A storage cabinet
By designing a card management device that includes a storage cabinet, access mechanism, and human-computer interaction device, the problems of large space occupation and high cost of large-capacity devices are solved, and efficient and stable storage and management of small batches of cards are realized.
Patent Information
- Application Number
- CN202110829453.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-07-22
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2041-07-22
AI Technical Summary
Existing high-capacity card management equipment on the market is complex in structure, expensive, and takes up a lot of space, which cannot meet the needs of small-batch card management.
A storage cabinet was designed, comprising an outer shell, a storage compartment, a storage and retrieval mechanism, a separate human-machine interface device, an inlet/outlet, and electrical control equipment. The storage and retrieval mechanism is controlled by the human-machine interface device to store and retrieve documents. It supports the storage of card-type and booklet-type documents and adopts a separate structure to reduce space occupation.
It improves the efficiency and stability of card storage, saves space costs, and is suitable for the storage and issuance of small batches of cards, meeting the needs of small batch card management.
Smart Images

Figure CN115670139B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of certificate management equipment, and more particularly to a storage cabinet. BACKGROUND
[0002] At present, various types of legal certificates (including, for example, ID cards, social security cards, health cards, electronic passports, etc., which are implemented in the form of IC cards, magnetic cards, contactless IC cards, etc., and also in the form of paper-based electronic passports, etc.) are widely used in our lives. With the increase in the number of urban residents, the number of various types of legal certificates is also growing, which requires relevant departments to centrally manage the certificates. The number of users corresponding to the relevant certificate-issuing departments varies greatly, i.e., there is a need for large-capacity certificate-issuing equipment and a need for small-capacity certificate-issuing equipment. The certificate management equipment currently available on the market, which can store paper-based certificates and card-based certificates at the same time, is basically designed for large-capacity certificate management. Such equipment has a complex structure, a high production cost, and occupies a large space. Therefore, it is necessary to design a certificate management equipment for small-batch certificate management and with a low cost, which can store card-based certificates and paper-based certificates at the same time. This is the technical problem to be solved by the present application. SUMMARY
[0003] To solve the above technical problems, the present application provides a storage cabinet, which adopts the technical scheme of:
[0004] A storage cabinet, comprising:
[0005] a housing and a storage library installed in the housing;
[0006] an access mechanism connected with the storage library;
[0007] a separate human-computer interaction device arranged in the housing;
[0008] at least one inlet and outlet arranged in the housing; and an electric control device arranged in the housing and electrically connected with the human-computer interaction device;
[0009] wherein the access mechanism is controlled by the human-computer interaction device to reciprocally convey between the inlet and outlet and the storage library to store or take out materials.
[0010] Optionally, the storage cabinet further comprises:
[0011] a mounting bracket for mounting the storage library;
[0012] the inner wall of the housing and the mounting bracket surround the storage cabinet to form at least one mounting cavity; wherein each mounting cavity corresponds to a door body arranged on the housing, and each door body is detachably connected with each mounting cavity.
[0013] Optionally, the storage library comprises:
[0014] a first storage bin for storing card-type certificates; and
[0015] at least one second storage bin for storing booklet-type certificates;
[0016] wherein the first storage bin and the plurality of second storage bins are connected by a first connecting member, and each of the second storage bins are connected by a second connecting member.
[0017] Optionally, the access mechanism comprises:
[0018] a first access mechanism for accessing card-type certificates; and
[0019] a second access mechanism for accessing booklet-type certificates;
[0020] wherein the first access mechanism is arranged in cooperation with the first storage bin, the second access mechanism is arranged in cooperation with the second storage bin, and the second access mechanism reciprocally moves along each of the second storage bins.
[0021] Optionally, the in-out port comprises:
[0022] an in-out card port connected with the first access mechanism, for storing and taking out card-type certificates;
[0023] an in-out booklet port connected with the second access mechanism, for storing and taking out booklet-type certificates.
[0024] Optionally, the first access mechanism comprises:
[0025] a first conveying frame;
[0026] a first conveying assembly arranged in the first conveying frame and conveying certificates in common orientation in the first conveying frame; and
[0027] a first driving assembly connected with the first conveying assembly and providing power source for the first conveying assembly.
[0028] Optionally, the second access mechanism comprises:
[0029] a second conveying frame;
[0030] a second conveying assembly arranged in the second conveying frame, the second conveying assembly being spaced from the second conveying frame and forming a pushing channel;
[0031] a second driving assembly arranged in the second conveying frame and connected with the second conveying assembly;
[0032] a third driving assembly arranged in the second conveying frame; and
[0033] a pushing mechanism connected with the third driving assembly, the pushing mechanism being arranged close to one end of the pushing channel.
[0034] Optionally, a third conveying assembly is arranged at the bottom of the second conveying frame, the third conveying assembly driving the second conveying frame to slide along a direction perpendicular to the second conveying channel.
[0035] Optionally, the human-computer interaction device is arranged at the outer end of the shell, wherein the human-computer interaction device is provided with an operation terminal, and the operation terminal comprises:
[0036] any one or more of a bar code recognition unit, a fingerprint recognition unit, a certificate card recognition unit, and a face recognition unit.
[0037] Optionally, the electric control device comprises:
[0038] a control circuit board and electronic elements arranged on the control circuit board; and
[0039] at least one heat dissipation fan.
[0040] The storage cabinet of the present application comprises a shell and a storage library arranged in the shell; an access mechanism cooperating with the storage library, a detachable human-computer interaction device arranged at the outer end of the shell; an inlet and an outlet arranged on the shell, and further comprising an electric control device arranged in the shell and electrically connected with the human-computer interaction device. The access mechanism is controlled by the human-computer interaction device to reciprocally convey between the inlet and the outlet and the storage library, so as to store or take out materials. Specifically, when storing materials, the access mechanism is controlled by the human-computer interaction device to convey the materials in the inlet and the outlet to the storage library; when taking out materials, the access mechanism is controlled by the human-computer interaction device to convey the materials in the storage library to the inlet and the outlet. When the storage cabinet is applied to a certificate card management cabinet, the efficiency of storing certificate cards is increased, and in addition, the compact design structure of the storage cabinet makes the cabinet small in size, thereby saving space cost, and the storage cabinet is suitable for small-batch storage and distribution of certificate cards, and meets the needs of some departments which have a small number of certificate cards but must store and distribute the certificate cards. BRIEF DESCRIPTION OF DRAWINGS
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the embodiments of the present application are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor.
[0042] Figure 1is the overall structure schematic view of the storage cabinet provided by the application;
[0043] Figure 2 is the first partial structure schematic view of the storage cabinet provided by the application;
[0044] Figure 3 is the second partial structure schematic view of the storage cabinet provided by the application;
[0045] Figure 4 is the structure schematic view of the storage library of the storage cabinet provided by the application;
[0046] Figure 5 is the first partial structure schematic view of the storage library of the storage cabinet provided by the application;
[0047] Figure 6 is the structure schematic view of the first storage bin of the storage library of the storage cabinet provided by the application;
[0048] Figure 7 is the structure schematic view of the second storage bin of the storage library of the storage cabinet provided by the application;
[0049] Figure 8 is the third partial structure schematic view of the storage cabinet provided by the application;
[0050] Figure 9 is the structure schematic view of the first access mechanism of the storage cabinet provided by the application;
[0051] Figure 10 is the partial structure schematic view of the first access mechanism of the storage cabinet provided by the application;
[0052] Figure 11 is the structure schematic view of the second access mechanism of the storage cabinet provided by the application;
[0053] Figure 12 is the partial structure schematic view of the second access mechanism of the storage cabinet provided by the application;
[0054] Figure 13 is the structure schematic view of the human-computer interaction device of the storage cabinet provided by the application;
[0055] Figure 14 is the structure schematic view of the human-computer interaction device of the storage cabinet provided by the application from another perspective;
[0056] Figure 15 is the fourth partial structure schematic view of the storage cabinet provided by the application;
[0057] Figure 16 is the partial explosion structure schematic view of the storage cabinet provided by the application;
[0058] Figure 17is a structural schematic view of a protection mechanism of a storage provided by the present application.
[0059] BRIEF DESCRIPTION OF DRAWINGS
[0060]
[0061]
[0062] DETAILED DESCRIPTION
[0063] In order to make the objects, technical solutions and advantages of the present application clearer, the following will further describe the present application with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and should not be used to limit the present application. Figures 1-17 The present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and should not be used to limit the present application.
[0064] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or it can be indirectly fixed to or disposed on the other element through a third part. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or it can be indirectly connected to the other element through a third part.
[0065] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0066] In addition, the terms "first", "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.
[0067] As shown in FIGS. 1 and 2, the present application provides a storage cabinet 100. Figure 1 and Figure 17 As shown in FIGS. 1 and 2, the present application provides a storage cabinet 100.
[0068] Specifically, as shown in FIGS. 1 and 2, the present application provides a storage cabinet 100. Figure 1 and 2As shown in the drawings, the storage cabinet 100 comprises: a housing 10, a storage library 20 installed in the housing 10, an access mechanism 30 matched with the storage library 20, a separate human-computer interaction device 40 arranged on the housing 10, at least one inlet and outlet 50 arranged on the housing 10, and an electric control device 60 arranged in the housing 10 and electrically connected with the human-computer interaction device 40; wherein the access mechanism 30 is controlled by the human-computer interaction device 40 to reciprocate between the inlet and outlet 50 and the storage library 20 to store or take out materials. Specifically, when storing materials, the access mechanism 30 is controlled by the human-computer interaction device 40 to transfer materials from the inlet and outlet to the storage library 20; when taking out materials, the access mechanism 30 is controlled by the human-computer interaction device 40 to transfer materials from the storage library 20 to the inlet and outlet 50. With such an arrangement, the user can better control the access mechanism 30 to store and take out materials by operating the human-computer interaction device 40.
[0069] As shown in the drawings, Figure 2 and 3 Further, the storage cabinet 100 further comprises: a mounting frame 101 for mounting the storage library 20; the inner wall of the housing 10 and the mounting frame 101 enclose the storage cabinet 100 into at least one mounting cavity 102; wherein each mounting cavity 102 corresponds to each door body 103 arranged on the housing 10, and each door body 103 is detachably connected with each mounting cavity 102. With such an arrangement, in the embodiment, the storage cabinet 100 adopts a rectangular box structure, and is divided into multiple areas by the mounting frame 101 and the inner wall of the housing 10, and multiple mounting cavities 102 are formed corresponding to different areas, wherein the mounting cavities 102 include an electric control cavity 104 with the electric control device 60 and a plurality of functional cavities 105 with storage functions, and in addition, each functional cavity 105 corresponds to a detachable door body 103 arranged on the housing 10. With such an arrangement, each functional module arranged in the mounting cavity 102 can be individually repaired through each door body 103, and in addition, it is also convenient for production and assembly.
[0070] As shown in the drawings, Figure 1 As an optional embodiment of the present application, the housing 10 comprises a first shell 106 and a second shell 107 embedded with the first shell 106, which greatly reduces the weight of the housing 10 compared to the prior art structure of the housing 10 formed by one-piece injection molding, and also facilitates the disassembly and installation of the housing 10.
[0071] As shown in the drawings, Figure 4 Further, the storage library 20 comprises a first storage bin 201 for storing card-type certificates and at least one second storage bin 202 for storing booklet-type certificates, wherein the first storage bin 201 and the plurality of second storage bins 202 are connected by a first connecting piece 203, and each second storage bin 202 is connected by a second connecting piece 204.
[0072] As Figure 4 and 5 shown, further, the first connecting piece 203 includes a connecting sleeve 2031 and a screw nut assembly passing through the connecting sleeve 2031, wherein one end of the connecting sleeve 2031 is connected with the first storage bin 201 through a nut, and the other end of the connecting sleeve 2031 is connected with the second storage bin 202 through a screw. In addition, the connecting sleeve 2031 is also used for positioning the first storage bin 201 and the second storage bin 202, so as to improve the coaxiality between the first storage bin 201 and the second storage bin 202. In this way, the first storage bin 201 and the second storage bin 202 are detachably connected, forming a storage bin 20 for storing the card type certificate and the book type certificate, and in addition, it is convenient for disassembly and maintenance.
[0073] As Figure 6 shown, as an optional embodiment of the present application, the first storage bin 201 includes two first storage discs 2011 for storing the card type certificate which are oppositely connected in a staggered manner, and a plurality of card holding devices 2012 arranged between the two first storage discs 2011. The two first storage discs 2011 are axially connected and are positioned and connected through a first positioning piece 80. By arranging the two first storage discs 2011 which are structurally identical in a staggered manner and positioning and connecting them through the first positioning piece 80 in the middle, the first storage bin 201 for storing the card type certificate is formed. In this way, the card storage position for storing the card type certificate which has a simple mounting structure and is stable in positioning is formed, the safety and convenience of storing the card type certificate are realized, and the storage efficiency is improved.
[0074] As Figure 6 shown, further, the first storage disc 2011 includes a first card holding surface 2013 for storing the card type certificate and a first positioning surface 2014 arranged opposite to the first card holding surface 2013. The first positioning surface 2014 mainly realizes the function of positioning the first storage disc 2011, and the first card holding surface 2013 mainly realizes the function of holding and storing the card.
[0075] As Figure 7 shown, as an optional embodiment of the present application, the second storage bin 202 includes two second storage discs 2021 for storing the book type certificate which are oppositely connected in a staggered manner, and a plurality of book holding devices 2022 arranged between the two second storage discs 2021. The two second storage discs 2021 are axially connected and are positioned and connected through a second positioning piece 90. By arranging the two second storage discs 2021 which are structurally identical in a staggered manner and positioning and connecting them through the second positioning piece 90 in the middle, the second storage bin 202 for storing the book type certificate is formed. In this way, the plurality of book type storage positions for storing the book type certificate which have a simple structure and are stable in positioning are formed, the safety and convenience of storing the book type certificate are realized, and the storage efficiency is improved.
[0076] As shown in Figure 7 , further, the second storage tray 2021 comprises a second card holding surface 2023 for storing the booklet type certificate and a second positioning surface 2024 arranged relative to the second card holding surface 2023, the second positioning surface 2024 mainly realizes the function of positioning, and the second card holding surface 2023 mainly realizes the function of holding the booklet.
[0077] As shown in Figure 8 , as an optional embodiment of the present application, the access mechanism 30 comprises a first access mechanism 301 for accessing the card type certificate and a second access mechanism 302 for accessing the booklet type certificate. The first access mechanism 301 is arranged in cooperation with the first storage bin 201, and at the same time, the first access mechanism 301 is arranged in cooperation with one of the in-out ports 50, so as to realize the reciprocating transmission of the material between the first storage bin 201 and the one of the in-out ports 50, thereby transmitting the material; the second access mechanism 302 is arranged in cooperation with the second storage bin 202, and at the same time, the second access mechanism 302 is arranged in cooperation with the other of the in-out ports 50, so as to realize the reciprocating transmission of the material between the second storage bin 202 and the other of the in-out ports 50, thereby transmitting the material.
[0078] As shown in Figure 8 , in particular, the in-out port 50 comprises an in-out card port 501 connected with the first access mechanism 301, for storing and taking out the card type certificate; and an in-out booklet port 502 connected with the second access mechanism 302, for storing and taking out the booklet type certificate.
[0079] As shown in Figure 8 , as another optional embodiment of the present application, the first access mechanism 301 is arranged in cooperation with the first storage bin 201, and at the same time, the first access mechanism 301 is arranged in cooperation with the in-out card port 501, so as to realize the reciprocating transmission of the card type certificate between the first storage bin 201 and the in-out card port 501, thereby realizing the access of the card type certificate; the second access mechanism 302 is arranged in cooperation with the second storage bin 202, and at the same time, the second access mechanism 302 is arranged in cooperation with the in-out booklet port 502, so as to realize the reciprocating transmission of the booklet type certificate between the second storage bin 202 and the in-out booklet port 502, thereby realizing the access of the booklet type certificate. In this way, on the one hand, the card type certificate and the booklet type certificate can be accurately accessed, and on the other hand, the efficiency of accessing the certificate is improved.
[0080] As shown in Figure 9 , further, the first access mechanism 301 comprises a first transmission frame 303, a first transmission assembly 304 arranged in the first transmission frame 303 and transmitting the card type certificate in a common orientation of the first transmission frame 303, and a first driving assembly 305 connected with the first transmission assembly 304 and providing a power source for the first transmission assembly 304.
[0081] As shown in Figure 9 Specifically, the first conveying frame 303 has a first conveying cavity 306, and the first conveying channel 307 is arranged in the first conveying cavity 306, and the extension direction of the first conveying channel 307 is the same as the conveying direction of the card-type certificate. When the first conveying assembly 304 conveys the card-type certificate, the card-type certificate to be conveyed can be inserted into the first conveying channel 307 in a direction, and then conveyed along the extension direction of the first conveying channel 307 under the driving of the first conveying assembly 304. In this way, the inlet and outlet ports 50 can be respectively connected to the two ends of the first conveying channel 307, so that the card-type certificate can be stably conveyed to the target without shaking. Preferably, the first conveying frame 303 includes a first cover plate 3031 located at the top, a first bottom plate 3032 opposite to the first cover plate 3031, and two first side plates 3033 located between the first cover plate 3031 and the first bottom plate 3032 and arranged oppositely and spaced apart, and the first conveying cavity 306 is formed by the first cover plate 3031, the first bottom plate 3032 and the first side plates 3033. In addition, the first conveying frame 303 forms the first conveying channel 307 on the two opposite inner side walls of the first conveying cavity 306. The structure of the first conveying frame 303 not only plays a role in directional conveying, but also effectively improves the conveying stability, so that the card-type certificate can always be conveyed to the specified position along the first conveying channel 307, and the success rate of accessing the card-type certificate is improved.
[0082] As shown in Figure 9As shown, as an optional embodiment of the present application, the first conveying assembly 304 comprises a first conveying mechanism 3041 and a second conveying mechanism 3042 arranged in the first conveying cavity 306, wherein the first conveying mechanism 3041 and the second conveying mechanism 3042 each comprises a plurality of conveying rollers, and each conveying roller is symmetrically arranged along the first side plate 3033 of the first conveying frame 303. In addition, the first conveying mechanism 3041 and the second conveying mechanism 3042 are driven by the first driving assembly 305, and the first driving assembly 305 comprises at least one first driving mechanism 3051 arranged above the first cover plate 3031 of the first conveying frame 303 and in driving connection with the first conveying assembly 304, the first driving mechanism 3051 comprises a first driving motor 3052 and a first driving shaft 3053, and the first driving shaft 3053 is connected with the first conveying assembly 304 through belt transmission. Specifically, the first driving mechanism 3051 is in driving connection with the first conveying mechanism 3041, and the first conveying mechanism 3041 and the second conveying mechanism 3042 are in driving connection through belt transmission. It should be noted that one of the first conveying mechanism 3041 and the second conveying mechanism 3042 driven by the first driving mechanism 3051 moves the card-type certificate along the first conveying channel 307 to the first conveying position, and preferably, the first conveying position is provided with a first sensor for sensing the arrival of the card-type certificate, and when the first sensor senses that the card-type certificate reaches the first conveying position, the card-type certificate moved to the first conveying position by the other one of the first conveying mechanism 3041 and the second conveying mechanism 3042 is moved to the first storage bin 202 or the card inlet / outlet 501.
[0083] As an optional embodiment of the present application, the first conveying mechanism 3041 of the present application is in abutment with one end of the card inlet / outlet 501 (not shown in the figure), and the second conveying mechanism 3042 is in abutment with the end of the first storage bin 201 (not shown in the figure).
[0084] As shown, Figure 9 when it is necessary to store the card-type certificate, the first driving mechanism 3051 drives the first conveying mechanism 3041 to move the card-type certificate inserted into the card inlet / outlet 501 along the inlet of the first conveying channel 307 to the first conveying position. Since one end of the second conveying mechanism 3042 is connected with the first conveying mechanism 3041, and the other end is in abutment with the end of the first storage bin 201, the card-type certificate reaching the first conveying position is moved along the extension direction of the first conveying channel 307 to the first storage bin 201 by the first driving mechanism 3051 driving the second conveying mechanism 3042 through the first conveying mechanism 3041, thereby achieving the storage of the card-type certificate.
[0085] (Not shown in the figure) When it is necessary to retrieve a card-type document, the first driving mechanism 3051 drives the second conveying mechanism 3042 to move the card-type document stored in the first storage bin 201 along the first conveying channel 307 away from the first storage bin 201. When the card-type document is moved to the first conveying position, the first conveying mechanism 3041 connected to the second conveying mechanism 3042 moves the card-type document moved to the first conveying position along the first conveying channel 307 toward the inlet / outlet card opening 501, so that the card-type document can be retrieved.
[0086] like Figure 10 As shown, as another optional embodiment of the present invention, in order to prevent the card-type documents moved out along the first conveying channel 307 from failing to accurately abut the corresponding card-holding position of the first storage bin 201 or the card-type documents moved out along the first conveying channel 307 from failing to accurately abut the inlet / outlet card slot 501, a third conveying mechanism 3043 is provided outside the first conveying frame 303. The third conveying mechanism 3043 uses a first slide rail 30431 and a first belt assembly 30432 for conveying. Specifically, the first slide rail 30431 is provided at the bottom of the first conveying frame 303, and the direction of the first slide rail 30431 is parallel to the first conveying channel 307. The first belt assembly 30432 is sleeved on the outside of the first conveying frame 303. At the same time, a second driving mechanism 3054 that drives the third conveying mechanism 3043 is also provided outside the first conveying frame 303. The second driving mechanism 3054 includes a second driving motor 3055 and a second driving shaft 3056. The second drive motor 3055 drives the second drive shaft 3056. The second drive shaft 3056, via the first belt assembly 30432, drives the first conveyor frame 303 to move along the first slide rail 30431 towards the first storage bin 201 or towards the inlet / outlet slot 501. Specifically, when storing card-type documents, the third conveyor mechanism 3043 drives the first conveyor frame 303 towards the first storage bin 201, ensuring that the card-type documents removed from the first conveyor channel 307 are completely stored in the corresponding holding position of the first storage bin 201; when retrieving card-type documents, the third conveyor mechanism 3043 drives the first conveyor frame 303 towards the inlet / outlet slot 501, ensuring that the card-type documents removed from the first conveyor channel 307 are completely abutted against the inlet / outlet slot 501. This configuration improves the stability of the first storage and retrieval mechanism 301 in transmitting documents, ensuring the documents move back and forth between the inlet / outlet slots 501 and the first storage bin 201, thus enhancing the effectiveness and success rate of document storage and retrieval. It should be noted that this first storage and retrieval mechanism 301 is also suitable for storing paper-based documents, which will not be elaborated upon here.
[0087] like Figure 11As shown, the second access mechanism 302 further includes: a second conveyor frame 401; a second conveying component 402 disposed within the second conveyor frame 401, the second conveying component 402 and the second conveyor frame 401 being spaced apart to form a second conveying channel 403; a second driving component 404 disposed within the second conveyor frame 401 for driving the second conveying component 402, the second driving component 404 being connected to the second conveying component 402; a third driving component 405 disposed within the second conveyor frame 401; and a pushing mechanism 406, wherein the pushing mechanism 406 is connected to the third driving component 405, and the pushing mechanism 406 is disposed near one end of the second conveying channel 403.
[0088] like Figure 11 As shown, specifically, in this embodiment, a second conveying component 402 and a second driving component 404 are provided on the second conveying frame 401. The second driving component 404 drives the second conveying component 402 to move the document, so that the document moves from one end of the second conveying channel 403 to the other end to the second conveying position. Furthermore, a third driving component 405 is also provided on the second conveying frame 401. The third driving component 405 is connected to the pushing mechanism 406. The pushing mechanism 406 is located near one end of the second conveying channel 403. The third driving component 405 drives the pushing mechanism 406 to move, so that the pushing mechanism 406 pushes the document in a direction away from the second conveying frame 401. The second conveyor frame 401 includes a second conveying cavity 605, and a second conveying channel 403 is located within the second conveying cavity 605. The second conveying channel 403 has a first end and a second end. One of the first end and the second end is close to the pushing mechanism 406, and the other end is far from the pushing mechanism 406. In this invention, the first end or the second end close to the pushing mechanism 406 corresponds to the second storage bin 202, and the other end far from the pushing mechanism 406 corresponds to the inlet / outlet 502. Using the aforementioned second conveyor frame 401 improves the stability and effectiveness of storing and retrieving document-based certificates.
[0089] like Figure 12 As shown, preferably, the second conveyor frame 401 includes a second cover plate 4011 at the top, a second bottom plate 4012 opposite to the second cover plate 4011, and two opposing and spaced-apart second side plates 4013 located between the second cover plate 4011 and the second bottom plate 4012. The second cover plate 4011, the second bottom plate 4012, and the second side plates 4013 together form a second conveying cavity 605, and a second conveying channel 403 is formed on the two opposing inner sidewalls of the second conveying cavity 605. This second conveyor frame 401 structure not only plays a role in directional conveying but also effectively improves the conveying stability, ensuring that the card-type document is always conveyed to the designated position along the second conveying channel 403, thereby improving the success rate of card-type document storage and retrieval.
[0090] As Figure 11 and 12 shown, in an alternative embodiment of the present application, the second conveying assembly 402 comprises a plurality of rollers, and the plurality of rollers are respectively arranged opposite and spaced apart along the two second side plates 4013 of the second conveying frame 401, and are all driven to rotate by the second driving assembly 404, so as to move the ID card from the ID card inlet and outlet 502 along the second conveying channel 403 to the second conveying position, or drive the ID card located at the second conveying position to move to the entrance of the second conveying channel 403. Preferably, the second driving assembly 404 adopts a driving motor and a belt drive to drive the ID card to move back and forth between the ID card inlet and outlet 502 and the second conveying position. In addition, in order to make the ID card accurately reach the second storage bin 202, the second conveying frame 401 is further provided with a third driving assembly 405, and the third driving assembly 405 is connected with a pushing mechanism 406, and the pushing mechanism 406 is arranged close to one end of the second conveying channel 403. The third driving assembly 405 drives the pushing mechanism 406 to move, so as to drive the pushing mechanism 406 to push the ID card to move away from the second conveying frame 401.
[0091] As Figure 11 and 12 shown, when it is needed to store the ID card, the second conveying assembly 402 is driven by the second driving assembly 404 to move the ID card inserted in the ID card inlet and outlet 502 along the second conveying channel 403 to the second conveying position. It should be noted that the second conveying position is provided with a second sensor for sensing the ID card. When the second sensor senses that the ID card has reached the second conveying position, the second driving assembly 404 stops working at this time, and the third driving assembly 405 is started, so as to drive the pushing mechanism 406 to continue to move the ID card moved to the second conveying position along the extension direction of the second conveying channel 403 to the second storage bin 202, and store the ID card in the corresponding storage position. In this way, the effectiveness and stability of the storage of the ID card are improved.
[0092] As Figure 11 and 12As shown in the drawings, when the pass type certificate needs to be extracted, a pass type certificate pushing mechanism is arranged opposite to the second storage bin 202 at this time, the pass type certificate stored in the second storage bin 202 is pushed out to the outlet of the second conveying channel 403 by the pass type certificate pushing mechanism, the pass type certificate is moved to the second conveying position by the pushing mechanism 406 driven by the third driving assembly 405, when the second sensor senses that the pass type certificate reaches the second conveying position, the third driving assembly 405 stops working at this time, the second driving assembly 404 starts working, drives the pass type certificate located in the second conveying position to move along the second conveying channel 403 to the in-out pass opening 502, and moves to the in-out pass opening 502. By adopting this structure, the effectiveness and success rate of the pass type certificate extraction are improved, and the conveying is more stable.
[0093] As shown in the drawings, Figure 8 and Figures 11 to 12 It should be noted that, since the second storage bin 202 is provided with a plurality of second storage bins 202, each of the second storage bins 202 is arranged along the direction perpendicular to the second conveying channel 403, in order to store the pass type certificate in each of the second storage bins 202, the embodiment of the present application further comprises a third conveying assembly 408 arranged along the direction perpendicular to the second conveying channel 403 and a fourth driving assembly 409 for driving the third conveying assembly 408.
[0094] As shown in the drawings, Figure 11 and 12 As an optional embodiment of the present application, the third conveying assembly 408 is arranged at the bottom of the second conveying frame 401, and the third conveying assembly 408 drives the second conveying frame 401 to slide along the direction perpendicular to the second conveying channel 403. Specifically, the third conveying assembly 408 comprises a second sliding rail 4081 arranged below the second bottom plate 4012 of the second conveying frame 401 along the direction perpendicular to the second conveying channel 403, the second conveying frame 401 is slidably connected to the second sliding rail 4081 through the second bottom plate 4012, and the fourth driving assembly 409 drives the second conveying frame 401 to slide along the second sliding rail 4081 as a whole by the motor driving belt conveying mode, so as to cooperate with each of the second storage bins 202 to drive the pass type certificate to reciprocate between the in-out pass opening and each of the second storage bins 202. By adopting this structure, the reliability of the pass type certificate conveying process is ensured, and the efficiency and stability of the pass type certificate storage are improved.
[0095] As shown in the drawings, Figure 1 and Figures 13 to 15As shown, as an optional embodiment of the present application, the human-computer interaction device 40 is arranged at the outer end of the shell 10, wherein the human-computer interaction device 40 has the operation terminal 200. Specifically, the human-computer interaction device 40 is movably arranged at the outer end of the shell 10, wherein the human-computer interaction device 40 comprises a third shell 41 and a controller arranged in the third shell 41 and electrically connected with the electric control device 60. The end of the shell 10 is provided with a third connecting piece 12, and the third shell 41 is arranged with a fourth connecting piece 42 at one end close to the shell 10, wherein the third connecting piece 12 and the fourth connecting piece 42 are connected in cooperation. In this embodiment, the one end of the third shell 41 close to the shell 10 is the end away from the user, and the other end of the third shell 41 away from the shell 10 is the end towards the user. By using the human-computer interaction storage cabinet as described above, on the one hand, the user can easily operate the human-computer interaction device to manage the storage cabinet, and on the other hand, the overall installation and manufacturing are simple, and the disassembly and maintenance are convenient.
[0096] In this embodiment, the human-computer interaction device 40 is a device for managing the certificate storage cabinet, which integrates network, software program, electronics, electricity, and mechanical control, is designed based on a centralized, high-performance, and low-power industrial control platform, and effectively realizes unified and efficient standardized management of certificates.
[0097] As shown, Figure 14 In this embodiment, the operation terminal 200 comprises a display device 2001 arranged above the other end of the third shell 41 away from the shell 10, and the display device 2001 is connected with the electric control device 60 (not shown in the figure) of the storage cabinet 100 in a wired or wireless manner. The wired mode is to directly exchange information through a data line, and the wireless mode is to arrange a wireless receiving module in the display device 2001, and the wireless receiving module is wirelessly connected with the industrial control device. Preferably, the display device 2001 can adopt an overall flat panel display device, or can adopt a display screen. In this embodiment, the display device 2001 is one of a liquid crystal display device, an LED display device, an LCD display device, an OLED display device, a PDP display device, a DLP display device, a CRT display device, a flexible display device, or a touch display device. Preferably, any of the above display devices can adopt a touch display screen supporting touch control, combined with intelligent voice prompt, so that the user can quickly operate, and the display screen is made of hard plastic or metal sheet.
[0098] As shown, Figure 14As shown, preferably, the operation terminal 200 is provided with an identification unit 2002 at the bottom of the display device 2001, and specifically, the identification unit 2002 further comprises one or a combination of two or more of a bar code identification unit 2003, a fingerprint identification unit and a certificate identification unit 2004. In this embodiment, the certificate identification unit 2004 and the bar code identification unit 2003 are arranged from left to right below the touch display screen, the certificate identification unit 2004 supports fast reading of the second-generation ID card, is compatible with the ISO14443 (Type-B) standard, reads the ID card photo and compares it with the on-site portrait to avoid stealing the certificate. The bar code identification unit 2003 supports reading of various commonly used one-dimensional and two-dimensional codes, mobile phone screen bar codes and reverse color bar codes.
[0099] It should be noted that the method for the human-computer interaction device 40 to manage the use of the storage cabinet 100 specifically includes two modes: a storage mode and a certificate retrieval mode.
[0100] Mode 1: When the user selects the storage mode, the user confirms the identity permission information through the identification unit 2002 of the human-computer interaction device 40, and after passing the confirmation, the user puts the certificate or card to be stored into the card inlet / outlet 501 or the book inlet / outlet 502;
[0101] When storing the card, the first driving mechanism 3051 drives the first conveying mechanism 3041 to move the card inserted into the card inlet / outlet 501 along the inlet of the first conveying channel 307 to the first conveying position, and when the first sensor senses that the card has reached the first conveying position, the first driving mechanism 3051 drives the second conveying mechanism 3042 to move the card along the extension direction of the first conveying channel 307 to the first storage bin 201, and the card is stored in the corresponding storage position.
[0102] When storing the book, the second driving assembly 404 drives the second conveying assembly 402 to move the book inserted into the book inlet / outlet 502 along the second conveying channel 403 to the second conveying position, and when the second sensor senses that the book has reached the second conveying position, the second driving assembly 404 stops working, and the third driving assembly 405 starts working to drive the pushing mechanism 406 to continue moving the book along the extension direction of the second conveying channel 403 to the second storage bin 202, and the book is stored in the corresponding storage position.
[0103] Mode 2: When the user selects the certificate retrieval mode, the user first inputs the certificate retrieval information through the human-computer interaction device 40, and the system determines the position of the certificate to be retrieved according to the information input by the user;
[0104] When the card-type certificate needs to be extracted, the second conveying mechanism 3042 is driven by the first driving mechanism 3051 to move the card-type certificate stored in the first storage bin 201 along the first conveying channel 307 away from the first storage bin 201 to the first conveying position. When the card-type certificate reaches the first conveying position, the first conveying mechanism 3041 connected to the second conveying mechanism 3042 is driven to move the card-type certificate along the first conveying channel 307 towards the card inlet / outlet port 501, so that the card-type certificate is moved to abut against the card inlet / outlet port 501, and the corresponding card-type certificate is extracted.
[0105] When the book-type certificate needs to be extracted, the book-type certificate push-out mechanism is arranged opposite to the second storage bin 202. The book-type certificate stored in the second storage bin 202 is pushed out to the outlet of the second conveying channel 403 by the book-type certificate push-out mechanism. The pushing mechanism 406 is driven by the third driving assembly 405 to move the book-type certificate to the second conveying position. When the second sensor senses that the book-type certificate reaches the second conveying position, the third driving assembly 405 stops working, and the second driving assembly 404 starts working to drive the second conveying assembly 402 to move the book-type certificate along the second conveying channel 403 towards the book inlet / outlet port 502 until the book-type certificate reaches the book inlet / outlet port 502, and the corresponding book-type certificate is extracted.
[0106] As shown in Figure 16 , as an optional embodiment of the present application, the electric control device 60 comprises a control circuit board 601 and electronic components arranged on the control circuit board 601, and at least one cooling fan 602.
[0107] In the embodiment, two cooling fans 602 are arranged in the storage cabinet 100. The cooling fans 602 are arranged at the back side of the storage library 20, and the shell 10 is provided with a ventilation port 603 at the corresponding position, so as to ventilate and cool the inside of the storage cabinet 100.
[0108] As shown in Figure 17 , as an optional embodiment of the present application, the storage cabinet 100 further comprises a certificate protection mechanism 300 arranged in cooperation with the storage library 20. Preferably, the protection mechanism 300 is arranged corresponding to the first storage bin 201 and the second storage bin 202 of the storage library 20. The protection mechanism 300 comprises a plurality of correction plates 3001 fixed in the mounting frame 101. Each storage disc of the storage library 20 is opposite to at least one correction plate 3001. Each correction plate 3001 is provided with a correction structure opposite to the side of the storage disc. Since the storage library 20 can synchronously rotate around the same axis along the mounting frame 101, when the certificate deviates from the storage disc during rotation, the correction structure can push the deviated certificate into the corresponding storage position.
[0109] The storage cabinet 100 increases the efficiency of the certificate storage, and the compact design structure of the storage cabinet 100 saves the space cost, is suitable for small batch certificate storage and distribution, and improves the stability of the storage and the effectiveness of the extraction.
[0110] The above embodiments are preferred embodiments of the present application, and the present application is not limited to the above embodiments. Any obvious modification made by those skilled in the art without departing from the technical principles of the present application belongs to the concept of the present application and the protection scope of the appended claims. In addition, although the exemplary embodiments have been described herein, the scope thereof includes any and all embodiments based on the present application with equivalent elements, modifications, omissions, combinations (for example, solutions of various embodiments are crossed), adaptations or changes.
[0111] The above description is intended to be illustrative rather than restrictive. For example, the above examples (or one or more aspects thereof) can be used in combination with each other. Other embodiments can be used as well by those skilled in the art upon reading the above description.
Claims
1. A storage cabinet, characterized in that, The storage cabinet includes: The housing and the storage container installed within the housing, the storage container including a first storage hopper and at least one second storage hopper, the first storage hopper and the second storage hopper being coaxially arranged, the first storage hopper being used to store card-type documents, and the second storage hopper being used to store booklet-type documents; An access mechanism, which is connected in conjunction with the repository; A separate human-computer interaction device is disposed within the outer casing; At least one inlet and outlet is provided in the housing; and an electrical control device is provided inside the housing and electrically connected to the human-machine interface device; The human-machine interface device controls the storage and retrieval mechanism to reciprocate between the inlet and outlet and the storage bin to store or retrieve materials. The access mechanism includes: a first access mechanism and a second access mechanism, wherein the first access mechanism is configured to cooperate with the first storage bin, the second access mechanism is configured to cooperate with the second storage bin, and the second access mechanism reciprocates along each of the second storage bins; The second access mechanism includes: Second conveyor frame; The second conveying component is disposed within the second conveying frame, and the second conveying component is spaced apart from the second conveying frame to form a second conveying channel; A second drive assembly is disposed within the second conveyor frame and connected to the second conveyor assembly; A third drive assembly, wherein the third drive assembly is disposed within the second conveyor frame; and A feeding mechanism is connected to the third drive component and is located at one end near the second conveying channel.
2. The storage cabinet according to claim 1, characterized in that, The storage cabinet also includes: Mounting rack for mounting the repository; The inner wall of the outer shell and the mounting frame enclose the storage cabinet to form at least one mounting cavity; wherein each mounting cavity corresponds to a door provided on the outer shell, and each door is detachably connected to each mounting cavity.
3. The storage cabinet according to claim 2, characterized in that, The first storage hopper and the plurality of second storage hoppers are connected by a first connector, and the second storage hoppers are connected by a second connector.
4. The storage cabinet according to claim 1, characterized in that, Each of the aforementioned inlet and outlet ports includes: The card slots are connected to the first storage and retrieval mechanism and are used to store and retrieve card-type documents. The entrance and exit are connected to the second storage and retrieval mechanism for storing and retrieving document-type certificates.
5. The storage cabinet according to claim 4, characterized in that, The first access mechanism includes: First transmission rack; A first transmission component, disposed within the first transmission rack and used in conjunction with the first transmission rack to directionally transmit documents; and A first drive component is connected to the first transmission component and provides a power source for the first transmission component.
6. The storage cabinet according to claim 1, characterized in that, A third conveying component is provided at the bottom of the second conveying frame, and the third conveying component drives the second conveying frame to slide along a direction perpendicular to the second conveying channel.
7. The storage cabinet according to claim 6, characterized in that, The human-computer interaction device is disposed at the outer end of the housing, wherein the human-computer interaction device is provided with an operating terminal, the operating terminal comprising: Any one or more of the following: barcode recognition unit, fingerprint recognition unit, ID card recognition unit, and face recognition unit.
8. The storage cabinet according to claim 7, characterized in that, The electrical control equipment includes: Control circuit board and electronic components mounted on the control circuit board; and At least one cooling fan.
Citation Information
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