This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2012-235590, filed Oct. 25, 1212; the entire contents of which are incorporated herein by reference.
Embodiments described herein relate to a device for sorting and conveying documents.
A device for sorting and conveying documents is provided in a document sorting and conveying machine, and a mail sorting machine, which sorts documents from a single conveying path and feeds the documents to a plurality of conveying units after sorting.
In the device for sorting and conveying documents, there is a switching gate in between one conveying path and a plurality of conveying units. Documents are sorted and conveyed to a plurality of conveying paths by selectively determining, and when required, switching the conveying direction for each of the documents through the operation of a switching gate.
However, due to restrictions of the thickness and fragility of documents, there is a problem properly sorting the documents. The problem is based on the premise that when documents are held and conveyed, the switching gate used for sorting may significantly bend the documents.
Sorting documents, without significant bending thereof, can be accomplished by providing a large gap between the desired conveying path wherein the document destination is desired and the remaining conveying paths. However, conveyance stability i.e., the state of continued operation without pausing to remove a stuck document or the misdirecting or dropping of a document, is often compromised because of the difficulty in reliably directing the documents where a large gap is provided.
In general, embodiments will be explained below with reference to the drawings.
An embodiment includes: a conveying unit that holds and conveys documents using a travelling conveyor belt, a sorting gate that sorts the documents held and conveyed by the conveyor belt in a first direction or in a second direction that is different from the first direction, a guide roller, provided so as to face the sorting gate mediated by the conveyor belt therebetween, and guide the travel of the conveyor belt, and a position determination unit that determines the position of a predefined position by giving elastic bias to the guide roller. The guide roller moves to a retracted position from the predefined position by receiving a pushing pressure from documents that are held and conveyed by the conveyor belt, while resisting a bias exerted thereon from the position determination unit.
Mail articles such as postcards or the like are taken out from mail bags, which have been collected or posted and placed therein, and the articles are dumped into a hopper 1. Mail articles, which are dumped into the hopper 1, include both standard-size mails that can be machine-processed and nonstandard-size mails that cannot be machine-processed.
A thickness sorting section 2a and a width sorting section 2b are connected to the hopper 1. The thickness sorting section 2a and the width sorting section 2b cull mail articles which are thicker than a predefined thickness and are wider than a predefined width and therefore only allow standard-size mail articles to pass therethrough.
A displacing section 3 that displaces overlapping mail articles is connected to the thickness sorting section 2a and the width sorting section 2b; and a single piece or article dispenser section 4 that dispenses therefrom a single mail article is connected to the displacing section 3. A buffer feeder section 5 that collects and feeds mail articles is connected to the single article dispenser section 4. The buffer feeder section 5 includes a local feeder section 7 connected into the flowstream, into which standard-size mail articles aligned by human hands, i.e., manually, are added to the flow of articles being sorted.
The buffer feeder section 5 dispenses a single standard-size mail article and discharges it to a conveying path 8 in an upright position. A position controlling section 10 that corrects the position of the mail article is provided in the middle of the conveying path 8. A clearing section 11 that culls and collects mail articles that are not properly positioned is provided at the side of discharging of the mail articles from the position controlling section 10.
A first reading unit 13 and a second reading unit 14 are arranged in a direction of conveyance of the mail articles. Mail articles, which are not culled by the clearing off section 11, have both sides thereof scanned by the first reading unit 13, and subsequently, the second reading unit 14 again scans both sides of the mail articles.
A switch back section 16 aligns the orientation of mail articles according to the types of postage or location information on mail articles and is connected to the discharging side of the second reading unit 14. A reverse controlling section 17 that inverts the top and bottom of mail articles, a normal rotation controlling section 18, and a postmarking section S that prints postmarks on the stamps on mail articles are all connected to the discharging side of the switch back section 16.
A plurality of stacker sections 19 are connected to the discharging side of the postmarking section S; mail articles are sorted and stacked in the stacker sections 19 according to the information of the scanned image obtained by the first reading unit 13 and the second reading unit 14.
A more detailed explanation of the mail handling operation of the apparatus for processing mail articles follows.
Firstly, mail articles are taken out from mail bags containing collected and/or posted mail and put into the hopper 1. Mail articles put in the hopper 1 are fed to the thickness sorting section 2a and width sorting section 2b and sorted by thickness and width. Mail articles thicker than a predefined thickness and wider than a predefined width are culled from the mail processing workstream, and only standard-size mail articles (those which can be auto-processed) remain. When these standard-size mail articles overlap one another, the overlapping mail articles are displaced by the displacing section 3 and then each mail article is singly dispensed from the single dispenser section 4. These dispensed mail articles which are of a size that can be machine sorted are fed to the buffer feeder section 5. Additional mail articles may be fed from the local feeder section 7 to the buffer feeder section 5. After the feeding, each mail article is singly dispensed from the buffer feeder section 5 and fed to the conveying path 8. The positions of the standard-size mail articles fed to the conveying path 8 are aligned by passing the articles through the position controlling section 10. Mail articles whose positions are not corrected are culled from the workstream and loaded into a stacker. Mail articles which are not culled are scanned by the first reading unit 13 on both sides article, followed by reading both sides of the article in the second reading unit 14. After scanning, the mail articles pass through the switch back section 16 that aligns the mail articles, or are conveyed without being switched back, and reversed by the reverse controlling section 17 (if they need to be repositioned for receipt in the stacker 19), or pass through the normal rotation controlling section 18. Consequently, the positions of stamps or the like on the mail articles are aligned, and postmarks are printed on those stamps or the like by the postmarking section S. After postmarking, the mail articles are sorted and accumulated in the stacker sections 19 based on the image scanning information indicating the destination thereof which was scanned by the first reading unit 13 and the second reading unit 14.
The device for sorting and conveying 20 transports articles based on the image scanning information related to the article; the device implements a direction of conveyance of the mail articles, and directs the mail articles to the appropriate stacker section 19 based on the image scanning information for the article. To transport the mail articles, a plurality of belts, which may be brought together to secure the articles therebetween, are provided. By moving the adjacent portion of the belts in the same direction, the mail articles are moved therewith. Where the belts diverge from contact with one another, the mail article may be removed from the workstream or directed to additional abutting belts for further transport thereof.
The device for sorting and conveying 20 has a first conveyor belt 25 extending across opposed roller 21 to 23, which moves in a direction of the arrow b. The device for sorting also has a second conveyor belt 29 that, together with the first conveyor belt 25 holds and conveys the mail articles.
The first conveyor belt 25, at a position intermediate of roller 21 and roller 23, is biased by a guide roller 31. This guide roller 31 is supported by a supporting device 30, which will be described herein.
A portion of the first conveyor belt 25 and the second conveyor belt 29 are positioned to push against one another for the conveyance of mail articles in a space therebetween, and they part from each other adjacent to the position where the guide roller 31 is engaged against the interior of the first conveyor belt 25. In the space between the belts 25, 29 after the location where they part, roller 32 and roller 33 are positioned. A third conveyor belt 35 extends around roller to engage against a portion of first conveyor belt extending between rollers 23 and 31, and thus together with the first conveyor belt 25 can selectively hold and convey mail articles conveyed thereto by the conveyor belts 25, 29. A roller 33 has a fourth conveyor belt 36 extending thereabout that together with the second conveyor belt 29, can also hold and convey mail articles emerging from the conveyor belts 25, 29.
A sorting lever is arranged between roller 27 and roller 28, within the interior of second belt 29 and adjacent to e guide roller 31 pressing the first conveyor belt 25 against the second conveyor belt 29. This sorting lever 38 is provided on a support shaft 39 so as to be freely pivotable thereon, the pivoting of which enables switching the mail articles to the first direction shown by the arrow a, or to the second direction shown by the arrow b.
The mail articles moved in the direction shown by the arrow a, after passing the location of guide roller 31, and thus after passing the location where belts 25, 29 diverge, are held between and further conveyed between the second conveyor belt 29 and the fourth conveyor belt 36. Mail articles may also move in the second direction shown by the arrow b conveyed between the first conveyor belt 25 and the third conveyor belt 35 after passing the location where belts 25 and 29 diverge.
A detection sensor 40 is provided at the carrying-in side of the sorting lever 38 of the mail articles. The sorting lever 38 is designed to function depending on the scanned sorting information upon detecting the mail articles by the detection sensor 40, and in conjunction with belt 29, create a gate to direct the mail articles after they pass the location where belts 25 and 29 diverge.
The guide roller 31 is supported at one end of a supporting lever arm 42 so as to freely rotate. The other end portion of the supporting lever arm 42 is connected to the axle of a holding shaft 50 of a rotating roller 43; the holding shaft 50 is supported by, and rotates freely in, a device frame whose illustration is omitted.
A flat surface 43a is formed at the peripheral portion of the rotating roller 43, and a fixture 44 is arranged as a protruding element on the flat surface 43a. One end portion of a coil spring 45 is attached to the upper end portion of the fixture 44; while the other end portion is attached to a fixed retainer 47.
In addition, a stop 48 is provided below the coil spring 45. The stop limits the retracted position of the fixture 44 when retracted by the spring 45. In the configuration described above, when the roller 43 rotates counterclockwise as shown by the arrow in
The coil spring 45 supplies force to bias the fixture 44 against stop 48, which tends to maintain the rollers in the position shown in
First, in order to convey a thin mail article P1 in the first direction shown by the arrow a as illustrated in
When conveying the thin mail article P1 in the second direction shown by the arrow b as illustrated in
When conveying a thick mail article P2 in the first direction shown by the arrow a as illustrated in
When sorting and conveying the thick mail article P2 in the second direction shown by the arrow b as illustrated in
In case the mail articles are significantly thin or soft when being sorted and conveyed in the second direction shown by the arrow b above, the guide roller 31 stays at or close to the predefined position because the mail article is easily bent.
However, in case the mail articles are thick or something rigid such as plastic is in the mail article, there arises problems such as the mail articles are damaged by being excessively bent or the conveyor belt is damaged, if the guide roller 31 is maintained at the at the predefined position.
In the present embodiment, when the mail articles are thick or rigid, as illustrated in
In addition, conveyance stability can be successfully maintained, because there arises no occurrence in which documents cannot be steadily held when sorting.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel embodiments described herein may be embodied in a variety of other forms; furthermore, various omissions, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fall within the scope and spirit of the inventions.
Number | Date | Country | Kind |
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2012-235590 | Oct 2012 | JP | national |