A storage bin and a card management cabinet

By designing a card management cabinet for a hybrid storage warehouse, the storage needs of small-capacity card management equipment are solved, low-cost card-type and authentic document storage are realized, and storage efficiency and space utilization are improved.

CN115676088BActive Publication Date: 2025-07-22SHENZHEN HUAZHENGLIAN INDAL +2
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Patent Information

Application Number
CN202110829446.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-07-22
Publication Date
2025-07-22
Estimated Expiration
2041-07-22

AI Technical Summary

Technical Problem

Existing card management equipment cannot meet the needs of storing this and card documents in small capacity, and the cost is high.

Method used

A storage bin is designed, including a first storage bin for storing card documents and a second storage bin for storing card documents. It is connected by a connector to ensure small errors in concentricity and axial direction, and is suitable for small-capacity card management cabinets.

Benefits of technology

It realizes the storage of card and this type of documents at the same time at low cost, improves storage efficiency and saves space costs, and is suitable for departments with small number of cards but needing management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of card storage, and specifically provides a storage bin for storing cards. The storage bin includes a storage rack having a first connecting plate, a second connecting plate, and at least one connecting rod passing through the first connecting plate and the second connecting plate, and a plurality of storage bins rotatably arranged in the storage rack. The storage bins include a first storage bin for storing card-type certificates and at least one second storage bin for storing book-type certificates. Among them, the first storage bin is rotatably connected to the first connecting plate through a first connecting portion, the second storage bin is rotatably connected to the second connecting plate through a second connecting portion, and the first storage bin and the second storage bin are connected through a first connecting member. The present invention adopts a card management cabinet with a storage bin for mixing and storing book-type certificates and card-type certificates, which meets the user's demand for storing two types of certificates at the same time, reduces the production and manufacturing costs, and improves the storage efficiency of the card management cabinet.
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Description

Technical Field

[0001] The present invention belongs to the technical field of card management equipment, and more specifically, relates to a storage bin and a card management cabinet. Background Art

[0002] At present, various legal certificates (including identity 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 electronic passports) are widely present in our lives. With the increase in the number of urban residents, the number of various legal certificates is also increasing, and the number of users corresponding to the relevant issuing departments varies greatly, that is, there is a demand for large-capacity issuing equipment and a demand for small-capacity issuing equipment. The card management devices currently on the market that have both book-type certificate storage and card-type certificate storage are large-capacity and high-cost, and cannot meet the needs of some departments with a small number of certificates but must store, distribute and manage them. This requires us to design a card management device with small capacity, low cost and capable of storing both book-type certificates and card-type certificates. This is the technical problem to be solved by this patent. Summary of the invention

[0003] In order to solve the above technical problems, the present invention provides a storage bin and a card management cabinet, the technical solution adopted by the present invention is:

[0004] A storage bin for storing certificates and cards, comprising a storage rack having a first connecting plate and a second connecting plate and at least one connecting rod passing through the first connecting plate and the second connecting plate, and a plurality of storage bins rotatably arranged in the storage rack, characterized in that the storage bin comprises a first storage bin for storing card-type certificates and at least one second storage bin for storing book-type certificates, wherein the first storage bin is rotatably connected to the first connecting plate by a first connecting portion, the second storage bin is rotatably connected to the second connecting plate by a second connecting portion, and the first storage bin and the second storage bin are connected by a first connecting member.

[0005] Optionally, the first connecting member includes a connecting sleeve and a screw and nut assembly inserted into the connecting sleeve, wherein one end of the connecting sleeve is connected to the first storage bin via the nut, and the other end of the connecting sleeve is connected to the second storage bin via the screw.

[0006] Optionally, the first connecting portion includes a first positioning portion connected to the first storage bin. A first rotating member is provided on the inner edge of the first positioning portion. A first partition member is provided on the inner edge of the first rotating member. A second positioning portion is provided on the inner edge of the first partition member. The first rotating member is snap-fitted with the first positioning portion. The second positioning portion protrudes along the first partition member. The upper part of the second positioning portion is detachably connected to the first connecting plate.

[0007] Optionally, the first positioning portion protrudes and is fixedly connected to the first storage bin. The first positioning portion adopts an annular disc body. At least two first relief grooves are arranged in an array on the turntable along the center of the circle. A first spacer portion is arranged between each of the first relief grooves. A first positioning member connected to the first storage bin is arranged in each of the first relief grooves. A second positioning member is correspondingly arranged on the first storage bin. Each of the first positioning members includes a connecting column protruding in each of the first relief grooves or a connecting hole recessed in each of the first relief grooves. Correspondingly, the second positioning member includes a connecting hole recessed in the first storage bin or a connecting column protruding along each of the first storage bins. Each of the connecting holes is in fit connection with each of the connecting columns.

[0008] Optionally, the first rotating member includes a first annular outer wall surface, a first annular inner wall surface, and a first rotating bearing arranged between the first annular outer wall surface and the first annular inner wall surface. Among them, the first annular outer wall surface is snap-fitted with the first positioning portion.

[0009] Optionally, the first partition member protrudes along the first annular inner wall surface. The first partition member adopts an annular partition ring with the bottom abutted against the first annular inner wall surface.

[0010] Optionally, the second positioning portion adopts a sleeve structure and protrudes and sleeves the first partition member. A plurality of first mounting holes are equidistantly distributed along the center of the sleeve of the second positioning portion. A first mounting member matching the first mounting holes is arranged on the corresponding first connecting plate.

[0011] Optionally, the first storage bin includes two first storage disks that are connected in a staggered and opposite manner for storing card-type certificates, and a plurality of card-holding devices arranged between the two first storage disks. The two first storage disks are axially connected and are positioned and connected by a first positioning column.

[0012] Optionally, the first storage disk adopts an annular turntable structure. The first storage disk includes an inner ring and an outer ring that extends radially outward along the inner ring and is parallel to the inner ring.

[0013] Optionally, the first storage disk includes a first card-holding surface for storing card-type certificates and a first positioning surface opposite to the first card-holding surface. A first card-holding portion is provided on the first card-holding surface, and a card storage position is formed between two mirror-symmetrically arranged first card-holding portions. The card-holding device is inserted into the card storage position.

[0014] Optionally, the second connecting portion includes a clamping portion connected to the second storage bin, a third positioning portion abutted above the clamping portion. A second rotating member is provided on the inner edge of the third positioning portion, a second blocking member is provided on the inner edge of the second rotating member, a fourth positioning portion is provided on the inner edge of the second blocking member. The second rotating member is clamped to the third positioning portion. The fourth positioning portion protrudes along the second blocking member, and the upper portion of the fourth positioning portion is detachably connected to the second connecting plate.

[0015] Optionally, the clamping portion is in the shape of an annular body, and a plurality of second mounting holes are equidistantly arranged on the clamping portion along the radial direction of the ring. Corresponding second mounting members are provided on the second storage bin.

[0016] Optionally, an abutting portion is provided at the bottom of the third positioning portion, and the abutting portion abuts against the clamping portion. The third positioning portion is in the shape of an annular disk body, and a circle of sawteeth is arranged along the axial direction of the outer circumference of the ring. At least two second relief grooves are arranged in an array on the turntable with the center of the circle. A second spacing portion is arranged between each second relief groove, and a third positioning member connected to the second storage bin is arranged in each second spacing portion. Corresponding fourth positioning members are provided on the second storage bin. Each third positioning member includes a connecting column protruding in each second spacing portion or a connecting hole recessed in each second spacing portion. Correspondingly, the fourth positioning member includes a connecting hole recessed in the second storage bin or a connecting column protruding on each second storage bin. Each connecting hole is in fit connection with each connecting column.

[0017] Optionally, the second rotating member includes a second annular outer wall surface, a second annular inner wall surface, and a second rotating bearing arranged between the second annular outer wall surface and the second annular inner wall surface. Among them, the second annular outer wall surface is clamped to the third positioning portion.

[0018] Optionally, the second blocking member protrudes along the second annular inner wall surface, and the second blocking member is an annular blocking ring with the bottom abutted against the second annular inner wall surface.

[0019] Optionally, the fourth positioning portion is in the shape of a sleeve structure, protruding and sleeved on the second blocking member. A plurality of third mounting holes are equidistantly distributed along the center of the sleeve on the fourth positioning portion, and third mounting members matching the third mounting holes are provided on the corresponding second connecting plate.

[0020] Optionally, the second storage bin includes two second storage disks that are misaligned and connected relatively for storing book-type certificates, and a plurality of certificate-holding devices disposed between the two second storage disks. The two second storage disks are axially connected and are positioned and connected by second positioning posts.

[0021] Optionally, a plurality of second storage bins for storing book-type certificates are formed by axially sleeving at least two of the second storage bins, and a plurality of certificate-holding devices are disposed between each of the second storage bins.

[0022] A card management cabinet, characterized in that it includes a cabinet body and the above-mentioned storage bin disposed in the cabinet body.

[0023] Optionally, a detachable human-computer interaction device is disposed outside the cabinet body to facilitate personnel to manage the card management cabinet.

[0024] The storage bin of the present invention includes a first storage bin for storing card-type certificates and a second storage bin for storing book-type certificates, forming a hybrid storage bin, which meets the needs of users to store card-type certificates and book-type certificates at the same time. In addition, by connecting the first storage bin and the second storage bin through a connecting member, the concentricity error of each storage bin can be ensured to be small, and at the same time, the error in the axial direction of the storage bin is ensured to be small. Applying this storage bin to a card management cabinet with a cabinet body greatly increases the efficiency of card storage. In addition, due to the compact design structure of this storage bin, its shape is small, saving space costs, and is suitable for small-capacity card storage and distribution, meeting the needs of some departments with a small number of cards but which must store and distribute them for management. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0026] Figure 1 is a schematic diagram of the overall structure of the storage bin provided by the present invention;

[0027] Figure 2 is a schematic diagram of the structure of the first connecting plate of the storage bin provided by the present invention;

[0028] Figure 3 is a schematic diagram of the structure of the first connecting member of the storage bin provided by the present invention;

[0029] Figure 4 is a schematic diagram of the first partial structure of the first storage bin of the storage bin provided by the present invention;

[0030] Figure 5 It is a schematic diagram of the second partial structure of the first storage bin of the storage bin provided by the present invention;

[0031] Figure 6 It is a schematic diagram of the structure of the first rotating member of the first storage bin of the storage bin provided by the present invention;

[0032] Figure 7 It is a schematic diagram of the first structure of the first storage disk of the storage bin provided by the present invention;

[0033] Figure 8 It is a schematic diagram of the second structure of the first storage disk of the storage bin provided by the present invention;

[0034] Figure 9 It is a schematic diagram of the first structure of the second storage bin of the storage bin provided by the present invention;

[0035] Figure 10 It is a schematic diagram of the first partial structure of the second storage bin of the storage bin provided by the present invention;

[0036] Figure 11 It is a schematic diagram of the structure of the second storage disk of the second storage bin of the storage bin provided by the present invention;

[0037] Figure 12 It is a schematic diagram of the structure of the second rotating member of the second storage bin of the storage bin provided by the present invention;

[0038] Figure 13 It is a schematic diagram of the second structure of the second storage bin of the storage bin provided by the present invention;

[0039] Figure 14 It is a schematic diagram of the overall structure of the card management cabinet provided by the present invention.

[0040] Explanation of the reference numerals in the drawings:

[0041] Label Name Label Name 100 Storage bin 502 First rotating member 10 First connecting plate 503 First partition member 20 Second connecting plate 504 Second positioning portion 30 Connecting rod 5011 First relief groove 40 Storage rack 5012 First spacing portion 50 First connecting portion 60 Second connecting portion 101 First storage bin 5013 First positioning member 102 Second storage bin 5014 Second positioning member 70 First connecting member 5021 First annular outer wall surface 11 Circular hole position 5022 First annular inner wall surface 12 Rectangular hole position 1011 First storage tray 701 Connecting sleeve 80 First positioning post 501 First positioning portion 1012 Card holding device 10111 First inner ring 10141 First annular surface 10112 First outer ring 10142 Second annular surface 1013 First clamping surface 10134 Third positioning post 1014 First positioning surface 601 Clamping portion 201 Third positioning portion 202 Second rotating member 203 Second partition member 204 Fourth positioning portion 208 Second relief groove 209 Second spacing portion 301 Third positioning member 302 Fourth positioning member 2021 Second annular outer wall surface 2022 Second annular inner wall surface 2023 Second rotating bearing 1021 Second storage tray 1022 Book holding device 90 Second positioning post 10211 Second inner ring 10212 Second outer ring 1023 Second clamping surface 1024 Second positioning surface 10241 Third annular surface 10242 Fourth annular surface 10143 Fourth positioning post 200 ID card management cabinet 400 Cabinet body 500 Human-computer interaction device Detailed implementation manners

[0042] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the following further details the present invention in conjunction with the appended Figures 1 - 14 drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0043] 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 may be indirectly fixed to or disposed on the other element through a third component. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or it may be indirectly connected to the other element through a third component.

[0044] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0045] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality of" means two or more unless otherwise specifically defined.

[0046] As Figure 1 and Figure 13 shown, the present invention provides a storage bin 100.

[0047] Specifically, as Figure 1 shown, the present invention provides a storage bin 100 for storing identification cards, including a storage rack 40 having a first connecting plate 10, a second connecting plate 20, and at least one connecting rod 30 passing through the first connecting plate 10 and the second connecting plate 20, and a plurality of storage bins 100 rotatably disposed in the storage rack 40. The storage bin 100 includes a first storage bin 101 for storing card-type identification cards and at least one second storage bin 102 for storing book-type identification cards. Among them, the first storage bin 101 is rotatably connected to the first connecting plate 10 through a first connecting portion 50, the second storage bin 102 is rotatably connected to the second connecting plate 20 through a second connecting portion 60, and the first storage bin 101 and the second storage bin 102 are connected through a first connecting member 70. With such a setting, the storage bin 100 can store card-type identification cards and book-type identification cards simultaneously, meeting the user's need for storing two types of identification cards at the same time, reducing the production and manufacturing cost, and improving the storage efficiency of the storage bin.

[0048] As Figure 1 and Figure 2As shown, as an optional embodiment of the present invention, the first connecting plate 10 and the second connecting plate 20 are symmetrically arranged and have the same structure. Taking the first connecting plate 10 as an example, the first connecting plate 10 is a rectangular plate. A circular hole 11 for fixing an external structure and rectangular holes 12 arranged mirror-symmetrically on both sides of the circular hole 11 are provided at the center of the first connecting plate 10. Connecting holes 13 for cooperating with the connecting rod 30 are provided along the outer extension of the perimeter of the first connecting plate 10. By such a setting, the first connecting plate 10 and the connecting rod 30 and / or the second connecting plate 20 and the connecting rod 30 are detachably connected. The circular hole 11 is convenient for fixing an external device. In addition, the rectangular holes 12 also play a role of making way for avoiding internal wiring and other devices. Preferably, there are four connecting rods 30, and both ends are detachably connected to the first connecting plate 10 and the second connecting plate 20 through the connecting holes 13 respectively.

[0049] As Figure 1 and Figure 3 shown, further, the first connecting member 70 includes a connecting sleeve 701 and a screw-nut assembly disposed through the connecting sleeve 701. One end of the connecting sleeve 701 is connected to the first storage bin 101 through a nut, and the other end of the connecting sleeve 701 is connected to the second storage bin 102 through a screw. In addition, the connecting sleeve 701 is used to position the first storage bin 101 and the second storage bin 102, improving the coaxiality of the first storage bin 101 and the second storage bin 102 and ensuring the alignment of the first storage bin 101 and the second storage bin 102. By such a setting, the first storage bin 101 and the second storage bin 102 are detachably connected to form a bin body for storing book-type certificates and card-type certificates in a mixed manner. In addition, it is also convenient for disassembly, installation and maintenance.

[0050] As Figure 4 and Figure 5 shown, further, the first connecting portion 50 includes a first positioning portion 501 connected to the first storage bin 101. A first rotating member 502 is provided on the inner edge of the first positioning portion 501. A first blocking member 503 is provided on the inner edge of the first rotating member 502. A second positioning portion 504 is provided on the inner edge of the first blocking member 503. The first rotating member 502 is snap-connected to the first positioning portion 501, and the second positioning portion 504 protrudes along the first blocking member 503. The upper part of the second positioning portion 504 is detachably connected to the first connecting plate 10. By such a setting, through the first positioning portion 501 and the second positioning portion 504, the stability of the installation and rotation of the first rotating member 502 is ensured. Preferably, the first positioning portion 501 is provided with a convex platform, and the arc surface of the convex platform is gentle, so that the first rotating member 502 can just be snap-connected to the first positioning portion 501 and is not squeezed by the convex platform. By such a setting, it is prevented that the first rotating member 502 is misaligned and slides out during rotation.

[0051] Further, the first positioning portion 501 adopts an annular disk body, and at least two first relief grooves 5011 are arranged in an array on the turntable along the center of the circle. A first interval portion 5012 is arranged between the first relief grooves 5011. A first positioning member 5013 connected to the first storage bin 101 is arranged in each first relief groove 5011, and a second positioning member 5014 is arranged on the corresponding first storage bin 101.

[0052] As an optional embodiment of the present invention, the first positioning member 5013 includes a connecting post protruding along each first relief groove 5011 or a connecting hole recessed along each first relief groove 5011. Correspondingly, the second positioning member 5014 includes a connecting hole recessed along the first storage bin 101 or a connecting post protruding along each first storage bin 101, and each connecting hole is connected in cooperation with each connecting post.

[0053] Or, as another optional embodiment of the present invention, the first positioning member 5013 includes a first connecting hole recessed along each first relief groove 5011. Correspondingly, the second positioning member 5014 includes a second connecting hole recessed along the first storage bin 101. The first positioning portion 501 is fixedly connected to the first storage bin 101 by an external pre-embedded bolt and nut assembly passing through the first connecting hole and the second connecting hole.

[0054] Such as Figure 4 and Figure 6 As shown, further, the first rotating member 502 includes a first annular outer wall surface 5021, a first annular inner wall surface 5022, and a first rotating bearing 5023 arranged between the first annular outer wall surface 5021 and the first annular inner wall surface 5022. Among them, the first annular outer wall surface 5021 is clamped to the first positioning portion 501. Since a convex platform is arranged in the first positioning portion 501, the first annular outer wall surface 5021 is clamped in the convex platform, and the depth of the convex platform is the same as the thickness of the first annular outer wall surface 5021, ensuring the stability and reliability of the clamping.

[0055] On this basis, further, the first partition member 503 protrudes along the first annular inner wall surface 5022, and the first partition member 503 adopts a first annular partition ring with the bottom abutting against the first annular inner wall surface 5022. Preferably, the first annular partition ring adopts a circular ring structure with the same diameter as the first annular inner wall surface 5022, and the thickness of the first annular partition ring is exactly the same as the thickness of the first annular inner wall surface 5022, and the bottom just abuts against the first annular inner wall surface 5022. By arranging the first partition member 503, it is prevented that the first rotating member 502 is displaced or slides out of the clamping groove when rotating.

[0056] Further, the second positioning portion 504 adopts a sleeve structure, and the protrusion is sleeved on the first partition member 503. Preferably, the second positioning portion 504 is sleeved along the inner edge of the first partition member 503. In this way, the first storage bin 101 and the first connecting plate 10 are positioned through the second positioning portion 504.

[0057] As an alternative embodiment of the present invention, a plurality of first mounting holes are equidistantly distributed along the center of the sleeve of the second positioning portion 504, and first mounting members cooperating with the first mounting holes are provided on the corresponding first connecting plate 10. Preferably, the first mounting members adopt hexagon head screws, which pass through the first mounting holes, thereby fixing the first connecting plate 10 and the second positioning portion 504.

[0058] As another alternative embodiment of the present invention, the first mounting member adopts a prefabricated threaded hole, and the first connecting plate 10 and the second positioning portion 504 are fixed by externally provided screws sequentially passing through the first mounting member and the first mounting hole. With such a setting, the detachable connection between the first storage bin 101 and the first connecting plate 10 is realized, which is convenient for personnel to maintain the first storage bin 101 and is also convenient for production and installation.

[0059] As Figure 5 shown, further, the first storage bin 101 includes two first storage disks 1011 that are connected in a staggered and opposite manner for storing card-type certificates, and a plurality of card holding devices 1012 disposed between the two first storage disks 1011. The two first storage disks 1011 are axially connected and are positioned and connected through the first positioning post 80. By arranging the two first storage disks 1011 with the same structure in a staggered manner and positioning and connecting them through the first positioning post 80 in the middle, the first storage bin 101 for storing card-type certificates is formed. With such a setting, a plurality of card-type storage slots with a simple installation structure and stable positioning are formed. A card holding device 1012 is provided between each card-type storage slot, and the card-type certificate is held in the card holding device 1012, realizing the safety and convenience of the storage bin and improving the storage efficiency.

[0060] As Figure 7 shown, further, the first storage disk 1011 adopts an annular turntable structure, including a first inner ring 10111 and a first outer ring 10112 that extends radially outward along the first inner ring 10111 and is arranged parallel to the first inner ring 10111. Preferably, an annular substrate is provided between the first inner ring 10111 and the first outer ring 10112, and a plurality of card storage slots are equidistantly distributed on the annular substrate.

[0061] As Figure 5As shown, optionally, the first storage disk 1011 includes a first card-holding surface 1013 for holding a card-type certificate and a first positioning surface 1014 disposed opposite to the first card-holding surface 1013. The first positioning surface 1014 mainly functions to position, and the first card-holding surface 1013 mainly functions to hold the card.

[0062] As Figure 7 As shown, specifically, a plurality of first card-holding portions are arranged at equal intervals on the first card-holding surface 1013. In addition, a first circular boss connecting portion is also arranged on the first card-holding surface 1013. The first positioning post 80 is arranged in the first circular boss connecting portion. The two first storage disks 1011 are arranged in a mirror-symmetrical manner. The two first storage disks 1011 are positioned by the first positioning post 80. In this way, two mirror-symmetrical first card-holding surfaces 1013 are formed, and then a plurality of card slots for storing card-type certificates are formed. A plurality of card-holding devices 1012 holding card-type certificates are inserted. With such an arrangement, on the one hand, the manufacturing and processing are simple. By using the first storage disk 1011 of one kind of mold, producing a plurality of them can be assembled into one or more first storage bins 101, and the assembly is flexible. On the other hand, the positioning is reliable and the installation is convenient.

[0063] As Figure 8 As shown, specifically, the first positioning surface 1014 includes a first annular surface 10141 extending radially outward along the first inner ring 10111 and a second annular surface 10142 extending radially outward along the outer edge of the first annular surface 10141. The annular substrate is divided into two parts by the first annular surface 10141 and the second annular surface 10142. The outer edge of the second annular surface 10142 abuts against the first outer ring 10112. Among them, a plurality of second positioning members 5014 cooperating with the first positioning members 5013 of the first positioning portion 501 are arranged at equal intervals in the radial direction on the first annular surface 10141. A plurality of third positioning posts 10134 are arranged at equal intervals in the radial direction on the second annular surface 10132. In addition, the third positioning posts 10134 adopt a hollow column structure, and the connection between the first storage bin 101 and the second storage bin 102 is realized by cooperating with the first connecting member 70.

[0064] As Figure 9As shown, as an embodiment of the present invention, the second connecting portion 60 includes a clamping portion 601 clamped with the second storage bin 102, a third positioning portion 201 abutting against the clamping portion 601, a second rotating member 202 is provided at the inner edge of the third positioning portion 201, a second barrier 203 is provided at the inner edge of the second rotating member 202, a fourth positioning portion 204 is provided at the inner edge of the second barrier 203, the second rotating member 202 is clamped with the third positioning portion 201, the fourth positioning portion 204 is provided along the second barrier 203, and the upper portion of the fourth positioning portion 204 is detachably connected to the second connecting plate 20. In this way, the stability of the installation and rotation of the second rotating member 202 is ensured by the third positioning portion 201 and the fourth positioning portion 204. Preferably, the third positioning portion 201 is provided with a boss, and the arc surface of the boss is gentle, so that the second rotating member 202 can be just clamped with the third positioning portion 201 and is not squeezed by the boss, so as to prevent the second rotating member 202 from slipping out when rotating.

[0065] Furthermore, the clamping part 601 is an annular body, and a plurality of second mounting holes are arranged at equal intervals on the annular body along the radial direction of the annular ring, and a plurality of second mounting members are arranged in the corresponding second storage bin 102. The second mounting members are connected with the second mounting holes, and a clamping member is arranged in the second storage bin 102. Such arrangement ensures that the position of the certificate stored in the second storage bin 102 will not be affected when the second rotating member 202 rotates.

[0066] like Figure 10 and Figure 11 As shown, as shown, further, an abutment portion is provided at the bottom of the third positioning portion 201, which is abutted with the clamping portion 601 through the abutment portion, wherein the third positioning portion 201 adopts a circular ring disk body, and a circle of serrations is provided along the axial direction of the outer circumference of the ring, and at least two second give way grooves 208 are arranged in an array on the turntable along the center of the circle, and second spacers 209 are provided between the multiple second give way grooves 208, and third positioning members 301 connected to the second storage bin 102 are provided in the multiple second spacers 209, and the corresponding second storage bin 102 is provided with a fourth positioning member 302.

[0067] As an optional embodiment of the present invention, the third positioning member 301 includes a connecting column protruding along the second spacer 209 or a connecting hole recessed along each second spacer 209, and correspondingly, the fourth positioning member 302 includes a connecting hole recessed along the second storage bin 102 or a connecting column protruding along each second storage bin 102, and each connecting hole is cooperatively connected with each connecting column.

[0068] Alternatively, as another optional embodiment of the present invention, the third positioning member 301 includes a third connection hole recessed along the second spacing portion 209. Correspondingly, the fourth positioning member 302 includes a fourth connection hole recessed along the second storage bin 102. An external embedded bolt and nut assembly is passed through the third connection hole and the fourth connection hole to fix the third positioning portion 201 to the second storage bin 102.

[0069] As Figure 9 and Figure 12 shown, further, the second rotating member 202 includes a second annular outer wall surface 2021, a second annular inner wall surface 2022, and a second rotating bearing 2023 disposed between the second annular outer wall surface 2021 and the second annular inner wall surface 2022. Among them, the second annular outer wall surface 2021 is snap-fitted to the third positioning portion 201. Since a boss is provided in the third positioning portion 201, the second annular outer wall surface 2021 is snap-fitted to the boss, and the depth of the boss is the same as the thickness of the second annular outer wall surface 2021, ensuring the stability and reliability of the snap fit.

[0070] On this basis, further, the second partition member 203 protrudes along the second annular inner wall surface 2022. The second partition member 203 adopts a second annular partition ring with the bottom abutting against the second annular inner wall surface 2022. Preferably, the second annular partition ring adopts a circular ring structure with the same diameter as the second annular inner wall surface 2022, and the thickness of the second annular partition ring is exactly the same as the thickness of the second annular inner wall surface 2022, and the bottom just abuts against the second annular inner wall surface to avoid displacement or slipping out of the boss when the second rotating member 202 rotates.

[0071] Further, the fourth positioning portion 204 adopts a sleeve structure and protrudes and sleeves the second partition member 203. Preferably, the fourth positioning portion 204 is sleeved along the inner edge of the second partition member 203. In this way, the second storage bin 102 and the second connecting plate 20 are positioned through the fourth positioning portion 204.

[0072] As an optional embodiment of the present invention, a plurality of third mounting holes are equally spaced along the center of the sleeve in the fourth positioning portion 204, and corresponding third mounting members are provided on the second connecting plate 20 to cooperate with the third mounting holes. Preferably, the third mounting member adopts a hexagon screw, which passes through the third mounting hole to fix the second connecting plate 20 and the fourth positioning portion 204.

[0073] As another optional embodiment of the present invention, the third mounting member adopts a prefabricated threaded hole. By sequentially passing an external screw through the third mounting member and the third mounting hole, the second connecting plate 20 and the fourth positioning portion 204 are fixed. Such a setting realizes the detachable connection between the second storage bin 102 and the second connecting plate 20, facilitating personnel to maintain the second storage bin 102 and also facilitating production and installation.

[0074] As shown Figure 13 in the figure, further, the second storage bin 102 includes second storage disks 1021 for storing booklet-type certificates, which are connected in a staggered and opposite manner, and a plurality of booklet holding devices 1022 arranged between the two second storage disks 1021. The two second storage disks 1021 are axially connected and are positioned and connected through second positioning posts 90. By arranging the two second storage disks 1021 with the same structure in a staggered manner and positioning and connecting them through the second positioning posts 90 in the middle, the second storage bin 102 for storing booklet-type certificates is formed. In this way, a plurality of booklet storage slots with simple structure and stable positioning are formed. A booklet holding device 1022 is arranged between each booklet storage slot to hold the booklet-type certificate in the booklet holding device 1022, realizing the safety and convenience of the storage bin and improving the storage efficiency.

[0075] As shown Figure 11 in the figure, further, the second storage disk 1021 adopts a disk-shaped turntable structure, including a second inner ring 10211 and a second outer ring 10212 that extends radially outward along the second inner ring 10211 and is arranged parallel to the second inner ring 10211. Preferably, a radially distributed second annular substrate is arranged between the second inner ring 10211 and the second outer ring 10212, and a number of certificate storage slots are equidistantly distributed on the second annular substrate.

[0076] As shown Figure 13 in the figure, optionally, the second storage disk 1021 includes a second card holding surface 1023 for storing booklet-type certificates and a second positioning surface 1024 arranged opposite to the second card holding surface 1023. The second positioning surface 1024 mainly realizes the positioning function, and the second card holding surface 1023 mainly realizes the booklet holding function.

[0077] Specifically, a plurality of second card holding parts are arranged at equal intervals on the second card holding surface 1023. In addition, a second circular boss connecting part is also arranged on the second card holding surface 1023. The two second storage disks 1021 are arranged in a mirror symmetry manner, and the two second storage disks 1021 are positioned through the two opposite second circular boss connecting parts. Cooperating with the second positioning posts 90, the two second storage disks 1021 are positioned to form two mirror-symmetrical second card holding surfaces 1023, and then a plurality of certificate storage positions for booklet-type certificates are formed. A plurality of booklet holding devices 1022 holding booklet-type certificates are inserted. With such an arrangement, on the one hand, the manufacturing and processing are simple. By using the second storage disk 1021 of one kind of mold, multiple ones can be produced and assembled to form one or more second storage bins 102, and the assembly is flexible. On the other hand, the positioning is reliable and the installation is convenient.

[0078] As shown Figure 11As shown, further specifically, the second positioning surface 1024 includes a third annular surface 10241 that extends radially outward along the second inner ring 10211 and a fourth annular surface 10242 that extends radially outward along the outer edge of the third annular surface 10241. The second annular substrate is divided into two parts by the third annular surface 10241 and the fourth annular surface 10242, and the outer edge of the fourth annular surface 10242 abuts against the second outer ring 10212. Among them, a number of fourth positioning members 302 that cooperate with the third positioning members 301 of the third positioning portion 201 are arranged at equal intervals along the radial direction of the third annular surface 10241, and a number of fourth positioning columns 10143 are arranged at equal intervals along the radial direction of the fourth annular surface 10242. In addition, the fourth positioning columns 10143 adopt a hollow column structure, and the connection between the first storage bin 101 and the second storage bin 102 is realized by cooperating with the first connecting member 70.

[0079] As Figure 14 shown, the present invention also provides an identity card management cabinet 200, which includes a cabinet body 400 and the above storage bin 100 arranged in the cabinet body 400.

[0080] Specifically, a human-computer interaction device 500 for facilitating personnel to manage the identity card management cabinet 200 is detachably arranged outside the cabinet body 400. The management of the identity card management cabinet 200 is realized through the human-computer interaction device 500. For example, the human-computer interaction device 500 is operated to store or extract identity cards. In addition, the detachable connection is adopted, which is convenient for production personnel to maintain.

[0081] Since the storage bin 100 of the identity card management cabinet 200 adopts all the solutions of the above-mentioned all embodiments, it also has the beneficial effects brought by the technical solutions of the above-mentioned embodiments, and will not be elaborated here one by one.

[0082] The present invention adopts an identity card management cabinet with a storage bin for hybrid storage of book-style identity cards and card-style identity cards, which meets the user's need to store two types of identity cards at the same time, reduces the production and manufacturing cost, and improves the storage efficiency of the identity card management cabinet.

[0083] The above embodiments are the preferred embodiments of the present invention. The present invention is not limited to the above embodiments. For those of ordinary skill in the art, any obvious changes made without departing from the technical principle of the present invention belong to the scope of the concept of the present invention and the protection scope of the appended claims. In addition, although exemplary embodiments have been described herein, the scope includes any and all embodiments based on the present invention with equivalent elements, modifications, omissions, combinations (for example, solutions that cross various embodiments), adaptations, or changes.

[0084] The foregoing description is intended to be illustrative and not restrictive. For example, the above examples (or one or more aspects thereof) may be used in combination with each other. For example, other embodiments may be used by those of ordinary skill in the art upon reading the above description.

Claims

1. A storage bin for storing identification cards, comprising a storage rack having a first connecting plate, a second connecting plate, and at least one connecting rod passing through the first connecting plate and the second connecting plate, and a plurality of storage bins rotatably arranged in the storage rack, characterized in that, The storage bin comprises a first storage bin for storing card-type documents and at least one second storage bin for storing book-type documents, wherein the first storage bin is rotatably connected to the first connecting plate via a first connecting portion, the second storage bin is rotatably connected to the second connecting plate via a second connecting portion, and the first storage bin is connected to the second storage bin via a first connecting member; The first connecting plate and the second connecting plate are symmetrically arranged with respect to each other; The first connecting portion includes a first positioning portion connected to the first storage bin, a first rotating member is provided at an inner edge of the first positioning portion, a first barrier member is provided at an inner edge of the first rotating member, a second positioning portion is provided at an inner edge of the first barrier member, the first rotating member is clamped with the first positioning portion, the second positioning portion is protruded along the first barrier member, and the upper portion of the second positioning portion is detachably connected to the first connecting plate.

2. The storage bin according to claim 1, wherein, The first connecting member includes a connecting sleeve and a screw-nut assembly inserted into the connecting sleeve, wherein one end of the connecting sleeve is connected to the first storage bin via the nut, and the other end of the connecting sleeve is connected to the second storage bin via the screw.

3. The storage bin according to claim 1, characterized in that, The first positioning portion protrusion is fixedly connected to the first storage bin, and the first positioning portion adopts a circular ring disk body, and at least two first give way grooves are arrayed on the turntable along the center of the circle, and a first spacing portion is arranged between each of the first give way grooves, and a first positioning member connected to the first storage bin is arranged in each of the first give way grooves, and the corresponding first storage bin is provided with a second positioning member, and each of the first positioning members includes a connecting column protruding along each of the first give way grooves or a connecting hole recessed along each of the first give way grooves, and correspondingly, the second positioning member includes a connecting hole recessed along the first storage bin or a connecting column protruding along each of the first storage bins, and each of the connecting holes is matched and connected with each of the connecting columns.

4. The storage bin according to claim 3, characterized in that, The first rotating member includes a first annular outer wall surface, a first annular inner wall surface, and a first rotating bearing disposed between the first annular outer wall surface and the first annular inner wall surface, wherein the first annular outer wall surface is clamped to the first positioning portion.

5. The storage bin according to claim 4, wherein The first barrier is protrudingly arranged along the first annular inner wall surface, and the first barrier is an annular barrier ring whose bottom abuts against the first annular inner wall surface.

6. The storage bin according to claim 5, characterized in that, The second positioning portion adopts a sleeve structure, and the protrusion is sleeved on the first baffle. The second positioning portion has a plurality of first mounting holes distributed at equal intervals along the center of the sleeve, and a first mounting piece matching the first mounting hole is arranged on the corresponding first connecting plate.

7. The storage bin according to claim 6, wherein The first storage bin includes two first storage disks for storing card-type certificates that are connected relative to each other and offset, and a plurality of card holding devices disposed between the two first storage disks. The two first storage disks are axially connected and are positioned and connected via a first positioning column.

8. The storage bin according to claim 7, characterized in that, The first storage disk adopts a circular rotating disk structure, and the first storage disk comprises an inner ring and an outer ring extending radially outward from the inner ring and arranged parallel to the inner ring.

9. The storage bin according to claim 7, wherein The first storage disk includes a first card holding surface for storing a card-type certificate and a first positioning surface opposite to the first card holding surface. A first card holding portion is arranged on the first card holding surface. A card storage position is formed between two first card holding portions arranged in mirror symmetry. The card holding device is inserted into the card storage position.

10. The storage bin according to any one of claims 1-9, characterized in that, The second connecting portion includes a clamping portion connected to the second storage bin, a third positioning portion abutting against the clamping portion, a second rotating member is provided at an inner edge of the third positioning portion, a second barrier member is provided at an inner edge of the second rotating member, a fourth positioning portion is provided at an inner edge of the second barrier member, the second rotating member is clamped with the third positioning portion, the fourth positioning portion is provided along the protrusion of the second barrier member, and the upper portion of the fourth positioning portion is detachably connected to the second connecting plate.

11. The storage bin according to claim 10, characterized in that, The clamping part is an annular body, and a plurality of second mounting holes are arranged on the clamping part at equal intervals along the radial direction of the annulus, and a plurality of second mounting parts are correspondingly arranged in the second storage bin.

12. The storage bin according to claim 11, wherein An abutment portion is provided at the bottom of the third positioning portion, and the abutment portion is abutted against the clamping portion. The third positioning portion adopts a circular ring disk body, and a circle of saw teeth is provided along the axial direction of the outer circumference of the ring. At least two second give way grooves are arrayed on the turntable along the center of the circle, and a second spacing portion is provided between each of the second give way grooves. A third positioning piece connected to the second storage bin is provided in each of the second spacing portions, and the corresponding second storage bin is provided with a fourth positioning piece. Each of the third positioning pieces includes a connecting column convexly provided along each of the second spacing portions or a connecting hole concavely provided along each of the second spacing portions. Correspondingly, the fourth positioning piece includes a connecting hole concavely provided along the second storage bin or a connecting column convexly provided along each of the second storage bins, and each of the connecting holes is matched and connected with each of the connecting columns.

13. The storage bin according to claim 12, characterized in that, The second rotating member includes a second annular outer wall surface, a second annular inner wall surface, and a second rotating bearing disposed between the second annular outer wall surface and the second annular inner wall surface, wherein the second annular outer wall surface is clamped to the third positioning portion.

14. The storage bin according to claim 13, wherein, The second barrier is convexly arranged along the second annular inner wall surface, and the second barrier is an annular barrier ring whose bottom abuts against the second annular inner wall surface.

15. The storage bin according to claim 14, characterized in that, The fourth positioning portion adopts a sleeve structure, and the protrusion is sleeved on the second baffle. The fourth positioning portion has a plurality of third mounting holes distributed at equal intervals along the center of the sleeve, and a third mounting piece matching the third mounting holes is provided on the corresponding second connecting plate.

16. The storage bin according to claim 15, characterized in that, The second storage bin includes two second storage disks for storing book-type certificates that are connected in an offset manner and a plurality of book holding devices disposed between the two second storage disks. The two second storage disks are axially connected and are positioned and connected by a second positioning column.

17. The storage bin according to claim 16, characterized in that, A plurality of second storage bins for storing book-type certificates are formed by axially sleeved connection of at least two of the second storage bins, and a plurality of book-holding devices are arranged between each of the second storage bins.

18. A card management cabinet, characterized in that, It comprises a cabinet body and a storage bin as claimed in any one of claims 1 to 17 arranged in the cabinet body.

19. The card management cabinet according to claim 18, characterized in that, A separate human-machine interaction device for facilitating personnel to manage the card management cabinet is provided outside the cabinet body.

Citation Information

Patent Citations

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