File storage cabinet for science and technology intermediary service
By automatically launching and retrieving the delivery components of the pull-out box, the detachable partition and the motor drive transmission system, the existing file storage cabinet is solved for cumbersome operation and classification difficulties, and efficient and orderly file management and stable storage are achieved.
Patent Information
- Application Number
- CN202510639986.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing file storage cabinet needs to be manually pulled out and pushed out the pull-out box during use, which consumes time and energy, making it difficult to store according to different categories, and the storage space cannot be flexibly adjusted to accommodate files of different thicknesses, resulting in mixed files and inconvenient management.
A file storage cabinet is designed, using the sending component to automatically push and retract the pull-out box, combined with the detachable partition and rail structure, to realize automatic classification and storage of files and flexible adjustment of storage space, reduce friction and prevent shaking, and is equipped with a motor-driven transmission belt system to achieve three-dimensional movement and support automated file management.
It greatly saves manual operation time and physical strength, improves file management efficiency, ensures the orderly and stability of file classification, adapts to diversified storage needs, and meets the efficient file storage requirements of technology intermediary service agencies.
Smart Images

Figure CN120267114A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of office furniture, and specifically relates to a document storage cabinet for science and technology intermediary services. Background Art
[0002] During the daily operation of science and technology intermediary services, a large number of documents and materials will be generated, including technical documents, project application materials, cooperation agreements, patent information, etc. These documents are of crucial significance for the smooth development of science and technology intermediary services and intellectual property protection. Therefore, a document storage cabinet is needed to store these documents and materials.
[0003] There are certain defects in the existing document storage cabinets during use. For the existing document storage cabinets, the staff needs to manually pull out and push in the drawer boxes. When accessing documents frequently, it will consume a lot of time and physical strength. It is difficult to classify and store the documents in the existing document storage cabinets according to different categories, projects, time, etc., which is likely to cause document mixing and is not conducive to management and searching. Especially for the situation involving various types of document materials, such as consultation reports, technical documents, customer information, etc. in science and technology intermediary services, the existing document storage cabinets cannot be flexibly adjusted according to the thickness and quantity of the actually stored documents. For documents with different thicknesses such as thin document papers and thick file folders, the detachable partitions cannot be used to meet their storage requirements. In diverse document storage scenarios, it cannot meet the general and practical requirements of institutions such as science and technology consulting service companies for document storage. Summary of the Invention
[0004] Aiming at the problems in the prior art, the present invention provides a document storage cabinet for science and technology intermediary services.
[0005] The technical solution adopted by the present invention to solve its technical problems is: A document storage cabinet for science and technology intermediary services, including a cabinet body and a cabinet door. Inside the cabinet body, several independent spaces of the same size are arranged from left to right. In each independent space of the cabinet body, several document storage components are installed at equal intervals from top to bottom. Each document storage component includes a drawer box that can be pulled back and forth. There are openings at the front and back of the cabinet body. The cabinet door is hinged and fitted on one side of the front opening of the cabinet body. At the rear opening of the cabinet body, an equipment layer adapted to the size of the cabinet body is fixed. In the equipment layer, a sending-out component that can push out the drawer box is provided. The sending-out component of this document storage cabinet can automatically push out and retract the drawer box. When storing documents, open the cabinet door, use the sending-out component to push out the drawer box in the corresponding document storage component. After placing the documents, the push plate retracts, and the drawer box automatically slides back into the cabinet body along the inclined track plate by gravity. The whole process does not require manual pulling out and pushing in of the drawer box, greatly saving the time and physical strength of manual operation.
[0006] Preferably, the size of the cabinet door is adapted to the size of the cabinet body, and a glass window is embedded and installed in the middle of the cabinet door.
[0007] Preferably, the document storage component further includes two track plates, which are horizontally and obliquely fixed on the inner walls on both sides of the independent space of the cabinet body. Rollers are installed on both sides of the pull-out box, and the rollers on both sides of the pull-out box are in rolling fit within the track plates on both sides. The rolling fit of the rollers on both sides of the pull-out box within the track plates reduces the friction between the pull-out box and the track plates.
[0008] Preferably, the height of one end of the track plate close to the cabinet door is higher than that of the other end. The cross-section of the track plate is in a "U" shape structure, and limit baffles are provided at both ends of the track plate. Such a structure enables the pull-out box to automatically retract after losing the pushing of the push plate on the one hand, and on the other hand, it can prevent the pull-out box from sliding out of the cabinet body due to shaking during the transportation or transfer of the filing cabinet. In addition, the limit baffles provided at both ends of the track plate further prevent the rollers from derailing during the sliding process, ensuring that the pull-out box always slides stably within the track plates.
[0009] Preferably, a number of partition plates are installed on the top of the pull-out box, and the number of partition plates divides the top of the pull-out box into several independent spaces for storing documents. Such a design enables documents to be classified and stored in each independent space within the pull-out box according to different categories, projects, times, etc., facilitating management and search.
[0010] Preferably, a number of card slots are equally spaced on the end enclosure of the top of the pull-out box far from the cabinet door. A card board is connected to the end of each partition plate, and the card board is adapted to the card slot. The partition plates are installed on the top of the pull-out box through the cooperation of the card board and the card slot. A support strip for preventing the partition plate from tipping over is fixed at the bottom of each partition plate. The partition plates are detachable, and the size of the independent storage space in the pull-out box can be flexibly adjusted according to the thickness and quantity of the actually stored documents.
[0011] Preferably, the delivery component includes two first slide rails, a lifting frame, a moving plate and a push plate. The two first slide rails are vertically fixed on both sides of the equipment layer close to one end of the cabinet body. The lifting frame is in lifting fit on the two first slide rails. The moving plate is in left-right moving fit on the lifting frame. The push plate is in front-back moving fit on the top of the moving plate. This design enables the push plate to move in three-dimensional directions, that is, the push plate can move vertically under the action of the lifting frame, move in the left-right direction through the moving plate, and can move in the front-back direction by itself, so as to be able to reach the document storage components at different heights and different positions flexibly, push out or retract the corresponding pull-out box, making the access operation of documents more convenient and labor-saving, without manually pulling the pull-out boxes one by one.
[0012] Preferably, first drive belts are vertically and drivingly engaged near both sides of the equipment layer close to the two first slide rails. Below one end of the equipment layer and between the two first slide rails, a mounting plate is horizontally fixed. A linkage rod for driving the two first drive belts to drive is rotatably engaged on the mounting plate. A second drive belt is drivingly engaged on the mounting plate. A first motor is mounted on one side of the mounting plate away from the linkage rod. The first motor drives the linkage rod to rotate through the second drive belt. First sliders and first connecting plates are fixed at both ends of the lifting frame. The first sliders are slidably engaged with the first slide rails, and the first connecting plates are connected to the first drive belts. The first motor serves as a power source, drives the linkage rod to rotate through the second drive belt, and the rotation of the linkage rod further drives the first drive belts to drive in the vertical direction. Since the first connecting plates at both ends of the lifting frame are connected to the first drive belts, and the first sliders at both ends thereof are slidably engaged with the first slide rails, when the first drive belts drive, the lifting frame can stably move up and down along the first slide rails.
[0013] Preferably, a second slide rail is horizontally fixed on one side of the lifting frame. A third drive belt is drivingly engaged on the side of the lifting frame close to the second slide rail. A second motor for driving the third drive belt to drive is mounted at the end of the side of the lifting frame close to the second slide rail. A moving block is welded to the bottom of the moving plate. Second sliders and second connecting plates are respectively fixed on both sides of the moving block. The second sliders are slidably engaged with the second slide rail, and the second connecting plates are connected to the third drive belt. The second motor drives the third drive belt to drive. The moving block is connected to the third drive belt through the second connecting plate, thereby driving the moving block to slide left and right along the second slide rail, and further realizing the horizontal movement of the moving plate. This design enables the push plate to flexibly adjust its position in the horizontal direction so as to accurately align with the file storage components in different columns, ensuring that the push plate can accurately push out or retract the drawer box.
[0014] Preferably, a third slide rail is welded to the top of the moving plate. A fourth drive belt is drivingly engaged on the top of the moving plate. A third motor for driving the fourth drive belt to drive is mounted at one end of the bottom of the moving plate. Third sliders and third connecting plates are respectively welded to the bottom of the push plate. The third sliders are slidably engaged with the third slide rail, and the third connecting plates are connected to the fourth drive belt.
[0015] Advantages of the present invention:
[0016] (1) In the present invention, the delivery component of the file storage cabinet is exquisitely designed and can automatically push out and retract the drawer box. When storing files, open the cabinet door, use the delivery component to push out the drawer box in the corresponding file storage component. After placing the files, the push plate retracts, and the drawer box automatically slides back into the cabinet body along the inclined rail plate by gravity. The whole process does not require manual pulling out and pushing in of the drawer box, greatly saving the time and physical effort of manual operation. Especially in the case of frequent file access, the efficiency is significantly improved.
[0017] (2) In the present invention, several partitions are provided on the top of the drawer box of the document storage cabinet. These partitions are installed in cooperation with the card slots on the top of the drawer box through clamping plates, and there are support bars at the bottom to prevent tipping. Such a design enables documents to be classified and stored in each independent space within the drawer box according to different categories, projects, time, etc., facilitating management and retrieval. For various different types of document materials involved in technology intermediary services, such as consultation reports, technical documents, customer information, etc., classified storage can avoid document mixing and improve the orderliness of documents. Moreover, the partitions are detachable, and the size of the independent storage space in the drawer box can be flexibly adjusted according to the thickness and quantity of the actually stored documents, adapting to the storage requirements of different documents, enhancing the versatility and practicality of the document storage cabinet. Whether it is thin document papers or some thick document folders, they can be properly placed, meeting the diverse document storage scenarios of technology consultation service companies.
[0018] (3) In the present invention, the rail plates of the document storage cabinet are horizontally inclined and fixed on the inner walls of both sides of the independent space of the cabinet body. The cross-section is in a "U" - shaped structure, and there are limit baffles at both ends. Such a structure enables the drawer box to automatically retract after losing the pushing of the push plate. On the other hand, when the document cabinet is transported or transferred, it can prevent the drawer box from sliding out of the cabinet body due to shaking, ensuring the safety and stability of document storage, avoiding the scattering and loss of documents during handling, and ensuring the integrity of documents. At the same time, the rollers on both sides of the drawer box roll and cooperate within the rail plates, reducing the friction between the drawer box and the rail plates, making the sliding of the drawer box smoother, extending the service life of the equipment, and ensuring the stable operation of the entire document storage cabinet during long - term use, providing a reliable document storage guarantee for technology intermediary services. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will be further described below in conjunction with the drawings and embodiments.
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0021] Figure 2 It is a schematic diagram of the document storage component structure of the present invention.
[0022] Figure 3 It is a schematic diagram of the partition structure of the present invention.
[0023] Figure 4 It is a schematic diagram of the delivery component structure of the present invention.
[0024] Figure 5 It is Figure 4 The enlarged detail view of area A in
[0025] Figure 6 It is a schematic diagram of the assembly structure of the lifting frame, moving plate and push plate of the present invention.
[0026] Figure 7 For Figure 6 the enlarged view of the details of area B in
[0027] In the figure: 1. Cabinet body; 2. Cabinet door; 201. Glass window; 3. Equipment layer; 4. Document storage component; 401. Rail plate; 402. Drawer box; 403. Roller; 404. Card slot; 405. Partition board; 406. Card board; 407. Support bar; 5. Sending component; 501. First slide rail; 502. First drive belt; 503. Linking rod; 504. First motor; 505. Second drive belt; 506. Mounting plate; 6. Lifting frame; 601. First connecting plate; 602. First slider; 603. Second slide rail; 604. Third drive belt; 605. Second motor; 7. Shifting plate; 701. Shifting block; 702. Second slider; 703. Second connecting plate; 704. Third slide rail; 705. Fourth drive belt; 706. Third motor; 8. Pushing plate; 801. Third slider; 802. Third connecting plate. Specific implementation manners
[0028] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0029] Such as Figures 1-7As shown in the figure, a document storage cabinet for technology intermediary services according to the present invention includes a cabinet body 1 and a cabinet door 2. Inside the cabinet body 1, several independent spaces of the same size are arranged from left to right. In each independent space of the cabinet body 1, several document storage components 4 are installed at equal intervals from top to bottom. Each document storage component 4 includes a drawer box 402 that can be pulled back and forth. There are openings at the front and back of the cabinet body 1. The cabinet door 2 is hinged to one side of the front opening of the cabinet body 1. At the rear opening of the cabinet body 1, an equipment layer 3 that matches the size of the cabinet body 1 is fixed. In the equipment layer 3, a sending component 5 that can push out the drawer box 402 is provided. The sending component 5 of this document storage cabinet can automatically push out and retract the drawer box 402. When storing documents, open the cabinet door 2, use the sending component 5 to push out the drawer box 402 in the corresponding document storage component 4. After placing the documents, the push plate 8 retracts, and the drawer box 402 automatically slides back into the cabinet body 1 along the inclined rail plate 401 by gravity. The whole process does not require manual pulling out and pushing in of the drawer box 402, greatly saving the time and physical effort of manual operation. Especially in the case of frequent access to documents, the efficiency is significantly improved. Moreover, a control system can be conveniently installed. For example, a position sensor is installed on the push plate 8 of the sending component 5 and a controller is installed on the cabinet body 1. When storing documents, the document information is entered. When searching for documents, the corresponding information is input, and the controller can control the sending component 5 to accurately push out the drawer box 402 containing the required documents, realizing automatic document search, greatly improving the speed of finding documents, and being suitable for places such as technology consulting service companies with a large number of documents and frequent searches, enabling staff to devote more time to core business rather than spending time on document access and search.
[0030] In an alternative embodiment of this embodiment, the size of the cabinet door 2 matches the size of the cabinet body 1, and a glass window 201 is embedded in the middle of the cabinet door 2.
[0031] In an alternative embodiment of this embodiment, the document storage component 4 further includes two rail plates 401. The two rail plates 401 are horizontally inclined and fixed on the inner walls of both sides of the independent space of the cabinet body 1. Rollers 403 are installed on both sides of the drawer box 402. The rollers 403 on both sides of the drawer box 402 roll and cooperate within the rail plates 401 on both sides. The rollers 403 on both sides of the drawer box 402 roll and cooperate within the rail plates 401, reducing the friction between the drawer box 402 and the rail plates 401, making the sliding of the drawer box 402 smoother, extending the service life of the equipment, ensuring the stable operation of the entire document storage cabinet during long-term use, and providing a reliable document storage guarantee for technology intermediary services.
[0032] In an alternative implementation of this embodiment, one end of the rail plate 401 close to the cabinet door 2 is higher than the other end. The cross-section of the rail plate 401 is in a "U" shape, and limiting baffles are provided at both ends of the rail plate 401. Such a structure enables the drawer box 402 to automatically retract after losing the extrusion of the push plate 8. On the other hand, when the filing cabinet is transported or transferred, it can prevent the drawer box 402 from sliding out of the cabinet body 1 due to shaking, ensuring the safety and stability of file storage, avoiding the scattering and loss of files during handling, and ensuring the integrity of the files. In addition, the limiting baffles provided at both ends of the rail plate 401 further prevent the rollers 403 from derailing during sliding, ensuring that the drawer box 402 always slides stably within the rail plate 401, enhancing the reliability of the equipment operation, and providing a safe, stable, and efficient file storage environment for technology intermediary services.
[0033] In an alternative implementation of this embodiment, several partitions 405 are installed on the top of the drawer box 402. The several partitions 405 divide the top of the drawer box 402 into several independent spaces for storing files. Such a design enables files to be classified and stored in the respective independent spaces in the drawer box 402 according to different categories, projects, time, etc., facilitating management and search. For various different types of document materials involved in technology intermediary services, such as consultation reports, technical documents, customer information, etc., classified storage can avoid file mixing and improve the orderliness of files.
[0034] In an alternative implementation of this embodiment, several card slots 404 are equidistantly opened on the end plate of the top of the drawer box 402 away from the cabinet door 2. The end of each partition 405 is connected with a clamping plate 406, and the clamping plate 406 is adapted to the card slot 404. The partition 405 is installed on the top of the drawer box 402 through the cooperation of the clamping plate 406 and the card slot 404. A support strip 407 for preventing the partition 405 from tipping over is fixed at the bottom of each partition 405. The partition 405 is detachable, and the size of the independent storage space in the drawer box 402 can be flexibly adjusted according to the actual thickness and quantity of the stored files, adapting to the storage requirements of different files, enhancing the versatility and practicality of the file storage cabinet, and enabling both thin file papers and some thick file folders to be properly placed, meeting the diverse file storage scenarios of technology consulting service companies.
[0035] In an alternative implementation of this embodiment, the delivery component 5 includes two first slide rails 501, a lifting frame 6, a moving plate 7, and a pushing plate 8. The two first slide rails 501 are vertically fixed on both sides of the equipment layer 3 near one end of the cabinet body 1. The lifting frame 6 is vertically and slidably engaged with the two first slide rails 501. The moving plate 7 is horizontally and slidably engaged with the lifting frame 6. The pushing plate 8 is longitudinally and slidably engaged with the top of the moving plate 7. This design enables the pushing plate 8 to move in three-dimensional directions, that is, the pushing plate 8 can move vertically under the action of the lifting frame 6, move horizontally through the moving plate 7, and can move longitudinally by itself, so as to flexibly reach the file storage components 4 at different heights and positions, push out or retract the corresponding drawer 402, making the access operation of files more convenient and labor-saving, without manually pulling the drawers 402 one by one. The flexibility in structure and the accurate positioning ability ensure the efficiency of file storage and retrieval. Especially in the scenario where there are a large number of files and they are densely distributed, the role of the delivery component 5 is particularly significant. At the same time, it also provides a hardware basis for the automatic upgrade of the file storage cabinet. When combined with corresponding sensors and control systems, it can realize the automatic search and accurate positioning of files, thereby improving the intelligent level of the entire file storage system and making it more suitable for places with high requirements for file management efficiency and accuracy, such as technology intermediary service institutions.
[0036] In an alternative implementation of this embodiment, on both sides of the equipment layer 3 near the two first slide rails 501, there are vertically drivingly engaged first drive belts 502. Below one end of the equipment layer 3 and between the two first slide rails 501, there is a horizontally fixed mounting plate 506. On the mounting plate 506, there is a rotatably engaged linkage rod 503 that drives the two first drive belts 502 to drive. On the mounting plate 506, there is a drivingly engaged second drive belt 505. On the side of the mounting plate 506 away from the linkage rod 503, there is a first motor 504. The first motor 504 drives the linkage rod 503 to rotate through the second drive belt 505. Both ends of the lifting frame 6 are fixed with first sliders 602 and first connecting plates 601. The first sliders 602 are slidably engaged with the first slide rails 501, and the first connecting plates 601 are connected to the first drive belts 502. The first motor 504 serves as the power source, drives the linkage rod 503 to rotate through the second drive belt 505, and the rotation of the linkage rod 503 further drives the first drive belts 502 to drive in the vertical direction. Since the first connecting plates 601 at both ends of the lifting frame 6 are connected to the first drive belts 502, and the first sliders 602 at both ends thereof are slidably engaged with the first slide rails 501, when the first drive belts 502 drive, the lifting frame 6 can stably perform lifting motion along the first slide rails 501. This drive method can not only accurately control the height position of the lifting frame 6 to adapt to the file storage components 4 at different heights, ensure that the push plate 8 can accurately reach the height of the target drawer 402, but also achieve a relatively stable lifting process through belt drive, reduce the vibration and noise during equipment operation, and extend the service life of the equipment. At the same time, this structure is compact and has high transmission efficiency, can effectively utilize the space inside the equipment layer 3, provides reliable vertical motion support for the automation operation of the entire file storage cabinet, improves the automation level and convenience of file access and storage, enables the staff to manage files more efficiently, especially when facing a large number of files, can quickly and accurately push out the specified drawer 402, improve work efficiency, and meet the requirements of technology intermediary services for file management efficiency.
[0037] In an alternative implementation of this embodiment, a second slide rail 603 is horizontally fixed on one side of the lifting frame 6. A third drive belt 604 is in transmission cooperation with the side of the lifting frame 6 close to the second slide rail 603. A second motor 605 for driving the third drive belt 604 to transmit is installed at the end of the side of the lifting frame 6 close to the second slide rail 603. A moving block 701 is welded to the bottom of the moving plate 7. Second sliders 702 and second connecting plates 703 are respectively fixed on both sides of the moving block 701. The second slider 702 is in sliding cooperation with the second slide rail 603. The second connecting plate 703 is connected to the third drive belt 604. The second motor 605 drives the third drive belt 604 to transmit. The moving block 701 is connected to the third drive belt 604 through the second connecting plate 703, so as to drive the moving block 701 to slide left and right along the second slide rail 603, and further realize the horizontal movement of the moving plate 7. This design enables the pushing plate 8 to flexibly adjust its position in the horizontal direction, so as to accurately align different columns of the document storage components 4, ensuring that the pushing plate 8 can accurately push out or retract the drawer box 402. Through the cooperation of the second slide rail 603 and the second slider 702, the stability and straightness of the movement of the moving plate 7 are ensured, avoiding deviation or shaking during left and right movement, and improving the positioning accuracy; on the other hand, by adopting the belt drive method, smooth movement over a long distance can be achieved, and the drive efficiency is high, the structure is compact, and the internal space of the equipment layer 3 can be effectively utilized. In addition, combined with the vertical lifting function of the lifting frame 6, the pushing plate 8 has more flexible movement capabilities in three-dimensional space, providing reliable hardware support for the automated operation of the document storage cabinet, making document access more efficient and convenient. Especially when facing a large number of documents, it can quickly and accurately locate and operate the specified drawer box 402, greatly improving the document management efficiency and meeting the high-efficiency requirements of technology intermediary services for document storage and retrieval.
[0038] In an alternative implementation of this embodiment, a third slide rail 704 is welded to the top of the moving plate 7. A fourth drive belt 705 is in transmission cooperation with the top of the moving plate 7. A third motor 706 for driving the fourth drive belt 705 to transmit is installed at one end of the bottom of the moving plate 7. A third slider 801 and a third connecting plate 802 are respectively welded to the bottom of the pushing plate 8. The third slider 801 is in sliding cooperation with the third slide rail 704. The third connecting plate 802 is connected to the fourth drive belt 705.
[0039] In use, first, open the cabinet door 2. At this time, it is necessary to store or retrieve documents. Through the control system or manual operation, start the feeding component 5. The first motor 504 drives the linkage rod 503 to rotate through the second transmission belt 505, and then drives the first transmission belt 502 to drive, so that the lifting frame 6 vertically lifts and lowers on the first slide rail 501 and adjusts to the height where the target document is located. At the same time, the second motor 605 drives the third transmission belt 604 to drive, driving the moving plate 7 to move left and right on the second slide rail 603, so that the pushing plate 8 accurately aligns with the drawer 402 in the required document storage component 4. Then, the pushing plate 8 is pushed forward to send the drawer 402 out of the cabinet body 1. Then, put the document into the sent-out drawer 402 or take out the required document from the drawer 402. If it is necessary to classify and store the documents, the partition 405 on the top of the drawer 402 can be used. According to the type, thickness, etc. of the documents, the position of the partition 405 is adjusted through the cooperation of the clamping plate 406 and the card slot 404, and the space on the top of the drawer 402 is divided into several independent spaces for storing documents to meet the storage requirements of different documents. Finally, control the pushing plate 8 to retract backward. Under the action of gravity, the drawer 402 automatically slides back into the cabinet body 1 along the inclined rail plate 401 to complete the document access operation. If a magnet is installed at the front end of the pushing plate 8, the drawer 402 can also be adsorbed by the magnet to assist in retracting the drawer 402 to ensure that it completely enters the cabinet body 1, restore the initial state, close the cabinet door 2, and end this operation. The whole process is convenient and efficient, reducing the cumbersome steps of manual operation and improving the efficiency and accuracy of document management.
[0040] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A file storage cabinet for technology intermediary services, comprising a cabinet body (1) and a cabinet door (2), characterized in that: Inside the cabinet body (1), several independent spaces of the same size are arranged from left to right. Inside each independent space of the cabinet body (1), several file storage components (4) are equally spaced from top to bottom. Each file storage component (4) includes a drawer box (402) that can be pulled back and forth. There are openings at the front and back of the cabinet body (1). The cabinet door (2) is hinged on one side of the front opening of the cabinet body (1). At the rear opening of the cabinet body (1), an equipment layer (3) adapted to the size of the cabinet body (1) is fixed. In the equipment layer (3), there is a delivery component (5) that can push out the drawer box (402).
2. A document storage cabinet for technology intermediary services according to claim 1, characterized in that: The size of the cabinet door (2) is adapted to the size of the cabinet body (1). A glass window (201) is embedded in the middle of the cabinet door (2).
3. The document storage cabinet for technology intermediary services according to claim 1, characterized in that: The file storage component (4) further includes two rail plates (401). The two rail plates (401) are horizontally inclined and fixed on the inner walls on both sides of the independent space of the cabinet body (1). Rollers (403) are installed on both sides of the drawer box (402). The rollers (403) on both sides of the drawer box (402) are in rolling fit within the rail plates (401) on both sides thereof.
4. The file storage cabinet for technology intermediary services according to claim 3, characterized in that: One end of the rail plate (401) close to the cabinet door (2) is higher than the other end. The cross-section of the rail plate (401) is in a "U" - shaped structure. Limit baffles are provided at both ends of the rail plate (401).
5. A document storage cabinet for technology intermediary services according to claim 1, characterized in that: Several partitions (405) are installed on the top of the drawer box (402). The several partitions (405) divide the top of the drawer box (402) into several independent spaces for storing files.
6. The file storage cabinet for technology intermediary services according to claim 5, characterized in that: On the end enclosure of the top of the drawer box (402) far from the cabinet door (2), several card slots (404) are equally spaced. The end of each partition (405) is connected with a clamping plate (406). The clamping plate (406) is adapted to the card slot (404). The partition (405) is installed on the top of the drawer box (402) through the cooperation of the clamping plate (406) and the card slot (404). A support bar (407) for preventing the partition (405) from tipping over is fixed at the bottom of each partition (405).
7. A document storage cabinet for technology intermediary services according to claim 1, characterized in that: The delivery component (5) includes two first slide rails (501), a lifting frame (6), a moving plate (7) and a pushing plate (8). The two first slide rails (501) are vertically fixed on both sides of the end of the equipment layer (3) close to the cabinet body (1). The lifting frame (6) is in lifting fit on the two first slide rails (501). The moving plate (7) is in left - right moving fit on the lifting frame (6). The pushing plate (8) is in front - back moving fit on the top of the moving plate (7).
8. A file storage cabinet for technology intermediary services according to claim 7, characterized in that: On both sides of the equipment layer (3), close to the two first slide rails (501), there are vertically drivingly engaged first drive belts (502). Below one end of the equipment layer (3) and between the two first slide rails (501), there is a horizontally fixed mounting plate (506). On the mounting plate (506), there is a linkage rod (503) rotatably engaged to drive the two first drive belts (502) to drive. On the mounting plate (506), there is a second drive belt (505) drivingly engaged. On the side of the mounting plate (506) away from the linkage rod (503), there is a first motor (504). The first motor (504) drives the linkage rod (503) to rotate through the second drive belt (505). Both ends of the lifting frame (6) are fixed with first sliders (602) and first connecting plates (601). The first sliders (602) are slidably engaged with the first slide rails (501), and the first connecting plates (601) are connected to the first drive belts (502).
9. The file storage cabinet for technology intermediary services according to claim 8, wherein: On one side of the lifting frame (6), there is a horizontally fixed second slide rail (603). On the side of the lifting frame (6) close to the second slide rail (603), there is a third drive belt (604) drivingly engaged. At the end of the side of the lifting frame (6) close to the second slide rail (603), there is a second motor (605) driving the third drive belt (604) to drive. At the bottom of the moving plate (7), there is a welded moving block (701). On both sides of the moving block (701), there are respectively fixed a second slider (702) and a second connecting plate (703). The second slider (702) is slidably engaged with the second slide rail (603), and the second connecting plate (703) is connected to the third drive belt (604).
10. A file storage cabinet for technology intermediary services according to claim 9, characterized in that: On the top of the moving plate (7), there is a welded third slide rail (704). On the top of the moving plate (7), there is a fourth drive belt (705) drivingly engaged. At one end of the bottom of the moving plate (7), there is a third motor (706) driving the fourth drive belt (705) to drive. At the bottom of the pushing plate (8), there are respectively welded a third slider (801) and a third connecting plate (802). The third slider (801) is slidably engaged with the third slide rail (704), and the third connecting plate (802) is connected to the fourth drive belt (705).