This application is the national phase of International Application No. PCT/CN2012/078402, titled “PAPER SHEET STACKING AND RECYCLING DEVICE AND PAPER SHEET PROCESSING APPARATUS HAVING SAME”, filed on Jul. 10, 2012 which claims the benefit of priority to Chinese Patent Application No. 201110265861.9 titled “PAPER-LIKE MEDIUM STACKING AND RECYCLING DEVICE AND PAPER-LIKE MEDIUM PROCESSING APPARATUS WITH THE SAME”, filed with the Chinese State Intellectual Property Office on Sep. 8, 2011, the entire disclosures of which is are incorporated herein by reference.
The present application relates to a paper processing device which can align ends of paper-like mediums, such as paper moneys, that are conveyed in the longitudinal direction in one direction, stack the paper-like mediums onto a predetermined stacking plate, and deliver and recycle the whole stack of paper-like mediums, and relates to an apparatus having the paper processing device.
The prior paper-like medium processing apparatus (such as the Automatic Teller Machine) returns the paper money rejected or can not be identified to the user immediately. In the case that the user forgets to take away the paper money, the prior art mainly provides two solutions: according to the first solution, a sensor is provided at the outlet for the returned banknote such that the machine is stopped where an error is detected, thereby it requires the maintenance personnel to maintain and clean up the machine; according to the second solution, ends of the paper moneys are aligned, then the paper moneys are stacked to a predetermined stacking plate. The stack of paper moneys is conveyed to the single-sheet separating device, such that the paper moneys are separated in the single-sheet form again, then the paper moneys are conveyed, one by one, to the correcting device, the paper scanning device and the like again, finally the paper moneys are conveyed to the predetermined cash box and are stacked and stored therein.
According to the first solution, in the case that the user forgets to take away the banknotes, the apparatus will be stopped and will not provide any service until it is cleaned up by the maintenance personnel, which will inevitably affect the utilization ratio of the apparatus, especially at night or on holidays. According to the second solution, during the recycling process, the paper moneys undergo the single-sheet separating process again, and are conveyed to the correcting device, the paper scanning device and the like, and then are conveyed to the predetermined cash box and are stacked and stored therein again, which increases the utilization frequencies of some devices in the apparatus. Besides, some paper moneys are returned because they are tilted at a large angle and thus can not be identified. It is possible that the tilted angles of the paper moneys become larger after another single-sheet separating process. Thereby the possibility that the apparatus is jammed by the paper moneys is increased.
In the two solutions described above, the banknotes are stacked under the driving force of the driving rollers. After the banknotes leave the driving rollers, they can only rely on the frictions between the first driving belt and the banknotes to overcome the frictions between the banknotes and the lower passage wall to move towards the banknote outlet. Although the lower passage wall may be machined to be smooth, the conveying force for the stack of the banknotes is still insufficient.
In view of this, an object of the present application is to provide a device which can align ends of paper-like mediums, such as paper moneys, conveyed in the longitudinal direction in one direction and stack the paper-like mediums, delivering the whole stack of paper-like mediums, and recycle the whole stack of paper-like mediums along a simple route, and to provide a paper-like medium processing apparatus having the device, to thereby effectively reduce the probability of failure of the paper-like medium processing apparatus.
To solve the above technical problems, it is provided according to the present application a paper-like medium stacking and recycling device including: a paper conveying and stacking mechanism located in front of a paper discharging port and configured to convey discharged paper, one by one, to a predetermined position and stack the paper; a paper delivering mechanism located at a front end of the paper conveying and stacking mechanism and configured to deliver the whole stack of paper outside; and a paper recycling mechanism located at a front end of a paper storing container and configured to recycle the whole stack of paper.
Preferably, the paper discharging port is formed by an upper convey-out conveying belt and a lower convey-out conveying belt, a guiding plate is provided in front of the paper discharging port in an advancing direction of the paper; and the paper conveying and stacking mechanism is located in front of the guiding plate.
Preferably, the paper conveying and stacking mechanism includes a first conveying belt assembly and a movable blocking mechanism, wherein a first conveying belt of the first conveying belt assembly is provided in parallel with a conveyed direction of the paper, the movable blocking mechanism is provided in the conveyed direction of the paper and can be closed during the stacking of the paper and be opened during the delivering of the paper; the paper delivering mechanism includes a second conveying belt assembly under the first conveying belt assembly, with a paper delivering outlet being formed between a front end of a second conveying belt of the second conveying belt assembly and a front end of the first conveying belt; and the paper recycling mechanism includes a third conveying belt assembly located behind the second conveying belt assembly, with a paper recycling port corresponding to an inlet of the paper storing container being formed between a front end of a third conveying belt of the third conveying belt assembly and a back end of the second conveying belt, a direction switching device is provided above the paper recycling port, the direction switching device being configured for closing the paper recycling port during the stacking and delivering of the paper and opening the paper recycling port during the recycling of the paper.
Preferably, the paper conveying and stacking mechanism includes an arc-shaped plate located right under the first conveying belt, and a lower segment of the first conveyer belt is tensioned and is in contact with the upper arc surface of the arc-shaped plate.
Preferably, the arc-shaped plate includes a front arc-shaped plate and a back arc-shaped plate, wherein a curvature of the front arc-shaped plate is substantially equal to that of the back arc-shaped plate, and a surface at a back end of the back arc-shaped plate is lower than the paper discharging outlet.
Preferably, the paper recycling port is located under an interspace between the front arc-shaped plate and the back arc-shaped plate, and the direction switching device is pivotally mounted on a spindle which is located at a rear side of the paper recycling port.
Preferably, a top surface of the direction switching device is an arc surface having a curvature substantially equal to that of the front arc-shaped plate and that of the back arc-shaped plate, and the top surface of the direction switching device is continuous with an upper arc surface of the front arc-shaped plate and an upper arc surface of the back arc-shaped plate where the direction switching device is in a closed state closing the paper recycling port.
Preferably, a recycling floating mechanism is provided at the back end of the second conveying belt assembly, wherein the recycling floating mechanism includes: a recycling floating bracket which can swing about a recycling floating bracket spindle, and a recycling floating roller provided at a tail end of the recycling floating bracket, and the second conveying belt is engaged on the recycling floating roller.
Preferably, a delivering floating mechanism is provided at the front end of the second conveying belt assembly, wherein the delivering floating mechanism includes: a delivering floating bracket which can swing about a delivering floating bracket spindle, a delivering floating roller assembly provided on the delivering floating bracket, and the second conveying belt is engaged on the delivering floating roller assembly such that a working surface of the second conveying belt can be lower than the upper arc surface of the front arc-shaped plate during the stacking of the paper, and can be higher than the upper arc surface of the front arc-shaped plate during the delivering and recycling of the paper.
Preferably, a fourth conveying belt assembly is provided at the front end of the third conveying belt assembly, and an upper conveying surface of the fourth conveying belt assembly is partially in contact with a lower conveying surface of the first conveying belt assembly.
Preferably, a pressing plate which can swing about a pressing plate spindle is provided at the paper delivering outlet, a first pressing roller is provided on the pressing plate, and the first conveying belt is engaged on the first pressing roller.
Preferably, a second pressing roller is provided on the second conveying belt assembly at a position corresponding to the first pressing roller, and the second conveying belt is engaged on the second pressing roller.
Preferably, the movable blocking mechanism is a movable baffle located in the advancing direction of the paper and pivotally mounted on a movable baffle spindle.
Preferably, a control system is provided, which includes:
an collection module including: a first sensor device located between a convey-out roller at the paper discharging port and the driving roller of the first conveying belt assembly, for detecting paper condition to be conveyed to the back end of the first conveying belt assembly; and a second sensor device located in front of the movable blocking mechanism, for detecting paper condition remained at the paper delivering outlet;
a processing module configured to receive a detection signal from the collection module, perform processing according to a preset strategy, and output a corresponding control signal; and
an execution module configured to drive the first conveying belt assembly, the second conveying belt assembly, the third conveying belt assembly, the movable blocking mechanism and the direction switching device according to the corresponding control
Based on the above solutions, it is further provided according to the present application a paper-like medium processing apparatus including a single-sheet separating device, a paper correcting device, a paper identifying device, a temporary storing device, a paper storing box, and the above paper-like medium stacking and recycling device. The paper-like stacking and recycling device is provided downstream of the temporary storing device.
Compared with the prior art, the device according to the present application can align ends of the paper in one direction and stack the paper, deliver the whole stack of paper, and recycle the whole stack of paper, to prevent the paper from being tilted at larger angle after suffering another single-sheet separating process and being processed by the correcting device again, thereby the probability of failure of machine, such as being jammed by the paper, is reduced.
According to the present application, the fourth conveying belt assembly is provided at the front end of the third conveying belt assembly, and the upper conveying surface of the fourth conveying belt assembly is partially in contact with the lower conveying surface of the first conveying belt assembly, which can provide subsequent driving force for the banknotes to be stacked, thereby the success ratio of the stacking of the banknotes is improved.
A paper-like medium stacking and recycling device according to a preferred embodiment of the present application includes: a paper conveying and stacking mechanism configured to convey paper, in a single-sheet form, to a predetermined position and stack the paper; a paper delivering mechanism configured to deliver the whole stack of paper to the paper outlet, the paper delivering mechanism is located at the back end of the paper conveying and stacking mechanism; and a paper recycling mechanism configured to recycle the whole stack of paper, the paper recycling mechanism is located at the front end of a predetermined storing container. The structures and functions of the mechanisms are as follows:
1. The paper conveying and stacking mechanism: an upper conveying belt is engaged on a drive shaft and a driven shaft which are arranged in the conveying direction, and the driven shaft is provided on a movable pressing plate. An arc-shaped plate is provided right under the upper conveying belt, and the upper conveying belt is tensioned and is in contact with the arc surface of the arc-shaped plate such that the arc surface suffers an evenly distributed positive pressure, to thereby increase the conveying force of the conveying belt on the paper. A movable blocking mechanism is provided in the conveyed direction of the paper, which is configured to prevent the paper from moving forward during the stacking process and to open a passage for the paper during the delivering of the paper.
2. The paper delivering mechanism: a movable delivering tensioning mechanism is provided under the front end of the arc-shaped plate, and the movable delivering tensioning mechanism and the movable blocking mechanism are driven by the same power. The movable delivering tensioning mechanism is provided with a transmission shaft, and a lower conveying belt is engaged on the transmission shaft. During the stacking process, the movable delivering tensioning mechanism is swung downwardly such that the lower conveying belt is lower than the arc surface of the arc-shaped plate, and the paper can not contact the conveying belt. During the delivering process after the stacking process of the paper, the movable blocking mechanism is swung at an angle to allow the paper being conveyed forward. Meanwhile the movable delivering tensioning mechanism is swung upwardly at an angle such that the lower conveying belt is higher than the arc surface of the arc-shaped plate. Thereby the whole stack of paper is clamped by the upper conveying belt and the lower conveying belt and is delivered outside. The stack of paper is delivered outside to a distance such that the tail end of the stack of paper is clamped by the driven shaft of the movable pressing plate provided with the upper conveying belt and the lower conveying belt.
3. The paper recycling mechanism: a direction switching device and a recycling movable tensioning mechanism are provided in the recycled direction of the paper. The recycling movable tensioning mechanism is provided with a recycling drive shaft, the recycling drive shaft is provided with a lower conveying belt, and a recycling conveying belt is provided at a position corresponding to the lower conveying belt. Where the motor is rotated reversely, the whole stack of paper is conveyed from a stacking and delivering unit to a recycling unit, and the recycling unit can automatically adapt itself to the total thickness of the stacked paper and convey the staked papers to a predetermined storing container.
Hereinafter, the technical solutions in a cash deposit machine according to an embodiment of the present application will be described clearly and completely in conjunction with the drawings in the embodiment of the present application, by taking the banknote as an example.
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The operation process of the stacking and recycling device according to the present application is described hereinafter, on the basis of the detailed description of the structures of the stacking and recycling device according to the present application. Specifically, the operation process of the device is as follows:
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By this way, the stacking and recycling device according to the present application has finished the following processes of the banknotes: aligning and stacking, delivering in a whole stack form, and recycling in a whole stack form, thereby during the recycling process of the banknotes, it does not need to perform another single-sheet separating process, nor does it need to convey the banknotes to the correcting mechanism, the paper identifying device, or the like, thus the possibility of machine failure is reduced.
The paper-like medium processing apparatus according to the present application is provided with the above stacking and recycling device 5, and the other components, for example, the single-sheet separating device 1, the paper correcting device 2, the paper identifying device 3, the temporary storing device 4 and the storing box 6, have similar structures to those of the prior art, and reference may be made to
The above embodiments are only preferred embodiments of the present application. It should be noted that, the preferred embodiments should not be deemed to limit the present application, and the protection scope of the present application should be defined by the claims of the present application. Those skilled in the art may make improvements and modifications to the present application without departing from the spirits and scope of the present application, and the improvements and modifications should be deemed to fall into the protection scope of the present application.
Number | Date | Country | Kind |
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2011 1 0265861 | Sep 2011 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2012/078402 | 7/10/2012 | WO | 00 | 5/2/2013 |
Publishing Document | Publishing Date | Country | Kind |
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WO2013/034026 | 3/14/2013 | WO | A |
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