This application claims priority to Chinese Patent Application No. 201810205956.3 filed with CNIPA on Mar. 13, 2018, disclosure of which is incorporated herein by reference in its entirety.
The present disclosure relates to the technical field of financial self-service apparatus, for example, a sheet-type medium conveying device and a cash recycling and handling apparatus.
A bill recycling terminal is a kind of financial self-service apparatus which combines a plurality of functions of banknote recycling, depositing, withdrawing, temporary storage, clearing, counting, identification, serial number recording, continuous and uninterrupted banknote input, daily banknote keeping, inquiry, etc. In addition, the bill recycling terminal is capable of recycling at least one denomination of banknotes in circulation.
A basic operation process of the bill recycling terminal is described as follows. In a banknote inputting process, the banknotes are entered from an input device; after being identified by a banknote identification device, banknotes that meet requirements are conveyed by a public conveying passage and stored in at least one cash box of a safe. In a banknote outputting process, banknotes are entered into the public conveying passage from the cash box, and conveyed to the banknote identification device through the public conveying passage; after being identified by the banknote identification device, banknotes that meet requirements are output to an output device, and banknotes that do not meet requirements are conveyed to a recycling box. However, when the bill recycling terminal in the related art is in operation, there is a problem of difficulty in banknote inputting and outputting during the banknote inputting process of banknote entering into the cash box through the public conveying passage and the banknote outputting process of banknote entering into the public conveying passage through the cash box. In addition, in a process of pulling out the cash box from the safe, there may be cases of damaging the banknotes such as tearing the banknotes.
The present disclosure provides a sheet-type medium conveying device, which is suitable for bidirectional conveying of a sheet-type media such as banknotes, paper, checks, cards, etc., to solve the problem of difficulty in banknote inputting and outputting in a working process of related cash recycling and handling apparatus.
The present disclosure further provides a cash recycling and handling apparatus, to solve the problem of difficulty in banknote inputting and outputting in a working process of related cash recycling and handling apparatus.
In an embodiment, a sheet-type medium conveying device provided in the present disclosure includes a first passage plate, a second passage plate and a driving mechanism. The first passage plate and the second passage plate are oppositely arranged. A passage is formed between the first passage plate and the second passage plate, and configured for a sheet-type medium to pass through. The driving mechanism is configured to drive a first end of the first passage plate and a first end of the second passage plate to get close to or away from each other.
In an embodiment, a cash recycling and handling apparatus provided in the present disclosure includes an upper device and a lower device. A public conveying passage is arranged in the upper device. The lower device includes a safe and a plurality of cash boxes located in the safe. A branch passage is correspondingly provided between the public conveying passage and each of the plurality of cash boxes, and at least one of the plurality of branch passages between the public conveying passage and the plurality of cash boxes is the sheet-type medium conveying device of the above embodiment.
Referring list: 10-upper device; 20-lower device; 30-driving mechanism; 40-passage; 100-sheet-type medium conveying device; 200-safe; 300-input device; 400-output device; 500-temporary storage device; 600-banknote identification device; 700-public conveying passage; 110-mounting frame; 120-first passage plate; 130-second passage plate; 140-first gear; 150-second gear; 160-transmission wheel; 170-torque limiter; 180-detection assembly; 111-first limiting plate; 112-second limiting plate; 113-limiting member; 117-motor; 118-motor gear; 121-first slot; 122-first limiting portion; 123-first rotating shaft; 124-first end; 125-second end; 131-second slot; 132-second limiting portion; 133-second rotating shaft; 134-first end; 135-second end; 181-signal transmitter; 182-signal receiver; 210-cash box.
The described embodiments herein are part, not all, of embodiments of the present disclosure. In the description of the present disclosure, it should be understood that the orientational or positional relationships indicated by terms “above”, “below”, “inside” and the like are based on the orientational or positional relationships illustrated in the drawings, which are for the mere purpose of facilitating and simplifying the description of the present disclosure, and these relationships do not indicate or imply that the device or element referred to has a specific orientation and is constructed and operated in a specific orientation, and thus it is not to be construed as limiting the present disclosure. In addition, terms such as “first” and “second” are used merely for the purpose of description and are not to be construed as indicating or implying relative importance.
In the description of the present disclosure, unless otherwise expressly specified and limited, the term “mount” is to be construed in a broad sense, for example, may be construed as a fixed connection, a detachable connection, or an integral connection; a direct connection or an indirect connection through an intermediate medium; or a connection between interiors of two elements. For those of ordinary skill in the art, specific meanings of the preceding terms in the present disclosure may be understood based on specific situations.
As shown in
As shown in
A process of the sheet-type medium conveying device 100 guiding the sheet-type medium is described as follows. As shown in
In the present embodiment, the sheet-type medium may be banknotes
A process of the sheet-type medium conveying device 100 guiding banknotes is described as follows. In a banknote inputting process, that is, when the banknotes move in the second direction, the sheet-type medium conveying device 100 is in the second state under action of the driving mechanism 30, that is, the first passage plate 120 and the second passage plate 130 move relatively such that the wide opening is formed at the upper end of the first passage plate 120 and the upper end of the second passage plate 130 and the narrow opening is formed at the lower end of the first passage plate 120 and the lower end of the second passage plate 130 (as shown in
The sheet-type medium conveying device 100 uses the wide opening between the first passage plate 120 and the second passage plate 130 to realize the expand of an entrance of the passage 40, so that banknotes can smoothly enter into the passage 40 from the public conveying passage 700 and into the passage 40 from the cash box 210. At the same time, the sheet-type medium conveying device 100 uses the narrow opening between the first passage plate 120 and the second passage plate 130 to guide the banknotes. Through docking of the narrow opening with a target passage, it is ensured that the banknotes in the passage 40 can be reliably guided into the cash box 210 or the public conveying passage 700, thereby ensuring smooth banknotes inputting and outputting, and well improving the disadvantage of the difficulty in banknotes inputting and outputting in the related art. In addition, the sheet-type medium conveying device 100 is simple in structure and easy in implementation, which is of great significance for guidance and conveying of banknotes in financial self-service apparatus.
In the present embodiment, the “first state” refers to the state when the first end 124 of the first passage plate 120 and the first end 134 of the second passage plate 130 get close to each other; and the “second state” refers to the state when the first end 124 of the first passage plate 120 and the first end 134 of the second passage plate 130 get away from each other.
With continuous reference to
In the banknote inputting process, as shown in
With continuous reference to
The sheet-type medium conveying device 100 utilizes gear meshing transmission, which not only realizes synchronous movement of the first passage plate 120 and the second passage plate 130, but also enables a rotating direction of the first passage plate 120 and a rotating direction of the second passage plate 130 to always keep opposite, so as to ensure that, while the first end 124 of the first passage plate 120 and the first end 134 of the second passage plate 130 get close to each other, the second end 125 of the first passage plate 120 and the second end 135 of the second passage plate 130 get away from each other, thereby ensuring smooth running of banknote inputting and outputting. In addition, such arrangement also realizes one motor 117 simultaneous driving two passage plates to move, which not only greatly reduces manufacturing cost, but also saves layout space and has a high degree of integration.
With continuous reference to
In the present embodiment, as shown in
In the present embodiment, the power of the motor 117 may be, but not limited to, input to the first gear 140 to drive the second gear 150 to rotate, other arrangements may also be adopted, for example, the power of the motor 117 may be input to the second gear 150 to drive the first gear 140 to rotate, that is, as long as relative movement of the first passage plate 120 and the second passage plate 130 can be achieved through this kind of power input.
In an embodiment, the first gear 140 and the second gear 150 may be, but not limited to, cylindrical gears as shown in the figure, and other arrangements, such as sector gears, may also be adopted. Such arrangement not only reduces weight of the first gear 140 and the second gear 150, thereby reducing overall weight of the sheet-type medium conveying device 100 of the present embodiment, but also, the arrangement of the sector gears, saves gear manufacturing materials and reduces gear manufacturing costs.
In the present embodiment, a torque limiter 170 may also be disposed between the motor 117 and the first gear 140. In an embodiment, the torque limiter 170 is disposed between the transmission wheel 160 and the first rotating shaft 123. The driving end of the torque limiter 170 is fixedly connected to the transmission wheel 160, and the driven end of the torque limiter 170 is fixedly connected to the first rotating shaft 123. When resistance received by the first rotating shaft 123 exceeds a rated load of the torque limiter 170, the driving end of the torque limiter 170 rotates idly and the driven end of the torque limiter 170 does not rotate, so that the transmission wheel 160 and the first rotating shaft 123 relatively slip, and the transmission connection between the transmission wheel 160 and the first rotating shaft 123 is disconnected.
The arrangement of the torque limiter 170 avoids, to a certain extent, shock and vibration caused to the motor 117 after the first passage plate 120 and the second passage plate 130 are rotated in place, thereby realizing overload protection of the motor 117, and extending a working life of the motor 117.
In an embodiment, the motor 117 and the second gear 150 are in transmission connection, and the torque limiter 170 is disposed between the motor 117 and the second gear 150.
With continuous reference to
With continuous reference to
When the sheet-type medium conveying device 100 is in operation, the first limiting plate 111 and the second limiting plate 112 can be used to realize limiting of the first passage plate 120 and the second passage plate 130 respectively, and the limiting is reliable.
An abutting member is further provided between the first passage plate 120 and the second passage plate 130 for abutting when the first passage plate 120 and the second passage plate 130 rotate, so as to limit a minimum spacing between the first passage plate 120 and the second passage plate 130. In an embodiment, one side of the first passage plate 120 facing toward the second passage plate 130 is provided with a first limiting portion 122. The abutting member provided between the first passage plate 120 and the second passage plate 130 includes the first limiting portion 122 to limit the minimum spacing between the first passage plate 120 and the second passage plate 130.
In an embodiment, one side of the second passage plate 130 facing toward the first passage plate 120 is provided with a second limiting portion 132. The abutting member provided between the first passage plate 120 and the second passage plate 130 includes the second limiting portion 132 to limit the minimum spacing between the first passage plate 120 and the second passage plate 130.
In an embodiment, one side of the first passage plate 120 facing toward the second passage plate 130 is provided with a first limiting portion 122, and one side of the second passage plate 130 facing toward the first passage plate 120 is provided with a second limiting portion 132. The abutting member provided between the first passage plate 120 and the second passage plate 130 includes the first limiting portion 122 and the second limiting portion 132 to limit the minimum spacing between the first passage plate 120 and the second passage plate 130.
In an embodiment, as shown in
As shown in
In an embodiment, the first passage plate 120 is provided with continuous first limiting portions 122 along a direction perpendicular to a banknote conveying direction, and the second passage plate 130 is provided with continuous second limiting portions along a direction perpendicular to the banknote conveying direction. Such arrangement avoids, to a certain extent, excessive narrowing of the passage 40 caused by changes in flexible deformation of the first passage plate 120 and the second passage plate 130, ensuring reliability of the banknote inputting and outputting, thereby improving working reliability of the sheet-type medium conveying device 100 of the present embodiment.
In an embodiment, the first passage plate 120 and the second passage plate 130 are, but not limited to, respectively provided with the limiting portions (i.e., the first limiting portion 122 and the second limiting portion 132), other arrangements may also be adopted; for example, a limiting portion (i.e., the first limiting portion 122 or the second limiting portion 132) is provided on one of first passage plate 120 and the second passage plate 130; that is, as long as the rotation angle of the first passage plate 120 and the rotation angle of the second passage plate 130 can be limited, and after the first passage plate 120 and the second passage plate 130 are rotated in place, a passage 40 suitable for the banknotes to pass through is formed to ensure smooth banknote inputting and outputting through this arrangement.
With continuous reference to
With continuous reference to
With continuous reference to
When the detection assembly 180 is in operation, the signal transmitter 181 transmits a signal to the signal receiver 182. If banknotes exist between the first passage plate 120 and the second passage plate 130, the banknotes block the signal to transmit through, thus the signal receiver 182 cannot receive the signal. Then the detection assembly 180 outputs a first detection signal to a controller, and the controller thus determines that banknotes exist between the first passage plate 120 and the second passage plate 130. Conversely, if no banknote exists between the first passage plate 120 and the second passage plate 130, the signal receiver 182 receives a signal from the signal transmitter 181, and then the detection assembly 180 outputs a second detection signal to the controller, and the controller thus determines that no banknote exists between the first passage plate 120 and the second passage plate 130. Subsequently, the controller controls the alarm to send out prompt information, so as to achieve the purpose of reminding an operator.
In order to ensure reliability of detection, in the present embodiment, two groups of detection assemblies 180 may be provided, and the two groups of detection assemblies 180 are arranged at an interval along a width direction of the passage 40, as shown in
In the present embodiment, by providing the above-mentioned sheet-type medium conveying device 100 in the cash recycling and handling apparatus, guidance of the banknotes between the public conveying passage 700 and at least one cash box 210 is realized, thereby ensuring smooth running of banknote inputting and outputting, which, to a certain extent, avoids failure of the cash recycling and handling apparatus caused by the difficulty in banknote inputting and outputting, and improves the working reliability of the cash recycling and handling apparatus.
In an embodiment, the upper device 10 may further include a temporary storage device 500.
In an embodiment, the at least one sheet-type medium conveying device 100 is mounted on a top wall of the safe 200. In an embodiment, a gap is provided between at the least one sheet-type medium conveying device 100 and the upper device 10, and another gap is provided between the at least one sheet-type medium conveying device 100 and a corresponding cash box 210, and the above-mentioned gaps each can at least accommodate a single banknote to pass through.
The gap is provided between the sheet-type medium conveying device 100 and the upper device 10, and the another gap is provided between the sheet-type medium conveying device 100 and a corresponding cash box 210, so that banknotes jammed between the first passage plate 120 and the second passage plate 130 can be bent in the corresponding gap when the upper device 10 is pulled out or the cash box 210 is pulled out of the safe 200, without tearing the banknote, and to a certain extent, avoiding damage of the banknote. In addition, the cash recycling and handling apparatus has a simple structure, a short development period, and high market economic value.
With continuous reference to
The first passage plate 120 and the second passage plate 130 utilize the first slots 121 and the second slots 131 to insert with other passage plates in the cash recycling and handling apparatus, so that the first passage plate 120 and an adjacent passage plate can always maintain a connected state and the second passage plate 130 and an adjacent passage plate can always maintain a connected state during the rotation of the first passage plate 120 and the second passage plate 130 to guide the banknotes. As a result, a conveying process of the banknotes is completed in a closed passage, which, to a certain extent, avoids the phenomenon of banknotes jamming in the gap between the first passage plate 120 and the adjacent passage plate and the gap between the second passage plate 130 and the adjacent passage plate. Therefore, the transmission reliability is guaranteed, and the working reliability of the cash recycling and handling apparatus is greatly improved in the present embodiment.
The basic operation process of the cash recycling and handling apparatus is described as follows. In the banknote inputting process, the banknotes are entered from the input device 300, after being identified by the banknote identification device 600, banknotes that meet requirements are conveyed by the public conveying passage 700 and stored in a recycling box of at least one cash box 210 of the safe 200, while unqualified banknotes are conveyed to the temporary storage device 500. In the banknote outputting process, banknotes are entered into the public conveying passage 700 from the cash box 210, and conveyed by the public conveying passage 700, and then banknotes that meet requirements are output through the output device 400.
The sheet-type medium conveying device 100 provided by the present embodiment realizes expansion of the conveying passage by using the wide opening between the first passage plate 120 and the second passage plate 130, so that the banknotes can smoothly enter the passage 40 formed by the first passage plate 120 and the second passage plate 130, and then get output. At the same time, the sheet-type medium conveying device 100 realizes guidance of the sheet-type medium by using the narrow opening between the first passage plate 120 and the second passage plate 130. The narrow opening is docked to the target passage to ensure that the sheet-type medium can be reliably guided into the target passage, thereby ensuring smooth bidirectional conveying of the sheet-type medium. In addition, the sheet-type medium conveying device is simple in structure and easy in implementation, which is of great significance for guidance and conveying of banknotes in financial self-service apparatus.
By providing the above-mentioned sheet-type medium conveying device 100 in the cash recycling and handling apparatus, guidance of bidirectional movement of the banknotes between the public conveying passage 700 and the cash box 210 is realized, thereby ensuring smooth running of banknote inputting and outputting, which, to a certain extent, avoids failure of the cash recycling and handling apparatus caused by the difficulty in banknote inputting and outputting, and improves the working reliability of the cash recycling and handling apparatus.
Number | Date | Country | Kind |
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201810205956.3 | Mar 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/077332 | 3/7/2019 | WO | 00 |