Full-automatic printing system integrated with multi-type numbering machine

Through the fully automatic printing system integrating multi-type number machine, the problems of low printing efficiency and error-proneness of Xiao Zhang's products are solved, and automated control and efficient printing are achieved.

CN120287739APending Publication Date: 2025-07-11CHINA BANKNOTE PRINTING & MINTING +1
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Patent Information

Application Number
CN202510441214.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing printing system is inefficient and prone to errors when printing small sheet products, and takes a long time to produce, so it is impossible to automatically adjust the printing number of the number machine.

Method used

Design a fully automatic printing system with integrated multi-type number machine, including transmission, printing, detection and waste discharge devices. The drive unit drives the bearing part and support part to move, automatically selects a suitable number machine for printing, and detects the printing quality through the detection device. The waste discharge device handles unqualified products.

Benefits of technology

It realizes efficient and automated printing of small products, reduces manual adjustments, improves printing efficiency, and ensures the correct printing of each product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a full-automatic printing system integrated with a multi-type numbering machine, which relates to the technical field of printing equipment and comprises a transmission device for transmitting target notes, a printing device, a detection device and a waste discharge device, the printing device comprises a printing machine body with a bearing part and a supporting part, a plurality of numbering machines arranged on the supporting part and a driving part arranged on the printing machine body, and the driving end of the driving part is connected with one of the bearing part and the supporting part; the bearing part and the supporting part are oppositely arranged, when one of the bearing part and the supporting part moves relative to the other one, at least one corresponding numbering machine is controlled to print the target note according to the printing mark of the target note, and through the arrangement, an operator does not need to manually adjust the printing number of the numbering machine; according to the method and the device, small wrong products can be printed again, and the printing is continuous, so that the printing efficiency can be greatly improved, the printing time can be shortened, and each target note can be correctly printed.
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Description

Technical Field

[0001] The present invention relates to the technical field of printing equipment, and particularly relates to a full-automatic printing system integrating a multi-mode numbering machine. Background Art

[0002] A printing system is a machine for printing characters and images. Modern printing presses generally consist of mechanisms such as plate loading, inking, impression, and paper feeding. The printing system can be used for printing characters or for printing banknotes. By using the printing system to print numbers on the target banknotes, the target banknotes are given a unique identification code to achieve the function of anti-counterfeiting.

[0003] During the industrial mass production printing process, it is necessary to automatically adjust the printing numbers of the numbering machines in the printing system according to the format of the paper. For example, when printing large sheets of products, a large sheet of product consists of multiple small sheets of products. For example, 40 small sheets of products form a large sheet of product. When printing a large sheet of product, generally multiple numbering machines corresponding to the quantity are used to print 40 small sheets of products simultaneously.

[0004] However, during the printing process, when several of the 40 small sheets of products have printing errors, such as the 5th small sheet of product, the 27th small sheet of product, etc., when there is a printing error, it is necessary to reprint according to the printing number corresponding to the Nth small sheet of product. In the existing printing system, only large sheets of products can be printed in batches. For small sheets of products, the operator needs to manually adjust the printing number on the numbering machine according to the printing number corresponding to the Nth small sheet of product. Therefore, the existing printing method for small sheets of products has the problems of low efficiency, easy error, and long production time. Summary of the Invention

[0005] Based on this, the purpose of the present invention is to provide a full-automatic printing system integrating a multi-mode numbering machine to solve the technical problems of low efficiency, easy error, and long production time in the existing printing method for small sheets of products in the background art.

[0006] A full-automatic printing system integrating a multi-mode numbering machine according to an embodiment of the present invention includes a transmission device, a printing device, a detection device, and a waste discharging device for transmitting the target banknotes;

[0007] The printing device, the detection device, and the waste discharging device are distributed in sequence along the transmission direction of the transmission device. The transmission device drives the transmission of the target banknotes, so that after the target banknotes are printed by the printing device, the detection device detects the printing marks on the target banknotes, and the detection device records the corresponding printing marks on the target banknotes that are unqualified in the detection. The waste discharging device is used to exclude the unqualified target banknotes from the transmission range of the transmission device;

[0008] The printing device includes a printing body having a bearing part and a supporting part, a plurality of numbering machines provided on the supporting part, and a driving part provided on the printing body. The driving end of the driving part is connected to one of the bearing part and the supporting part, and is used to drive one of the bearing part and the supporting part to move relative to the other.

[0009] Wherein, the bearing part and the supporting part are arranged opposite to each other. The bearing part is used to bear the target banknote. When one of the bearing part and the supporting part moves relative to the other, at least one corresponding numbering machine is controlled to print on the target banknote according to the printing mark of the target banknote.

[0010] Further, the printing system further includes a drying device. The drying device is arranged within the transmission range of the transmission device, and the drying device is located between the printing device and the detection device to dry the printing mark on the target banknote through the drying device.

[0011] Further, the printing system further includes a paper receiving device. The paper receiving device is arranged within the transmission range of the transmission device, and the paper receiving device is located behind the waste discharging device. The paper receiving device is used to collect the target banknotes that pass the detection.

[0012] Further, the driving end of the driving part is connected to the supporting part and is used to drive the supporting part to move towards the bearing part.

[0013] Further, the printing device includes a first numbering machine and a second numbering machine;

[0014] Wherein, both the first numbering machine and the second numbering machine are provided on the supporting part, and the printing part directions of the first numbering machine and the second numbering machine are different.

[0015] Further, the first numbering machine includes a first sliding bracket, a first slider slidably connected to the first sliding bracket, and a first printing member connected to the first slider;

[0016] Wherein, the first sliding bracket is connected to the supporting part.

[0017] Further, the second numbering machine includes a second sliding bracket, a second slider slidably connected to the second sliding bracket, and a second printing member connected to the second slider;

[0018] Wherein, the sliding direction of the second slider is the same as that of the first slider. The second sliding bracket is connected to the supporting part, and the first sliding bracket and the second sliding bracket are located on the same side of the supporting part.

[0019] Furthermore, a chute is provided on the support portion, and the extending direction of the chute is different from the sliding directions of the first slider and the second slider;

[0020] Wherein, both the first sliding bracket and the second sliding bracket are slidably connected to the chute, so as to slide relative to the support portion through the first sliding bracket and / or the second sliding bracket, so as to adjust the positions of the first printed matter and / or the second printed matter.

[0021] Furthermore, the waste discharging device includes a waste discharging body, a waste discharging vacuum belt provided on the waste discharging body, and a pneumatic stopper provided on the waste discharging body;

[0022] The waste discharging vacuum belt is provided above the conveying device, and a part of the area of the conveying device is arranged opposite to the waste discharging vacuum belt, and a waste collecting bin opposite to the waste discharging vacuum belt is provided in a part of the area of the conveying device;

[0023] Wherein, the conveying direction of the waste discharging vacuum belt is the same as the conveying direction of the conveying device. When the target banknote is conveyed to the edge close to the waste collecting bin, the target banknote is sucked by the waste discharging vacuum belt, so that the target banknote is separated from the conveying range of the conveying device, and moves in the direction of the paper receiving device under the drive of the waste discharging vacuum belt.

[0024] Furthermore, the detection device further includes a detection body and a display provided on the detection body;

[0025] When the detection device detects that the target banknote is unqualified, the pneumatic stopper excludes the target banknote sucked on the waste discharging vacuum belt from the suction range of the waste discharging vacuum belt, and collects the target banknote through the waste collecting bin.

[0026] Compared with the prior art: In a fully automatic printing system integrating a multi-mode numbering machine proposed by the present invention, by arranging a plurality of numbering machines on the printing body of the printing device, when printing a target banknote, the driving part is first used to drive the bearing part and the supporting part to move relative to each other, so that the numbering machine on the supporting part can print the target banknote on the bearing part. And before printing, the printing device can select one or several corresponding numbering machines from the plurality of numbering machines to print the target banknote according to the printing identification corresponding to the target banknote, so that when printing each target banknote, the corresponding numbering machine can be automatically controlled to be combined or a single numbering machine is used to print the target banknote, realizing that the printing number of the numbering machine does not need to be manually adjusted by an operator, and the wrong small-sized products can be reprinted, and the printing is continuous, thereby greatly improving the printing efficiency, shortening the printing time, and ensuring the correct printing of each target banknote. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a perspective view of a fully automatic printing system integrating a multi-mode numbering machine according to an embodiment of the present invention;

[0028] Figure 2 is a side view of a fully automatic printing system integrating a multi-mode numbering machine according to an embodiment of the present invention;

[0029] Figure 3 is a perspective view of a printing device according to an embodiment of the present invention;

[0030] Figure 4 is a side view of a printing device according to an embodiment of the present invention;

[0031] Figure 5 is a side view of a printing device with a chassis according to an embodiment of the present invention;

[0032] Figure 6 is a schematic structural diagram of a first numbering machine and a second numbering machine according to an embodiment of the present invention;

[0033] Figure 7 is a schematic diagram of a working state of a waste discharging device according to an embodiment of the present invention;

[0034] Figure 8 is a schematic diagram of another working state of a waste discharging device according to an embodiment of the present invention.

[0036] 100. Transmission device; 200. Printing device; 210. Printing body; 211. Carrying part; 212. Supporting part; 213. Driving part; 214. Chute; 215. Printing ink path mechanism; 216. Impression mechanism; 217. Printing pressure adjustment mechanism; 218. Front paper blocking mechanism; 219. Paper stopper; 2110. Operation panel; 2111. Rear paper feeding control knob; 2112. Handwheel; 2113. Chassis; 220. First numbering machine; 221. First sliding bracket; 222. First slider; 223. First printed piece; 230. Second numbering machine; 231. Second sliding bracket; 232. Second slider; 233. Second printed piece; 300. Detection device; 310. Detection body; 320. Display; 400. Waste discharging device; 410. Waste discharging body; 420. Waste discharging vacuum belt; 430. Pneumatic stopper; 440. Waste collection bin; 500. Drying device; 600. Sheet collecting device; 700. Target banknote.

[0037] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. Specific embodiments

[0038] For the convenience of understanding the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. Several embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.

[0039] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.

[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used herein in the description of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0041] Please refer to Figures 1-8 , which shows a full-automatic printing system of an integrated multi-mode numbering machine in an embodiment of the present invention, including a transmission device 100, a printing device 200, a detection device 300 and a waste discharging device 400. The transmission device 100 is used to transmit the target banknote 700.

[0042] For the convenience of printing the target banknote 700 and detecting the printing marks on the target banknote 700, in this embodiment, the printing device 200, the detecting device 300, and the waste discharging device 400 are sequentially distributed along the transmission direction of the transmission device 100. The transmission device 100 drives the target banknote 700 to be transmitted, so that after the target banknote 700 is printed by the printing device 200, the detecting device 300 detects the printing marks on the target banknote 700, and the detecting device 300 records the corresponding printing marks in the target banknotes that fail the detection. The waste discharging device 400 is used to exclude the target banknotes 700 that fail the detection from the transmission range of the transmission device 100.

[0043] In some actual situations, the printing marks corresponding to different target banknotes 700 are all different. Especially when there are printing errors in several of the 100 small sheet products, such as the 5th small sheet product, the 27th small sheet product, etc. The 5th small sheet product corresponds to the 5th printing mark, and the 27th small sheet product corresponds to the 27th printing mark. In the prior art, the operator needs to manually adjust the printing number of the numbering machine and then print one by one. For example, when printing the 5th small sheet product for the first time, the number of the numbering machine needs to be adjusted to the 5th printing mark corresponding to the 5th small sheet product. When printing the 27th small sheet product for the second time, the number of the numbering machine needs to be adjusted to the 27th printing mark corresponding to the 27th small sheet product. Then this operation method has the problems of low efficiency, easy error, and long production time. For this reason, the printing device 200 in this embodiment includes a printing body 210 having a bearing part 211 and a supporting part 212, a plurality of numbering machines provided on the supporting part 212, and a driving part provided on the printing body 210. The driving end of the driving part is connected to one of the bearing part 211 and the supporting part 212, and is used to drive one of the bearing part 211 and the supporting part 212 to move relative to the other; wherein, the bearing part 211 and the supporting part 212 are oppositely arranged, and the bearing part 211 is used to bear the target banknote 700. When one of the bearing part 211 and the supporting part 212 moves relative to the other, at least one corresponding numbering machine is controlled to print the target banknote 700 according to the printing mark of the target banknote 700.

[0044] That is, when printing the target banknote 700, the driving part is used to drive the carrying part 211 and the supporting part 212 to move relative to each other, so that the numbering machine on the supporting part 212 can print the target banknote 700 on the carrying part 211. And before printing, the printing device 200 can select one or several corresponding numbering machines from multiple numbering machines according to the printing identifier of the target banknote 700 to print the target banknote 700, so that when printing each target banknote 700, the corresponding numbering machine can be automatically controlled to be combined or a single numbering machine can be used to print the target banknote 700, realizing that the printing number of the numbering machine does not need to be manually adjusted by the operator, and the wrong small products can be reprinted, and the printing is continuous, thereby greatly improving the printing efficiency, shortening the printing time, and ensuring the correct printing of each target banknote 700.

[0045] It should be noted that in some preferred embodiments, the numbering machine used in this embodiment can be an electronic control numbering machine in the prior art, that is, the function of the electronic control numbering machine to dial any number is used to realize the automatic control of printing.

[0046] Specifically, in some preferred embodiments, the driving end of the driving part is connected to the supporting part 212 and is used to drive the supporting part 212 to move towards the carrying part 211. It should be noted that the driving part is not limited to a way of connecting to the supporting part 212, and it can also be connected to the carrying part 211. And when the driving end of the driving part is connected to the carrying part 211, the supporting part 212 is fixedly arranged.

[0047] In addition, in some actual situations, the carrying part 211 can be a pallet for carrying the target banknote 700. To facilitate the adjustment of the printing pressure, a backing plate can be arranged on the carrying part 211, and the use of the backing plate can increase the height of the target banknote 700.

[0048] To facilitate the selection of the corresponding numbering machine for printing according to the type of the target banknote 700, two numbering machines are used as an example for illustration, which are the first numbering machine 220 and the second numbering machine 230 respectively. It should be noted that the two numbering machines do not limit the number of numbering machines, and three, four, five, etc. can also be used.

[0049] Specifically, the first numbering machine 220 and the second numbering machine 230 are both arranged on the supporting part 212, and the printing part directions of the first numbering machine 220 and the second numbering machine 230 are different.

[0050] The first numbering machine 220 includes a first sliding bracket 221, a first slider 222 slidably connected to the first sliding bracket 221, and a first printing member 223 connected to the first slider 222. Among them, the first sliding bracket 221 is connected to the support portion 212; the second numbering machine 230 includes a second sliding bracket 231, a second slider 232 slidably connected to the second sliding bracket 231, and a second printing member 233 connected to the second slider 232; wherein, the sliding direction of the second slider 232 is the same as that of the first slider 222, the second sliding bracket 231 is connected to the support portion 212, and the first sliding bracket 221 and the second sliding bracket 231 are located on the same side of the support portion 212.

[0051] The printing part of the first numbering machine 220 is the printed number on the first printing member 223, and the printing part of the second numbering machine 230 is the printed number on the second printing member 233. That is, the relative position of the first printing member 223 can be adjusted by the first sliding bracket 221 and the first slider 222 in the first numbering machine 220. Similarly, the relative position of the second printing member 233 can be adjusted by the second sliding bracket 231 and the second slider 232 in the second numbering machine 230, so that when printing, by adjusting the positions of the first printing member 223 and the second printing member 233, single-number printing and / or double-number printing can be achieved.

[0052] It should be noted that in this embodiment, the printing part on the first printing member 223 can be a horizontal number, and the printing part on the second printing member 233 can be a vertical number, that is, single horizontal or vertical number printing and simultaneous horizontal and vertical number printing can be achieved.

[0053] Moreover, to facilitate the adjustment of the positions of the first numbering machine 220 and the second numbering machine 230 in multiple directions, in this embodiment, a chute 213 is further provided on the support portion 212, and the extending direction of the chute 213 is different from the sliding directions of the first slider 222 and the second slider 232; wherein, both the first sliding bracket 221 and the second sliding bracket 231 are slidably connected to the chute 213 to slide the first sliding bracket 221 and / or the second sliding bracket 231 relative to the support portion 212, so as to adjust the positions of the first printing member 223 and / or the second printing member 233. That is, by adding the chute 213, the moving directions of the first printing member 223 and the second printing member 233 can be increased.

[0054] Further, after the target banknote 700 is printed, it is necessary to detect according to the printing mark on the target banknote 700. In this embodiment, the detection device 300 further includes a detection body 310 and a display 320 disposed on the detection body 310. In some preferred embodiments, the detection body 310 includes an image capturing device capable of scanning the target banknote 700, which can be a camera or other devices with scanning functions. That is, by scanning the image of the target banknote 700, it is possible to determine whether the printing mark on the target banknote 700 is correct. If it is correct, the target banknote 700 is transmitted to the next step. If the printing mark is incorrect, the unqualified target banknote 700 is excluded from the transmission range of the transmission device 100 through the waste discharging device 400 in this embodiment. It should be noted that the detection body 310 in this embodiment also has the function of storing the printing mark, and the printing mark is the printing number corresponding to the target banknote, and the target banknote is a small-sized product in the prior art.

[0055] Specifically, the waste discharging device 400 includes a waste discharging body 410, a waste discharging vacuum belt 420 disposed on the waste discharging body 410, and a pneumatic stopper 430 disposed on the waste discharging body 410;

[0056] The waste discharging vacuum belt 420 is disposed above the transmission device 100, and a part of the area in the transmission device 100 is disposed opposite to the waste discharging vacuum belt 420, and a waste collecting bin 440 opposite to the waste discharging vacuum belt 420 is provided in a part of the area of the transmission device 100;

[0057] Among them, the transmission direction of the waste discharging vacuum belt 420 is the same as the transmission direction of the transmission device 100. When the target banknote 700 is transmitted to the edge close to the waste collecting bin 440, the waste discharging vacuum belt 420 sucks the target banknote 700, so that the target banknote 700 is separated from the transmission range of the transmission device 100 and moves in the direction of the paper receiving device 600 under the drive of the waste discharging vacuum belt 420;

[0058] When the detection device 300 detects that the target banknote 700 is unqualified, the pneumatic stopper 430 excludes the target banknote 700 sucked on the waste discharging vacuum belt 420 from the suction range of the waste discharging vacuum belt 420, and collects the target banknote 700 through the waste collecting bin 440.

[0059] Specifically, a vacuum device that generates suction can be arranged in the waste discharging body 410, and there are apertures on the waste discharging vacuum belt 420 through which the suction can flow. That is, the vacuum device generates suction, enabling the target banknote 700 being transported on the transport device 100 to be adsorbed on the waste discharging vacuum belt 420. Moreover, since the transport direction of the waste discharging vacuum belt 420 is the same as that of the transport device 100, when the target banknote 700 is qualified, it will be transported to the next step. When it is unqualified, the pneumatic stopper 430 is used to exclude the target banknote 700 adsorbed on the waste discharging vacuum belt 420 from the suction range of the waste discharging vacuum belt 420, and the target banknote 700 is collected through the waste collection bin 440. For details, please refer to Figures 6-7 as shown.

[0060] In addition, in some preferred embodiments, the printing system further includes a drying device 500. The drying device 500 is arranged within the transport range of the transport device 100 and is located between the printing device 200 and the detection device 300, so as to dry the printed markings on the target banknote 700 through the drying device 500. The drying device 500 is selectively turned on according to actual process requirements, and the drying device 500 can use a UV lamp box for drying.

[0061] The printing system further includes a paper receiving device 600. The paper receiving device 600 is arranged within the transport range of the transport device 100 and is located behind the waste discharging device 400. The paper receiving device 600 is used to collect the target banknotes 700 that pass the detection. It should be noted that the paper receiving device 600 is a conventional device in the art and will not be specifically described here. The paper receiving device 600 has the function of collecting qualified target banknotes 700.

[0062] In addition, an inking mechanism can be arranged in the printing body 210 of the printing device 200. The inking mechanism can ink the numbering machine and can achieve the printing of single-color numbers or double-color numbers. An automatic paper feeding mechanism can also be arranged at the front end of the transport device 100, that is, the stacked target banknotes 700 can be intermittently transported through the automatic paper feeding mechanism. It should be noted that both the inking mechanism and the automatic paper feeding mechanism belong to the conventional prior art in the art and will not be specifically described here. Moreover, other electrical devices, such as an LPC controller, can be additionally added to the printing system in this embodiment to achieve the intelligent operation of the entire printing system.

[0063] Please refer to Figures 4-5As shown, in some actual situations, the printing device 200 may also be composed of a printing ink path mechanism 215, a pressure application mechanism 216, a printing pressure adjustment mechanism 217, a front paper stopper mechanism 218, a paper stopper 219, an operation panel 2110, a rear paper feed control knob 2111, a handwheel 2112, and a chassis 2113. Among them, the printing ink path mechanism 215 is used for installing numbers and inking; the pressure application mechanism 216 is used for the manual pressure application mechanism to control the presence or absence of printing pressure; the printing pressure adjustment mechanism 217 is used for adjusting the printing pressure; the front paper stopper mechanism 218 is used as the front positioning reference when placing the paper; the paper stopper 219 is used as the rear positioning reference when placing the paper; the operation panel 2110 is used for centralized control of the device; the rear paper feed control knob 2111 is used for switching the paper feeding mode; the handwheel 2112 is used for manually rotating the machine; the chassis is used to support each component constituting the printing device 200; and it should be noted that the printing device 200 is not limited to being composed of the printing ink path mechanism 215, the pressure application mechanism 216, the printing pressure adjustment mechanism 217, the front paper stopper mechanism 218, the paper stopper 219, the operation panel 2110, the rear paper feed control knob 2111, the handwheel 2112, and the chassis 2113. It may also include other components. Since other components belong to the conventional prior art in this field, no special description will be given here.

[0064] In summary, for the fully automatic printing system with an integrated multi-mode numbering machine provided in this first embodiment, by arranging multiple numbering machines on the printing body 210 of the printing device 200, when printing the target banknote 700, first use the driving part to drive the bearing part 211 and the supporting part 212 to move relative to each other, so that the numbering machine on the supporting part 212 can print the target banknote 700 on the bearing part 211. And before printing, the printing device 200 can select one or several corresponding numbering machines from the multiple numbering machines to print the target banknote 700 according to the printing identifier corresponding to the target banknote 700, so that when printing each target banknote 700, it can automatically control the corresponding numbering machines to be combined or use a single numbering machine to print the target banknote 700, realizing that it is possible to re-print the defective small-sized products without the operator manually adjusting the printing numbers of the numbering machines, and the printing is continuous, thereby greatly improving the printing efficiency, shortening the printing time, and ensuring the correct printing of each target banknote 700.

[0065] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc., mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0066] The above embodiments merely represent several implementation manners of the present invention. Their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the appended claims.

Claims

1. A fully automatic printing system integrated with a multi-mode numbering machine, characterized in that, It includes a transmission device (100), a printing device (200), a detection device (300), and a waste discharging device (400) for transmitting a target banknote (700). The printing device (200), the detection device (300), and the waste discharging device (400) are sequentially distributed along the transmission direction of the transmission device (100). The transmission device (100) drives the transmission of the target banknote (700), so that after the target banknote (700) is printed by the printing device (200), the detection device (300) detects the printing marks on the target banknote (700), and records the corresponding printing marks in the target banknotes (700) with unqualified detection through the detection device (300). The waste discharging device (400) is used to exclude the target banknotes (700) with unqualified detection from the transmission range of the transmission device (100). The printing device (200) includes a printing body (210) having a bearing part (211) and a supporting part (212), a plurality of numbering machines provided on the supporting part (212), and a driving part (213) provided on the printing body (210). The driving end of the driving part (213) is connected to one of the bearing part (211) and the supporting part (212), and is used to drive one of the bearing part (211) and the supporting part (212) to move relative to the other. Wherein, the bearing part (211) and the supporting part (212) are arranged oppositely. The bearing part (211) is used to bear the target banknote (700). When one of the bearing part (211) and the supporting part (212) moves relative to the other, at least one corresponding numbering machine is controlled to print the target banknote (700) according to the printing marks of the target banknote (700).

2. The fully automatic printing system integrated with a multi-mode numbering machine according to claim 1, characterized in that, The printing system further includes a drying device (500). The drying device (500) is arranged within the transmission range of the transmission device (100), and the drying device (500) is located between the printing device (200) and the detection device (300), so as to dry the printing marks on the target banknote (700) through the drying device (500).

3. The fully automatic printing system integrated with a multi-mode numbering machine according to claim 1, characterized in that, The printing system further includes a paper receiving device (600). The paper receiving device (600) is arranged within the transmission range of the transmission device (100), and the paper receiving device (600) is located behind the waste discharging device (400). The paper receiving device (600) is used to collect the target banknotes (700) with qualified detection.

4. The fully automatic printing system integrating a multi-mode numbering machine according to claim 1, characterized in that, The driving end of the driving part (213) is connected to the supporting part (212), and is used to drive the supporting part (212) to move towards the bearing part (211).

5. The fully automatic printing system integrating a multi-mode numbering machine according to claim 1, characterized in that, The printing device (200) includes a first numbering machine (220) and a second numbering machine (230). Among them, the first numbering machine (220) and the second numbering machine (230) are both arranged on the support part (212), and the printing part directions of the first numbering machine (220) and the second numbering machine (230) are different.

6. The full-automatic printing system integrated with a multi-mode numbering machine according to claim 5, characterized in that, The first numbering machine (220) includes a first sliding bracket (221), a first slider (222) slidably connected to the first sliding bracket (221), and a first printing member (223) connected to the first slider (222); Among them, the first sliding bracket (221) is connected to the support part (212).

7. The full-automatic printing system integrated with a multi-mode numbering machine according to claim 6, characterized in that, The second numbering machine (230) includes a second sliding bracket (231), a second slider (232) slidably connected to the second sliding bracket (231), and a second printing member (233) connected to the second slider (232); Among them, the sliding direction of the second slider (232) is the same as that of the first slider (222), the second sliding bracket (231) is connected to the support part (212), and the first sliding bracket (221) and the second sliding bracket (231) are located on the same side of the support part (212).

8. The fully automatic printing system integrated with a multi-mode numbering machine according to claim 7, characterized in that, A chute (214) is further arranged on the support part (212), and the extending direction of the chute (214) is different from the sliding directions of the first slider (222) and the second slider (232); Among them, the first sliding bracket (221) and the second sliding bracket (231) are both slidably connected to the chute (214), so as to slide relative to the support part (212) through the first sliding bracket (221) and / or the second sliding bracket (231), so as to adjust the positions of the first printing member (223) and / or the second printing member (233).

9. The fully automatic printing system integrated with a multi-mode numbering machine according to claim 3, characterized in that, The waste discharging device (400) includes a waste discharging body (410), a waste discharging vacuum belt (420) arranged on the waste discharging body (410), and a pneumatic stopper (430) arranged on the waste discharging body (410); The waste discharging vacuum belt (420) is arranged above the conveying device (100), and a part of the area in the conveying device (100) is arranged opposite to the waste discharging vacuum belt (420), and a waste collecting bin (440) opposite to the waste discharging vacuum belt (420) is arranged in a part of the area of the conveying device (100); Among them, the conveying direction of the waste discharging vacuum belt (420) is the same as that of the conveying device (100). When the target banknote (700) is conveyed to the edge close to the waste collecting bin (440), the target banknote (700) is sucked by the waste discharging vacuum belt (420), so that the target banknote (700) is separated from the conveying range of the conveying device (100), and moves in the direction of the paper receiving device (600) under the drive of the waste discharging vacuum belt (420).

10. The fully automatic printing system integrated with a multi-mode numbering machine according to claim 9, characterized in that, The detection device (300) further includes a detection body (310) and a display (320) provided on the detection body (310); Wherein, when the detection device (300) detects that the target banknote (700) is unqualified, the pneumatic stopper (430) excludes the target banknote (700) sucked on the waste discharge vacuum belt (420) from the suction range of the waste discharge vacuum belt (420), and collects the target banknote (700) through the waste collection bin (440).