Apparatus And Methods For Transferring Continuously Moving Articles To Continuously Moving Packages With Intervening Article Grouping And Group Pitch Adjustment
20210229847 · 2021-07-29
Inventors
- Robert M. Kalany (Florence, KY, US)
- Anthony B. Salvato (Cincinnati, OH, US)
- Matthew R. Lukes (Edgewood, KY, US)
- Jerome Brugger (Melbourne, KY, US)
Cpc classification
B65B57/10
PERFORMING OPERATIONS; TRANSPORTING
B65G47/907
PERFORMING OPERATIONS; TRANSPORTING
B65B21/20
PERFORMING OPERATIONS; TRANSPORTING
B65B43/42
PERFORMING OPERATIONS; TRANSPORTING
B25J9/0093
PERFORMING OPERATIONS; TRANSPORTING
B65B57/14
PERFORMING OPERATIONS; TRANSPORTING
B65B5/06
PERFORMING OPERATIONS; TRANSPORTING
B25J15/0061
PERFORMING OPERATIONS; TRANSPORTING
B65B21/18
PERFORMING OPERATIONS; TRANSPORTING
B65B2220/18
PERFORMING OPERATIONS; TRANSPORTING
B25J9/1687
PERFORMING OPERATIONS; TRANSPORTING
B65G47/918
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25J15/00
PERFORMING OPERATIONS; TRANSPORTING
B25J9/00
PERFORMING OPERATIONS; TRANSPORTING
B65B21/18
PERFORMING OPERATIONS; TRANSPORTING
B65B21/20
PERFORMING OPERATIONS; TRANSPORTING
B65B35/58
PERFORMING OPERATIONS; TRANSPORTING
B65B43/42
PERFORMING OPERATIONS; TRANSPORTING
B65B5/06
PERFORMING OPERATIONS; TRANSPORTING
B65B5/10
PERFORMING OPERATIONS; TRANSPORTING
B65B57/10
PERFORMING OPERATIONS; TRANSPORTING
B65B57/14
PERFORMING OPERATIONS; TRANSPORTING
B65G47/90
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Packaging apparatus and methods include a plurality of article grippers driven by independently controlled motors in an end-of-arm tooling (EOAT), for picking articles, grouping articles, adjusting group pitch and placing article groups in packages where incoming articles and packages are continuously or intermittently moving and without motion of the entire EOAT in the direction in which articles and packages are picked and moved. Hole healing and incoming product registration apparatus and methods are disclosed.
Claims
1. Transfer apparatus for transferring incoming articles at one pitch on an article supply conveyor and in groups to containers on another conveyor at a different pitch, and comprising; at least one article supply conveyor conveying articles at one pitch in a machine direction at least one container conveyor conveying containers at another pitch in one direction; an end-of-arm tool moveable operationally between said conveyors but not itself moveable in said machine direction; article picking and grouping grippers on said end-of-arm tooling; and linear motors driving said grippers independently along said end-of-arm tooling in a machine direction at said one pitch for picking articles from said article supply conveyor, and in pitch adjusted article groups for placement in containers at said other pitch on said container conveyor.
2. Transfer apparatus as in claim 1 wherein said one direction is in said machine direction.
3. Transfer apparatus as in claim 1 wherein said one direction is opposite to said machine direction.
4. Transferring apparatus as in claim 1 including at least two article supply conveyors, said grippers transferring said articles to said containers in pitch adjusted groups of articles comprising articles from each article supply conveyor.
5. Transferring apparatus as in claim 1 wherein said grippers are drivable in a direction opposite to said machine direction.
6. Transfer apparatus for transferring incoming articles at one pitch on an article supply conveyor and in groups to containers on another conveyor at a different pitch, and comprising: at least one article supply conveyor conveying articles at one pitch in a machine direction; at least one container conveyor conveying containers at another pitch in one direction; an end-of-arm tool moveable operationally between said conveyors but not itself moveable in said machine direction; article picking and grouping pickers on said end-of-arm tooling; and servo motors driving said grippers independently along said end-of-arm tooling in a machine direction at said one pitch for picking articles from said article supply conveyor, and in pitch adjusted article groups for placement in containers at said other pitch on said container conveyor.
7. Transfer apparatus as in claim 6 wherein said one direction is in said machine direction.
8. Transfer apparatus as in claim 6 wherein said one direction is opposite to said machine direction.
9. Transferring apparatus as in claim 6 including at least two article supply conveyors, said grippers transferring said articles to said containers in pitch adjusted groups of articles comprising articles from each article supply conveyor.
10. Transferring apparatus as in claim 6 further including an elongated rack on said end-of-arm tool and a rotary gear driven by each servo motor in cooperation with said rack for independently moving said grippers when said servo motors rotate said gears.
11. Transfer apparatus as in claim 1 wherein said grippers are moveable in a direction opposite said machine direction for picking a following article from said article supply conveyor, and then moveable in a machine direction for adding said following article to a forming group.
12. Transfer apparatus as in claim 6 wherein said servo motors drive said grippers independently in an upstream direction opposite said machine direction in said one pitch for picking a following article from said article supply conveyor and then in a machine direction for adding said following article to a forming group.
13. Transfer apparatus as in claim 1 wherein said article supply conveyor and said container conveyor are continuously moveable.
14. Transfer apparatus as in claim 1 wherein said article supply conveyor and said container conveyor are intermittently moveable.
15. Transfer apparatus as in claim 6 wherein said article supply conveyor and said container conveyor are continuously moveable.
16. Transfer apparatus as in claim 6 wherein said article supply conveyor and said container conveyor are intermittently moveable.
17. Transfer apparatus as in claim 1 wherein one of said article supply conveyor and said container conveyor is continuously moveable while the other is intermittently moveable.
18. Transfer apparatus as in claim 6 wherein one of said article supply conveyor and said container conveyor is continuously moveable while the other is intermittently moveable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0042] Turning now to the drawings, it will be appreciated that the drawings illustrate but one of the apparatus and methods of the invention for description thereof and that numerous other variations of the invention are readily apparent from this application. For example, while this detailed description illustrates but one EOAT, with four sets of grippers, carried by robotic arms and driven by linear motors, other EOATs may include more or less grippers, gripper groups and associated linear motors.
[0043] As used herein, the abbreviated term “EOAT” and its plural form “EOATs” is but an abbreviation for the phrase “End of Arm Tool” or “End of Arm Tooling” and includes the components of the device mounted on an appropriate robot by robot arms for translation thereby or movement in two axes of freedom or motion, that is in the vertical or “Z-axis” direction, up and down with respect to the article supply conveyors and the carton conveyors, and in the horizontal or “Y-axis” direction which is transverse to the machine direction of the supply and carton conveyors in the “X-axis” or machine direction (X).
[0044] The EOAT thus itself is moved as a whole only in two directions, vertical and horizontal, by robotic arms, but not in the machine direction.
[0045] Carriages and article grippers disclosed herein are components of the EOAT and are in one embodiment driven by linear motors of the EOAT. These carriages and grippers do have a component of motion in the “X-axis” or machine direction MD as described herein. Thus the EOAT as a whole is robotically moved only in two axes, y and z, while the carriages and grippers as described herein are moveable in an x-axis with respect to other components of the EOAT.
[0046] Also the terms “containers”, “packages” or “cartons” are used interchangeably herein.
[0047] Reference is herewith made for disclosure to U.S. Pat. No. 7,134,258, which discloses linear motors driving article carrying trays or carriages independent of each other, in an article conveying path. U.S. Pat. No. 7,134,258 is herewith incorporated herein in its entirety as a part hereof.
[0048] It will be appreciated that while U.S. Pat. No. 7,134,258 discloses the application of linear motors to conveyors which move articles in a conveyor path, it does not disclose or suggest use of linear motors in two axis transfer devices which accomplish transferring articles transversely or laterally between two conveyors, whether the conveyors are moving in the same or opposite directions.
[0049] There is illustrated in
[0050] It will be appreciated that EOAT 10 is carried and driven by robotic arms 11 and 12 only in two axes of motion, vertically (Z-axis) and horizontally (Y-axis) as will be described. EOAT 10 is not moveable as a whole, or entirely, in an X-axis or machine direction.
[0051] Further illustrated in the
[0052] As illustrated, in this embodiment, conveyors 14, 16 and 18 move parallel to and in a machine direction MD; each conveyor 14, 16, 18, preferably driven continuously by any suitable means in direction MD by any conventional means. Elongated member or rail 13 of EOAT 10 moves only with the EOAT 10 in two directions, vertically (Z-axis) and horizontally (Y-axis) over and between the conveyors 14, 16, 18, but not in the machine direction MD (X-axis). Alternately, conveyor 18 could continuously move in a direction opposite to machine direction MD along the X-axis.
[0053] EOAT 10 further includes the elongated support member or rail 13 supporting a plurality of gripper sets 20, 22, 24 and 26 carried on respective carriages 28, 30, 32, 34, driven by linear motors.
[0054] Preferably, rail 13 extends downwardly, is part of EOAT 10 and includes the linear motor coils 8, diagrammatically illustrated in
[0055] The carriages 28-34 and their associated gripper sets 20-26 are carried by rails 13, 9 for reciprocal movement in the machine direction MD with respect to rail 13. However, it will be understood that neither rail element 13, nor lever arms 11, 12, move in the machine direction MD along the X-axis. The entire EOAT 10 is carried by robot arms 11, 12 for movement only in two perpendicular directions or axes, z and y as illustrated by respective vertical and transverse arrows z and y (
[0056] Carriages 28, 30, 32 and 34, together with associated respective gripper sets 20, 22, 24 and 26, have a component of motion in the third or “x” axis, in or parallel to the machine direction MD, with respect to other components of the EOAT 10, including rails 13, 9.
[0057] The carriages herein include respective vacuum transducers or pneumatic programmable manifolds 6 controlling the grippers to engage and convey, or eject, the articles, as described herein for picking, grouping, pitch adjusting and placing articles.
[0058] The linear motors, carrying or driving the carriages and associated gripper sets are of any suitable construction and operation as will be described. One form of linear motor useful in the pouch packaging application is the XTS moving magnet linear motor system manufactured by Beckhoff Automation GmbH of Verl, Germany. Other linear motors could be selected, for use in applications for other articles sized and weight. Such motors are programmable by any suitable means to drive the respective gripper sets along rail 13 independently of each other as described below. Thus the entire EOAT 10 is moveable vertically up and down by arms 11, 12 to carry the gripper sets vertically in the Z-axis, and is also moveable transversely in the Y-axis direction to carry the gripper sets transversely across and above the paths of the parallel conveyors 14, 16, 18.
[0059] Articles such as pouches 40a, 40b or other items to be packaged are supplied on conveyors 14, 16 in a preferably continuous motion in a downstream direction MD. For illustration, pouches 40a are on conveyor 14 while pouches 40b are on conveyor 16.
[0060] Depending on the finally desired packaged product configuration, one or a plurality of pouches 40 may be supplied seriatim on conveyors 14, 16. For clarity, only one pouch 40a, 40b is supplied on conveyors 14, 16 in each pouch tray 42, 44, and at a tray spacing or pitch.
[0061] And further in
[0062] Cartons such as 48a-48d are carried, preferably continuously in machine direction MD, and at a pitch varying from the tray pitch on conveyors 14, 16. According to the invention the gripper sets 20, 22, 24, 26 are grouped and group pitch adjusted over carton conveyor 18 and cartons 48a-48d as further described. While it is suggested the carton path is in the machine direction MD, it should also be noted that as long as the carton path is parallel to the machine direction, the carton flow may be in the opposite direction of the article infeed.
[0063] Accordingly, as the EOAT 10 is moveable up and down and transversely, the gripper sets and carriages on the EOAT 10 are, in addition, moveable in the machine direction MD (X-axis).
Operation
[0064] It will be appreciated that the gripper sets 20-26 as in
[0065] However, once the pouches have been picked from conveyor 14, the carriages and gripper sets as in
[0066] Alternatively, multiple layers and numbers of articles can be placed into containers as desired.
[0067] Accordingly, in operation of the invention, equally spaced articles supplied seriatim on both conveyors 14, 16 are picked, grouped, group pitch adjusted and placed, providing filled cartons 48a-48d, in this embodiment of each carton with four articles, with a layer of two articles atop an underlying layer of two articles, and where the pitch or spacing of cartons is different than the pitch of any articles on supply conveyors 14, 16. Individually supplied articles are grouped and the group pitch adjusted to index to sensed or tracked carton spacing or pitch, all without any motion of the entire EOAT 10 in the machine direction MD and while all conveyors 14, 16, 18 move continuously in that direction. Carriages and grippers move in the machine direction, MD, facilitating picking and placing in conjunction with moving conveyors 14, 16 and 18.
[0068] More particularly, step-by-step operation of the embodiment shown in the Figures follows.
[0069] It will be appreciated that conveyors 14, 16, 18 in this embodiment are arranged parallel to each other, extending in the machine direction, MD, and are preferably but not necessarily continuously driven. Supply conveyors 14, 16 continuously convey articles such as pouches 40a, 40b through respective pouch pick stations 50, 52, while conveyor 18 continuously conveys pouch receiving cartons 48a-48b to and through first and second place stations 54, 56.
[0070] The entire EOAT 10 is capable of motion only vertically and also transversely to direction MD. Carriages 28-34 and gripper sets 20-26 of the EOAT 10, however, are moveable, with respect to other EOAT 10 components in the machine direction MD for the particular picking, grouping, group pitch adjusting and placing of pouches 40 as described herein.
[0071] The particular operation steps described herein are primarily in two stages, i.e. handling pouches from the first supply conveyor 14, to cartons on conveyor 18, then handing pouches from the second supply conveyor 16 to cartons on conveyor 18.
[0072] First, the control and sensing systems of any suitable manufacture and programming track pouches continuously incoming to a first pick station 50 associated with conveyor 14. Gripper sets 20-26 then move by linear motors to track, then grip four pouches 40a at first pick station 50. Grippers are extended to grasp the four pouches at their respectively tracked pitches and lift them off conveyor 14 (
[0073] At this time, the EOAT 10 is returned transversely (Y-axis) by robotic arms 11, 12 over conveyor 16 where the tracking, picking, grouping, and group pitch adjusting is similarly performed, but with pouches 40b from continuously moving conveyor 16, all as shown in
[0074] In consequence, moving cartons on conveyor 18 in this embodiment are filled with four pouches each, with pouches from both supply conveyors 14, 16, one layer atop another.
[0075] In these regards, it will be appreciated that the grippers 20-26 are vertically reciprocal and may be of any suitable means and construction, such as pneumatically or vacuum operated means and suction cups. Many forms and structures of grippers can be used. The term “grippers” is thus herein a generic word to describe how pouches are gripped and held. It could be by means of a vacuum shoe, vacuum cup, gripping jaws, picking needles, magnetic, or any other device to attach, lift and release articles or pouches. Any suitable sensors and linear motor controls can be used to track the moving pouch supply and the moving cartons, to adjust and time the grippers to index them over the supplied pouches, then lower them over and lift the supplied pouches, then group and group pitch adjust and place them, via any suitable linear motors, into the moving cartons on conveyor 18.
[0076] And in yet a further aspect of the invention, applicable to the foregoing embodiments, gripper sets 110-115 are carried on separate carriages independently driven not by linear motors, but by separate servo motors 130-135, for example. These motors each drive a gear 140-145 operably disposed along an extended rack 150 comprising part of EOAT 100. When the motors 130-135 turn their respective gear 140-145, the carriage associated with the motor is moved along the rack 150 in a machine direction or x-axis, much as the carriages driven by the linear motors of the above embodiment.
[0077] Apart from these differences, sensing, control, function and result are otherwise the same as the foregoing embodiment as described above.
[0078] With more particularity,
[0079] In respect of this invention, EOAT 100 is carried on robotic arms 101, 102 and is moveable vertically in a Z-axis and horizontally in a Y-axis but not in a machine direction along an X-axis as indicated in
[0080] It will be appreciated that EOAT 100 is mounted above article supply conveyors such as conveyors 14, 16 and container conveyor 18 of
[0081] Thus each element set 110-115 of two grippers, and respective carriages 120-125 are driven along rack 150 by a respective servo motor 130-135, and independently of the other motors and carriages, and in an X-axis or machine direction preferably parallel to article supply and container conveyors as in
[0082] Also, it is noted that while
[0083] In this embodiment servo motors are controlled similarly to the linear motor drives of the preceding embodiment for the same functions. Here, however, the carriages carrying the grippers are driven not by independent linear motors, but by independent servo motors, controlled to the same ends by any suitable control sensing and registration functions readily apparent to any person of ordinary skill having this disclosure.
[0084] As in the embodiment of
[0085] Further the invention contemplates the foregoing apparatus in the embodiments above used to cure missing articles and provide “hole healing”, a term used herein to describe an absence or void in a formed group of articles. For a variety of reasons, a formed group of articles in a packaging system may be less than a full complement of articles. For example only, an intended group of four articles may only contain two or three, or an intended group of eight articles may only contain six or seven. Thus a “hole” exists where one or more articles are missing in a formed group in a container.
[0086] The invention contemplates hole healing, or filling out of an incomplete article group where the line-up of incoming articles is not consistent, such as where articles are not on a constant pitch but there are “holes”, or vacancies, in the incoming article stream. Despite such aberrations a final article pattern with no article vacancies is desired for packaging or transfer. According to the invention this is accomplished by independently moving one or more of the article gripper sets, described above, to a position upstream any gap in the incoming article stream. These grippers pick one or more upstream articles then orient a full complement of articles to proper placement in a complete formed group for transfer, The full group is then transferred to and placed into a container, at a different pitch, with a full complement or “pattern” of articles in that prior formed group. It will be thus appreciated that this hole healing operation is preferably carried out while all the articles for the group are being picked from the article supply conveyors.
[0087] Thus an upstream gripper carriage can be moved to a succeeding article upstream of a “hole” then group that succeeding article in the group forming by the downstream gripper carriages. Moreover, and referring to the embodiment of
[0088] The ability to move the carriages upstream from the normal pickpoints or station accommodates hole healing.
[0089] And where hole healing occurs, downstream processing or packaging rates can be reduced to accommodate the additional time required, then returned to normal. Constant motion can be retained without resulting to intermittent motion.
[0090] While
[0091] Group rejection, waste, delay, cost, etc. attending prior solutions are thus avoided.
[0092] Finally
[0093] Of course similar operations can be accomplished by the alternate embodiment of
[0094] Thus in other words or detail the described embodiments contemplate independent movement of the gripper carriages, programmed to register the location of the incoming product on the article supply conveyor. An upstream sensor senses product location (or absence) and provides input to a registration function within a controller for the carriages, a registration function provides adjustments to the “pick” locations and the controller prescribes corrections to the motion profiles of the independent carriages to accurately locate articles at pick points.
[0095] It will be appreciated that many variations of the invention as described are contemplated by the invention, including variation in the number of pouch supply and carton conveyors, their positional relationship, the number of groups, the number of pouches in a group, the number and orientation of pouches placed in a carton, the selection of the order of picking from respective supply conveyors, varied grouping in cartons for custom orders, article and carton counterflow and many other configurations and methods. While continuously moving supply and carton conveyors are preferred, the invention provides the article handing for enhanced throughput in this way, and including the provision of grippers driven by linear motors on the EOAT for product transfer enabling a large variety of structures and operational methods for packaging not heretofore contemplated.
[0096] It will also be appreciated that any form of registration function and controller protocols can be made and programmed by those of skill in that art, having and following the direction and disclosure provided herein.
[0097] Also the invention can be applied to perform article transfer between the article supply and container conveyors at different machine directions with a controllable EOAT but still not wholly moving in a machine direction.
[0098] Moreover, the invention is useful in both continuous and intermittent article and control container operations, although continuous motion processes are preferable.
[0099] These and other alternatives and embodiments will be readily apparent to those of skill in the art without departing from the scope of this invention and applicant intends to be bound only by the claims appended hereto.