Handling apparatus and/or packaging apparatus and method used to package article groups in outer packaging
US-2020189776-A1 · Jun 18, 2020 · US
US11535458B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11535458-B2 |
| Application number | US-201816479685-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 31, 2018 |
| Priority date | Feb 1, 2017 |
| Publication date | Dec 27, 2022 |
| Grant date | Dec 27, 2022 |
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A subsystem for orienting articles, the subsystem comprising a tool assembly comprising a carriage. A tool head has a first and a second article gripper rotationally coupled thereto. A first drive mechanism is coupled to the first article gripper. A second drive mechanism is coupled to the second article gripper. A sensor is configured to observe two adjacent articles. A controller is provided in communication with the first and second drive mechanisms and the sensor. The controller is configured to determine the orientation of each of the two adjacent articles and to control the first and second drive mechanisms to rotate each of the two adjacent articles to a predefined orientation.
Opening claim text (preview).
The invention claimed is: 1. A subsystem for orienting articles, the subsystem comprising: a tool assembly comprising: a carriage; a tool head having: a first article gripper rotationally coupled to the tool head; a second article gripper rotationally coupled to the tool head and mounted adjacent to the first article gripper; a first drive mechanism coupled to the first article gripper; a second drive mechanism coupled to the second article gripper; a sensor configured to observe two adjacent articles while at least one of the two adjacent articles is being rotated by one of the first drive mechanism and the second drive mechanism; a controller in communication with the first and second drive mechanisms and the sensor, the controller configured to determine the orientation of each of the two adjacent articles and to control the first and second drive mechanisms to rotate each of the two adjacent articles to a predefined orientation based on signals received from the sensor. 2. The subsystem according to claim 1 , further comprising a moveable support member that retains at least one article in position relative to an article gripper with which it is in engagement as the at least one article is being conveyed. 3. The subsystem according to claim 2 , further comprising a wall member, between which wall member and the moveable support member the at least one article is positioned, as it is being conveyed. 4. A packaging system for packaging articles, which packaging system comprises the subsystem of claim 1 . 5. The subsystem of claim 1 wherein the controller is configured to receive the signals from the sensor and to determine, for each of the two adjacent articles, that the predefined orientation has been reached based on the signals received from the sensor; and wherein the controller is further configured to control the first and second drive mechanisms to discontinue rotation of each of the two adjacent articles based on determining, for each of the two adjacent articles, that the predefined orientation has been reached. 6. A subsystem for transferring groups of articles between a first conveyor and a second conveyor, the subsystem comprising: a tool assembly comprising: a carriage: a first tool head mounted to the carriage and having a first plurality of article grippers mounted to the first tool head; a second tool head mounted to the carriage and having a second plurality of article grippers mounted to the second tool head, wherein the first and the second tool heads are linearly displaceable with respect to each other; an actuator mechanism for moving the first and second tool heads linearly with respect to each other such that a first group of articles engaged by the first tool head and a second group of articles engaged by the second tool head is combinable into a third group of articles. 7. A subsystem according to claim 6 wherein the first tool head is rotationally mounted to the carriage by a first rotational coupling and the second tool head is rotationally mounted to the carriage by a second rotational coupling. 8. A subsystem according to claim 7 wherein the first and second tool heads are rotated about their respective rotational couplings and simultaneously the first and second rotational couplings are moved linearly with respect to each other. 9. A subsystem according to claim 7 wherein the first tool head is rotated in first direction and the second tool head is rotated in a second opposing direction by the actuator mechanism. 10. A subsystem according to claim 6 wherein each of the first and second tool heads comprises: at least one article gripper rotationally coupled to the carriage; a drive mechanism coupled to the at least one article gripper; a sensor configured to observe at least one article; a controller in communication with the at least one drive mechanism and the sensor, the controller being configured to determine the orientation of the at least one article and to control the at least one drive mechanism to rotate the at least one article to a predefined orientation. 11. A subsystem according to claim 6 wherein each of the first and second tool heads comprises: at least two article grippers rotationally coupled to the carriage; a drive mechanism coupled to each of the at least two article grippers; a sensor configured to observe two adjacent articles; a controller in communication with each drive mechanism and the sensor, the controller being configured to determine the orientation of each of the two adjacent articles and to control each drive mechanism to independently rotate each of the two adjacent articles to a respective predefined orientation. 12. A new subsystem according to claim 6 wherein the actuator mechanism is configured to move the first and second tool heads with respect to each other such that the first group of the articles is engaged by the first tool head simultaneously as the second group of articles is engaged by the second tool head. 13. A method of rotating articles to be packaged, which method comprises: conveying articles in a stream of unpackaged articles; engaging a first group of at least two articles with a first tool head observing the at least two articles with a single sensor; rotating each of the at least two articles from a first orientation until they assume a desired orientation, as detected by the sensor, whilst those articles are being conveyed; disengaging one or more articles from the first group of a least two articles; and transferring the at least two articles from a first conveyor to a second conveyor. 14. The method according to claim 13 , further comprising: engaging a second group of at least two further articles with a second tool head; observing the at least two further articles with a single second sensor; rotating each of the at least two further articles from a first orientation until they assume a desired orientation, as detected by the second sensor, whilst those articles are being conveyed; and disengaging one or more articles from the second group of at least two further articles. 15. The method according to claim 14 , further comprising: transferring the at least two further articles from a first conveyor to a second conveyor. 16. The method according to claim 13 , further comprising: detecting when each of the at least two articles has reached the desired orientation, and in response ceasing rotation of each article respectively. 17. A method of rotating articles to be packaged, which method comprises: conveying articles in a stream track of unpackaged articles; engaging a first group of at least two articles with a first tool head rotator assemblies; observing the at least two articles with a single sensor; rotating each of the at least two articles from a first orientation until they assume a desired orientation, as detected by the sensor, whilst those articles are being conveyed; and engaging a second group of at least two further articles with a second tool head; observing the at least two further articles with a single second sensor; rotating each of the at least two further articles from a first orientation until they assume a desired orientation, as detected by the second sensor, whilst those articles are being conveyed; and combining the first group of at least two articles with the second group of at least two further articles into a single article grouping. 18. An article orientation system comprising: an article gripper; a motion controller; a motion device in communication with the
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