GUIDE ROLLER AND TRANSPORT DEVICE COMPRISING SEVERAL ROLLERS
20210292123 ยท 2021-09-23
Assignee
Inventors
Cpc classification
B65H2404/1321
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/1122
PERFORMING OPERATIONS; TRANSPORTING
B65H27/00
PERFORMING OPERATIONS; TRANSPORTING
B31B50/046
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A roller for guiding a sheet (101) by friction has a contact surface (2) designed to be in contact with the sheet (101), the contact surface (2) having, overall, a shape of revolution when the roller (1) is at rest, a central portion (6) configured to mechanically connect the roller (1) to a rotating drive element, and a deformation portion (10) located between the contact surface (2) and the central portion (6), the deformation portion (10) being configured to deform elastically when the roller (1) guides the sheet (101) by friction.
The deformation portion (10) comprises at least one cut (12) extending from the contact surface (2) to the central portion (6), the cut (12) being arranged such that the deformation portion (10) comprises at least one elastically deformable segment (16).
Claims
1. Roller for guiding a sheet (101) by friction, the roller (1) having: a contact surface (2) designed to be in contact with the sheet (101), the contact surface (2) having, overall, a shape of revolution when the roller (1) is at rest, a central portion (6) configured to mechanically connect the roller (1) to a rotating drive element, and a deformation portion (10) located between the contact surface (2) and the central portion (6), the deformation portion (10) being configured to deform elastically when the roller (1) guides the sheet (101) by friction, characterized in that the deformation portion (10) comprises at least one cut (12) extending from the contact surface (2) to the central portion (6), the cut (12) being arranged such that the deformation portion (10) comprises at least one elastically deformable segment (16).
2. The roller of claim 1, in which the deformation portion (10) comprises an outer crown (18) and multiple connecting members (11.1) that mechanically connect the central portion (6) to the outer crown (18), at least one cut (12) extending through the outer crown (18) so as to interrupt the outer crown (18) at least once.
3. The roller of claim 2, in which multiple connecting members (11.1) are formed by spring blades.
4. The roller of claim 2, comprising cutouts (11.2) located respectively between two consecutive connecting members (11.1).
5. The roller of claim 1, in which the contact surface (2) is, overall, in the shape of a cylinder.
6. The roller of claim 1, in which the number of cuts (12) is greater than or equal to two, for example equal to seven.
7. The roller of claim 6, in which the cuts (12) are distributed uniformly around the central portion (6).
8. The roller of claim 1, in which at least one cut (12) is configured such that the intersection of the cut (12) with the contact surface (2) forms a segment that is straight and parallel to the axis of revolution (X2) of the contact surface (2).
9. The roller of claim 1, in which at least one cut (12) is configured such that the intersection of the cut (12) with the contact surface (2) forms a segment that is oblique to the axis of revolution (X2) of the contact surface (2).
10. The roller of claim 9, in which at least one cut (12) extends parallel to a plane (P12) that includes the oblique segment.
11. The roller of claim 1, comprising at least two disks (19).
12. The roller of claim 11, in which the disks (19) are coaxial, mutually parallel, of the same thickness, spaced apart and equidistant from one another.
13. A conveying device, for conveying, by friction, sheets (101), for example sheets of cardboard intended for making foldable boxes, the conveying device (100) comprising an end stop (102) and multiple rollers (1) as claimed in claim 1, the rollers (1) being inclined so as to guide and align each sheet (101) against the end stop (102).
14. The conveying device of claim 13, comprising at least two pairs of rollers (1), each pair of rollers including an upper roller and a lower roller that are arranged face-to-face so as to grip a sheet (101) between them, the conveying device (100) further comprising a rotating drive element, which is secured to the central portion (6) of at least one of the rollers (1) of each pair of rollers (1) such that the rotating drive element can transmit a torque to at least one of the rollers (1) of each pair of rollers (1).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034] The present invention will be easily understood and its advantages will also become apparent from the description which will follow, which is given solely by way of nonlimiting example and makes reference to the attached figures in which identical reference signs correspond to elements that are structurally and/or functionally identical or similar. In the attached figures:
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
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[0052] Here, the contact surface 2 is the radially outermost surface of the roller 1, that is to say the furthest from the axis of revolution X2 of the contact surface 2. The axis of the cylinder forming the contact surface 2 coincides with the axis of rotation of the roller 1 when the roller 1 is at rest.
[0053] According to one variant, the roller is made at least in part of a flexible material, for example a polyurethane. By way of exemplary embodiment, a roller according to the invention can have: [0054] a diameter D2 approximately equal to 60 mm, [0055] a width W2 approximately equal to 30 mm, [0056] at least one slot having a width W12 approximately equal to 1 mm, [0057] a hardness approximately equal to 60 ShoreA, the hardness being measured at the contact surface.
[0058] The roller 1 has a central portion 6 that is configured to mechanically connect the roller 1 to a rotating drive element, as shown in
[0059] The roller 1 has a deformation portion 10 that is located between the contact surface 2 and the central portion 6. The deformation portion 10 is configured to deform elastically when the roller 1 guides the sheet 101 by friction.
[0060] In this case, the deformation portion 10 has six cuts 12. Each one of the cuts 12 extends from the contact surface 2 to the central portion 6. Each cut 12 is arranged such that the deformation portion 10 comprises, in this case, six elastically deformable segments 16. Here, the cuts 12 are distributed uniformly about the central portion 6.
[0061] The deformation portion 10 comprises an outer crown and multiple connecting members 11.1. The connecting members 11.1 mechanically connect the central portion 6 to the outer crown 18. In the example of
[0062] Each connecting member 11.1 forms in essence a spoke for the roller 1. The roller 1 has cutouts 11.2 located respectively between two consecutive connecting members 11.1. Each cutout 11.2 has a triangular shape pointing essentially toward the central portion 6.
[0063] In the example of
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[0069] The roller 1 of
[0070] Furthermore, the roller 1 is formed with at least two disks 19 that are mutually parallel, coaxial and spaced apart from one another. The disks 19 are of the same thickness, are equidistant from one another, and are held on the central hub 20. The space between two disks 19 extends from the contact surface 2 to the central portion 6. The cuts 12 of the roller 1 are created at the surface of one or more disks 19, uniformly around the central portion 6, on the perimeter formed by the contact surface 2.
[0071] The roller 1 of the sixth embodiment comprises four disks 19. The deformation portion 10, and thus the contact surface 2, of the roller 1 are thus divided into four, across the width W2. With four disks 19 and six cuts 12 on each of the four disks 19, the contact surface 2 comprises twenty-four elastically deformable segments 16. In this embodiment, the cuts 12 of a disk 19 are offset with respect to the cuts of the immediately adjacent disk.
[0072] The roller 1 of the seventh embodiment, in
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[0074] The conveying device 100 comprises an end stop 102 and multiple pairs of rollers 1a and 1b, comprising idling rollers 1a and driving rollers 1b. The rollers 1a and 1b are inclined in the direction of the end stop 102 so as to guide, bring and align each sheet 101 against this end stop 102. Thus, a tangent to the contact surface 2 of the rollers 1a and 1b is different to the main longitudinal axis of conveyance of the sheets. The tangent to the contact surface 2 is oriented in the direction of the end stop 102.
[0075] Each pair of rollers 1 comprises an upper roller 1a and a lower roller 1b that are arranged face-to-face so as to grip a sheet 101 between them. The rollers 1a and 1b are made in a similar manner to the above-described rollers 1. The conveying device 100 further comprises, for the lower rollers 1b, a rotating drive element 104 which is secured to the central portion 6 such that the rotating drive element 104 can transmit a torque to the roller 1b when the rotating drive element 104 is connected to an actuator.
[0076] The conveying device 100 further comprises rotating drive elements that are respectively secured to the central portions of the rollers of each pair of rollers 1a and 1b, such that the rotating drive element can transmit a torque to at least one of the rollers 1 of each pair of rollers 1a and 1b. In this exemplary embodiment, the drive element can comprise a belt 104. The upper rollers 1a are held by an upper beam 105. The lower rollers 1b are held by a lower beam 106.
[0077] The invention is not limited to the particular embodiments described, nor to embodiments within the scope of the person skilled in the art. Other embodiments may be envisioned without departing from the scope of the invention, on the basis of any element equivalent to an element indicated in the present patent application.