and the side plate to prevent the lateral movement of the tension roller between the pair of spaced side plates, wherein the collar can be released to allow the lateral movement of the tension roller relative to the spaced side plates.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present invention is based on and claims priority to U.S. Provisional Patent Application Serial No. 60/368,957 filed on Mar. 29, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60368957 |
Mar 2002 |
US |