High speed multi-bin card collation system
09592989 ยท 2017-03-14
Assignee
Inventors
Cpc classification
B65H29/34
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1914
PERFORMING OPERATIONS; TRANSPORTING
B65H31/3054
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H31/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An automated high speed multi-bin card collation system that takes die cut greeting cards at high speeds and diverts them on a customer by customer basis into multiple bins. A series of diverters are included that actuate between customer jobs to divert and collate the jobs independently into the bins. Each bin has a retractable floor that allows the individualized jobs to be collated prior to dropping onto a conveyor system. The conveyor then conveys the collated card jobs to a downstream location.
Claims
1. A method for automatically collating sets of cards in a multi-bin collation system, comprising: providing a series of bins for receiving individual sets of cards; providing each of said series of bins with a retractable bottom portion; providing a feed source for feeding cards over each of said series of bins; providing a diverter for each of said series of bins for deflecting said sets of cards into separate of said series of bins; filling a bin closest to said source first and then sequentially filling the rest of said series of bins with said sets of cards; providing a first conveyor for transporting said sets of cards downstream from said series of bins; simultaneously retracting said bottom portion of all of said series of bins except said bin most remote from said feed source while said bin most remote from said feed source is being filled and dropping said sets of cards from all of said series of bins except said bin most remote from said feed source onto said first conveyor; and including next filling said series of bins from said bin most remote from said source sequentially back towards said source.
2. The method of claim 1, wherein said series of bins includes at least three bins.
3. The method of claim 1, including providing said feed source as a series of mating drive belts and idler belts.
4. The method of claim 3, including providing second and third conveyors downstream of said series of multiple bins.
5. The method of claim 4, including a pusher for pushing said sets of cards from said first conveyor onto said second and third conveyors.
6. The method of claim 5, including alternately pushing said sets of cards onto said second and third conveyors.
7. The method of claim 6, including actuating said diverters in response to meta data on a cover sheet included with each card set request.
8. The method of claim 1, including providing card collation size buffering for varying distributions of card set sizes to allow for small sets to be offset by larger sets to increase average processing times for downstream systems.
9. A high speed multi-bin card collation system, comprising: a series of bins arranged longitudinally with respect to each other; a feed source for feeding cards over a top portion of said series of bins; a diverter for each of said series of bins, said diverter being adapted when actuated to deflect a set of cards into selected ones of said series of bins; a first conveyor for transporting sets of cards to a downstream location; wherein a bin farthest from said source is the first to be filled and each of said series of bins includes a moveable card support surface, said card support surface being adapted to be retracted from beneath all of said series of bins simultaneously after all of said bins have been filled with card sets, and second and third conveyors positioned below and on opposite sides of said first conveyor and downstream of said series of bins.
10. The collation system of claim 9, wherein all of said sets of cards are dropped simultaneously from said series of bins except the closest of said bins to said source onto said first conveyor when they are filled.
11. The collation system of claim 10, including continuing to feed cards into said series of bins with said bin farthest from said source being the last bin to be filled.
12. The collation system of claim 9, wherein said second and third conveyors are adapted to receive collated card sets from said first conveyor.
13. The collation system of claim 12, wherein said card sets are placed onto said second and third conveyors alternately.
14. The collation system of claim 9, including a cover sheet having controlling data thereon for controlling the particulars of each set of cards.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Various of the above-mentioned and further features and advantages will be apparent to those skilled in the art from the specific article or methods described in the example(s) below, and the claims. Thus, they will be better understood from this description of these specific embodiment(s), including the drawing figures (which are approximately to scale) wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(8) For a general understanding of the features of the disclosure, reference is made to the drawings. In the drawings, like reference numerals have been used throughout to identify identical elements.
(9) In accordance with the present disclosure, two streams of greeting cards are provided with each stream sent to a series of bins by diverting the stream of cards to sequential bins based on customer meta data present on a header card for each set. The collation count is from 2 to over 100 cards per customer. The Bins are filled sequentially. That is, the first Bin to the right then the second from the right, etc., until all of the Bins are filled. The Bins are made up of 4 fixed vertical walls and a moveable floor that holds the collations and is retracted to drop the collation(s). The system works by filling 5 of the 6 Bins left to right, as view in
(10) Broadly, the present system of
(11) In
(12) Depending on the banding tact time, it may be desired to out-sort smaller sets. This can be done with an additional Bin or Bins and a diverter to divert those sets to another non-banding conveyor system.
(13) An optional or alternative inboard and or outboard arrangement 200 is shown in
(14) An alternative embodiment of the present disclosure is shown in
(15) In practice, to meet a demand for collating, banding and sorting a high volume of greeting cards per printing, a fully automated high speed multi-bin card collation system 100 is disclosed that includes two streams of cards with each stream being sent to a series of 6 Bins. Diverters 120 channel or direct the stream of cards to sequential Bins based on customer requirements contained on a header sheet included for each requested set of cards which could be from 2 to over 100 cards per customer. The Bins are filled sequentially until 5 of the 6 Bins have been filled. Then a moveable bottom of each of, for example, Bins 2-6 is retracted allowing the collated sets of greeting cards to drop onto moving conveyor 104 leaving Bin 1 open to catch the next incoming card collation. Afterwards, conveyor 104 conveys the received collated card sets to a downstream processing station, such as, a banding apparatus that will place a band around each individual set of greeting cards. If desired, an additional Bin can be used for any blank cards that are part of the architecture. Those cards are then dropped to an out-sort conveyor rather than the product conveyor if not banded. The number of bins can by optimized to meet specific requirements.
(16) Multi-bin card collation system 100 includes the ability to smooth card count collation time based on average set size by mixing small and large sets in multiple Bins prior to drop. It also minimizes actuator requirements for dropped sets by moving multiple bin drop shelves together and always provides at least one Bin for incoming cards to be collated while a drop sequence is occurring.
(17) It should now be understood that a fully automated multi-bin card collation system has been disclosed that is capable of collating cards at high speed. The system takes die cut cards and diverts those cards on a customer by customer basis to multiple Bins. This increases the time that is allowed for moving the collated sets to the downstream process, e.g., automated banding systems. The system uses a series of Bins with each Bin including a diverter that is actuated between customer jobs to divert and collate the jobs independently. Each Bin includes a removable floor that allows the jobs to be collated prior to dropping onto a conveyor. This allows several Bins of cards to be collated and dropped simultaneously onto the conveyor while one bin is collecting the next set. The cards are collected right to left and then left to right allowing time to drop to equal the time it takes to fill all of the Bins minus the last Bin. The conveyor then actuates and the collated cards are conveyed out from under the Bins to a downstream position or directly to open bins of a bander.
(18) The claims, as originally presented and as they may be amended, encompass variations, alternatives, modifications, improvements, equivalents, and substantial equivalents of the embodiments and teachings disclosed herein, including those that are presently unforeseen or unappreciated, and that, for example, may arise from applicants/patentees and others. Unless specifically recited in a claim, steps or components of claims should not be implied or imported from the specification or any other claims as to any particular order, number, position, size, shape, angle, color, or material.