A card production device and a control method thereof

By collecting and judging the information of the certificate core in the temporary license plate production equipment, it is ensured that each temporary license plate meets the requirements, and two temporary license plates are output continuously in a short period of time. This solves the problem that users cannot obtain two temporary license plates that meet the requirements, and improves the reliability of the temporary license plate production equipment and the user experience.

CN117227334BActive Publication Date: 2025-12-16深圳市鸿珀智能科技有限公司
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202311007573.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-10
Publication Date
2025-12-16
Estimated Expiration
2043-08-10

AI Technical Summary

Technical Problem

Existing temporary license plate production equipment cannot guarantee that users will obtain two matching temporary license plates, and there are issues such as the certificate chip not meeting the requirements or the user not taking the two temporary license plates.

Method used

By collecting information from the first and second certificate cores, it is determined whether to produce and issue temporary licenses, ensuring that each temporary license meets the requirements, and issuing two temporary licenses in quick succession to prevent users from failing to take both licenses.

Benefits of technology

To ensure users receive two valid temporary license plates, reduce instances where the license plate does not meet requirements, and prevent users from taking only one temporary license plate.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117227334B_ABST
    Figure CN117227334B_ABST
Patent Text Reader

Abstract

The application provides a temporary card manufacturing device and a control method thereof. The method comprises: detecting whether a temporary card manufacturing instruction is received; if the temporary card manufacturing instruction is received, collecting an information identifier on a first card core and collecting an information identifier on a second card core, wherein the first card core is used for manufacturing a first temporary card, the second card core is used for manufacturing a second temporary card, the first card core is set to be expected to perform temporary card manufacturing before the second card core, the first temporary card and the second temporary card are two continuous temporary cards to be manufactured after the temporary card manufacturing instruction is received; and determining whether to manufacture the first temporary card and / or determining whether to output the first temporary card to the outside of the temporary card manufacturing device according to the information identifier on the first card core and the information identifier on the second card core. The temporary card manufacturing device and the control method thereof can well provide two temporary cards required by a user.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of certificate processing, in particular to a temporary license plate manufacturing device and a control method of the temporary license plate manufacturing device. BACKGROUND

[0002] A temporary license plate (referred to as a temporary plate) is a paper license plate for a motor vehicle to temporarily drive on a road. It is also called a temporary driving vehicle license plate. According to relevant laws, two temporary driving vehicle license plates should be pasted at the same time. The two temporary license plates can be defined as two associated temporary license plates. One temporary license plate is pasted at the lower left corner or the lower right corner of the front windshield of the vehicle without affecting the driver's view, and the other temporary license plate is pasted at the lower left corner of the rear windshield. In addition, the temporary license plate has corresponding anti-counterfeiting measures, and the user needs to provide two temporary license plates with the same code when applying for a temporary license plate. That is, the user needs to meet the following conditions to successfully complete the task: ① each license plate itself meets the requirements, including meeting the requirements of the country and its own quality requirements, such as clear coding of each license plate; ② two temporary license plates are taken instead of only one temporary license plate; ③ the two temporary license plates taken are associated. Therefore, how to ensure that the user can take two temporary license plates that meet the requirements after the temporary license plate manufacturing device receives the temporary license plate manufacturing task is one of the current problems to be solved or improved. SUMMARY

[0003] The technical problem solved by the present application is to provide a temporary license plate manufacturing device and a control method of the temporary license plate manufacturing device, which can ensure that the user can take two temporary license plates that meet the requirements.

[0004] According to a first aspect, a control method of a temporary license plate manufacturing device is provided in an embodiment, comprising:

[0005] detecting whether a temporary license plate manufacturing instruction is received;

[0006] if the temporary license plate manufacturing instruction is received, collecting an information identifier on a first certificate core and collecting an information identifier on a second certificate core, wherein the first certificate core is used to manufacture a first temporary license plate, the second certificate core is used to manufacture a second temporary license plate, the first certificate core is set to be expected to manufacture a temporary license plate before the second certificate core, and the first temporary license plate and the second temporary license plate are two consecutive temporary license plates to be manufactured after the temporary license plate manufacturing instruction is received;

[0007] determining whether to manufacture the first temporary license plate according to the information identifier on the first certificate core and the information identifier on the second certificate core, and / or determining whether to output the first temporary license plate to the outside of the temporary license plate manufacturing device.

[0008] According to a second aspect, a control method of a card production device is provided in an embodiment, comprising:

[0009] detecting whether a card production instruction is received;

[0010] if the card production instruction is received, collecting information marks on a target card core, the target card core being used to produce a target card corresponding to the card production instruction;

[0011] judging whether the information marks on the target card core satisfy a preset condition, if yes, printing the target card core to produce the target card, otherwise, recycling the target card core.

[0012] According to a third aspect, a card production device is provided in an embodiment, comprising:

[0013] a card feeding device, configured to feed a card core;

[0014] a printer, configured to print information on the card core to produce a card;

[0015] a page turning device, configured to turn the card core;

[0016] a recycling device, configured to recycle the card core;

[0017] a card output device, configured to output a produced card;

[0018] a transfer device, configured to transfer the card core between the card feeding device, the printer, the page turning device, the recycling device and the card output device;

[0019] an information collecting device, located on a movement path of the card core, and configured to collect information marks on the card core;

[0020] a controller, configured to:

[0021] detect whether a card production instruction is received, if the card production instruction is received, control the information collecting device to collect information marks on a first card core and collect information marks on a second card core, wherein the first card core is used to produce a first card, the second card core is used to produce a second card, the first card core is set to be expected to produce a card before the second card core, and the first card and the second card are two consecutive cards to be produced after the card production instruction is received;

[0022] According to the information identifier on the first card core and the information identifier on the second card core, it is determined whether to make the first temporary card, and / or, it is determined whether to output the first temporary card to outside of the temporary card making device.

[0023] According to a fourth aspect, in an embodiment, a temporary card making device is provided, comprising:

[0024] A card feeding device is configured to feed card cores;

[0025] A printer is configured to print information on the card cores to make temporary cards;

[0026] A page turning device is configured to turn the card cores over;

[0027] A recycling device is configured to recycle the card cores;

[0028] A card output device is configured to output the made temporary cards;

[0029] A transfer device is configured to transfer the card cores among the card feeding device, the printer, the page turning device, the recycling device and the card output device;

[0030] An information collecting device is located on a movement path of the card cores, and is configured to collect information identifiers on the card cores;

[0031] A controller is configured to:

[0032] Detect whether a temporary card making instruction is received;

[0033] If the temporary card making instruction is received, control the information collecting device to collect an information identifier on a target card core, the target card core being used to make a target temporary card corresponding to the temporary card making instruction;

[0034] Judge whether the information identifier on the target card core meets a preset condition, if yes, print the target card core to make the target temporary card, otherwise, recycle the target card core.

[0035] According to a fifth aspect, in an embodiment, a computer readable storage medium is provided, and a program is stored on the medium, the program being executable by a processor to implement the above method.

[0036] According to the temporary card manufacturing device and the control method thereof in the above embodiment, the information identifier of the first card core and the information identifier of the second card core are collected, and whether to manufacture the first temporary card is determined according to the information identifiers of the two card cores, and / or whether to output the first temporary card to the outside of the temporary card manufacturing device is determined, so that the correlation between the two temporary cards provided to the user is ensured. In addition, the information identifier of each card core is collected, and the corresponding temporary card is manufactured only when the information identifier meets the preset condition, so that each temporary card provided to the user meets the preset requirement. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 A structural schematic diagram of the temporary card manufacturing device in an embodiment of the present application from one perspective;

[0038] Figure 2 A structural schematic diagram of the temporary card manufacturing device in an embodiment of the present application from another perspective;

[0039] Figure 3 A structural schematic diagram of the card feeding device in an embodiment of the present application from one perspective;

[0040] Figure 4 A structural schematic diagram of the card feeding device in an embodiment of the present application from another perspective;

[0041] Figure 5 A sectional view of the card feeding device in an embodiment of the present application;

[0042] Figure 6 A structural schematic diagram of the page turning and recycling device in an embodiment of the present application from one perspective;

[0043] Figure 7 A structural schematic diagram of the page turning and recycling device in an embodiment of the present application from another perspective;

[0044] Figure 8 A structural schematic diagram of the card output device in an embodiment of the present application from one perspective;

[0045] Figure 9 A structural schematic diagram of the card output device in an embodiment of the present application from another perspective;

[0046] Figure 10 A flowchart of the control method of the temporary card manufacturing device in an embodiment of the present application;

[0047] Figure 11 A flowchart of determining whether to manufacture the first temporary card in an embodiment of the present application;

[0048] Figure 12 A flowchart of determining whether to manufacture the first temporary card in another embodiment of the present application;

[0049] Figure 13 Flow chart of the control method of the temporary card manufacturing device according to another embodiment of the present application;

[0050] Figure 14 Flow chart of the determination of whether to output the first temporary card according to an embodiment of the present application;

[0051] Figure 15 Flow chart of the determination of whether to output the first temporary card according to another embodiment of the present application;

[0052] Figure 16 Flow chart of the control method of the temporary card manufacturing device according to another embodiment of the present application;

[0053] 100, the upper certificate device;

[0054] 110, the conveying mechanism; 111, the upper certificate driving assembly; 1111, the upper certificate motor; 1112, the upper certificate driving pulley; 1113, the upper certificate driven pulley; 1114, the upper certificate transmission belt; 1115, the first upper certificate rotating shaft; 1116, the second upper certificate rotating shaft; 1117, the upper certificate pressure wheel; 1118, the upper certificate linkage gear; 112, the upper certificate driving wheel; 113, the swing assembly; 1131, the swing frame; 1132, the paper rubbing wheel; 1133, the swing frame driving assembly; 11331, the steering wheel; 11332, the swing arm; 1134, the paper rubbing transmission assembly; 11341, the first paper rubbing pulley; 11342, the second paper rubbing pulley; 11343, the paper rubbing transmission belt; 120, the heavy separation mechanism; 121, the abutting piece; 1211, the elastic piece; 1212, the abutting seat; 122, the friction piece; 1221, the mounting shaft; 1222, the mounting frame; 1223, the friction plate; 130, the upper certificate base; 131, the storage certificate position; 132, the upper certificate position; 133, the upper certificate side plate; 1331, the limiting groove; 134, the upper certificate fixed shaft; 135, the upper certificate passage plate; 136, the upper certificate passage; 140, the information acquisition device; 150, the pressing and ironing mechanism; 151, the pressing and ironing base; 152, the flattening wheel; 153, the pressing and ironing driving assembly; 1531, the pressing and ironing driving gear; 1532, the pressing and ironing driven gear; 160, the heavy sensor; 170, the limiting assembly; 171, the limiting rod; 172, the backstop; 173, the height limiting plate; 174, the width limiting plate; 180, the thickness sensor; 190, the upper certificate sensor;

[0055] 200, the printer;

[0056] 300, the page turning and recycling device;

[0057] 310, page turning base; 311, page turning channel; 312, recycling box; 313, first page turning platform; 314, second page turning platform; 315, page turning side plate; 316, page turning fixed shaft; 317, page turning channel plate; 320, channel switching mechanism; 321, guide gate; 322, switching drive assembly; 3221, electromagnet; 3222, first switching arm; 3223, second switching arm; 323, switching pivot; 330, page turning drive assembly; 331, page turning motor; 332, page turning driving pulley; 333, page turning driven pulley; 334, page turning transmission belt; 335, first page turning pivot; 336, second page turning pivot; 337, page turning pressure wheel; 338, page turning tension wheel; 339, page turning drive wheel; 340, first page turning sensor; 350, second page turning sensor;

[0058] 400, certificate issuing device;

[0059] 410, certificate issuing base; 411, operation site; 4111, operation bearing platform; 412, storage site; 4121, storage channel; 413, certificate issuing port; 414, certificate issuing side plate; 415, certificate issuing fixed shaft; 416, certificate issuing channel plate; 417, certificate issuing guide plate; 420, certificate issuing drive device; 421, certificate issuing drive assembly; 4211, certificate issuing motor; 4212, certificate issuing driving pulley; 4213, certificate issuing driven pulley; 4214, certificate issuing transmission belt; 4215, first certificate issuing pivot; 4216, second certificate issuing pivot; 4217, certificate issuing pressure wheel; 4218, certificate issuing tension wheel; 422, certificate issuing drive wheel; 430, first operation sensor; 440, second operation sensor; 450, third operation sensor; 460, first storage sensor; 470, second storage sensor;

[0060] 500, transfer device;

[0061] 510, first transfer assembly; 520, second transfer assembly; 530, third transfer assembly; 540, extraction assembly;

[0062] 600, base;

[0063] 700, electric control device. DETAILED DESCRIPTION

[0064] The application will be described in further detail below with specific reference being made to the drawings. Like elements are referenced with like numerals throughout the several figures of the drawings. In the following description, numerous specific details are described to provide a thorough understanding of the application. However, it will be apparent to one skilled in the art that the application can be practiced without some or all of these specific details. In other instances, well known process operations have not been described in detail in order to avoid unnecessarily obscuring the application. As used in the description herein and throughout the claims that follow, the meaning of "a", "an", and "the" includes plural reference unless the context clearly dictates otherwise. Also, as used in the description herein, the

[0065] In addition, features from the different aspects described herein can be combined in any appropriate manner that makes sense in the context of the application. Also, the various steps or actions in a method can be rearranged, combined, or divided into smaller steps or actions, as can be appropriate in the context of the application. Thus, the various sequences and / or temporal arrangements of steps in the description and / or drawings are not meant to limit the application, but are merely provided to illustrate one or more aspects of the application. Unless otherwise noted, the description and drawings are not meant to imply a fixed order to the steps contained therein.

[0066] The serial numbers of components used herein, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any order or technical meaning. The "connection" and "coupling" in the application include direct and indirect connections (couplings) unless otherwise specified.

[0067] The certificate core, also known as the certificate, is one of the raw materials for making temporary cards. After the corresponding information is printed on the certificate, the temporary card is completed. The printed information includes but is not limited to the number of the temporary card, the validity period of the temporary card, etc. That is, the certificate core needs to go through a printing step before it is made into a temporary card. Therefore, in the following, the temporary card that is completed after entering the printer is also referred to as the certificate core that has completed printing. The two temporary cards taken by the user need to have relevance. On the one hand, the processing of the two temporary cards when printing has relevance, such as printing the same information on the two certificate cores, so that the numbers and other information on the two temporary cards are the same. On the other hand, the certificate cores corresponding to the two temporary cards also need to have relevance, such as the same or corresponding coding, information code, etc.

[0068] The same aspect of the temporary card manufacturing device in the present application as the temporary card manufacturing device on the market is that two temporary cards are continuously manufactured and output after receiving a temporary card manufacturing task. For example, A needs a temporary card (a temporary card includes two temporary cards with relevance), B also needs a temporary card, A and B request the temporary card manufacturing device to manufacture temporary cards in turn, the temporary card manufacturing device continuously manufactures and outputs two temporary cards after receiving the request of A, and the temporary card manufacturing device continuously manufactures and outputs another two temporary cards after receiving the request of B.

[0069] The inventor found in practice that at least the following factors cause the user to fail to complete the task of taking the required temporary card:

[0070] ① The temporary card manufacturing device outputs two temporary cards, but at least one of the temporary cards uses a non-required certificate core. In this case, the temporary card manufactured is not in accordance with the requirements. Even if the user takes away the two temporary cards, the expected temporary card cannot be obtained.

[0071] ② The temporary card manufacturing device outputs two temporary cards, but the two temporary cards do not have relevance. For example, the temporary card manufacturing device currently has a1, a2, b1 and b2 four certificate cores (a1, a2, b1 and b2 mentioned below are in this meaning, and the order here is the order of expected temporary card manufacturing), a1 and a2 have relevance, b1 and b2 have relevance, a1 is used to manufacture temporary card A1, a2 is used to manufacture temporary card A2, b1 is used to manufacture temporary card B1, and b2 is used to manufacture temporary card B2. A inputs information into the temporary card manufacturing device and expects to obtain A1 and A2, but does not take A1 and A2 due to various reasons. For example, the certificate order is wrong, the original certificate order is a1, a2, b1 and b2, the order of the manufactured temporary card is A1, A2, B1 and B2, and the current certificate order is a1, b1, a2 and b2. After taking A1, the user takes B1 instead of A2.

[0072] This scenario is caused by the temporary card manufacturing device not giving two required temporary cards.

[0073] ③ Although the temporary card manufacturing device gives two required temporary cards, the user only takes one of them. For example, some users do not have relevant knowledge reserves and do not know that two temporary cards are required, and leave after taking one temporary card. For example, some users have relevant knowledge reserves, but take only one due to carelessness.

[0074] Due to the negligence of the first player, not only the first player cannot get two required temporary cards, but also the second player cannot get two required temporary cards. For example, the temporary card manufacturing device outputs A1 and A2. The first player should take A1 and A2, and then the temporary card manufacturing device outputs B1 and B2 for the second player. However, due to the negligence of the first player, the second player only takes A1 and A2, instead of B1 and B2.

[0075] To solve the above problems, the most important idea of the present application is:

[0076] ①For each card core, the information mark on the card core is collected before printing. If the information mark meets the preset condition, the card core is printed to make a temporary card, ensuring that each temporary card delivered to the user is problem-free.

[0077] ②For a temporary card manufacturing task, the temporary card manufacturing device collects the information marks on the first card core and the second card core as two continuous raw materials, and determines whether to make the first card core into a first temporary card based on the two information marks, or determines whether to output the first temporary card to the user based on the two information marks, to ensure that the two temporary cards taken by the user are related. It should be noted that the first card core and the second card core are two relative concepts. When the first card core is a1, the second card core is a2. When the first card core is a2, the second card core is b1.

[0078] ③In some embodiments, after the first temporary card is made, the first temporary card is not directly output, but waits for the second temporary card to be made, and then outputs the first temporary card and the second temporary card in a short time. Intuitively, the temporary card manufacturing device outputs two temporary cards in succession, so that the user can take two temporary cards without special knowledge or attention.

[0079] Please refer to Figures 1-9 , Figures 1-9 for an example of a temporary card manufacturing device, which includes a card feeding device 100, a printer 200, a page turning and recycling device 300, a card output device 400, a transfer device 500, and a controller (not shown in the figure). It should be noted that the control method in the present application can be applied to other structures of temporary card manufacturing devices, and the Figures 1-9In the temporary card manufacturing device, the page turning device and the recycling device are integrated into a page turning and recycling device. The feeding device 100 is used to feed the unprinted card core. The printer 200 is used to print information on the card core. The page turning and recycling device 300 is used to turn the card core and recycle the waste card core. The card output device 400 is used to output the manufactured temporary card. The transfer device 500 is used to transfer the card core between the feeding device 100, the printer 200, the page turning and recycling device 300, and the card output device 400.

[0080] When printing the card core, the feeding device 100 is used to complete the feeding of the unprinted card core. The transfer device 500 is used to transfer the unprinted card core to the printer 200 to print the first side. The transfer device 500 is used to transfer the card core with the first side printed to the page turning and recycling device 300 to turn the card core. The card core is transferred to the printer 200 to print the second side of the card core to manufacture the temporary card. When there is a waste card core, the transfer device 500 is used to transfer the waste card core to the page turning and recycling device 300 to recycle the waste card core. When the printing of at least two card cores is completed, the card output device 400 is used to output the temporary card.

[0081] Please refer to Figures 1-5 In some embodiments of the feeding device 100, the feeding device 100 includes a conveying mechanism 110 and a double feeding separation mechanism 120.

[0082] The conveying mechanism 110 is used to convey the unprinted card core. The double feeding separation mechanism 120 is located on the movement path of the card core. The double feeding separation mechanism 120 includes a pressing member 121 and a friction member 122. The pressing member 121 is used to press the friction member 122 against the card core. The friction member 122 is used to prevent the card core in contact with the friction member 122 from passing through the friction member 122 when the two overlapped card cores pass through the friction member 122.

[0083] When the user prints the card core, the conveying device is used to convey the unprinted card core. When the two overlapped card cores pass through the double feeding separation mechanism 120, the pressing member 121 is used to press the friction member 122 against one of the two overlapped card cores. The friction member 122 is used to prevent the card core in contact with the friction member 122 from passing through the friction member 122 by the friction resistance of the friction member 122, thereby separating the two overlapped card cores and avoiding the double feeding problem.

[0084] Please refer to Figures 3-5In an embodiment, the friction member 122 comprises a mounting shaft 1221, a mounting frame 1222 and a friction sheet 1223. The mounting shaft 1221 is perpendicular to the movement path of the card core. The mounting frame 1222 is rotationally connected to the mounting shaft 1221. The friction sheet 1223 covers one side of the mounting frame 1222 facing the card core. The mounting frame 1222 can rotate around the mounting shaft 1221 to drive the friction sheet 1223 to move towards or away from the card core.

[0085] The mounting shaft 1221 and the mounting frame 1222 are used to mount the friction sheet 1223 on the movement path of the card core. The mounting frame 1222 is driven to rotate around the mounting shaft 1221 to drive the friction sheet 1223 to move towards or away from the card core, so as to realize the contact or separation of the friction sheet 1223 and the card core.

[0086] Specifically, the mounting shaft 1221 can be connected to the upper card base 130. The mounting frame 1222 and the friction sheet 1223 can be provided in plurality, so that the friction sheet 1223 is arranged opposite to the upper card driving wheel 112 one by one. The material of the friction sheet 1223 can be selected as electrically glued wood material, so as to obtain better elasticity and greater friction.

[0087] Please refer to Figures 3-5 In an embodiment, the abutting member 121 comprises an elastic member 1211 and an abutting seat 1212. One end of the elastic member 1211 is in abutment with the mounting frame 1222, and the other end is in abutment with the abutting seat 1212. The elastic restoring force of the elastic member 1211 is used to drive the mounting frame 1222 to rotate towards the card core.

[0088] The elastic restoring force of the elastic member 1211 is used to drive the mounting frame 1222 to rotate towards the card core, so that the friction sheet 1223 on the mounting frame 1222 is in contact with the card core, thereby separating the card core with heavy tension through the friction sheet 1223. Specifically, the elastic member 1211 can be selected as a spring, a spring sheet or other suitable elastic structure.

[0089] Please refer to Figures 3-5 In an embodiment, the upper card device 100 further comprises a pressing and ironing mechanism 150. The pressing and ironing mechanism 150 is located on the movement path of the card core, and is used to press and iron the card core passing through the pressing and ironing mechanism 150.

[0090] The certificate core may be deformed or warped under the influence of the external environment, thereby affecting the reliability of the movement of the certificate core into the printer 200 or the channel, and further causing the failure rate of the instant card manufacturing equipment to increase. Specifically, since the inlet of the printer 200 and the openings of various channels have height limits, the deformation and warping of the certificate core exceeding the limit height will cause paper jam, so the deformation and warping must be controlled within ±8.0MM. Since the present embodiment adds the pressing and ironing mechanism 150, when the certificate core passes through the pressing and ironing mechanism 150, the certificate core is pressed and ironed by the pressing and ironing mechanism 150, avoiding the influence of the deformation or warping of the certificate core on the reliability of the movement of the certificate core in the instant card manufacturing equipment, thereby facilitating the reduction of the failure rate of the instant card manufacturing equipment.

[0091] Please refer to Figures 3-5 In an embodiment, the pressing and ironing mechanism 150 includes a pressing and ironing base 151, a heating piece (not shown), a flattening wheel 152, and a pressing and ironing driving assembly 153. The pressing and ironing base 151 has a pressing and ironing channel (not shown), and the heating piece is arranged in the pressing and ironing channel for heating the certificate core entering the pressing and ironing channel. The pressing and ironing driving assembly 153 is used to drive the flattening wheel 152 to rotate for flattening the heated certificate core.

[0092] When the certificate core enters the pressing and ironing channel, the certificate core in the pressing and ironing channel is heated by the heating piece. The flattening wheel 152 is driven to rotate by the pressing and ironing driving assembly 153, and then the heated certificate core is flattened by the flattening wheel 152. Specifically, the heating piece can be a PTC heating sheet.

[0093] Please refer to Figures 3-5 In an embodiment, the pressing and ironing driving assembly 153 includes a pressing and ironing driving motor (not shown), a pressing and ironing driving gear 1531, and a pressing and ironing driven gear 1532. Two flattening shafts are rotatably arranged on the pressing and ironing base 151, and the flattening wheels 152 are arranged on the two flattening shafts, and the flattening wheels 152 on the two flattening shafts are oppositely arranged. The pressing and ironing driving gear 1531 and the pressing and ironing driven gear 1532 are connected to the two flattening shafts one by one, and the pressing and ironing driving gear 1531 is engaged with the pressing and ironing driven gear 1532.

[0094] When it is necessary to drive the flattening wheel 152 to rotate, the pressing and ironing driving motor is used to drive the pressing and ironing driving gear 1531 to rotate, the pressing and ironing driving gear 1531 drives the pressing and ironing driven gear 1532 to rotate, and then the two flattening shafts and the flattening wheels 152 on the flattening shafts are driven to rotate.

[0095] Please refer to Figures 3-5In an embodiment, the upper certificate device 100 further comprises an upper certificate base 130, the upper certificate base 130 having a storage certificate position 131 for storing the unprinted certificate core and an upper certificate position 132 located on the transfer path of the transfer device 500. The conveying mechanism 110 is used to convey the certificate core in the storage certificate position 131 to the upper certificate position 132. The conveying mechanism 110 comprises an upper certificate driving assembly 111 and an upper certificate driving wheel 112, the upper certificate driving wheel 112 being used to contact the certificate core, and the upper certificate driving assembly 111 being used to drive the upper certificate driving wheel 112 to rotate to drive the certificate core to move.

[0096] When the certificate core needs to be conveyed, the upper certificate driving assembly 111 drives the upper certificate driving wheel 112 to rotate, thereby driving the certificate core in contact with the upper certificate driving wheel 112 to move. Specifically, the upper certificate driving wheel 112 can be arranged multiple along the movement path of the certificate core so as to drive the certificate core to move continuously.

[0097] Please refer to Figures 3-5 In an embodiment, the upper certificate base 130 comprises two oppositely arranged upper certificate side plates 133 and an upper certificate fixed shaft 134, the upper certificate fixed shaft 134 fixedly connecting the two upper certificate side plates 133. The storage certificate position 131, the pressing and ironing mechanism 150 and the upper certificate position 132 are sequentially arranged between the two upper certificate side plates 133, thereby supporting the storage certificate position 131, the pressing and ironing mechanism 150 and the upper certificate position 132.

[0098] Please refer to Figures 3-5 In an embodiment, the upper certificate base 130 further comprises two oppositely arranged upper certificate passage plates 135, the two upper certificate passage plates 135 being located between the two upper certificate side plates 133 and being enclosed with the two upper certificate side plates 133 to form an upper certificate passage 136, the upper certificate passage 136 being used to guide the certificate core to move on the upper certificate base 130.

[0099] Please refer to Figures 3-5 In an embodiment, the upper certificate device 100 further comprises an upper certificate sensor 190, the upper certificate sensor 190 being arranged at the upper certificate position 132, and the upper certificate sensor 190 being used to detect whether the certificate core exists at the upper certificate position 132.

[0100] Please refer to Figures 3-5 In an embodiment, the upper certificate device 100 further comprises a rethreading sensor 160, the rethreading sensor 160 being arranged adjacent to the upper certificate position 132, and the rethreading sensor 160 being used to detect whether the certificate core is rethreaded. Specifically, the rethreading sensor 160 can be an infrared detection sensor.

[0101] Please refer to Figures 3-5In an embodiment, the A-share driving assembly 111 comprises an A-share motor 1111, an A-share driving pulley 1112, an A-share driven pulley 1113, an A-share transmission belt 1114 and a first A-share rotating shaft 1115. The first A-share rotating shaft 1115 is rotationally connected with the A-share base 130, and the A-share driving wheel 112 is connected with the first A-share rotating shaft 1115. The output shaft of the A-share motor 1111 is connected with the A-share driving pulley 1112, the A-share driven pulley 1113 is connected with the first A-share rotating shaft 1115, and the A-share transmission belt 1114 connects the A-share driving pulley 1112 and the A-share driven pulley 1113.

[0102] When it is needed to drive the A-share driving wheel 112 to rotate, the A-share driving pulley 1112 is driven to rotate by the A-share motor 1111, the A-share driving pulley 1112 drives the A-share driven pulley 1113 to rotate through the A-share transmission belt 1114, and then drives the first A-share rotating shaft 1115 and the A-share driving wheel 112 to rotate. Specifically, the first A-share rotating shaft 1115 and the A-share driven pulley 1113 can be provided in plurality, so that the A-share driving pulley 1112 can drive a plurality of first A-share rotating shafts 1115 and A-share driven pulleys 1113 to rotate through the A-share transmission belt 1114.

[0103] Please refer to Figures 3-5 In an embodiment, the A-share driving assembly 111 further comprises a second A-share rotating shaft 1116 and an A-share pressure wheel 1117, and the second A-share rotating shaft 1116 is rotationally connected with the A-share base 130. The A-share pressure wheel 1117 is connected with the second A-share rotating shaft 1116, and the A-share pressure wheel 1117 is correspondingly arranged opposite to the A-share driving wheel 112. The A-share pressure wheel 1117 is used to press the certificate core and the certificate driving wheel 422 tightly, so that the A-share driving wheel 112 can drive the certificate core to move more stably. Specifically, springs can also be arranged on the A-share base 130, and the A-share pressure wheel 1117 is pressed against the A-share driving wheel 112 by the elastic force of the springs.

[0104] Please refer to Figures 3-5 In an embodiment, the A-share driving assembly 111 further comprises an A-share linkage gear 1118, and the first A-share rotating shaft 1115 and the second A-share rotating shaft 1116 are each provided with an A-share linkage gear 1118, and the A-share linkage gear 1118 on the first A-share rotating shaft 1115 is engaged with the A-share linkage gear 1118 on the second A-share rotating shaft 1116, so that when the first A-share rotating shaft 1115 rotates, the second A-share rotating shaft 1116 can be driven to rotate through the A-share linkage gear 1118.

[0105] Please refer to Figures 3-5In an embodiment, the conveying mechanism 110 further comprises a swinging assembly 113 arranged above the storage position 131. The swinging assembly 113 comprises a swinging frame 1131, a paper-rolling wheel 1132, a swinging frame driving assembly 1133 and a paper-rolling transmission assembly 1134. The swinging frame 1131 has a first side and a second side arranged oppositely, the first side of the swinging frame 1131 is swingably arranged on the upper storage base 130, and the paper-rolling wheel 1132 is rotationally connected with the second side of the swinging frame 1131. The swinging frame driving assembly 1133 is used to drive the swinging frame 1131 to swing, so as to drive the paper-rolling wheel 1132 to move close to and away from the storage position 131. The paper-rolling transmission assembly 1134 is in transmission connection with the upper storage driving assembly 111, and the upper storage driving assembly 111 can drive the paper-rolling wheel 1132 to rotate through the paper-rolling transmission assembly 1134, and the paper-rolling wheel 1132 is used to drive the contacted certificate core to move to contact with the upper storage driving wheel 112 when rotating.

[0106] When it is needed to drive the certificate core of the storage position 131 to contact with the upper storage driving wheel 112, the swinging frame 1131 is driven to swing towards the storage position 131 by the swinging frame driving assembly 1133, so as to drive the paper-rolling wheel 1132 to contact with the certificate core on the storage position 131. The paper-rolling wheel 1132 is driven to rotate by the paper-rolling transmission assembly 1134, and then the certificate core in contact with the paper-rolling wheel 1132 is driven to move. Thus, the certificate core of the storage position 131 is driven to contact with the upper storage driving wheel 112.

[0107] Specifically, the paper-rolling wheel 1132 can be a one-way paper-rolling wheel 1132, so that the paper-rolling wheel 1132 can only rotate in one direction, and then the paper-rolling wheel 1132 only provides the certificate core with driving force in the upper storage direction. The paper-rolling transmission assembly 1134 can be a belt transmission structure or a chain transmission structure. For example, when the paper-rolling transmission assembly 1134 is a belt transmission structure, the paper-rolling transmission assembly 1134 comprises a first paper-rolling belt pulley 11341, a second paper-rolling belt pulley 11342 and a paper-rolling transmission belt 11343, the paper-rolling wheel 1132 is rotationally connected with the swinging frame 1131 through a paper-rolling shaft, the first paper-rolling belt pulley 11341 is connected with the first upper storage shaft 1115, the second paper-rolling belt pulley 11342 is connected with the paper-rolling shaft, and the paper-rolling transmission belt 11343 connects the first paper-rolling belt pulley 11341 with the second paper-rolling belt pulley 11342. When the upper storage motor 1111 drives the first upper storage shaft 1115 to rotate, the first paper-rolling belt pulley 11341 is driven to rotate, the first paper-rolling belt pulley 11341 drives the second paper-rolling belt pulley 11342 and the paper-rolling shaft to rotate through the paper-rolling transmission belt 11343, and then the paper-rolling wheel 1132 is driven to rotate.

[0108] Please refer to Figures 3-5In an embodiment, the swing frame driving assembly 1133 comprises a steering engine 11331 connected to the swing frame 1131 and a swing arm 11332 connected to the output end of the steering engine 11331, the steering engine 11331 is capable of driving the swing arm 11332 to swing so as to make the swing arm 11332 contact or disengage with the certificate core on the certificate storage site 131.

[0109] When the swing arm 11332 contacts the certificate core on the certificate storage site 131, the free end of the swing frame 1131 is supported by the swing arm 11332, so that the rotation of the paper feeding wheel 1132 does not drive the certificate core to move. When the swing arm 11332 swings to a position not contacting the certificate core, the paper feeding wheel 1132 falls to contact the certificate core on the certificate storage site 131, so that the rotation of the paper feeding wheel 1132 can drive the certificate core to move.

[0110] It should be noted that when the paper feeding wheel 1132 has fed a certificate core, the swing arm 11332 is driven to swing by the steering engine 11331, so that the swing frame 1131 is driven to move away from the certificate core by the swing arm 11332, and then the paper feeding wheel 1132 is separated from the certificate core, so as to avoid the problem of feeding more certificate cores by the paper feeding wheel 1132.

[0111] Please refer to Figures 3-5 In an embodiment, the certificate feeding device 100 further comprises a limiting assembly 170, the limiting assembly 170 comprises a limiting rod 171, a backstop 172, a height limiting plate 173 and a width limiting plate 174. The limiting rod 171 is connected to the swing frame 1131, and the upper certificate side plate 133 is provided with an arc-shaped limiting slot 1331, the end of the limiting rod 171 extends into the limiting slot 1331, so as to limit the swing angle of the swing frame 1131 by the contact between the limiting rod 171 and the limiting slot 1331.

[0112] The backstop 172 is connected to the side of the certificate storage site 131 away from the pressing and ironing mechanism 150, which is used to prevent the certificate core from being withdrawn from the certificate storage site 131 on the side of the backstop 172 when the driving wheel reversely rotates. The height limiting plate 173 is connected to the upper certificate side plate 133, which is used to limit the stacking height of the certificate core, and can also press the certificate core to prevent the certificate core from being warped. The width limiting plate 174 is connected to the upper certificate side plate 133, which is used to limit the width of the certificate core, and by adjusting the position or thickness of the width limiting plate 174, the certificate storage site 131 can be applied to store certificate cores of different width specifications.

[0113] Please refer to Figure 6In an embodiment, the certificate feeding device 100 further comprises a thickness sensor 180 connected to the certificate feeding side plate 133, which is configured to detect the thickness of the certificate core on the certificate storage position 131. When the thickness of the certificate core on the certificate storage position 131 exceeds a preset thickness, the thickness sensor 180 can send the thickness information to the control system of the temporary card manufacturing device, so that the control system issues an error reporting instruction.

[0114] Please refer to Figure 1 and 7 , the temporary card manufacturing device further comprises an information acquisition device 140, which is located on the movement path of the certificate core, and is configured to acquire the information identifier on the certificate core. Specifically, the number of information acquisition devices 140 can be configured as one, two or other appropriate numbers, and the installation position of the information acquisition device 140 can be set on the certificate base 130, the certificate outlet base 410 or other appropriate positions.

[0115] In some embodiments, please refer to Figure 8 、 2 , 8 and 9, the certificate outlet device 400 comprises a certificate outlet base 410 and a certificate outlet driving device 420.

[0116] The certificate outlet base 410 comprises an operation position 411, a storage position 412 and a certificate outlet 413. The operation position 411 is configured to carry the certificate core to be fed into and discharged from the printer 200, and the storage position 412 is configured to store at least one printed certificate core. The certificate outlet driving device 420 is configured to drive the temporary card (i.e. the printed certificate core, the same below) on the operation position 411 and / or the storage position 412 to be discharged from the certificate outlet 413. The transfer device 500 is configured to transfer the certificate core between the certificate feeding device 100, the printer 200 and the certificate outlet device 400. When a user prints a certificate core, the certificate feeding device 100 first completes the certificate feeding work of the unprinted certificate core, and then the transfer device 500 transfers the unprinted certificate core to the operation position 411 and makes the unprinted certificate core enter the printer 200 for printing from the operation position 411.

[0117] Please refer to Figure 8 and 9 , in an embodiment, the operation position 411 is configured as an operation carrying platform 4111, and the storage position 412 is configured as a storage channel 4121. One side of the storage channel 4121 is in communication with the carrying platform, and the other side is in communication with the certificate outlet 413.

[0118] The operation position 411 is configured as a carrying platform, which facilitates the transfer device 500 to operate the certificate core from above the carrying platform. After the printer 200 completes the printing of a certificate core, the printer 200 returns the temporary card to the operation position 411, and then moves the temporary card to the entrance of the storage channel 4121 in communication with the carrying platform through the transfer device 500.

[0119] Please refer to Figure 8 and 9 In an embodiment, the card delivery driving device 420 comprises a card delivery driving assembly 421 and a card delivery driving wheel 422, the card delivery driving wheel 422 is used to contact the temporary card, and the card delivery driving assembly 421 is used to drive the card delivery driving wheel 422 to rotate to drive the temporary card to move.

[0120] When the temporary card needs to be discharged, the card delivery driving wheel 422 is driven to rotate by the card delivery driving assembly 421, so as to drive the temporary card in contact with the card delivery driving wheel 422 to move, thereby driving the temporary card in the storage position 412 to be discharged from the card delivery port 413, and driving the temporary card at the entrance of the storage channel 4121 to enter the storage channel 4121.

[0121] Please refer to Figure 8 and 9 In an embodiment, the card delivery driving assembly 421 comprises a card delivery motor 4211, a card delivery driving pulley 4212, a card delivery driven pulley 4213, a card delivery transmission belt 4214 and a first card delivery shaft 4215. The first card delivery shaft 4215 is rotationally connected with the card delivery base 410, and the card delivery driving wheel 422 is connected with the first card delivery shaft 4215. The output shaft of the card delivery motor 4211 is connected with the card delivery driving pulley 4212, the card delivery driven pulley 4213 is connected with the first card delivery shaft 4215, and the card delivery transmission belt 4214 connects the card delivery driving pulley 4212 and the card delivery driven pulley 4213.

[0122] When the temporary card needs to be discharged, the card delivery driving wheel 422 is driven to rotate by the card delivery driving assembly 421, so as to drive the temporary card in contact with the card delivery driving wheel 422 to move, thereby driving the temporary card in the storage position 412 to be discharged from the card delivery port 413, and driving the temporary card at the entrance of the storage channel 4121 to enter the storage channel 4121.

[0123] Please refer to Figure 8 and 9 In an embodiment, the card delivery driving assembly 421 further comprises a second card delivery shaft 4216 and a card delivery pressure wheel 4217. The second card delivery shaft 4216 is rotationally connected with the card delivery base 410 and is arranged opposite to the first card delivery shaft 4215 one by one. The card delivery pressure wheel 4217 is connected with the second card delivery shaft 4216, and the card delivery pressure wheel 4217 is arranged opposite to the card delivery driving wheel 422 one by one. The card delivery driving assembly 421 further comprises a card delivery tension pulley 4218, which is rotationally arranged on the card delivery base 410 and abuts against the card delivery transmission belt 4214 to tension the card delivery transmission belt 4214.

[0124] The temporary card is pressed against the card issuing driving wheel 422 by the card issuing pressure wheel 4217, so that the card issuing driving wheel 422 can drive the temporary card more stably. The card issuing transmission belt 4214 is tensioned by the card issuing tension wheel 4218, so that the card issuing transmission belt 4214 can drive the card issuing driven pulley 4213 to rotate more stably. Specifically, the card issuing base 410 can also be provided with a spring, and the card issuing pressure wheel 4217 is abutted against the card issuing driving wheel 422 by the spring.

[0125] Please refer to Figure 8 and 9 In an embodiment, the card issuing base 410 includes two oppositely arranged card issuing side plates 414 and a card issuing fixed shaft 415 connecting the two card issuing side plates 414. The card issuing base 410 further includes two oppositely arranged card issuing passage plates 416 located between the two card issuing side plates 414 and enclosed with the two card issuing side plates 414 to form a storage passage 4121, through which the temporary card is guided to move on the card issuing base 410.

[0126] Please refer to Figure 8 and 9 In an embodiment, the card issuing base 410 further includes a card issuing guide plate 417 arranged on the side of the operation position 411 close to the printer 200, which is used to guide the card core on the operation position 411 to move towards the printer 200, so that the card core on the operation position 411 can enter the printer 200 more smoothly.

[0127] Please refer to Figure 8 and 9 In an embodiment, the card issuing port 413 and the operation position 411 are respectively located on the opposite sides of the storage position 412, and the operation position 411 is arranged adjacent to the printer 200.

[0128] On the one hand, since the operation position 411 is arranged adjacent to the printer 200, it is convenient for the transfer device 500 to transport the card core on the operation position 411 to the entrance of the printer 200, and it is also convenient for the printer 200 to return the printed card core to the operation position 411. On the other hand, since the card issuing port 413, the storage position 412 and the operation position 411 are arranged in a straight line in sequence, it is convenient for the card issuing driving assembly 421 to discharge the temporary card on the storage position 412 and the operation position 411.

[0129] Please refer to Figure 8 and 9In an embodiment, the first operation sensor 430 is arranged on the side of the operation position 411 away from the storage position 412, and is configured to detect whether the card core on the operation position 411 enters the printer 200. The second operation sensor 440 is arranged on the side of the operation position 411 away from the storage position 412, and is configured to detect whether the card core on the operation position 411 retreats to the operation position 411 after printing is completed. The third operation sensor 450 is arranged on the side of the operation position 411 close to the storage position 412, and is configured to detect whether the card core is positioned on the operation position 411.

[0130] The first operation sensor 430 is configured to detect whether the card core on the operation position 411 enters the printer 200, and the second operation sensor 440 is configured to detect whether the card core on the operation position 411 enters the printer 200, which provides a hardware basis for automatic control of the card production device. The third operation sensor 450 is configured to detect whether the card core is positioned on the operation position 411, and specifically, the positioning position can refer to a position where the card core is aligned with the turning channel 311 of the turning and recycling device 300.

[0131] Please refer to Figure 6 and 9 In an embodiment, the first storage sensor 460 is arranged on the side of the storage position 412 close to the operation position 411, and is configured to detect whether the card core enters the storage position 412. The second storage sensor 470 is arranged on the side of the storage position 412 close to the card outlet 413, and is configured to detect whether the card core in the storage position 412 is taken out from the card outlet 413.

[0132] The first storage sensor 460 is configured to detect whether the card core enters the storage position 412, and the second storage sensor 470 is configured to detect whether the card core in the storage position 412 is taken out from the card outlet 413, which provides a hardware basis for automatic operation of the card core entering the storage position 412 and a reminder when the card core is taken out.

[0133] Please refer to Figure 6 and 7 In an embodiment, the turning and recycling device 300 includes a turning base 310, a channel switching mechanism 320, and a turning driving assembly 330. The turning base 310 has a turning channel 311 and a recycling bin 312. The turning driving assembly 330 is configured to drive the card core to move along the turning channel 311 to achieve turning of the card core. The channel switching mechanism 320 is configured to selectively communicate or close the turning channel 311 with the recycling bin 312, so that the card core can fall from the turning channel 311 into the recycling bin 312 when the turning channel 311 communicates with the recycling bin 312.

[0134] When the printer 200 finishes printing the first side of the card core, the card core needs to be turned over so as to print the second side of the card core. At this time, the card core needs to be moved to the entrance of the page turning channel 311 through the transfer device 500 first, and then the card core is driven to move along the page turning channel 311 through the page turning driving assembly 330. When the card core is discharged from the outlet of the page turning channel 311, the page turning of the card core is realized.

[0135] When the card core needs to be discarded, the card core can be moved to the entrance of the page turning channel 311 through the transfer device 500 first, and then the card core is driven to move along the page turning channel 311 through the page turning driving assembly 330. When the card core moves to the channel switching mechanism 320, the page turning channel 311 is communicated with the recycling box 312 through the channel switching mechanism 320, so that the discarded card core falls from the page turning channel 311 into the recycling box 312, and the recycling is completed.

[0136] Please refer to Figure 6 and 7 In an embodiment, the channel switching mechanism 320 includes a guide gate 321 and a switching driving assembly 322. The guide gate 321 is rotationally connected with the page turning base 310, and the switching driving assembly 322 is connected with the guide gate 321. The switching driving assembly 322 can drive the guide gate 321 to rotate, so as to realize the opening or closing of the guide gate 321. When the guide gate 321 is opened, the card core in the page turning channel 311 is guided to continue moving in the page turning channel 311. When the guide gate 321 is closed, the card core in the page turning channel 311 is guided to move into the recycling box 312.

[0137] When the card core needs to be turned over, the switching driving assembly 322 drives the guide gate 321 to open, so that the card core can move along the page turning channel 311 to realize the page turning. When the card core needs to be discarded, the switching driving assembly 322 drives the guide gate 321 to close, so that when the card core moves to the guide gate 321, it moves into the recycling box 312 under the guidance of the guide gate 321 to complete the recycling.

[0138] Please refer to Figure 6 and 7 In an embodiment, the switching driving assembly 322 includes an electromagnet 3221, a first switching arm 3222 and a second switching arm 3223. The electromagnet 3221 is connected to the page turning base 310. The first switching arm 3222 and the second switching arm 3223 each have a first end and a second end. The first end of the first switching arm 3222 is connected with the movable end of the electromagnet 3221, and the second end of the first switching arm 3222 is rotationally connected with the first end of the second switching arm 3223. The guide gate 321 is rotationally connected with the page turning base 310 through a switching pivot 323, and the second end of the second switching arm 3223 is connected with the switching pivot 323. The movable end of the electromagnet 3221 can drive the first end of the first switching arm 3222 to move, so as to drive the switching pivot 323 to rotate.

[0139] When it is needed to drive the guide shutter 321 to rotate, the electromagnet 3221 is powered on or powered off, the movable end of the electromagnet 3221 is driven to move, the first switching arm 3222 and the second switching arm 3223 are driven to move through the movable end of the electromagnet 3221, the switching shaft 323 and the guide shutter 321 are driven to rotate, and the guide shutter 321 is driven to open or close. Of course, in other embodiments, the switching driving assembly 322 can also be selected from a cylinder, a motor or other suitable power source, and a gear and rack structure, a belt driving structure or other suitable transmission structure.

[0140] Please refer to Figure 6 and 7 In an embodiment, the page turning driving assembly 330 includes a page turning motor 331, a page turning driving pulley 332, a page turning driven pulley 333, a page turning transmission belt 334, a first page turning shaft 335 and a page turning driving wheel 339. The first page turning shaft 335 is rotationally connected with the page turning base 310, and the page turning driving wheel 339 is connected with the first page turning shaft 335. The output shaft of the page turning motor 331 is connected with the page turning driving pulley 332, the page turning driven pulley 333 is connected with the first page turning shaft 335, and the page turning transmission belt 334 connects the page turning driving pulley 332 and the page turning driven pulley 333.

[0141] When it is needed to drive the certificate core to move in the page turning channel 311, the page turning driving pulley 332 is driven to rotate by the page turning motor 331, the first page turning shaft 335 is driven to rotate by the page turning driving pulley 332 through the page turning transmission belt 334, the page turning driven pulley 333 and the page turning driving wheel 339 are driven to rotate, and the certificate core in the page turning channel 311 is driven to move by the page turning driving wheel 339.

[0142] Please refer to Figure 6 and 7 In an embodiment, the page turning driving assembly 330 further includes a second page turning shaft 336 and a page turning pressure wheel 337. The second page turning shaft 336 is rotationally connected with the page turning base 310 and is arranged opposite to the first page turning shaft 335 one by one. The page turning pressure wheel 337 is connected with the second page turning shaft 336, and the page turning pressure wheel 337 is arranged opposite to the page turning driving wheel 339 one by one. The page turning driving assembly 330 further includes a page turning tensioning wheel 338. The page turning tensioning wheel 338 is rotationally arranged on the page turning base 310 and abuts against the page turning transmission belt 334 to tension the page turning transmission belt 334.

[0143] The core is pressed against the page turning driving wheel 339 by the page turning pressure wheel 337, so that the page turning driving wheel 339 can drive the core to move more stably. The page turning transmission belt 334 is tensioned by the page turning tensioning wheel 338, so that the page turning transmission belt 334 can drive the page turning driven pulley 333 to rotate more stably. Specifically, a spring can also be provided on the page turning base 310, and the page turning pressure wheel 337 is abutted against the page turning driving wheel 339 by the spring.

[0144] Please refer to Figure 6 and 7 In an embodiment, the entrance of the page turning channel 311 is provided with a first page turning platform 313 for supporting the core before entering the page turning channel 311, and the first page turning platform 313 is provided with a first page turning sensor 340 for detecting whether there is a core on the page turning platform. The exit of the page turning channel 311 is provided with a second page turning platform 314 for carrying the core discharged from the page turning channel 311, and the second page turning platform 314 is provided with a second page turning sensor 350 for detecting the position of the core on the second page turning platform 314.

[0145] Please refer to Figure 1 and 7 In an embodiment, the page turning base 310 includes two oppositely arranged page turning side plates 315 and a page turning fixed shaft 316 connecting the two page turning side plates 315. The page turning base 310 further includes two oppositely arranged page turning channel plates 317 arranged between the two page turning side plates 315 and enclosing the two page turning side plates 315 to form the page turning channel 311. At least part of the page turning channel 311 is in an arc structure, and the core is guided to move through the page turning channel 311 to realize 180° turning of the core.

[0146] Please refer to Figure 1 and 2 In an embodiment, the transfer device 500 includes a first transfer assembly 510, a second transfer assembly 520, a third transfer assembly 530, and an extraction assembly 540 for extracting and releasing the core. The first transfer assembly 510 is connected with the extraction assembly 540, and the first transfer assembly 510 is used to drive the extraction assembly 540 to move along a first axis. The second transfer assembly 520 is used to drive the first transfer assembly 510 and the extraction assembly 540 to move along a second axis, and the third transfer assembly 530 is used to drive the first transfer assembly 510, the second transfer assembly 520, and the third transfer assembly 530 to move along a third axis. The first axis, the second axis, and the third axis are perpendicular to each other.

[0147] Through the cooperation of the first transfer assembly 510, the second transfer assembly 520 and the third transfer assembly 530, the extraction assembly 540 can move linearly in three dimensions of the three-dimensional space, so as to facilitate the movement of the extraction assembly 540 to the position of the certificate core to extract the certificate core, and drive the certificate core to move to the target position to release the certificate core.

[0148] Specifically, the extraction assembly 540 can be selected as a suction cup structure. The first transfer assembly 510, the second transfer assembly 520 and the third transfer assembly 530 can be selected as a guide rail and a sliding block as a linear motion guide structure, a motor or a cylinder as a linear motion power source, and a belt transmission structure, a chain transmission structure or a gear and rack transmission structure as a linear motion transmission structure.

[0149] Please refer to Figure 1 and 2 In an embodiment, the temporary card manufacturing device further comprises a base 600, the base 600 has a first side and a second side arranged oppositely, the certificate feeding device 100 and the certificate issuing device 400 are arranged side by side on the first side of the base 600, the printer 200 is arranged on the second side of the base 600, and the page turning and recycling device 300 is arranged between the first side and the second side of the base 600. The transfer device 500 is arranged above the certificate feeding device 100, the certificate issuing device 400, the page turning and recycling device 300 and the printer 200.

[0150] On the one hand, the above layout reasonably utilizes the bearing space on the base 600, so that the layout of each functional module in the temporary card manufacturing device is compact, which is conducive to reducing the volume of the temporary card manufacturing device. On the other hand, the transfer device 500 can conveniently realize the scheduling of the certificate core above the certificate feeding device 100, the certificate issuing device 400, the page turning and recycling device 300 and the printer 200.

[0151] Please refer to Figure 10 and 2 In an embodiment, the temporary card manufacturing device further comprises an electric control device 700, which is used to provide a hardware basis for power supply, signal interaction and control of the temporary card manufacturing device.

[0152] Based on the above temporary card manufacturing device, please refer to Figure 11 Some embodiments further provide a control method of a temporary card manufacturing device, comprising:

[0153] Step S100, detecting whether a temporary card manufacturing instruction is received, if the temporary card manufacturing instruction is received, executing step S200 and step S300, otherwise, continuing to execute step S100.

[0154] The reception of the temporary card manufacturing instruction means that the temporary card manufacturing task is accepted. In some embodiments, the temporary card manufacturing instruction is triggered based on the information input by the user each time, which can include but is not limited to the user's identity information, the number of the temporary card, and the pre-specified number, etc. In some embodiments, the temporary card manufacturing device triggers the temporary card manufacturing instruction each time it receives the information input by the user, i.e., as described above, after receiving the request of person A, the temporary card manufacturing instruction is detected and two temporary cards are continuously manufactured and output; after receiving the request of person B, the temporary card manufacturing instruction is detected again and another two temporary cards are continuously manufactured and output. In other embodiments, the temporary card manufacturing device can also read the task list filled by the user to trigger the temporary card manufacturing instruction, for example, there is a filled task list stored in the background or in the cloud, and the temporary card manufacturing device triggers the temporary card manufacturing instruction each time it reads a task in the task list. Each time the temporary card manufacturing instruction is triggered, two temporary cards are prepared to be continuously manufactured and output.

[0155] Step S200, collect the information identifier on the first certificate core.

[0156] Step S300, collect the information identifier on the second certificate core.

[0157] The first certificate core is used to manufacture the first temporary card, and the second certificate core is used to manufacture the second temporary card. The first certificate core is set to be expected to perform temporary card manufacturing before the second certificate core. The first temporary card and the second temporary card are the two consecutive temporary cards to be manufactured after receiving the temporary card manufacturing instruction. For example, if the temporary card manufacturing device currently has four certificate cores a1, a2, b1 and b2, and at this time the temporary card manufacturing instruction is received, then a1 is the first certificate core, A1 is the first temporary card, a2 is the second certificate core, and A2 is the second temporary card. If the temporary card manufacturing device currently has three certificate cores a2, b1 and b2, and at this time the temporary card manufacturing instruction is received, then a2 is the first certificate core, A2 is the first temporary card, b1 is the second certificate core, and B2 is the second temporary card.

[0158] The information identifier on the certificate core includes but is not limited to code, two-dimensional code, information code, etc. The information identifier can include graphics, text, symbols, etc. The information identifier on the certificate core can be manufactured when the certificate core is factory-finished, or it can be added before being put into the temporary card manufacturing device. Each certificate core has an information identifier, and the information identifiers are designed in pairs in advance. For example, the information identifiers of a1 and a2 have relevance. For example, the information identifier can include a code, and the same character is in a specific position in the code to indicate that A1 and A2 have relevance and are two temporary cards to be output based on one temporary card manufacturing task.

[0159] The collection time and collection device of the information identifier are not limited in this embodiment. For example, when the first card core is in the upper certificate device 100, the information identifier on the first card core is collected on the running path of the first card core. When the second card core is in the upper certificate device 100, the information identifier on the second card core is collected on the running path of the first card core.

[0160] Step A400, determining whether to make the first temporary card according to the information identifier on the first card core and the information identifier on the second card core.

[0161] It can be understood that step A400 is executed before the first card core is printed into the first temporary card. In some embodiments, referring to Figure 12 , step A400 specifically includes:

[0162] Step A410a, comparing the information identifier on the first card core with the information identifier on the second card core.

[0163] In some embodiments, the information identifiers on the first card core and the second card core can be compared by the temporary card making device. In other embodiments, after the information identifiers on the first card core and the second card core are collected, the temporary card making device can also send the information identifiers on the two card cores to an external device or the cloud for comparison.

[0164] Step A420a, determining whether the information identifier on the first card core matches the information identifier on the second card core. If they match, step A430 is executed, otherwise, step A440 is executed.

[0165] In some embodiments, when the first card core is transported to the operation position 411 of the certificate base 410, the information identifier on the first card core is compared with the information identifier on the second card core to determine whether they match.

[0166] Step A430, printing the first card core to make the first temporary card.

[0167] In some embodiments, after determining that the information identifier on the first card core matches the information identifier on the second card core, the first card core is transported into the printer 200, and the printer 200 is controlled to print information on the first card core.

[0168] Step A440, recycling the first card core.

[0169] That is, only when the information identifier on the first card core matches the information identifier on the second card core, the first card core is printed to make the first temporary card, otherwise, the first card core is directly recycled.

[0170] The above steps are illustrated below.

[0171] In the first example, the storage position 131 of the upper base 130 is sequentially placed with a1, a2, b1 and b2 from top to bottom. The operator inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper card position 132 of the upper base 130. When a1 passes the information collection device 140, the information collection device 140 collects the information identifier of a1. Then, a1 is transported to the operation position 411 of the card output device 400. When a1 is on the operation position 411 of the card output device 400, a2 is transported to the upper card position 132 of the upper base 130 and the information identifier of a2 is collected. At this time, the information identifiers on a1 and a2 are compared. Since the two information identifiers match, the temporary card manufacturing device transports a1 to the printer 200 for printing of the number and the like, so as to manufacture the first temporary card.

[0172] In the second example, due to the negligence of the operator, a2 is placed below when placing the card core, so that the storage position 131 of the upper base 130 is sequentially placed with a1, b1, b2 and a2 from top to bottom. The operator inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper card position 132 of the upper base 130. When a1 passes the information collection device 140, the information collection device 140 collects the information identifier of a1. Then, a1 is transported to the operation position 411 of the card output device 400. When a1 is on the operation position 411 of the card output device 400, b1 is transported to the upper card position 132 of the upper base 130 and the information identifier of b1 is collected. At this time, the information identifiers on a1 and b1 are compared. Since the two information identifiers do not match, the temporary card manufacturing device recycles a2 through the page turning recycling device 300.

[0173] In some embodiments, after recycling the first card core, the second card core is also recycled, and the temporary card manufacturing device issues an alarm to notify the operator to troubleshoot, for example, b1 is also recycled in the above-mentioned second example.

[0174] In other embodiments, after recycling the first card core, the original second card core is taken as the first card core, the card core behind the original second card core is taken as the new second card core, and the information identifier collection and comparison steps are executed again. That is, one temporary card manufacturing instruction is set to collect the information identifiers of three card cores. For example, in the above-mentioned second example, the temporary card manufacturing device continues to work, b1 is transported to the operation position 411 of the card output device 400, and when b1 is on the operation position 411 of the card output device 400, b2 is transported to the upper card position 132 of the upper base 130 and the information identifier of b2 is collected. At this time, the information identifiers on b1 and b2 are compared. Since the two information identifiers match, the temporary card manufacturing device transports b1 to the printer 200 for printing of the number and the like, so as to manufacture the first temporary card.

[0175] Therefore, through the above steps, the correlation between the two printed temporary cards can be ensured.

[0176] In some embodiments, in step S100, the method further includes: obtaining temporary card information corresponding to the temporary card manufacturing instruction.

[0177] The temporary card information can include, but is not limited to, the number of the temporary card, the identity information of the user, the validity period of the temporary card, etc. These information can be stored locally on the temporary card manufacturing device, or can be stored in the cloud. For example, after the user inputs the identity information, the temporary card manufacturing device communicates with other systems to obtain the number of the temporary card corresponding to the identity information for this time.

[0178] In some embodiments, referring to Figure 11 , step A400 specifically includes:

[0179] Step A410b, comparing the information identifiers on the first and second cores with the temporary card information, respectively.

[0180] In some embodiments, the temporary card manufacturing device can compare the information identifiers on the first and second cores. In other embodiments, after the information identifiers on the first and second cores are collected, the temporary card manufacturing device can also send the information identifiers on the two cores to an external device or the cloud for comparison.

[0181] Step A420b, determining whether the information identifiers on the first and second cores match the temporary card information, if they match, executing step A430, otherwise, executing step A440.

[0182] That is, only when the information identifiers on the first and second cores match the temporary card information, the first core is printed to manufacture the first temporary card. If any of the information identifiers on the first and second cores does not match the temporary card information, the first core is recycled. The following examples are given for illustration. In the following examples, the obtained temporary card information is the number A of the temporary card, and the number A can be read in the information identifiers a1 and a2, and the number B can be read in the information identifiers b1 and b2, wherein the number A is in A1 and A2 after manufacturing, and the number B is in B1 and B2 after manufacturing.

[0183] In the first example, the storage positions 131 of the upper certificate base 130 are sequentially placed with a1, a2, b1 and b2 from top to bottom. The user inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper certificate position 132 of the upper certificate base 130, and the information collection device 140 collects the information identifier of a1 when passing through the information collection device 140. Then, a1 is transported to the operation position 411 of the certificate output device 400. The information identifier of a1 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a1 matches the temporary card information. In addition, when a1 is on the operation position 411 of the certificate output device 400, a2 is transported to the upper certificate position 132 of the upper certificate base 130 and the information identifier of a2 is collected. Then, the information identifier of a2 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a2 also matches the temporary card information. At this time, since the information identifiers of a1 and a2 both match the temporary card information, the card manufacturing device transports a1 to the printer 200 for printing of the number and the like to manufacture the first temporary card.

[0184] In the second example, due to the negligence of the operator, a2 is placed below when placing the certificate core, so that the storage positions 131 of the upper certificate base 130 are sequentially placed with a1, b1, b2 and a2 from top to bottom. The user inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper certificate position 132 of the upper certificate base 130, and the information collection device 140 collects the information identifier of a1 when passing through the information collection device 140. Then, a1 is transported to the operation position 411 of the certificate output device 400. The information identifier of a1 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a1 matches the temporary card information. In addition, when a1 is on the operation position 411 of the certificate output device 400, b1 is transported to the upper certificate position 132 of the upper certificate base 130 and the information identifier of b1 is collected. Then, the information identifier of b1 is compared with the temporary card information. Since b1 corresponds to the number B and the temporary card information corresponds to the number A, the information identifier of b1 does not match the temporary card information, and the temporary card manufacturing device recycles a1 through the page turning recycling device 300.

[0185] In some embodiments, after recycling the first certificate core, the second certificate core is also recycled, and the temporary card manufacturing device issues an alarm to notify the operator to troubleshoot, for example, b1 is also recycled in the above-mentioned second example.

[0186] As can be seen, through the above steps, the correlation between the two printed temporary cards can also be ensured.

[0187] In some embodiments, please refer to Figure 12 and Figure 13 After the first certificate core is transported to the printer 200 for printing to manufacture the first temporary card, the method further comprises:

[0188] Step A450, the first temporary card is transported to the storage position 412.

[0189] Step A460, it is detected whether the temporary card output instruction is triggered, if the temporary card output instruction is triggered, Step A470 is executed, otherwise Step A480 is executed. The temporary card output instruction is set to be triggered based on a preset operation after the second temporary card is made.

[0190] Step A470, the first temporary card is output from the storage position 412 to the outside of the temporary card making device. It should be noted that the outside here should be understood in a broad sense, the position or area where the user can take the first temporary card is within the scope of the outside.

[0191] In some embodiments, the temporary card output instruction is set to be triggered when it is detected that the second temporary card moves to a preset position between the printer 200 and the storage position 412. That is, when the second temporary card is transported from the printer 200 to the predetermined position after printing the information, the first temporary card is output to the outside of the temporary card making device. For example, after the first storage sensor 460 detects that a temporary card enters the storage position 412, if the second operation sensor 440 detects that another temporary card retreats to the operation position 411, the temporary card in the storage position 412 is transported out to output the temporary card. For another example, after the first storage sensor 460 detects that a temporary card enters the storage position 412, if the extraction assembly 540 used to transport another temporary card reaches the predetermined position, the temporary card in the storage position 412 is transported out to output the temporary card.

[0192] In some embodiments, the temporary card output instruction is set to be triggered after the second temporary card is made, for example, after the first storage sensor 460 detects that a temporary card enters the storage position 412, if it is detected that the printer 200 completes the printing task, the temporary card in the storage position 412 is transported out.

[0193] Step A480, the first temporary card is continued to be placed in the storage position 412. That is, the making of the second temporary card is continued to be waited.

[0194] From the above description, it can be seen that the above steps can avoid the first temporary card from being provided to the user too early after being made.

[0195] In some embodiments, after Step A470 is executed, Step A490 is further included, the second temporary card is output to the outside of the temporary card making device within a preset time. For example, after the second storage sensor 470 detects that the temporary card in the storage position 412 is taken out from the certificate outlet 413, the next temporary card is transported to the certificate outlet 413 within a predetermined time without staying in the storage position 412.

[0196] Through step A490, the user can see two prepared temporary cards in succession within a predetermined time, so that the user can be prevented from forgetting to take away the second temporary card, and the user experience and the reliability of the temporary card preparation are further improved.

[0197] In some embodiments, please refer to Figure 14 After step S300, the following is performed:

[0198] Step B400, determining whether to output the first temporary card to the outside of the temporary card preparation device according to the information identifier on the first certificate core and the information identifier on the second certificate core.

[0199] It can be understood that step B400 is performed after the first certificate core is printed into the first temporary card. In some embodiments, please refer to Figure 15 Step B400 specifically includes:

[0200] Step B410a, comparing the information identifier on the first certificate core and the information identifier on the second certificate core.

[0201] In some embodiments, the information identifiers on the first certificate core and the second certificate core can be compared by the temporary card preparation device, and in other embodiments, after the information identifiers on the first certificate core and the second certificate core are collected, the temporary card preparation device can also send the information identifiers on the two certificate cores to an external device or the cloud for comparison.

[0202] Step B420a, determining whether the information identifier on the first certificate core and the information identifier on the second certificate core match, if they match, performing step B430, otherwise, performing step B440.

[0203] In some embodiments, when the second operation sensor 440 detects the first temporary card, the information identifier on the first certificate core and the information identifier on the second certificate core are compared to determine whether they match.

[0204] Step B430, outputting the first temporary card to the outside of the temporary card preparation device.

[0205] In some embodiments, in step B430, the first temporary card can be first transported to the storage position 412 and placed, and then it is detected whether the temporary card output instruction is triggered, if the temporary card output instruction is triggered, the first temporary card is output from the storage position 412 to the outside of the temporary card preparation device, otherwise, the first temporary card is continuously placed in the storage position 412. Wherein, the temporary card output instruction is set to be triggered based on a preset operation after the second temporary card is prepared. Thus, the first temporary card can be prevented from being provided to the user to take away too early after being prepared.

[0206] Step B440, recycling the first temporary card.

[0207] That is, after the first temporary card is made, only when the information identifier on the first certificate core matches the information identifier on the second certificate core, the first temporary card is provided to the user, otherwise, the first temporary card is recycled.

[0208] The above steps are illustrated by examples as follows.

[0209] In the first example, the certificate storage positions 131 of the upper certificate base 130 are sequentially placed with a1, a2, b1 and b2 from top to bottom. The user A inputs a temporary card making instruction to the temporary card making device, and the temporary card making device first transports a1 to the upper certificate position 132 of the upper certificate base 130, and the information acquisition device 140 acquires the information identifier of a1 when passing through the information acquisition device 140. Then, a1 is transported to the printer 200 to print information, so as to obtain A1. After acquiring the information identifier of a1, a2 is transported to the upper certificate position 132 of the upper certificate base 130 and the information identifier of a2 is acquired. At this time, the information identifiers on a1 and a2 are compared, and since the two match, the temporary card making device starts to output A1 to the outside of the temporary card making device.

[0210] In the second example, due to the negligence of the operator, a2 is placed at the lower position when placing the certificate core, so that the certificate storage positions 131 of the upper certificate base 130 are sequentially placed with a1, b1, b2 and a2 from top to bottom. The user A inputs a temporary card making instruction to the temporary card making device, and the temporary card making device first transports a1 to the upper certificate position 132 of the upper certificate base 130, and the information acquisition device 140 acquires the information identifier of a1 when passing through the information acquisition device 140. Then, a1 is transported to the printer 200 to print information, so as to obtain A1. After acquiring the information identifier of a1, b1 is transported to the upper certificate position 132 of the upper certificate base 130 and the information identifier of b1 is acquired. At this time, the information identifiers on a1 and b1 are compared, and since the two do not match, A1 is recycled by the page turning recycling device 300.

[0211] In some embodiments, after recycling the first temporary card, if the second temporary card has not been made, the second certificate core is also recycled, and the temporary card making device issues an alarm to notify the operator to troubleshoot, for example, in the above-mentioned second example, b1 is also recycled.

[0212] In some embodiments, after recycling the first temporary card, the second temporary card is continued to be made, or after the second temporary card has been made, the information identifier acquisition and comparison steps are performed again. For example, in the above-mentioned second example, the temporary card making device continues to work, b1 is transported to the printer 200 to print information, so as to obtain B1, and in addition, b2 is transported to the upper certificate position 132 of the upper certificate base 130 and the information identifier of b2 is acquired. At this time, the information identifiers on b1 and b2 are compared, and since the two match, the temporary card making device starts to output B1 to the outside of the temporary card making device.

[0213] In some embodiments, the step S100 further comprises: obtaining the temporary card information corresponding to the temporary card manufacturing instruction.

[0214] The temporary card information can include, but is not limited to, the number of the temporary card, the identity information of the user, etc. The information can be stored locally on the temporary card manufacturing device or in the cloud. For example, after the user inputs the identity information, the temporary card manufacturing device communicates with other systems to obtain the number of the temporary card corresponding to the identity information for this time.

[0215] In some embodiments, please refer to Figure 16 , the step B400 specifically comprises:

[0216] The step B410b comprises: comparing the information identifiers on the first and second cores with the temporary card information, respectively.

[0217] In some embodiments, the temporary card manufacturing device can compare the information identifiers on the first and second cores. In other embodiments, after the information identifiers on the first and second cores are collected, the temporary card manufacturing device can also send the information identifiers on the two cores to an external device or the cloud for comparison.

[0218] The step B420b comprises: determining whether the information identifiers on the first and second cores match the temporary card information. If they match, the step B430 is executed; otherwise, the step B440 is executed.

[0219] That is, only when the information identifiers on the first and second cores match the temporary card information, the first temporary card is provided to the user; otherwise, the first temporary card is recycled. The following examples are given for illustration. In the following examples, the obtained temporary card information is the number A of the temporary card, which can be read in the information identifiers a1 and a2. The number B can be read in b1 and b2, wherein the number A is in a1 and a2 after manufacturing, and the number B is in b1 and b2 after manufacturing.

[0220] In the first example, the storage position 131 of the upper base 130 is sequentially placed with a1, a2, b1 and b2 from top to bottom. The operator inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper storage position 132 of the upper base 130. When passing through the information collection device 140, the information collection device 140 collects the information identifier of a1. Then, a1 is transported to the printer 200 to print the information, so as to obtain A1. After collecting the information identifier of a1, a2 is transported to the upper storage position 132 of the upper base 130 and the information identifier of a2 is collected. The information identifier of a1 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a1 matches the temporary card information. The information identifier of a2 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a2 also matches the temporary card information. At this time, since the information identifier of a1 and a2 both match the temporary card information, the temporary card manufacturing device starts to output A1 to the outside of the temporary card manufacturing device.

[0221] In the second example, due to the negligence of the operator, a2 is placed below when placing the card core, so that the storage position 131 of the upper base 130 is sequentially placed with a1, b1, b2 and a2 from top to bottom. The operator inputs the temporary card manufacturing instruction to the temporary card manufacturing device, and the temporary card manufacturing device first transports a1 to the upper storage position 132 of the upper base 130. When passing through the information collection device 140, the information collection device 140 collects the information identifier of a1. Then, a1 is transported to the printer 200 to print the information, so as to obtain A1. After collecting the information identifier of a1, b1 is transported to the upper storage position 132 of the upper base 130 and the information identifier of b1 is collected. The information identifier of a1 is compared with the temporary card information. Since both correspond to the number A, the information identifier of a1 matches the temporary card information. The information identifier of b1 is compared with the temporary card information. Since b1 corresponds to the number B and the temporary card information corresponds to the number A, the information identifier of b1 does not match the temporary card information, so A1 is recycled through the page turning recycling device 300.

[0222] In some embodiments, after recycling the first card core, the second card core is also recycled, and the temporary card manufacturing device issues an alarm to notify the operator to troubleshoot, for example, b1 is also recycled in the above-mentioned second example.

[0223] In other embodiments, please refer to ​ Another control method of the temporary card manufacturing device is also provided, comprising:

[0224] Step N100, detecting whether a temporary card manufacturing instruction is received. If the temporary card manufacturing instruction is received, step N200 is executed, otherwise, step N100 is continuously executed.

[0225] Receiving the temporary card manufacturing instruction means that the temporary card manufacturing task is accepted. In some embodiments, the temporary card manufacturing instruction is triggered based on the information input by the user each time, which can include but is not limited to the user's identity information, the number of the temporary card, and the pre-specified number, etc. In some embodiments, the temporary card manufacturing device triggers the temporary card manufacturing instruction each time it receives the information input by the user. In other embodiments, the temporary card manufacturing device can also read the task list filled by the user to trigger the temporary card manufacturing instruction, for example, there is a filled task list stored in the background or cloud, and the temporary card manufacturing device triggers the temporary card manufacturing instruction each time it reads a task in the task list. Each time the temporary card manufacturing instruction is triggered, two temporary cards are prepared and output in succession.

[0226] Step N200, collect the information identifier on the target card core. The target card core is used to manufacture the target temporary card corresponding to the temporary card manufacturing instruction. For example, if the temporary card manufacturing device currently has four card cores a1, a2, b1 and b2, and receives the temporary card manufacturing instruction at this time, a1 or a2 can be regarded as the target card core, and A1 or A2 can be regarded as the target temporary card. If the temporary card manufacturing device currently has three card cores a2, b1 and b2, and receives the temporary card manufacturing instruction at this time, a2 or b1 can be regarded as the target card core, and A2 or B2 can be regarded as the target temporary card. As can be seen, at least one of the first temporary card and the second temporary card in the above other embodiments can be regarded as the target temporary card in this embodiment.

[0227] The information identifier on the card core includes but is not limited to code, two-dimensional code, information code, etc. The information identifier can include graphics, text, symbols, etc. The information identifier on the card core can be manufactured when the card core is factory-finished, or can be added before being put into the temporary card manufacturing device.

[0228] Step N300, determine whether the information identifier on the target card core meets the preset condition. If yes, execute step N400, otherwise execute step N500.

[0229] In this embodiment, the timing and device for collecting the information identifier are not limited, for example, the information identifier of each card core is collected when the card core passes through the information collection device 140.

[0230] In some embodiments, when the temporary card manufacturing instruction is received, the temporary card information corresponding to the temporary card manufacturing instruction is also obtained. The temporary card information can include, but is not limited to, the number of the temporary card, the identity information of the user, the validity period of the temporary card, etc. These information can be stored locally on the temporary card manufacturing device, or can be stored in the cloud. For example, after the user inputs the identity information, the temporary card manufacturing device communicates with other systems to obtain the number of the temporary card corresponding to the identity information for this time. Then in step N300, the information identifier is compared with the temporary card information, and if the information identifier matches the temporary card information, the information identifier meets the preset condition. In other embodiments, the preset condition can also include the authenticity, clarity, and presence or absence of missing pages of the core.

[0231] Step N400, printing the target core to manufacture the target temporary card.

[0232] Step N500, recycling the target core.

[0233] That is, only when the core meets the preset condition, the corresponding temporary card is manufactured to ensure that the single temporary card taken by the user itself meets the requirements.

[0234] According to the above embodiments, it can be ensured that the single temporary card taken by the user itself meets the pre-set requirements, and it can be avoided that the user forgets to take away two consecutive temporary cards. In addition, it can also ensure the relevance between the two consecutive temporary cards taken by the user, so that the user can complete the task of obtaining a set of temporary cards (two temporary cards).

[0235] This document has been described with reference to various exemplary embodiments. However, those skilled in the art will recognize that changes and modifications can be made to the exemplary embodiments without departing from the scope hereof. For example, various operational steps and components for carrying out the operational steps can be implemented in different sequences, or omitted, modified, or combined with other steps or components depending on the particular application or to achieve particular operational goals.

[0236] Although the principles herein have been shown in various embodiments, many modifications of structure, arrangement, proportion, elements, materials, and components specifically adapted to particular environments and operating requirements can be used without departing from the principles and scope of the present disclosure. The above modifications and other changes or modifications will be included within the scope of the present disclosure.

[0237] The foregoing detailed description has been presented for purposes of illustration and description. However, various modifications and changes are possible in the implementation of the disclosure. Accordingly, the disclosure is intended to embrace all modifications and alterations within the scope and spirit of the disclosure. Thus, the scope of the disclosure is not intended to be limited to the particular form set forth herein, but includes all features that might be provided within the scope and spirit of the disclosure. Likewise, a variety of advantages and benefits are set forth in the description above. However, the benefits and advantages are not limited to those described herein. Rather, the benefits and advantages are understood to include all benefits and advantages that can be realized from the techniques described herein. Furthermore, the description herein is in connection with various embodiments. However, the benefits and advantages of the disclosure are not limited to the embodiments described herein. Rather, the benefits and advantages are understood to include all benefits and advantages that can be realized from the techniques described herein. The disclosure is understood to include all alternatives, modifications and variations from the embodiments described herein. Likewise, the benefits and advantages of the disclosure are not limited to the benefits and advantages described herein, but include all benefits and advantages that can be realized from the subject matter of the claims. It should be further understood that a particular feature, structure, or characteristic described herein can be combined with one or more other features, structures or characteristics described herein in any suitable manner. As used herein, the term "coupled" and variations thereof describes two or more elements or signals that can be electrically coupled, magnetically coupled, optically coupled, communicatively coupled, functionally coupled, and / or any other coupling of elements or signals.

[0238] Those skilled in the art will recognize that many modifications and variations of the described implementations can be made. It is therefore understood that the scope of the disclosure is to be limited only by the claims and equivalents thereof.

Claims

1. A control method for a temporary license plate production equipment, characterized in that... ,include: Check if a temporary license plate production instruction has been received; If the temporary license production instruction is received, information identifiers on the first certificate core and information identifiers on the second certificate core are collected. The first certificate core is used to produce the first temporary license, and the second certificate core is used to produce the second temporary license. The first certificate core is set to produce the temporary license before the second certificate core. The first temporary license and the second temporary license are two consecutive temporary licenses to be produced after the temporary license production instruction is received. Based on the information identifiers on the first certificate core and the second certificate core, determine whether to produce the first temporary license plate, and / or determine whether to output the first temporary license plate to the outside of the temporary license plate production equipment; The process of determining whether to issue the first temporary license plate based on the information identifiers on the first and second license plates includes: Before printing the first certificate core, the information identifier on the first certificate core and the information identifier on the second certificate core are compared. If they match, the first certificate core is printed to make the first temporary license plate; otherwise, the first certificate core is recycled. or If the temporary license plate production instruction is received, the method further includes: obtaining the temporary license plate information corresponding to the temporary license plate production instruction; Determining whether to issue the first temporary license plate based on the information markings on the first and second license plates includes: Before printing the first certificate core, the information identifier on the first certificate core is compared with the temporary license information; Compare the information identifier on the second certificate core with the temporary license information; If the information identifiers on both the first and second certificate cores match the temporary license information, the first certificate core is printed to produce the first temporary license; otherwise, the first certificate core is recycled.

2. The method as described in claim 1, characterized in that, After printing and producing the first temporary license plate from the first certificate core, the method further includes: The first temporary license plate is transported to the storage location for placement. Detect whether the temporary license output command is triggered, wherein the temporary license output command is set to be triggered based on a preset operation after the second temporary license is made; If the temporary license output command is detected to be triggered, the first temporary license is output from the storage position to the outside of the temporary license production device; otherwise, the first temporary license continues to be placed in the storage position. The temporary license output command is set to be triggered based on a preset operation after the second temporary license is produced, including: The temporary license output command is set to be triggered when the second temporary license is detected to have moved to a preset position between the printer and the storage location; After outputting the first temporary license from the storage location to the outside of the temporary license production device, the method further includes: The second temporary license is output to the outside of the temporary license production equipment within a preset time.

3. The method as described in claim 1, characterized in that, The step of determining whether to output the first temporary license plate to the outside of the temporary license plate production equipment based on the information identifiers on the first and second license plates includes: After printing the first certificate core, the information identifier on the first certificate core is compared with the information identifier on the second certificate core. If they match, the first temporary license is output to the outside of the temporary license production equipment; otherwise, the first temporary license is recycled.

4. The method as described in claim 1, characterized in that, If the temporary license plate production instruction is received, the method further includes: obtaining the temporary license plate information corresponding to the temporary license plate production instruction; The step of determining whether to output the first temporary license plate to the outside of the temporary license plate production equipment based on the information identifiers on the first and second license plates includes: After printing the first certificate core, the information on the first certificate core is compared with the temporary license information; Compare the information identifier on the second certificate core with the temporary license information; If the information identifiers on both the first and second certificate cores match the temporary license information, the first temporary license is output to the outside of the temporary license production equipment; otherwise, the first temporary license is recycled.

5. The method according to any one of claims 1 to 4, characterized in that, The information identifier includes at least one of the following: the code on the certificate core, the QR code, and the information code.

6. A temporary license plate production device, characterized in that, include: Shanghai Stock Exchange (SSE) device, which is used to transport the certificate core; A printer for printing information on the certificate core to produce a temporary license plate; A page-turning device for turning the certificate core over; A recycling device for recycling the certificate core; Issuing device, the issuing device is used to output the completed temporary license plate; A transfer device for transferring the certificate core between the certificate issuing device, printer, page turning device, recycling device and certificate dispensing device; An information collection device is located on the movement path of the certificate core, and the information collection device is used to collect information identifiers on the certificate core. Controller, the controller is used for: The system detects whether a temporary license plate production instruction has been received. If the instruction is received, the system controls the information collection device to collect information identifiers on the first certificate core and the second certificate core. The first certificate core is used to produce the first temporary license plate, and the second certificate core is used to produce the second temporary license plate. The first certificate core is set to produce the temporary license plate before the second certificate core. The first and second temporary license plates are two consecutive temporary license plates to be produced after the temporary license plate production instruction is received. Based on the information identifiers on the first certificate core and the second certificate core, determine whether to produce the first temporary license plate, and / or determine whether to output the first temporary license plate to the outside of the temporary license plate production equipment; The process of determining whether to issue the first temporary license plate based on the information identifiers on the first and second license plates includes: Before printing the first certificate core, the information identifier on the first certificate core and the information identifier on the second certificate core are compared. If they match, the first certificate core is printed to make the first temporary license plate; otherwise, the first certificate core is recycled. or If the temporary license plate production instruction is received, the temporary license plate information corresponding to the temporary license plate production instruction is obtained; Determining whether to issue the first temporary license plate based on the information markings on the first and second license plates includes: Before printing the first certificate core, the information identifier on the first certificate core is compared with the temporary license information; Compare the information identifier on the second certificate core with the temporary license information; If the information identifiers on both the first and second certificate cores match the temporary license information, the first certificate core is printed to produce the first temporary license; otherwise, the first certificate core is recycled.

7. A computer-readable storage medium, characterized in that, The medium stores a program that can be executed by a processor to implement the method as described in any one of claims 1-5.

Citation Information

Patent Citations

  • Printing Device For Providing Multiple Documents Of One Type

    CN105763764A

  • Temporary license plate manufacturing device, manufacturing method thereof and storage medium

    CN113715524A

  • Certificate issuing device and temporary card manufacturing equipment

    CN220584729U

  • Temporary card manufacturing equipment

    CN221070223U

  • Product and document fulfilment system

    US20030081223A1