Integrated intelligent miniature archive room
The intelligent micro archive room with integrated design integrates the inner liner and constant temperature and humidity unit into the cabinet, solving the problems of high construction difficulty, resource waste and inflexible use of existing equipment, and realizing efficient and convenient archive storage.
Patent Information
- Application Number
- CN202422176175.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-05
AI Technical Summary
Existing archive storage equipment suffers from problems such as high construction difficulty, high cost, waste of resources, and inflexibility in use. In particular, for users with small storage needs, existing smart archive cabinets require assembly and occupy space.
Design an integrated intelligent micro archive room, in which the inner chamber and constant temperature and humidity unit are integrated into the main body of the cabinet and connected by connecting pipes to achieve an integrated layout. The inner chamber is equipped with shelves and a sealing structure, locks and emergency unlocking components, and a water storage component for easy movement and quick use.
It enables efficient file storage that can be used without assembly, reduces resource waste, improves the flexibility and mobility of the equipment, and conveniently meets the needs of small storage.
Smart Images

Figure CN223568922U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data storage equipment technology, specifically to an integrated intelligent miniature archive room. Background Technology
[0002] The storage requirements for archives and other documents are quite strict. They need to be stored in an environment with suitable temperature and humidity in order to extend their lifespan and achieve better protection.
[0003] Currently, there are two main methods for storing archives and other documents. One method involves establishing an archive room and installing temperature and humidity control equipment to regulate environmental parameters such as temperature and humidity to meet the storage needs. However, this requires building construction, which is difficult and costly, and the location is fixed, making it only suitable for applications requiring large-scale document storage. The other method uses intelligent filing cabinets. These cabinets contain temperature and humidity control mechanisms, such as the intelligent filing cabinet disclosed in patent CN215776463U. This cabinet includes a secondary cabinet and a main cabinet, with a secondary cabinet on one side of the main cabinet, providing additional storage space. Furthermore, to maximize storage space, the temperature and humidity control mechanism is typically installed inside the main cabinet and connected to the secondary cabinet via pipes. The appropriate number of secondary cabinets is selected and assembled based on actual storage needs. Although this type of intelligent filing cabinet is small in size and flexible in structure, and can be assembled with auxiliary cabinets of appropriate capacity according to actual storage needs, its temperature and humidity regulation structure is inside the main cabinet. When in use, at least one main cabinet and one auxiliary cabinet are required to work together. For users with very small storage needs, this still results in a waste of resources. It also leads to the problem of excessive space occupation by the structure. Furthermore, the need for assembly during installation makes it difficult to move quickly, and it still lacks flexibility and has usage limitations. Summary of the Invention
[0004] To address the aforementioned problems in existing technologies, this paper aims to provide an integrated intelligent micro archive room. The cabinet body houses an inner liner and a constant temperature and humidity unit, which is connected to the inner liner via pipes. The inner liner forms a storage cavity for storing documents. This achieves an integrated arrangement of the storage cavity and control structure within the cabinet body, resulting in better overall integrity. It eliminates the need for assembly, making it more convenient to use, occupies less space, avoids resource waste, facilitates rapid relocation, offers greater flexibility, and reduces usage limitations.
[0005] The specific technical solution is as follows:
[0006] An integrated intelligent micro archive room has the following features:
[0007] The cabinet body has an inner cavity and a door opening that connects to the inner cavity. The cabinet body is equipped with a cabinet door that can be closed or opened.
[0008] The inner liner is located inside the main body of the cabinet. The inner liner contains several shelves. One side of the inner liner has an opening that connects to the door opening. When the cabinet door is closed or the door opening is opened, the cabinet door simultaneously closes or opens the opening of the inner liner.
[0009] The constant temperature and humidity machine is installed inside the main body of the cabinet, and there is a connecting pipe between the air supply port of the constant temperature and humidity machine and the inner liner.
[0010] The aforementioned integrated intelligent micro archive room has an inner liner equipped with an air inlet and an exhaust outlet. The air inlet is connected to the air supply port of the constant temperature and humidity machine via a connecting pipe, and the exhaust outlet is connected to the outside or to the air return port of the constant temperature and humidity machine.
[0011] The aforementioned integrated intelligent micro archive room is equipped with shut-off valves on both the air inlet and exhaust outlet.
[0012] The aforementioned integrated intelligent micro archive room includes a sealing structure between the cabinet door and the main body of the cabinet. The sealing structure includes an adhesive backing layer, a sealing strip, and a pressure strip. An adhesive backing layer is provided on the outer edge of the cabinet door or doorway and on the opposite side of the two. The sealing strip is a ring-shaped structure with one side adhered to the adhesive backing layer and the other side of the sealing strip is a sealing side. A pressure edge is provided on the side of the sealing strip that is adhered to the adhesive backing layer. The pressure strip is provided on the side of the pressure edge that is away from the adhesive backing layer and presses the pressure edge tightly.
[0013] In the aforementioned integrated intelligent micro archive room, a hollow cavity is provided on the side where the sealing strip is bonded to the adhesive layer, and the side wall of the hollow cavity near the adhesive layer forms a pressing edge, with the pressing strip located inside the hollow cavity.
[0014] The aforementioned integrated intelligent micro archive includes a lock between the cabinet door and the cabinet body. A first sealing surface is provided on the side edge of the door opening of the cabinet body, and a second sealing surface that mates with the first sealing surface is provided on the side edge of the cabinet door. The lock includes a lock body and a locking pin. The lock body is installed on the cabinet body and located outside the first sealing surface, and the locking pin is installed on the cabinet door and located outside the second sealing surface. Alternatively, the lock body is installed on the cabinet door and located outside the second sealing surface, and the locking pin is installed on the cabinet body and located outside the first sealing surface.
[0015] In the aforementioned integrated intelligent micro archive room, an emergency unlocking component is installed on the cabinet body or cabinet door equipped with a lock body. The lock body is a lock body with an emergency push rod. The emergency unlocking component includes a toggle member and a sliding part. The sliding part is installed on the cabinet body or cabinet door on which the lock body is installed. The toggle member has a strip-shaped groove along one direction, and the sliding part is slidably installed in the strip-shaped groove. At the same time, the side wall of the toggle member is arranged at an angle, and when the toggle member slides relative to the sliding part, the angled side wall of the toggle member selectively contacts the emergency push rod.
[0016] The aforementioned integrated intelligent micro archive room has an inner wall covered with a powder coating.
[0017] The aforementioned integrated intelligent micro archive room includes a water storage component inside the main body of the cabinet. The water storage component includes a main water tank and a movable water tank. The main water tank is fixed to the bottom of the inner cavity, and its top inlet is connected to the drain pipe of the constant temperature and humidity machine. The movable water tank is slidably disposed on the bottom of the inner cavity, and the upper outlet of the main water tank is connected to the top opening pipe of the movable water tank. The top opening of the movable water tank is lower than the upper outlet of the main water tank and higher than the bottom of the main water tank.
[0018] The positive effects of the above technical solution are:
[0019] The aforementioned integrated intelligent micro archive room incorporates an inner liner and a temperature and humidity control unit within the main cabinet body. The inner liner contains several shelves, forming a storage cavity for documents. Simultaneously, the air supply port of the temperature and humidity control unit is connected to the inner liner via a connecting pipe, facilitating subsequent adjustment of environmental parameters within the inner liner. This ensures that the storage cavity and control structure are integrated within the main cabinet body, resulting in better overall integrity. Installation and use require no assembly and are ready for immediate use, making it more convenient. Furthermore, it avoids the space-consuming issues associated with modular structures, thus preventing resource waste, improving overall mobility, flexibility, and reducing usage limitations. Attached Figure Description
[0020] Figure 1 This is a structural diagram of an embodiment of the integrated intelligent miniature archive room of this utility model;
[0021] Figure 2 This is a schematic diagram of the sealing structure between the cabinet door and the cabinet body in a preferred embodiment of the present utility model;
[0022] Figure 3 This is a schematic diagram of the lock and emergency unlocking component according to a preferred embodiment of the present invention;
[0023] Figure 4This is a cross-sectional view of the connection between two adjacent plates of the inner liner in a preferred embodiment of the present invention.
[0024] In the attached diagram: 1. Cabinet body; 11. First sealing surface; 2. Cabinet door; 21. Second sealing surface; 3. Inner liner; 31. Matching hanging edge; 32. Shelf; 33. Powder coating layer; 4. Constant temperature and humidity unit; 5. Sealing structure; 51. Adhesive backing layer; 52. Sealing strip; 53. Pressure strip; 531. Pressure edge; 6. Lock; 61. Lock body; 62. Locking pin; 7. Emergency unlocking component; 71. Actuating component; 72. Sliding part; 711. Strip groove; 8. Water storage component; 81. Movable water tank. Detailed Implementation
[0025] To make the technical means, creative features, objectives, and effects of this utility model easier to understand, the following embodiments are provided in conjunction with the appendix. Figure 1 To be continued Figure 4 The technical solution provided by this utility model is described in detail, but the following content is not intended to limit this utility model.
[0026] Figure 1 This is a structural diagram of an embodiment of the integrated intelligent miniature archive room of this utility model. Figure 1 As shown, the integrated intelligent micro archive room provided in this embodiment includes: a cabinet body 1, an inner liner 3, and a constant temperature and humidity unit 4. The cabinet body 1 has a frame structure and an inner cavity. A doorway is provided on one side of the cabinet body 1, communicating with the inner cavity for convenient access to archives and other documents. The inner liner 3 is placed within the inner cavity of the cabinet body 1, forming a storage space for archives and other documents. A cabinet door 2 is also provided on the cabinet body 1, controlling the opening and closing of the doorway to meet the needs of storing and retrieving archives and other documents. Preferably, one side of the cabinet door 2 is hinged to one side of the doorway, making the cabinet door 2 a flip-open door for easier use.
[0027] Specifically, the inner liner 3 is installed inside the cavity of the main cabinet body 1, forming a storage compartment within the body. Several shelves 32 are installed within the inner liner 3, increasing the storage space and maximizing space utilization. Additionally, one side of the inner liner 3 has an opening that connects to a doorway, facilitating the access to files and other documents. Furthermore, when the cabinet door 2 closes or opens the doorway, the opening of the inner liner 3 simultaneously closes or opens, meaning the cabinet door 2 controls the opening and closing of the inner liner 3, fulfilling the needs for storing and retrieving documents.
[0028] Specifically, the temperature and humidity control unit 4 is installed inside the cabinet body 1, and a connecting pipe is provided between the air supply port of the temperature and humidity control unit 4 and the inner liner 3. This allows the temperature and humidity control unit 4, used for regulation, and the inner liner 3, used for storing documents, to be located within the same cavity of the cabinet body 1, meeting the requirements of an integrated layout. It functions as a single cabinet, requiring no assembly during installation and use, making it more convenient. Furthermore, it avoids the problem of excessive space occupation caused by the existing separate structure of assembling a main cabinet and a secondary cabinet, effectively preventing resource waste, meeting the needs of micro-design, and offering better overall flexibility and adaptability. It is worth noting that there are many types and models of temperature and humidity control units 4 available on the market. The integrated intelligent micro-archive room in this embodiment can select a suitable temperature and humidity control unit 4 for installation based on actual usage needs. Therefore, the specific structure of the temperature and humidity control unit 4 will not be described in detail here.
[0029] More specifically, the inner liner 3 is also equipped with an air inlet and an air outlet connecting the chamber of the inner liner 3. The air inlet is connected to the air supply port of the temperature and humidity control unit 4 via a connecting pipe, allowing air with suitable temperature and humidity to be supplied from the air supply port of the temperature and humidity control unit 4 and then enter the chamber of the inner liner 3 through the connecting pipe, thus meeting the needs for regulating the environmental parameters within the inner liner 3. Additionally, the air outlet can be connected to the outside or to the return air port of the temperature and humidity control unit 4. When the air outlet is connected to the outside, the gas in the inner liner 3 is directly discharged, achieving external circulation; when the air outlet is connected to the return air port of the temperature and humidity control unit 4, the gas discharged from the inner liner 3 can flow back to the temperature and humidity control unit 4, achieving internal gas circulation. The connection method of the air outlet can be selected according to actual usage requirements.
[0030] More specifically, shut-off valves are installed on both the air inlet and exhaust outlet of the inner liner 3. These valves control the opening and closing of the corresponding air inlet or exhaust outlet, satisfying the ventilation requirements in one operation. Preferably, the shut-off valves are all solenoid valves, which are more convenient to control. This allows for the opening and closing of the air inlet and exhaust outlet, enabling the opening of the corresponding air inlet and / or exhaust outlet when the environmental parameters inside the inner liner 3 need to be adjusted, and closing the air inlet and exhaust outlet after adjustment. This maintains the stability of the environment inside the inner liner 3, ensuring that the stored data remains in optimal storage condition and has a longer storage time.
[0031] Figure 2 This is a schematic diagram of the sealing structure between the cabinet door and the main body of the cabinet according to a preferred embodiment of the present invention. Figure 1 and Figure 2As shown, a sealing structure 5 is also provided between the cabinet door 2 and the cabinet body 1 to improve the sealing performance of the inner liner 3 after the cabinet door 2 is closed. The sealing structure 5 includes an adhesive backing layer 51, a sealing strip 52, and a pressure strip 53. During installation, an adhesive backing layer 51 is provided on the outer edge of the cabinet door 2 or the door opening, on one side opposite to both. Simultaneously, the sealing strip 52 is designed as a ring shape, capable of surrounding the cabinet door 2 and the door opening, thus completely enclosing the opening of the inner liner 3. Furthermore, one side of the sealing strip 52 is adhered to the adhesive backing layer 51, enabling the sealing strip 52 to be installed on the cabinet door 2 or the door opening. At the same time, the other side of the sealing strip 52 is designated as a sealing side, ensuring that when the cabinet door 2 and the door opening are subsequently fitted together, the sealing side of the sealing strip 52 can tightly adhere to the surface of the corresponding door opening or cabinet door 2, achieving a seal. A pressing edge 531 is provided on one side of the sealing strip 52 that is bonded to the adhesive layer 51. At the same time, a pressing strip 53 is placed on the side of the pressing edge 531 that is away from the adhesive layer 51 and the pressing edge 531 is pressed tightly. That is, the pressing strip 53 presses the pressing edge 531, which further improves the bonding strength between the sealing strip 52 and the adhesive layer 51, making the installation of the sealing strip 52 more reliable and stable, and the sealing performance better.
[0032] More specifically, a hollow cavity is provided on the side where the sealing strip 52 is bonded to the adhesive layer 51. Furthermore, the sidewall of the hollow cavity near the adhesive layer 51 forms the pressing edge 531 that mates with the pressing strip 53. During installation, the pressing strip 53 is positioned within the hollow cavity, thus achieving both stable installation of the sealing strip 52 and concealment of the pressing edge 531. It is worth noting that the sealing strip 52 has several holes penetrating the hollow cavity and the pressing edge 531. This allows the pressing edge 531 to be connected to the outer edge of the corresponding cabinet door 2 or door opening via screws or other structures passing through these holes, thereby achieving stable installation of the pressing strip 53.
[0033] Figure 3 This is a schematic diagram of the lock and emergency unlocking component according to a preferred embodiment of the present invention. Figure 1 and Figure 3As shown, a lock 6 is also provided between the cabinet door 2 and the cabinet body 1, which locks or unlocks the cabinet door 2 and the cabinet body 1. In addition, a first sealing surface 11 is provided on the side edge of the door opening of the cabinet body 1, which corresponds to the sealing side of the sealing strip 52. At the same time, a second sealing surface 21 is provided on the side edge of the cabinet door 2, which cooperates with the first sealing surface 11. The second sealing surface 21 is provided with an adhesive layer 51 and a sealing strip 52 is installed on it to achieve a seal between the cabinet door 2 and the door opening. In addition, the lock 6 includes a lock body 61 and a locking pin 62. During installation, the lock body 61 is installed on the cabinet body 1 and located outside the first sealing surface 11, so that the lock body 61 will not damage the first sealing surface 11. Similarly, the locking pin 62 is installed on the cabinet door 2 and located outside the second sealing surface 21, so that the locking pin 62 will not damage the second sealing surface 21. This ensures that the first sealing surface 11 and the second sealing surface 21 will not be damaged during subsequent installation due to the need to install the lock body 61 and the locking pin 62, further ensuring the sealing performance. In addition, the cooperation of the lock body 61 and the locking pin 62 can tighten the cabinet door 2, so that the cabinet door 2 can press the sealing strip 52 against the door opening, further ensuring the effectiveness of the seal and improving the sealing effect. Alternatively, the lock body 61 can be installed on the cabinet door 2 and located outside the second sealing surface 21, while the locking pin 62 can be installed on the cabinet body 1 and located outside the first sealing surface 11. This allows for the interchange of the positions of the lock body 61 and the locking pin 62, which can also avoid damage to the first sealing surface 11 and the second sealing surface 21, and can also tighten the cabinet door 2 to improve the sealing effect.
[0034] More specifically, an emergency unlocking component 7 is provided on the cabinet body 1 or cabinet door 2 where the lock body 61 is installed. That is, the carrier on which the lock body 61 is installed also provides the emergency unlocking component 7. It is worth noting that the lock body 61 is a lock body 61 with an emergency push rod, that is, the lock body 61 can be unlocked by pushing the emergency push rod. Since the lock body 61 with the emergency push rod can be purchased and used directly on the market, its specific structure will not be described in detail here. In addition, the emergency unlocking component 7 includes an actuating part 71 and a sliding part 72. During installation, the sliding part 72 is set on the cabinet body 1 or cabinet door 2 where the lock body 61 is installed. At the same time, a strip-shaped groove 711 is opened on the actuating part 71 in one direction, and the sliding part 72 is slidably disposed in the strip-shaped groove 711. The movement of the sliding part 72 in the strip-shaped groove 711 causes the actuating part 71 to move relative to the cabinet body 1 or cabinet and guides the movement of the actuating part 71. Meanwhile, the side wall of the actuating member 71 is arranged at an angle, making it a sloping surface. When the actuating member 71 slides relative to the sliding part 72, the angled side wall of the actuating member 71 selectively contacts the emergency push rod. That is, when emergency unlocking is required, the actuating member 71 can be moved with the help of an auxiliary tool such as a screwdriver, so that the angled side wall of the actuating member 71 contacts the emergency push rod. As the actuating member 71 continues to move, the angled side wall continues to press against the emergency push rod, thereby pushing the emergency push rod to achieve emergency unlocking of the lock body 61. It is worth noting that by setting the cross-section of the sliding part 72 to a rectangular structure, the sliding part 72 will not rotate relative to the strip groove 711 when it moves relative to it. This avoids the problem of the actuating member 71 deflecting during movement, thus ensuring that the angled side wall of the actuating member 71 can stably contact the emergency push rod and push the emergency push rod to move. The structural design is more reasonable.
[0035] More specifically, the inner wall of the inner liner 3 is also covered with a powder coating layer 33. The powder coating layer 33 not only provides surface protection, but also fills the gaps that may occur when assembling adjacent panels, further improving the sealing performance of the inner liner 3.
[0036] More specifically, a water storage component 8 is also installed in the inner cavity of the main body 1, so that the water generated by the constant temperature and humidity machine 4 can be collected by the water storage component 8. At this time, the water storage component 8 includes a main water tank and a movable water tank 81. During installation, the main water tank is fixed on the bottom of the inner cavity and its top water inlet is connected to the drain pipe of the constant temperature and humidity machine 4, so that the water generated by the constant temperature and humidity machine 4 can enter the main water tank through the drain pipe. In addition, the main water tank can also be connected to the water supply port of the constant temperature and humidity machine 4 through a pipe. That is, when the constant temperature and humidity machine 4 needs water to regulate the humidity of the gas, water can be drawn from the main water tank to realize the collection and reuse of water. Furthermore, the movable water tank 81 is slidably mounted on the bottom of the inner cavity. Simultaneously, the upper outlet of the main water tank is connected to the top opening of the movable water tank 81 via a pipe. This allows excess water in the main water tank to flow through the pipe to the movable water tank 81 after the water level in the main water tank reaches a preset height. The movable water tank 81 collects the excess water from the main water tank, making it convenient for users to remove and empty the excess water, thus preventing structural damage due to excessive water overflow. Additionally, the top opening of the movable water tank 81 is set lower than the upper outlet of the main water tank but higher than the bottom of the main water tank. This design allows water exceeding the preset water level in the main water tank to drain into the movable water tank 81 while preventing the main water tank from being completely drained and unable to store water, resulting in a more rational structural design.
[0037] In a preferred embodiment, the inner liner 3 is located in the upper part of the inner cavity of the cabinet body 1, the temperature and humidity unit 4 is located in the lower part of the inner cavity of the cabinet body 1, and the water storage component 8 is located below the temperature and humidity unit 4. Furthermore, a cover plate is provided at the doorway of the inner cavity, corresponding to the positions of the temperature and humidity unit 4 and the water storage component 8, to cover the temperature and humidity unit 4 and the water storage component 8, thus improving aesthetics. Additionally, an opening and closing door is provided on the cover plate corresponding to the position of the movable water tank 81, facilitating the removal and placement of the movable water tank 81.
[0038] In a preferred embodiment, a buffer is also provided on the cabinet body and above the door opening. The buffer is located on the side of the cabinet door 2 that is installed in the door opening. The buffer acts on the cabinet door 2 when it is opened, preventing excessive impact caused by opening the cabinet door 2 too quickly, thus protecting all structural components. Furthermore, the buffer includes a buffer block, a buffer sleeve, and a buffer spring. The buffer sleeve is installed on the cabinet body, the buffer block slides inside the buffer sleeve with one end extending outside the buffer sleeve, and the buffer spring is located inside the buffer sleeve with its end abutting against the buffer block. Additionally, a cam is fitted on the rotating shaft of the cabinet door 2, and the end of the buffer block extending outside the buffer sleeve abuts against the wheel surface of the cam. This allows the wheel surface of the cam to gradually compress the buffer block when the cabinet door 2 is opened, achieving the purpose of buffering. After the cabinet door 2 is opened to a predetermined angle, the buffer block passes the highest point of the cam, thus preventing the cabinet door 2 from automatically closing and affecting the retrieval of documents. The structural design is more rational.
[0039] The integrated intelligent micro archive room provided in this embodiment includes a cabinet body 1, an inner liner 3, and a constant temperature and humidity machine 4. By setting the inner liner 3 and the constant temperature and humidity machine 4 in the inner cavity of the cabinet body 1, and connecting the air supply port of the constant temperature and humidity machine 4 to the inner liner 3 through a connecting pipe, the inner liner 3 forms a storage cavity to store archives and other materials. The constant temperature and humidity machine 4 can adjust the environmental parameters in the inner liner 3, thereby maintaining a stable storage environment for the materials and extending the storage life of the materials. In addition, it also realizes the integrated arrangement of the inner liner 3 and the constant temperature and humidity machine 4 in the cabinet body 1, which improves the overall integrity of the equipment. It can be used directly without assembly, making it more convenient to use. It also avoids the problem of the existing split structure using a combination of main cabinet and auxiliary cabinet that requires a lot of space, reducing resource waste, improving the mobility of the equipment, making it more flexible to use, and reducing usage restrictions.
[0040] The above are merely preferred embodiments of the present utility model and are not intended to limit the implementation methods and protection scope of the present utility model. Those skilled in the art should realize that any equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An integrated intelligent miniature archive room, characterized in that, include: The cabinet body has an inner cavity and a door opening that connects to the inner cavity. The cabinet body is provided with a cabinet door and the door opening can be closed or opened. The inner liner is disposed in the inner cavity of the main body of the cabinet. The inner liner is provided with several shelves. One side of the inner liner has an opening that communicates with the door opening. When the cabinet door is closed or the door opening is opened, the cabinet door simultaneously closes or opens the opening of the inner liner. A constant temperature and humidity machine is installed in the inner cavity of the main body of the cabinet, and a connecting pipe is provided between the air supply port of the constant temperature and humidity machine and the inner liner.
2. The integrated intelligent micro archive room according to claim 1, characterized in that, The inner liner is provided with an air inlet and an air outlet. The air inlet is connected to the air supply port of the constant temperature and humidity machine through a connecting pipe, and the air outlet is connected to the outside or to the air return port of the constant temperature and humidity machine.
3. The integrated intelligent micro archive room according to claim 2, characterized in that, Both the air inlet and the air outlet are equipped with shut-off valves.
4. The integrated intelligent micro archive room according to claim 1, characterized in that, A sealing structure is provided between the cabinet door and the cabinet body. The sealing structure includes an adhesive backing layer, a sealing strip, and a pressure strip. An adhesive backing layer is provided on the outer edge of the cabinet door or the door opening, on one side opposite to the door. The sealing strip is a ring-shaped structure with one side adhered to the adhesive backing layer and the other side of the sealing strip is a sealing side. A pressure edge is provided on the side of the sealing strip adhered to the adhesive backing layer. The pressure strip is provided on the side of the pressure edge away from the adhesive backing layer and presses the pressure edge tightly.
5. The integrated intelligent micro archive room according to claim 4, characterized in that, A hollow cavity is provided on the side where the sealing strip is bonded to the adhesive layer, and the side wall of the hollow cavity near the adhesive layer forms the pressing edge, with the pressing strip located inside the hollow cavity.
6. The integrated intelligent micro archive room according to claim 1, characterized in that, A lock is provided between the cabinet door and the cabinet body. A first sealing surface is provided on the side edge of the door opening of the cabinet body, and a second sealing surface is provided on the side edge of the cabinet door that cooperates with the first sealing surface. The lock includes a lock body and a locking pin. The lock body is installed on the cabinet body and located outside the first sealing surface, and the locking pin is installed on the cabinet door and located outside the second sealing surface. Alternatively, the lock body is installed on the cabinet door and located outside the second sealing surface, and the locking pin is installed on the cabinet body and located outside the first sealing surface.
7. The integrated intelligent micro archive room according to claim 6, characterized in that, An emergency unlocking component is provided on the cabinet body or cabinet door where the lock body is installed. The lock body is a lock body with an emergency push rod. The emergency unlocking component includes a toggle member and a sliding part. The sliding part is provided on the cabinet body or cabinet door where the lock body is installed. The toggle member has a strip-shaped groove along one direction, and the sliding part is slidably disposed in the strip-shaped groove. At the same time, the side wall of the toggle member is inclined, and when the toggle member slides relative to the sliding part, the inclined side wall of the toggle member selectively contacts the emergency push rod.
8. The integrated intelligent micro archive room according to claim 1, characterized in that, The inner wall of the liner is covered with a powder coating.
9. The integrated intelligent micro archive room according to claim 1, characterized in that, The cabinet body is further provided with a water storage component in its inner cavity. The water storage component includes a main water tank and a movable water tank. The main water tank is fixed on the bottom of the inner cavity and its top inlet is connected to the drain pipe of the constant temperature and humidity machine. The movable water tank is slidably disposed on the bottom of the inner cavity, and the upper outlet of the main water tank is connected to the top opening pipe of the movable water tank. The top opening of the movable water tank is lower than the upper outlet of the main water tank and higher than the bottom of the main water tank.