IP Library Granted Patent US 10,766,708
Granted Patent B2
US 10,766,708 · App. 16/469,116 · Granted Sep 8, 2020

Guide rail configuration, conveyor and method for conveying containers

Inventors: Diego De Carvalho Costa (Rio de Janeiro, BR); Raynier Douglas Barbosa Gomes (Rio de Janeiro, BR); Nilton Marchetto (Jaguariúna, BR)
Assignee: SICPA HOLDING SA
B65G21/2072B65G47/766B65G47/82B65G2203/0233B65G2203/042B65G2207/08
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Quick Facts
Patent No.
US 10,766,708
App. No.
16/469,116
Granted
Sep 8, 2020
Kind
B2
Abstract

The present invention refers to a guide rail configuration for a conveyor and conveyor comprising a guide rail configuration, wherein the conveyor may, for example, be used for conveying products, packages or containers. The guide rail configuration may comprise a detector, in particular a distance sensor or a camera, configured to detect a distance to a lateral side of a container conveyed by the conveyor, or a lateral dimension of the container, wherein the actuator is activated on the basis of a measurement signal from the detector.

Claims (30)

1. A guide rail configuration suitable for guiding containers in a conveyor, the guide rail configuration comprising at least one guiding structure, including:

a guide element for guiding a container, the guide element comprising a guiding portion, a support and a carrier, wherein end portions of the guiding portion are connected to the support;

wherein the guide rail configuration further comprises:

an attachment member providing a mounting portion for mounting the guiding structure to a portion of the conveyor,

an electric actuator, configured to move the guide element relatively to the attachment member, wherein the guiding portion comprises, in the conveying direction, an inclined portion which is inclined in the conveying direction, a substantially flat portion and a portion declining towards the support, such that the guiding portion is partially distanced from the support,

and wherein the guide rail configuration further comprises:

a first shaft and a second shaft connecting the attachment member and a vertical support supporting the guide element, wherein the carrier is mounted to a support body of a vertical support via screws such that, the guide element and the vertical support are movable together, wherein the support body of the vertical support comprises longitudinal through holes for the screws to be inserted through them upon mounting, the guide element is shiftable in a vertical direction by partially releasing the screws so as to position the guide element in a vertical direction, and

a detector, in particular a distance sensor or a camera, configured to detect a distance to a lateral side of a container conveyed by the conveyor or a lateral dimension of the container, wherein the electric actuator is activated on the basis of a measurement signal from the detector.

2. The guide rail configuration according to claim 1 , wherein the first shaft and/or the second shaft is provided with a gear which is in engagement with a gear or the actuator.

3. The guide rail configuration according to claim 1 , wherein the electric actuator is a stepping motor.

4. The guide rail configuration according to claim 1 , wherein the electric actuator is configured to provide a rotational movement converted to a linear movement of the guide element.

5. The guide rail configuration according to claim 1 , wherein the electric actuator is mounted on the attachment member.

6. The guide rail configuration according to claim 1 , wherein the guide element is mounted on a vertical support.

7. The guide rail configuration according to claim 6 , wherein the guide element is mounted on the vertical support in a releasable manner so that the guide element may be rearranged relatively to the vertical support.

8. The guide rail configuration according to claim 1 , wherein the first shaft and the second shaft connect the attachment member and the carrier of the guide element via the vertical support,

wherein the first shaft and/or the second shaft is provided with a bevel gear which is in engagement with a bevel gear of the electric actuator.

9. The guide rail configuration according to claim 8 , wherein one of the shafts, in particular the second shaft, extends through a spindle nut.

10. The guide rail configuration according to claim 1 , wherein the guide rail configuration comprises a controller, in particular a programmable logic controller, wherein the controller is configured to compare a measurement signal from the detector with one or more previous measurement signals of the detector.

11. The guide rail configuration according to claim 1 , comprising two guiding structures arranged opposite to each other.

12. The guide rail configuration according to claim 11 , further comprising two distance sensors arranged opposite to each other.

13. A conveyor for conveying containers, the conveyor comprising a supporting structure and a conveying element, in particular a conveyor belt, one or more conveying chains, one or more conveying straps or a plurality of conveying rolls,

wherein the conveyor further comprises at least one guide rail configuration according to claim 1 .

14. The conveyor according to claim 13 , further comprising a main controller, in particular a programmable logic controller, wherein the main controller is configured to compare a measurement signal from the detector with one or more previous measurement signals, and/or the conveyor further comprising a printer or a labeling device for applying a marking or a label to a container guided by the guide element.

15. A method of guiding a container in a conveyor according to claim 13 , comprising the following steps:

moving a container in a conveying direction,

detecting a lateral side or a lateral dimension of the container, in which method detecting preferably takes place either by means of a distance sensor and/or a camera, and

moving a guide element on the basis of a measurement signal from the detector, in particular in a horizontal direction.

16. The method according to claim 15 , wherein the measurement signal from the detector is compared with one or more previous measurement signals and the guiding element is moved on the basis of a deviation between the current measurement signal and the one or more previous measurement signals.

17. The method according to claim 15 , wherein moving the guide element is performed by converting a rotational movement of an electric actuator, in particular a stepping motor, to a linear movement of the guide element, and/or the method is characterized by instructing a printer or labeling device for applying a marking or a label to the container guided by the guide element.

18. The method according to claim 15 , wherein the step of detecting refers to detecting a distance to the container in a direction traverse the conveying direction, in particular a horizontal direction, and/or detecting a lateral dimension of the container, the lateral dimension being a dimension in a direction traverse the conveying direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2019
From: DE CARVALHO COSTA, DIEGO; BARBOSA GOMES, RAYNIER DOUGLAS; MARCHETTO, NILTON
To: SICPA HOLDING SA
Reel/Frame 049451/0872 →
Priority Claims (1)
WO PCT/EP2016/080611 · Dec 12, 2016 · international
Continuity (1)
Related Publication 20200017305A1 · Jan 16, 2020
Cited By (1)
US 12,623,867