Frame bee pressing plate and humidity balancing device

By designing an adjustable-length frame bee-pressing plate that also functions as a humidity balancing device, the problem of insufficient adaptability and stability of existing frame bee-pressing plates has been solved. This design achieves stability and humidity regulation within the beehive, thereby improving beekeeping efficiency.

CN223830170UActive Publication Date: 2026-01-27NANTONG OULAI TECH CO LTD
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Patent Information

Application Number
CN202520555847.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-27
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

The existing frame pressing plates have a fixed length, which makes it difficult to adapt to different sizes of beehives and bee colonies. They are not stable enough, are prone to shaking, and affect the activity of bee colonies.

Method used

A hive frame bee-pressing plate and humidity balancing device was designed, including an adjustable-length bearing plate, a support plate, and a limiting component. Combined with a movable rod and spring structure, it ensures the stability of the device in the beehive and its humidity regulation function.

Benefits of technology

This device achieves greater flexibility, adaptability, and stability, and can be adjusted according to different models and sizes of beehives and bee colonies, reducing shaking, providing a stable humidity environment, and improving bee health and honey production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of frame bee pressing plates, and discloses a frame bee pressing plate and humidity balancing device which comprises a bearing plate, a first supporting plate and a second supporting plate are installed on the side walls of the two ends of the bearing plate respectively, and a first mounting plate and a second mounting plate are arranged in the bearing plate, the first supporting plate and the second supporting plate respectively. A movable groove is formed in the first mounting plate, a limiting plate is connected to the outer wall of the second mounting plate, the movable groove can contain the limiting plate, and a limiting assembly is arranged between the movable groove and the limiting plate. The position of the second mounting plate is freely adjusted, and the total length of the device is changed. After adjustment is completed, the first spring pushes the limiting column to penetrate through the limiting groove through self elasticity, the clamping block falls into the clamping groove again, and therefore the length of the device is locked, and stability and reliability of the device are effectively guaranteed.
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Description

Technical Field

[0001] This utility model belongs to the technical field of honeycomb frame pressing board, specifically relating to a honeycomb frame pressing board that also functions as a humidity balancing device. Background Technology

[0002] A frame divider generally refers to a small, frame-like partition, a thin board similar in size to a frame, usually made of wood or plastic. Frame dividers play a significant role in beekeeping. They not only maintain stable temperature and humidity within the hive throughout the year—reducing heat loss and helping to keep the hive warm in cold spring and winter, and facilitating heat dissipation in summer and autumn by adjusting the space—but also limit worker bees from building extra combs, keeping the hive's internal structure neat. Additionally, they separate the feeders for easier bee feeding, and beekeepers can adjust their number and position to manage colony development based on colony strength and changes in the external environment. When using them, they should be installed vertically inside the hive, close to the outside of the combs, ensuring no gaps, and their number and position can be adjusted as needed.

[0003] Existing frame packers cannot be adjusted to accommodate different models, sizes, and humidity levels. Their fixed length design limits their application in beehives of varying sizes and colonies, reducing flexibility and adaptability. Furthermore, existing frame packers may lack sufficient support structure, making it difficult to ensure stability within the beehive. This could easily cause the frame packer to wobble or shift within the hive, interfering with the bee colony's normal activity and affecting hive stability. Utility Model Content

[0004] The purpose of this invention is to provide a frame bee-pressing plate that also functions as a humidity balancing device, in order to solve the problems mentioned in the background art, such as the existing frame bee-pressing plates having a fixed length, making it difficult to adapt to different sizes of beehives and bee colonies, lacking stability, being prone to shaking, and affecting bee colony activity.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a honeycomb frame bee-pressing board and humidity balancing device, comprising: a support plate for the honeycomb frame bee-pressing board and humidity balancing device, wherein a first support plate and a second support plate are respectively installed on the two end side walls of the support plate, and a lifting ear plate is installed on the top of the outer wall of the first support plate and the second support plate, and a bee-pressing board body is provided between the support plate, the first support plate and the second support plate, and a first mounting plate and a second mounting plate are provided inside the support plate, the first support plate and the second support plate, wherein a movable groove is opened in the first mounting plate, a limiting plate is connected to the outer wall of the second mounting plate, the movable groove can accommodate the limiting plate, and a limiting component is provided between the movable groove and the limiting plate.

[0006] Preferably, the limiting component includes a hollow cylinder, a limiting post, and a locking block. The hollow cylinder is installed inside a first mounting plate. The limiting post is located on one side of the hollow cylinder, and a portion of the limiting post is located inside the hollow cylinder. The locking block is installed at the outer end of the limiting post located outside the hollow cylinder. A first spring connects the hollow cylinder and the limiting post. Multiple limiting grooves are evenly spaced inside the limiting plate. A locking groove is formed on the inner wall of the movable groove, and the limiting post can pass through the limiting groove. The locking block and the locking groove are compatible.

[0007] The hollow cylinder has a through groove on its side wall, and a connecting rod is installed on the side wall of the limiting post, with the end of the connecting rod away from the limiting post passing through the through groove and located outside the hollow cylinder.

[0008] Through the above technical solution:

[0009] In use, the support plate is the core component of the frame-holding bee plate and humidity balancing device, responsible for supporting and securing other components. In actual use, users can place the bee plate module directly on the support plate. A first support plate and a second support plate are installed on both sides of the support plate, providing stable lateral support. The lifting lugs ensure the stability of the bee plate during placement and operation, making the lifting of the honeycomb frame and insertion of the honeycomb frame more convenient and safer, reducing disturbance to the bee colony.

[0010] In addition to supporting the beehive board, the support plate can also hold a humidity plate as needed. The humidity plate regulates the humidity inside the hive by exchanging moisture with the air inside, creating a suitable humidity environment. When the support plate and humidity plate are placed together in the hive, the humidity inside the hive is effectively regulated, and the temperature will change accordingly, creating a more suitable growth environment for the bees. Grooves can be designed and created inside the support plate, the first support plate, and the second support plate. These grooves provide a convenient way to accommodate and fix the beehive board and humidity plate, allowing them to be securely embedded in the support plate, the first support plate, and the second support plate. This embedded design not only ensures the stable positioning of the beehive board and humidity plate but also effectively prevents unnecessary movement or tipping within the hive.

[0011] To accommodate different models and sizes of honeycomb boards and humidity control plates, the lengths of the support plate, first support plate, and second support plate are all adjustable. During adjustment, the user needs to pull the connecting rod outwards, causing the locking block to move into the hollow cylinder via the limiting post, thus releasing the locking plate and allowing it to move freely. With the connecting rod extended, the user can freely pull the second mounting plate; its movement will cause the limiting plate to move within the movable groove. By adjusting the position of the second mounting plate, the user can precisely change the total length of the support plate, first support plate, and second support plate to fit honeycomb boards and humidity control plates of different sizes. After adjusting to the desired length, release the connecting rod. At this point, the first spring, with its elastic force, pushes the limiting post through the limiting groove, causing the locking block to re-enter the groove, thereby locking the position between the first and second mounting plates, ensuring length stability and preventing accidental slippage.

[0012] This adjustable length design greatly enhances the flexibility and applicability of the device. Users can easily adjust the length of the support plate and related components according to actual needs without replacing the entire device, saving costs and simplifying the operation process, making beehive management and maintenance more efficient.

[0013] Placing a humidity plate on a support plate and placing it in the beehive together effectively controls the humidity inside the hive. Since humidity is closely related to temperature, adjusting the humidity indirectly affects the temperature inside the beehive. This synergistic regulation mechanism helps create a more stable and suitable growth environment for bees, improving their health and honey production.

[0014] In summary, the optimized description details the function and structure of the support plate, as well as the advantages of adjustable length operation and humidity control. This design makes the honeycomb frame bee-pressing plate / humidity balancing device more flexible and efficient in practical applications, better meeting the needs of beekeeping.

[0015] Hollow rods are connected to the side walls of the bearing plate, the first support plate, and the second support plate. A movable rod is provided on one side of each hollow rod, and a portion of the movable rod is located inside the hollow rod. A movable block is installed at the end of the movable rod outside the hollow rod. The movable block is hemispherical. A second spring connects the hollow rod and the movable rod.

[0016] Through the above technical solution:

[0017] During placement, the movable block contacts the inner wall of the beehive. Its hemispherical shape effectively reduces friction with the beehive wall and ensures even pressure distribution. As the device is gradually inserted into the beehive, the movable rod moves axially within the hollow rod. When the device approaches the inner wall, the movable block experiences a reaction force from the wall, pushing the movable rod further into the hollow rod. The guide position of the movable rod within the hollow rod ensures smooth and controlled linear movement. The second spring connecting the hollow rod and the movable rod plays a crucial role in this process. When the movable rod is pushed into the hollow rod, the second spring is compressed, storing elastic potential energy.

[0018] Once the device is fully inside the beehive and reaches its designated position, the elastic potential energy stored in the second spring is released, pushing the movable rod outward and causing the movable block to fit tightly against the inner wall of the beehive. This fit not only ensures the stability of the device within the beehive but also greatly reduces its swaying potential. The presence of the second spring provides a cushioning function to the movable block when it contacts the inner wall of the beehive, absorbing external impacts and vibrations and further enhancing the stability of the device.

[0019] Thanks to the tight fit between the movable block and the inner wall of the beehive, and the elastic adjustment of the second spring, the shaking of the device within the beehive is significantly suppressed. The tight fit of the movable block restricts the lateral and longitudinal movement of the device within the beehive, making it more stable. The amplitude of the device's shaking is effectively reduced due to the tight fit between the movable block and the inner wall of the beehive, the shock absorption effect of the second spring, and the rational design of the overall structure. This is crucial for the bees inside the beehive, as excessive shaking can interfere with their normal activities and the stability of the hive.

[0020] The coordinated action of the movable block and the second spring allows the equipment to automatically adjust its position and fit during installation, reducing the complexity and time cost of manual operation. Operators simply need to gently push the equipment into the beehive; subsequent adjustments and securing are automatically completed by the movable block and the second spring, significantly reducing the technical requirements on operators.

[0021] In summary, the above design significantly improves the stability of the device within the beehive. The close fit between the movable block and the inner wall of the beehive, along with the elastic adjustment of the second spring, together reduce the space and amplitude of the device's swaying within the beehive. This design not only enhances the overall stability of the device but also creates a quieter and more stable growth environment for the bees. The optimized description details the installation and securing process of the device within the beehive, fully demonstrating its advantages in stability, shock absorption, and ease of operation. Through this design, the honeycomb frame bee-pressing plate / humidity balancing device is more efficient and reliable in practical applications, better meeting the needs of beekeeping.

[0022] A baffle is connected between the first support plate and the second support plate. The baffle contains a first connecting plate and a second connecting plate. A sliding component is provided between the first connecting plate and the second connecting plate.

[0023] Preferably, the sliding assembly includes a slide groove and a slide plate, the slide groove is formed in the first connecting plate, the slide plate is installed on the side wall of the second connecting plate, and the slide groove can accommodate the slide plate.

[0024] Specifically, one of the main functions of the baffle is to enhance the connection strength between the first and second support plates. As a rigid connector, it tightly connects the two support plates, effectively preventing relative displacement and deformation when subjected to external forces or loads, thereby ensuring higher structural stability of the entire device. In practical use, the baffle can evenly distribute stress from inside or outside the beehive, ensuring stable operation of the device under various operating environments.

[0025] Another key function of the baffle is to prevent the beehive board and humidity plate from tipping over. Inside the hive, the beehive board and humidity plate need to remain stable and vertical to ensure the normal activity of the bees and the effectiveness of humidity regulation. The baffle acts as a sturdy barrier, directly preventing the beehive board and humidity plate from tipping over due to external forces or vibrations within the hive. Through its coordination with the support plate, the first support plate, and the second support plate, the baffle further enhances the stability of the entire device, ensuring that the beehive board and humidity plate remain vertical under any circumstances.

[0026] When the length of the support plate is adjusted, the baffle can drive the sliding plate to move synchronously within the groove, thereby achieving length adjustment. Specifically, the movement of the baffle drives the sliding plate to slide within the groove, and the sliding of the sliding plate causes relative movement between the first connecting plate and the second connecting plate, ultimately achieving the adjustment of the entire device's length. This synchronous adjustment mechanism ensures that all components can work together during length changes, maintaining the stability and functionality of the overall structure at all times.

[0027] In summary, the optimized description clearly demonstrates the multiple important roles of the baffle in the device. It not only enhances structural stability and connection strength, effectively preventing the bee board and humidity board from tipping over, but also enables synchronous and precise adjustments during length regulation. This design significantly improves the overall performance and reliability of the device, better meeting the needs of beekeeping and other related applications.

[0028] Compared with the prior art, the beneficial effects of this utility model are:

[0029] (1) This utility model is provided with a bearing plate, a first support plate, and a second support plate, all of which are adjustable in length. This allows users to flexibly adjust the design according to different models and sizes of honeycomb boards and humidity boards. In actual use, the user can pull the connecting rod outward to release the locking of the limiting plate, thereby freely adjusting the position of the second mounting plate to change the total length of the device. After adjustment, the first spring pushes the limiting post through the limiting groove with its own elasticity, causing the locking block to fall back into the locking groove, thus locking the length of the device and effectively ensuring the stability and reliability of the device.

[0030] (2) This utility model improves the stability of the equipment by setting up structures such as a movable rod, a hollow rod, and a movable block. In actual use, a hemispherical movable block is installed on the outside of the movable rod. This design can effectively reduce the friction between the movable block and the inner wall of the beehive, while making the contact pressure evenly distributed. The hollow rod and the movable rod are connected by a second spring. When the equipment is placed in the beehive, the second spring pushes the movable block to fit tightly against the inner wall of the beehive with its elasticity, thereby effectively reducing the shaking space of the equipment, reducing the shaking amplitude, and significantly enhancing the stability of the equipment. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the structure of the bearing plate of this utility model;

[0032] Figure 2 This is a schematic diagram of the structure of the first support plate of this utility model;

[0033] Figure 3 This is a schematic diagram of the structure of the lifting plate of this utility model;

[0034] Figure 4 This is a schematic diagram of the structure of the movable groove of this utility model;

[0035] Figure 5 This is a schematic diagram of the structure of the baffle of this utility model;

[0036] Figure 6 This is a schematic diagram of the structure of the first spring of this utility model;

[0037] Figure 7 This is a schematic diagram of the through groove of this utility model;

[0038] Figure 8 This is a schematic diagram of the structure of the movable block of this utility model;

[0039] Figure 9 This is a schematic diagram of the slide groove of this utility model;

[0040] In the diagram: 1. Bearing plate; 2. First support plate; 3. Second support plate; 4. Lifting lug; 5. First mounting plate; 6. Second mounting plate; 7. Movable groove; 8. Limiting plate; 9. Hollow cylinder; 10. Limiting post; 11. Locking block; 12. First spring; 13. Limiting groove; 14. Locking groove; 15. Through groove; 16. Connecting rod; 17. Hollow rod; 18. Movable rod; 19. Movable block; 20. Second spring; 21. Baffle; 22. First connecting plate; 23. Second connecting plate; 24. Slide groove; 25. Slide plate; 26. Pressing honeycomb plate body. Detailed Implementation

[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0042] Please see Figures 1-7 As shown, this utility model provides the following technical solution: a honeycomb frame bee-pressing board and humidity balancing device, comprising: a support plate 1 for the honeycomb frame bee-pressing board and humidity balancing device, a first support plate 2 and a second support plate 3 respectively installed on the two end side walls of the support plate 1, a lifting ear plate 4 installed on the top of the outer wall of the first support plate 2 and the second support plate 3, a bee-pressing board body 26 provided between the support plate 1 and the first support plate 2 and the second support plate 3, a first mounting plate 5 and a second mounting plate 6 provided inside the support plate 1, the first support plate 2 and the second support plate 3, a movable groove 7 opened in the first mounting plate 5, a limiting plate 8 connected to the outer wall of the second mounting plate 6, the movable groove 7 can accommodate the limiting plate 8, and a limiting component is provided between the movable groove 7 and the limiting plate 8.

[0043] Furthermore, the limiting assembly includes a hollow cylinder 9, a limiting post 10, and a locking block 11. The hollow cylinder 9 is installed inside the first mounting plate 5. The limiting post 10 is located on one side of the hollow cylinder 9, and a portion of the limiting post 10 is located inside the hollow cylinder 9. The locking block 11 is installed at the outer end of the limiting post 10 located outside the hollow cylinder 9. A first spring 12 connects the hollow cylinder 9 and the limiting post 10. Multiple limiting grooves 13 are evenly spaced inside the limiting plate 8. A locking groove 14 is provided on the inner wall of the movable groove 7, and the limiting post 10 can pass through the limiting groove 13. The locking block 11 and the locking groove 14 are compatible.

[0044] The hollow cylinder 9 has a through groove 15 on its side wall, and a connecting rod 16 is installed on the side wall of the limiting post 10. The end of the connecting rod 16 away from the limiting post 10 passes through the through groove 15 and is located outside the hollow cylinder 9.

[0045] Through the above technical solution:

[0046] In use, the support plate 1 is the core component of the frame pressing board and humidity balancing device, responsible for supporting and fixing other components. In actual use, the user can place the pressing board body 26 module directly on the support plate 1. The first support plate 2 and the second support plate 3 are respectively installed on both sides of the support plate 1. The first support plate 2 and the second support plate 3 provide stable lateral support for the support plate 1. The lifting ear plate 4 ensures the stability of the pressing board body 26 during placement and operation, making the lifting of the honeycomb frame and insertion of the honeycomb frame more convenient and safe, and reducing interference to the bee colony.

[0047] In addition to supporting the bee-pressing plate 26, the support plate 1 can also hold a humidity plate as needed. The humidity plate is used to regulate the humidity inside the beehive by exchanging moisture with the air inside the beehive to create a suitable humidity environment. After the support plate 1 and the humidity plate are placed in the beehive together, the humidity inside the beehive can be effectively regulated, and the corresponding temperature will also change accordingly, creating a more suitable growth environment for the bees. Grooves can be designed and opened inside the support plate 1, the first support plate 2, and the second support plate 3. These grooves are designed to provide a convenient way to accommodate and fix the bee-pressing plate 26 and the humidity plate, so that the bee-pressing plate 26 and the humidity plate can be firmly embedded in the support plate 1, the first support plate 2, and the second support plate 3. This embedded design not only ensures the stable positioning of the bee-pressing plate 26 and the humidity plate, but also effectively prevents them from unnecessary movement or tipping over inside the beehive.

[0048] To accommodate different models and sizes of honeycomb plate bodies 26 and humidity plates, the lengths of the support plate 1, the first support plate 2, and the second support plate 3 are all adjustable. During adjustment, the user needs to pull the connecting rod 16 outwards, causing the locking block 11 to enter the hollow cylinder 9 via the limiting post 10, thereby releasing the locking of the limiting plate 8 and allowing it to move freely. With the connecting rod 16 pulled out, the user can freely pull the second mounting plate 6, and the movement of the second mounting plate 6 will cause the limiting plate 8 to move within the movable groove 7. By adjusting the position of the second mounting plate 6, the user can precisely change the total length of the support plate 1, the first support plate 2, and the second support plate 3 to fit honeycomb plate bodies 26 and humidity plates of different sizes. After adjusting to the desired length, the connecting rod 16 is released. At this time, the first spring 12 pushes the limiting post 10 through the limiting groove 13 with its elastic force, causing the locking block 11 to re-enter the locking groove 14, thereby locking the position between the first mounting plate 5 and the second mounting plate 6, ensuring length stability and preventing accidental slippage.

[0049] This adjustable length design greatly enhances the flexibility and applicability of the device. Users can easily adjust the length of the support plate 1 and related components according to actual needs without replacing the entire device, saving costs and simplifying the operation process, making beehive management and maintenance more efficient.

[0050] Placing the humidity plate on the support plate 1 and then placing it into the beehive effectively controls the humidity inside the hive. Since humidity is closely related to temperature, adjusting the humidity indirectly affects the temperature inside the beehive. This synergistic regulation mechanism helps create a more stable and suitable growth environment for bees, improving their health and honey production.

[0051] In summary, the optimized description details the function and structure of the support plate 1, as well as the adjustable length operation steps and the advantages of humidity control. This design makes the honeycomb frame bee-pressing plate / humidity balancing device more flexible and efficient in practical applications, better meeting the needs of beekeeping.

[0052] Please see Figure 1 , Figure 5 and Figure 8 As shown, hollow rods 17 are connected to the side walls of the bearing plate 1, the first support plate 2, and the second support plate 3. Each hollow rod 17 has a movable rod 18 on one side, and a portion of the movable rod 18 is located inside the hollow rod 17. A movable block 19 is installed at the end of the movable rod 18 located outside the hollow rod 17. The movable block 19 is hemispherical. A second spring 20 is connected between the hollow rod 17 and the movable rod 18.

[0053] Through the above technical solution:

[0054] During placement, the movable block 19 contacts the inner wall of the beehive. Its hemispherical shape effectively reduces friction with the beehive wall and ensures even pressure distribution. As the device is gradually inserted into the beehive, the movable rod 18 moves axially within the hollow rod 17. When the device approaches the inner wall, the movable block 19 experiences a reaction force from the wall, pushing the movable rod 18 further into the hollow rod 17. Because the movable rod 18 is guided within the hollow rod 17, the movement is smooth, controlled, and linear. The second spring 20, connecting the hollow rod 17 and the movable rod 18, plays a crucial role in this process. When the movable rod 18 is pushed into the hollow rod 17, the second spring 20 is compressed, storing elastic potential energy.

[0055] Once the equipment is fully inside the beehive and reaches its designated position, the elastic potential energy stored in the second spring 20 is released, pushing the movable rod 18 outward and causing the movable block 19 to fit tightly against the inner wall of the beehive. This fit not only ensures the stability of the equipment inside the beehive but also greatly reduces the equipment's swaying potential. The presence of the second spring 20 provides a cushioning function to the movable block 19 when it contacts the inner wall of the beehive, absorbing external impacts and vibrations and further enhancing the stability of the equipment.

[0056] Thanks to the tight fit between the movable block 19 and the inner wall of the beehive, and the elastic adjustment of the second spring 20, the shaking of the equipment within the beehive is significantly suppressed. The tight fit of the movable block 19 restricts the lateral and longitudinal movement of the equipment within the beehive, making the equipment more stable. The amplitude of equipment shaking is effectively reduced due to the tight fit between the movable block 19 and the inner wall of the beehive, the shock absorption effect of the second spring 20, and the reasonable design of the overall structure. This is crucial for the bees inside the beehive, as excessive shaking may interfere with the normal activities of the bees and the stability of the hive.

[0057] The coordinated action of the movable block 19 and the second spring 20 allows the equipment to automatically adjust its position and fit during installation, reducing the complexity and time cost of manual operation. Operators only need to gently push the equipment into the beehive; subsequent adjustments and securing are automatically completed by the movable block 19 and the second spring 20, significantly reducing the technical requirements on operators.

[0058] In summary, the above design significantly improves the stability of the device within the beehive. The close fit between the movable block 19 and the inner wall of the beehive, along with the elastic adjustment of the second spring 20, together reduce the space and amplitude of the device's swaying within the beehive. This design not only enhances the overall stability of the device but also creates a quieter and more stable growth environment for the bees. The optimized description details the installation and securing process of the device within the beehive, fully demonstrating its advantages in stability, shock absorption, and ease of operation. Through this design, the honeycomb frame bee-pressing plate / humidity balancing device is more efficient and reliable in practical applications, better meeting the needs of beekeeping.

[0059] Please see Figure 1 , Figure 5 and Figure 9 As shown, a baffle 21 is connected between the first support plate 2 and the second support plate 3. A first connecting plate 22 and a second connecting plate 23 are provided inside the baffle 21. A sliding component is provided between the first connecting plate 22 and the second connecting plate 23.

[0060] Furthermore, the sliding assembly includes a slide groove 24 and a slide plate 25. The slide groove 24 is formed in the first connecting plate 22, and the slide plate 25 is installed on the side wall of the second connecting plate 23. The slide groove 24 can accommodate the slide plate 25.

[0061] Specifically, one of the main functions of the baffle 21 is to enhance the connection strength between the first support plate 2 and the second support plate 3. As a rigid connector, it tightly connects the two support plates, effectively preventing relative displacement and deformation when subjected to external forces or loads, thereby ensuring higher structural stability of the entire device. In practical use, the baffle 21 can evenly distribute stress from inside or outside the beehive, ensuring stable operation of the device under various operating environments.

[0062] Another key function of the baffle 21 is to prevent the bee-pressing plate 26 and the humidity plate from tipping over. Inside the beehive, the bee-pressing plate 26 and the humidity plate need to maintain a stable vertical position to ensure the normal activity of the bees and the effectiveness of humidity regulation. The baffle 21 acts as a sturdy barrier, directly blocking the bee-pressing plate 26 and the humidity plate, preventing them from tipping over due to external forces or vibrations within the beehive. By cooperating with the support plate 1, the first support plate 2, and the second support plate 3, the baffle 21 further enhances the stability of the entire device, ensuring that the bee-pressing plate 26 and the humidity plate remain vertical under any circumstances.

[0063] When the length of the support plate 1 is adjusted, the baffle 21 drives the sliding plate 25 to move synchronously within the slide groove 24, thereby achieving length adjustment. Specifically, the movement of the baffle 21 drives the sliding plate 25 to slide within the slide groove 24, and the sliding of the sliding plate 25 causes relative movement between the first connecting plate 22 and the second connecting plate 23, ultimately achieving the adjustment of the entire device's length. This synchronous adjustment mechanism ensures that all components can work together during length changes, maintaining the stability and functionality of the overall structure.

[0064] In summary, the optimized description clearly demonstrates the multiple important roles of baffle 21 in the device. It not only enhances structural stability and connection strength, effectively preventing the bee-pressing plate 26 and the humidity plate from tipping over, but also enables synchronous and precise adjustment during length adjustment. This design significantly improves the overall performance and reliability of the device, better meeting the needs of beekeeping and other related applications.

[0065] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A honeycomb frame pressing board that also functions as a humidity balancing device, characterized in that, include: The frame bee pressing board and humidity balancing device is supported by a support plate (1). The two side walls of the support plate (1) are respectively equipped with a first support plate (2) and a second support plate (3). The top of the outer wall of the first support plate (2) and the second support plate (3) are equipped with lifting plates (4). The bee pressing board body (26) is provided between the support plate (1), the first support plate (2) and the second support plate (3). The support plate (1), the first support plate (2) and the second support plate (3) are each provided with a first mounting plate (5) and a second mounting plate (6). The first mounting plate (5) is provided with a movable groove (7). The outer wall of the second mounting plate (6) is connected to a limiting plate (8). The movable groove (7) can accommodate the limiting plate (8). A limiting component is provided between the movable groove (7) and the limiting plate (8).

2. The honeycomb frame pressing board and humidity balancing device according to claim 1, characterized in that: The limiting assembly includes a hollow cylinder (9), a limiting post (10), and a locking block (11). The hollow cylinder (9) is installed inside the first mounting plate (5). The limiting post (10) is located on one side of the hollow cylinder (9), and a portion of the limiting post (10) is located inside the hollow cylinder (9). The locking block (11) is installed at the outer end of the limiting post (10) located outside the hollow cylinder (9). A first spring (12) is connected between the hollow cylinder (9) and the limiting post (10). Multiple limiting grooves (13) are evenly spaced inside the limiting plate (8). A locking groove (14) is provided on the inner wall of the movable groove (7), and the limiting post (10) can pass through the limiting groove (13). The locking block (11) and the locking groove (14) are compatible.

3. The honeycomb frame pressing board and humidity balancing device according to claim 2, characterized in that: The hollow cylinder (9) has a through groove (15) on its side wall, and a connecting rod (16) is installed on the side wall of the limiting post (10). The end of the connecting rod (16) away from the limiting post (10) passes through the through groove (15) and is located outside the hollow cylinder (9).

4. The honeycomb frame pressing board and humidity balancing device according to claim 1, characterized in that: Hollow rods (17) are connected to the side walls of the bearing plate (1), the first support plate (2), and the second support plate (3). Each hollow rod (17) has a movable rod (18) on one side, and a portion of the movable rod (18) is located inside the hollow rod (17). A movable block (19) is installed at the end of the movable rod (18) located outside the hollow rod (17). The movable block (19) is hemispherical. A second spring (20) is connected between the hollow rod (17) and the movable rod (18).

5. A honeycomb frame pressing board and humidity balancing device according to claim 1, characterized in that: A baffle (21) is connected between the first support plate (2) and the second support plate (3). A first connecting plate (22) and a second connecting plate (23) are provided inside the baffle (21). A sliding component is provided between the first connecting plate (22) and the second connecting plate (23).

6. A honeycomb frame pressing board and humidity balancing device according to claim 5, characterized in that: The sliding assembly includes a groove (24) and a slide plate (25). The groove (24) is formed in the first connecting plate (22), and the slide plate (25) is installed on the side wall of the second connecting plate (23). The groove (24) can accommodate the slide plate (25).