SUPPLY DEVICE AND METHOD FOR PRODUCING A SUPPLY DEVICE
20200079591 ยท 2020-03-12
Inventors
Cpc classification
B65G15/50
PERFORMING OPERATIONS; TRANSPORTING
B65G15/12
PERFORMING OPERATIONS; TRANSPORTING
B65G15/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G15/64
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A supply device for the lateral feeding of goods to be transported to a conveyor device (25), having a drive pulley (5) and at least one end pulley (7) and at least one conveyor belt (9), wherein each of the end pulleys (7) is associated with one of the conveyor belts (9), which extends around the drive pulley (5) and the associated end pulley (7) and which can be driven by means of the drive pulley (5), wherein a friction-enhancing element (41) is configured on the drive pulley (5) for enhancing friction between the respective conveyor belt (9) and the drive pulley (5).
Claims
1. A supply device for the lateral feeding of goods to be transported to a conveyor device (25), comprising: a drive pulley (5), at least one end pulley (7) and at least one conveyor belt (9), wherein: the at least one end pulley (7) is associated with one of the conveyor belts (9), that extends around the drive pulley (5) and the associated end pulley (7) and that can be driven by means of the drive pulley (5), and at least one friction-enhancing element (41) is configured on the drive pulley (5) for enhancing friction between the respective conveyor belt (9) and the drive pulley (5).
2. The supply device of claim 1, wherein the friction-enhancing element (41) is releasably attached to the drive pulley.
3. The supply device of claim 1, wherein at least one receptacle (39) for the friction-enhancing element (41) is configured on the drive pulley (5).
4. The supply device of claim 3, wherein the receptacle (39) is configured as at least one annular groove.
5. The supply device of claim 1, wherein each of the conveyor belts (9) comprises, on its inner side (21), a guide strip (23) arranged approximately along a feed direction (13), and engaging in a guide groove (19) associated with each guide strip (23) for the lateral guiding of the respective conveyor belt (9), and wherein each of the guide grooves (19) is configured in the drive pulley (5) and in the at least one end pulley (7).
6. The supply device of claim 5, wherein at least one receptacles (39) is arranged on each side of the respective guide groove (19).
7. The supply device of claim 3, wherein the friction-enhancing element (41) has a substantially annular configuration and has a substantially circular or substantially rectangular cross-section.
8. The supply device of claim 5, wherein the guide strip (23) is configured as a tapered strip.
9. The supply device of claim 1, wherein multiple conveyor belts (9) are arranged approximately along the feed direction (13) and approximately parallel adjacent to each other, and wherein a belt length of the respective conveyor belts (9) increases from a first lateral end section (15) of the supply device to a second lateral end section (15) of the supply device.
10. The supply device of claim 1, wherein each of the end pulleys (7) is configured as a tensioning pulley for tensioning the respectively associated conveyor belt (9).
11. The supply device of claim 10, wherein the end pulley (7) can be pivoted from a detensioning position (47) to a tensioning position (45) for tensioning the respectively associated conveyor belt (9), and wherein the end pulley (7) can be pivoted to the detensioning position (47) for the assembly or disassembly of the respectively associated conveyor belt (9).
12. The supply device of claim 11, wherein the respectively associated conveyor belt (9) exhibits a belt elongation of about 2% to about 8% in the tensioning position (45).
13. The supply device of claim 11, wherein the end pulley (7), when pivoting from the detensioning position (47) to a tensioning position (45), passes through a dead center where the belt elongation is greater than the belt elongation in the tensioning position (45).
14. A method for providing a supply device for the lateral feeding of goods to be transported to a conveyor device (25), having a drive pulley (5) and at least one end pulley (7) and at least one conveyor belt (9), wherein each of the end pulleys (7) is associated with one of the conveyor belts (9), which extends around the drive pulley (5) and the respective end pulley (7) and which is driven by means of the drive pulley (5), wherein a friction-enhancing element (41) is arranged on the drive pulley (5) for enhancing friction between the respective conveyor belt (9) and the drive pulley (5).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0050]
[0051]
[0052]
[0053]
[0054]
DETAILED DESCRIPTION
[0055]
[0056] The conveyor belts 9 are arranged approximately along a feed direction 13 shown by means of an arrow and approximately parallel adjacent to each other. The feed direction 13 points away from the drive pulley 5 towards the end pulleys 7. In this illustration, some of the conveyor belts 9 have been left out so that the construction of the supply device 1 can be seen more clearly; the bed 11 is also shown incompletely. A belt length of the respective conveyor belts 9 increases in steps from a first lateral end section 15 of the supply device 1 to a second lateral end section 17 of the supply device 1 as viewed transverse to the feed direction 13.
[0057] On the drive pulley 5, the bed 11 and the end pulleys 7, guide grooves 19 are configured, each of which is associated with a respective conveyor belt 9 and has the purpose of laterally guiding the respective conveyor belt 9. As set out below with reference to
[0058] The supply device 1 provides a feed conveyor surface for goods to be transported on which the goods to be transported can be conveyed on the conveyor belts 9 in the feed direction 13. The feed conveyor surface is provided by the upper outer sides 43 of the conveyor belts 9. The supply device 1 can be configured e.g. in the manner of a table, in which case the feed conveyor surface is configured as a table surface.
[0059]
[0060] For space-saving reasons and/or to impart a velocity element in a conveying direction 27 of the conveyor device 25, shown by an arrow, to the goods to be transported to be supplied, the supply device 1 is arranged at an installation angle 29 of less than 90 to the conveyor device 25; in this exemplary embodiment the installation angle 29 is about 30. The conveying direction 27 is a direction in which goods to be transported can be conveyed on the conveyor device 25.
[0061] The different belt lengths of the respective conveyor belts 9 are advantageously configured such that the installation angle 29 adds up to about 90 with a connecting angle 31 of the supply device 1. As a result, the installation angle 29 can be balanced and a uniform transition from the supply device 1 to the conveyor device 25 can be achieved, allowing a gentle feeding of the goods to be transported from the supply device to the conveyor device 25. The connecting angle 31, which is about 60 here, extends between a perpendicular 33 to the feed direction 13 and a connecting line 35, shown as a broken line, of the end pulleys 7 (not shown here). The connecting line 35 runs substantially approximately parallel to the feed direction 13. A connecting section 37 of the frame 3 on the supply device 1, with which the supply device 1 meets the conveyor device 25, is oriented approximately parallel to the connecting line 35 and/or to the feed direction 13.
[0062] In
[0063]
[0064] The friction-enhancing element 41 is configured as an O-ring, which is at least partly accommodated in the receptacle 39 and projects in a radial direction partly beyond the drive pulley 5, or more precisely, beyond a casing of the drive pulley 5. The O-ring here is made of polyurethane (PU) with a Shore hardness of about 75 A to 80 A, which means that there is an increased friction index between the conveyor belts 9 and the O-rings of about 0.5 to about 0.6 compared to the drive pulley. The conveyor belts 9 are each made of a polyvinyl chloride (PVC) on their carrying side and a polyester (PE) fabric on their running side. The O-ring is in physical contact with the respective conveyor belt 9. As a result, a friction, in particular a static friction, between the drive pulley 5 and the respective conveyor belt 9 can be increased.
[0065] The guide groove 19 in the drive pulley 5 here is configured as a tapered groove for the guide strip 23 described above configured as a tapered strip (see
[0066] In the cross-section of a front view of the supply device 1 looking towards the end pulleys 7, as shown in
[0067] For the lateral guiding of the respective conveyor belt 9, its guide strip 23 engages in a guide groove 19 associated with the respective conveyor belt 9. The guide groove 19 can be configured in multiple parts and can have multiple sections. The guide groove 19 can be configured in sections in the drive pulley 5, the bed 11 and/or the end pulley 7 associated with the respective conveyor belt 9. The arrangement of the guide groove 19 can substantially correspond to the arrangement of the associated guide strip 23, in particular in terms of a direction approximately transverse to the feed direction 13. The respective guide groove 19 can be configured as a tapered groove and can have a cross-section (in a plane perpendicular to the feed direction 13) that is configured such that it is substantially complementary to the guide strip 23 configured as a tapered strip.
[0068] A lateral clearance 42 between the respective guide strip 23 and the associated guide groove 19 in the drive pulley 5 can be smaller than in the bed 11, for example, enabling a lateral guiding of the respective conveyor belt 9 to be provided by means of the associated guide groove 19 in the drive pulley 5. The lateral clearance 42 is configured approximately parallel to a plane of the respective conveyor belt 9, e.g. a plane of an upper outer side 43 of the respective conveyor belt 9, and substantially perpendicular to the feed direction 13. The lateral guiding of the respective conveyor belt 9 can thus be provided effectively on a shorter engagement path between the respective guide strip 23 and the associated guide groove 19 than would be the case e.g. with the lateral guiding of the respective conveyor belt 9 in the bed 11. Purely as a result of the reduced engagement path, this can entail reduced friction and thus reduced wear on the respective guide strip 23 and/or the associated guide groove 19.
[0069] The respective upper outer sides 43 of the conveyor belts 9 lie in a common plane here, by which the feed conveyor surface can be provided.
[0070] In
[0071] When pivoting from the detensioning position 47 to the tensioning position 45, the end pulley 7 passes through a dead center (not shown here), where the belt elongation is greater than in the tensioning position.
[0072] The design shown here is configured in particular taking account of a pivoting direction of the end pulley 7 from the detensioning position 47 to the tensioning position 45 and a running direction of the associated conveyor belt 9 such that the respective end pulley 7 is held in its tensioning position 45 by means of a force on the end pulley 7 resulting from the belt elongation in the tensioning position 45. In addition, a safety devicein particular a mechanical safety devicecan be provided, by means of which the respective end pulley 7 can be locked in its tensioning position 45.
LIST OF REFERENCE CHARACTERS
[0073] 1 supply device
[0074] 3 frame
[0075] 5 drive pulley
[0076] 7 end pulley
[0077] 9 conveyor belt
[0078] 11 bed
[0079] 13 feed direction
[0080] 15 first lateral end section of the supply device
[0081] 17 second lateral end section of the supply device
[0082] 19 guide groove
[0083] 21 inner side of the conveyor belt
[0084] 23 guide strip
[0085] 25 conveyor device
[0086] 27 conveying direction
[0087] 29 installation angle
[0088] 31 connecting angle
[0089] 33 perpendicular to the feed direction
[0090] 35 connecting line
[0091] 37 connecting section
[0092] 39 receptacle for friction-enhancing element
[0093] 41 friction-enhancing element
[0094] 42 lateral clearance of the guide strip in the guide groove
[0095] 43 upper outer side of the conveyor belt
[0096] 45 tensioning position of the tensioning pulley
[0097] 47 detensioning position of the tensioning pulley
[0098] 49 pivot axis