Large-scale beekeeping device

By installing suspension components at the bottom of the beehive and on the support base, the repulsive force of the magnetic components is used to achieve stable suspension of the beehive, solving the problem of insects and ants climbing over it and ensuring the quality and yield of honey.

CN121713875AInactive Publication Date: 2026-03-24GANSU OLD BEEHIVE BEE IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-30
Publication Date
2026-03-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional beehive designs cannot effectively prevent insects and ants from climbing into the hive, leading to a decline in the quality and purity of honey and affecting the economic benefits of beekeepers.

Method used

Multiple sets of suspension components are used to suspend the beehive, and the repulsive force of magnetic components is used to achieve stable suspension support of the beehive, prevent insects and ants from climbing, adapt to changes in the weight of the beehive, and ensure the quality of honey.

Benefits of technology

The suspended components keep the beehives stable in the air, preventing insects and ants from contaminating the honey, thus improving the quality and purity of the honey and increasing the economic benefits for beekeepers.

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Abstract

The invention discloses a large-scale beekeeping device which comprises a supporting seat, a beehive is arranged above the supporting seat, the large-scale beekeeping device further comprises a plurality of suspension assemblies used for suspending the beehive, and each suspension assembly comprises a fixed magnetic part arranged at the upper end of the supporting seat and a suspension magnetic part arranged at the bottom of the beehive. The fixed magnetic part does not make contact with the suspended magnetic part when extending into the suspended magnetic part, the suspended magnetic part drives the beehive to be suspended, the fixed magnetic part comprises a first mounting seat arranged at the upper end of the supporting seat, and a first vertical magnetic block and a first horizontal magnetic block are arranged on the fixed column. The device is suitable for large-scale beekeeping, beehive suspension is achieved through the multiple sets of suspension assemblies, insects and ants cannot climb to the suspension magnetic part through the fixed magnetic part to reach the beehive, honey pollution is avoided, automatic adjustment can be achieved along with the weight change of the beehive, suspension supporting is always stabilized, stability of the beehive can still be guaranteed after the guide columns are taken down, and the problem of insects and ants is effectively solved; honey quality is guaranteed, and bee-keeping income is improved.
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Description

Technical Field

[0001] This invention relates to the field of beekeeping technology, and in particular to a large-scale beekeeping device. Background Technology

[0002] In traditional beekeeping, hive rearing is a common method. This method is relatively simple to operate and played an important role in the early stages of the beekeeping industry's development. However, during the honey ripening period, traditional hive rearing has significant drawbacks. Because beehives are usually placed on the ground or in low-lying locations, their surrounding environment easily attracts a large number of insects and ants. These insects and ants climb up the frame and other structures of the beehive and enter the interior, contaminating the honey, seriously affecting the quality of the harvest, reducing the purity and quality of the honey, and consequently impacting the beekeeper's economic income.

[0003] Current beehive technology still has shortcomings, as its design structure cannot achieve suspended installation. This means that in practical applications, it is still impossible to effectively prevent insects and ants from climbing into the beehive through the frame and other supporting structures, thus failing to fundamentally solve the problem of their impact on honey quality. Some methods address this by using insect repellents, but these also have some impact on the bees. For example, the ecological beekeeping large-scale intelligent beehive with publication number CN216627118U suffers from the aforementioned technical problems.

[0004] Therefore, this application proposes a large-scale beekeeping device. Summary of the Invention

[0005] The purpose of this invention is to solve the above-mentioned technical problems by proposing a large-scale beekeeping device.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: A large-scale beekeeping device includes a support base with a beehive on top, and multiple sets of suspension components for suspending the beehive. The suspension components include a fixed magnetic part disposed on the upper end of the support base and a suspended magnetic part disposed on the bottom of the beehive. When the fixed magnetic part extends into the interior of the suspended magnetic part, the two do not contact each other, and the suspended magnetic part drives the beehive to suspend.

[0007] Preferably, the fixed magnetic part includes a first mounting base disposed on the upper end of the support base, the first mounting base being provided with a fixing column, and the fixing column being provided with a first vertical magnetic block and a first horizontal magnetic block.

[0008] Preferably, the outer surface of the fixing column is provided with a plurality of mounting columns, which are distributed in a circumferential array on the fixing column; The first horizontal magnetic block is multiple and is disposed on the outer surface of the mounting column.

[0009] Preferably, the suspended magnetic part includes a second mounting base disposed at the bottom of the beehive, the bottom of the second mounting base is provided with a sleeve, the sleeve is provided with a receiving cavity, the receiving cavity is provided with a second vertical magnetic block, the second vertical magnetic block and the first vertical magnetic block have the same magnetic poles on their opposite sides.

[0010] Preferably, the suspended magnetic part further includes a movable sleeve, the movable sleeve having an installation cavity, and the installation cavity having a plurality of second horizontal magnetic blocks, the second horizontal magnetic blocks having the same magnetic poles on their opposite surfaces as the first horizontal magnetic blocks.

[0011] Preferably, when the fixed magnetic part extends into the interior of the suspended magnetic part, the movable sleeve is driven to move by the driving mechanism, causing the second horizontal magnetic block to move to the outside of the first horizontal magnetic block.

[0012] Preferably, the driving mechanism includes a rectangular column that slides through the sleeve, the rectangular column has an inclined surface, a connecting block is fixed at the bottom of the rectangular column, a first spring is fixed between the connecting block and the sleeve, and a driving ring is threaded onto the sleeve; The inner wall of the drive ring is provided with a support surface, which is arranged in a ring shape. The bottom of the drive ring is flared outward, and the inner wall forms an inclined ring surface, which is configured to cooperate with the inclined surface.

[0013] Preferably, the outer wall of the sleeve is provided with an external thread, the inner wall of the drive ring is provided with an internal thread, the internal thread and the external thread are engaged, and a locking nut is engaged with the external thread on the sleeve, the locking nut being used to lock the drive ring.

[0014] Preferably, a movable block is fixed on the movable sleeve, a guide groove is provided at the end of the rectangular column, a guide rod is fixed in the guide groove, a guide block is slidably mounted on the guide rod, the guide block slides against the inner wall of the guide groove, a second spring is fixed at both ends of the guide block, the second spring is fixed to the inner wall of the guide groove, and the movable block is fixed on the guide block.

[0015] Preferably, it further includes a limiting member, which is fixed on the inner wall of the sleeve. The limiting member includes two limiting blocks distributed vertically. In the initial state, the movable block slides between the two limiting blocks. When the fixed magnetic part extends into the interior of the suspended magnetic part, the movable block disengages from the limiting blocks.

[0016] Compared with the prior art, the beneficial effects of this invention are as follows: 1. By setting up multiple sets of suspended components to suspend the beehive, insects and ants can only climb onto the fixed magnetic part and cannot climb through the fixed magnetic part to the suspended magnetic part and reach the beehive. This will not affect the honey in the beehive, ensuring the quality and purity of the honey and improving the economic benefits for beekeepers.

[0017] 2. The fixed magnetic part and the suspended magnetic part achieve suspension support by generating repulsive force through magnetic blocks with the same magnetic poles. The repulsive forces of the first and second horizontal magnetic blocks at multiple angles work together to make the sleeve coaxial and relatively stable outside the fixed column, ensuring that the beehive is stably suspended and can meet the stable suspension support requirements of beehives under different weight conditions.

[0018] 3. As the seasons change and the supplies placed in the hive vary, and the amount of honey added to the frames increases, the weight of the hive will change. The repulsive force between the first and second vertical magnetic blocks of this device will increase as the distance decreases, but it can still provide suspended support for the hive, adapting to the beekeeping needs under different weight conditions.

[0019] In summary, this invention is suitable for large-scale beekeeping. By using multiple sets of suspended components to suspend the beehive, insects and ants cannot climb to the suspended magnetic part through the fixed magnetic part and thus reach the beehive, avoiding contamination of the honey. It can also automatically adjust with changes in the weight of the beehive, always maintaining stable suspended support. Even after the guide column is removed, the beehive remains stable, effectively solving the insect and ant problem, ensuring honey quality, and improving beekeeping profits. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of a large-scale beekeeping device proposed in this invention; Figure 2 This is a front view of a large-scale beekeeping device proposed in this invention; Figure 3 This is a split view of a beehive in a large-scale beekeeping device proposed in this invention; Figure 4 This is a schematic diagram of the base and guide structure in a large-scale beekeeping device proposed in this invention; Figure 5 This is a schematic diagram of the suspended magnetic section in a large-scale beekeeping device proposed in this invention; Figure 6 This is a schematic diagram of the drive ring structure in a large-scale beekeeping device proposed in this invention; Figure 7 This is a schematic diagram of the structure of the drive ring and sleeve in a large-scale beekeeping device proposed in this invention; Figure 8 This is a structural schematic diagram of the sleeve in a large-scale beekeeping device proposed in this invention, viewed from below. Figure 9 This is a structural schematic diagram of a fixed column in a large-scale beekeeping device proposed in this invention, viewed from below. Figure 10 This is a schematic diagram of the external thread of the sleeve in a large-scale beekeeping device proposed in this invention; Figure 11This is a schematic diagram of the internal structure of the sleeve in a large-scale beekeeping device proposed in this invention; Figure 12 This is a schematic diagram of the structure of the movable sleeve and mounting column in a large-scale beekeeping device proposed in this invention; Figure 13 This is a schematic diagram of the disassembled moving sleeve and mounting column in a large-scale beekeeping device proposed in this invention; Figure 14 This is a cross-sectional view of the limiting block inside the movable sleeve in a large-scale beekeeping device proposed in this invention; Figure 15 This is a cross-sectional structural diagram of the guide rod and slider in a large-scale beekeeping device proposed in this invention; Figure 16 This is a schematic diagram of a large-scale beekeeping device proposed in this invention for large-scale beekeeping.

[0021] In the diagram: 1 Support base, 2 Beehive, 3 Cover plate, 4 Fixing block, 5 Corresponding block, 6 Guide post, 7 Connecting plate, 8 Drive ring, 9 Frame, 10 Second mounting base, 11 Sleeve, 12 First mounting base, 13 Fixing post, 14 Locking nut, 15 Support surface, 16 Annular surface, 17 Support ring, 18 Rectangular post, 19 Inclined surface, 20 Connecting block, 21 First spring, 22 Movable block, 23 Moving sleeve, 24 Mounting post, 25 Receiving cavity, 26 Second vertical magnet, 27 First vertical magnet, 28 Mounting cavity, 29 Second horizontal magnet, 30 First horizontal magnet, 31 Limiting block, 32 Guide groove, 33 Guide block, 34 Guide rod, 35 Second spring. Detailed Implementation

[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0023] In this invention, the first vertical magnetic block 27, the second vertical magnetic block 26, the first horizontal magnetic block 30, and the second horizontal magnetic block 29 are made of weather-resistant permanent magnets (such as neodymium iron boron magnets), and their surfaces are covered with an insulating and wear-resistant layer (such as an epoxy resin coating) that is corrosion-resistant and prevents bees from touching them.

[0024] Reference Figures 1-16 A large-scale beekeeping device includes a support base 1, which is a modular structure. The bottom of the support base 1 is provided with outwardly inclined support legs to ensure the stability of the support base 1. The upper end is fixed with a mounting plate by bolts. Each support base can correspond to 1-2 beehives, and the distance between adjacent beehives is ≥30cm to avoid bees interfering with each other. A beehive 2 is located above the support base 1. The beehive 2 is a two-layer structure. The lower layer is the brood box, which is the breeding area inside. A super is placed on the upper part of the queen excluder. The super is the honey storage area inside. There are removable frames 9 inside the super, which are used to store honey. The upper part of the beehive 2 is sealed by a cover plate 3.

[0025] The support base 1 is equipped with a positioning groove for the beehive 2. An infrared sensor is installed in the positioning groove to monitor the suspended status of the beehive in real time (such as whether it is shifted or the risk of falling). The sensor signal can be connected to a large-scale beekeeping monitoring system.

[0026] This invention enables the centralized construction of 10-50 beehives through modular support base 1 and batch-adaptable suspended components, greatly improving the efficiency of ant prevention and maintenance, and adapting to the batch management needs of large-scale beekeeping.

[0027] It also includes multiple sets of suspension components for suspending the beehive 2. The multiple sets of suspension components are evenly distributed at the bottom of the beehive 2 to ensure stable suspension support for the beehive 2. The suspension components include a fixed magnetic part set at the upper end of the support base 1 and a suspended magnetic part set at the bottom of the beehive 2. When the fixed magnetic part extends into the interior of the suspended magnetic part, the two do not contact each other. The suspended magnetic part causes the beehive 2 to be suspended. Insects and ants can only crawl to the fixed magnetic part and cannot reach the suspended magnetic part through the fixed magnetic part, thus they cannot reach the beehive 2 and will not affect the honey in the beehive 2, ensuring the quality of honey harvesting.

[0028] The fixed magnetic part includes a first mounting base 12 disposed on the upper end of the support base 1. The first mounting base 12 is fixed to the support base 1 by bolts. A fixing post 13 is disposed on the first mounting base 12. A first vertical magnetic block 27 and a first horizontal magnetic block 30 are disposed on the fixing post 13. The first vertical magnetic block 27 is fixed to the upper end of the fixing post 13 and is circular. The outer surface of the fixed column 13 is provided with a plurality of mounting columns 24, which are arranged in a circular array on the fixed column 13. The mounting columns 24 can be cylindrical or polygonal, and their structure must be adapted to the mounting cavity 28 of the movable sleeve 23. There are multiple first horizontal magnetic blocks 30, which are disposed on the outer surface of the mounting post 24. The first horizontal magnetic blocks 30 are fixed on the outer surface of the mounting post 24 and are symmetrically arranged.

[0029] The suspended magnetic part includes a second mounting base 10 disposed at the bottom of the beehive 2. A connecting plate 7 is fixed to the bottom of the beehive 2, and the second mounting base 10 is fixed to the bottom of the connecting plate 7 by bolts. A sleeve 11 is fixedly disposed at the bottom of the second mounting base 10. A receiving cavity 25 is provided inside the sleeve 11. The receiving cavity 25 is disposed at the bottom of the sleeve 11 and the opening faces downward. A second vertical magnetic block 26 is disposed inside the receiving cavity 25. The second vertical magnetic block 26 is fixed to the inner top of the receiving cavity 25. The magnetic poles of the opposite surfaces of the second vertical magnetic block 26 and the first vertical magnetic block 27 are the same, so a repulsive force is generated between them. The second vertical magnetic block 26 is also circular and is coaxially disposed with the first vertical magnetic block 27.

[0030] The suspended magnetic part also includes a movable sleeve 23, which can be tubular or polygonal. The movable sleeve 23 has a mounting cavity 28 inside, and a plurality of second horizontal magnetic blocks 29 are provided on the mounting cavity 28. The second horizontal magnetic blocks 29 are symmetrically distributed in the mounting cavity 28 and are positioned corresponding to the first horizontal magnetic blocks 30. The magnetic poles of the opposite surfaces of the second horizontal magnetic blocks 29 and the first horizontal magnetic blocks 30 are the same.

[0031] When the fixed magnetic part extends into the interior of the suspended magnetic part, the movable sleeve 23 is driven to move by the drive mechanism, causing the second horizontal magnetic block 29 to move to the outside of the first horizontal magnetic block 30, so that the multiple second horizontal magnetic blocks 29 correspond one-to-one with the multiple first horizontal magnetic blocks 30. Since the magnetic poles of the opposite surfaces are the same, the mounting post 24 is located in a stable position inside the movable sleeve 23. However, the two will generate a force along the axial direction of the movable sleeve 23 and will not contact each other, that is, the mounting post 24 is in a suspended state. Since the mounting post 24 is fixed on the fixed post 13, the stability of the mounting post 24 can be ensured.

[0032] The first horizontal magnetic block 30 is not directly opposite the second horizontal magnetic block 29. That is, the first horizontal magnetic block 30 is partially located on the outside of the movable sleeve 23, but there is still a repulsive force between them, which ensures that the mounting post 24 is relatively stable inside the movable sleeve 23, that is, in a coaxial state. However, a thrust along the axial direction of the movable sleeve 23 will be generated, which will cause the mounting post 24 to generate a thrust to move outward from the movable sleeve 23. However, since there are multiple mounting posts 24 and multiple movable sleeves 23, under the combined action of the repulsive forces of the first horizontal magnetic block 30 and the second horizontal magnetic block 29 at multiple angles, the sleeve 11 is fitted on the outside of the fixed post 13 coaxially and relatively stable.

[0033] The driving mechanism includes a rectangular post 18 that slides through the sleeve 11. A rectangular groove is passed through the sleeve 11, and the rectangular post 18 passes through the rectangular groove and slides therewith. An inclined surface 19 is provided on the rectangular post 18. The inclined surface 19 is located at the upper end of the rectangular post 18, and the upper end of the inclined surface 19 is close to the sleeve 11. A connecting block 20 is fixed at the bottom of the rectangular post 18, and a first spring 21 is fixed between the connecting block 20 and the sleeve 11. The first spring 21 is used for the reset of the rectangular post 18.

[0034] The sleeve 11 is threadedly connected to a drive ring 8. The outer wall of the sleeve 11 is provided with an external thread, and the inner wall of the drive ring 8 is provided with an internal thread. The internal thread and the external thread mesh.

[0035] The inner wall of the drive ring 8 is provided with a support surface 15. A support ring 17 is fixed on the sleeve 11. The support surface 15 abuts against the upper end of the support ring 17. The support ring 17 supports and limits the drive ring 8. However, the upper end of the drive ring 8 is not limited. Therefore, in order to ensure the stability of the drive ring 8, a locking nut 14 is engaged with the external thread on the sleeve 11. The locking nut 14 is used to lock the drive ring 8.

[0036] The support surface 15 is arranged in a ring shape, and the bottom of the drive ring 8 is flared outward, that is, it is flared outward. The inner wall forms an inclined annular surface 16, which is matched with the inclined surface 19. That is, when the drive ring 8 moves down, the annular surface 16 will squeeze the inclined surface 19, thereby driving the rectangular column 18 to slide along the rectangular groove.

[0037] A movable block 22 is fixed on the movable sleeve 23, that is, the end of the movable sleeve 23 away from the mounting column 24 is fixed on the movable block 22; the end of the rectangular column 18 is provided with a guide groove 32, a guide rod 34 is fixed in the guide groove 32, a guide block 33 is slidably mounted on the guide rod 34, the guide block 33 slides against the inner wall of the guide groove 32, a second spring 35 is fixed at both ends of the guide block 33, the second spring 35 is fixed to the inner wall of the guide groove 32, the movable block 22 is fixed on the guide block 33, and the second spring 35 is used for the movement and reset of the guide block 33.

[0038] It also includes a limiting member, which is fixed on the inner wall of the sleeve 11. The limiting member includes two limiting blocks 31 distributed vertically. In the initial state, the movable block 22 slides between the two limiting blocks 31. When the fixed magnetic part extends into the interior of the suspended magnetic part, the movable block 22 disengages from the limiting block 31.

[0039] The system also includes a guide mechanism, which includes a fixing block 4 fixed to the support base 1. The fixing block 4 is fixed to the support base 1 by bolts or clips. The fixing block 4 is provided with a slot, and a corresponding block 5 is fixed to the connecting plate 7 by bolts or clips. The corresponding block 5 is provided with through holes at the top and bottom. A guide post 6 is inserted into the slot and passes through the through hole. The guide mechanism is used for the installation limit of the suspended component.

[0040] When installing this large-scale beekeeping device, the support base 1 is first placed in a suitable position, and the support legs extending outward from the bottom ensure the stability of the placement.

[0041] Next, install the guide mechanism, fix the fixing block 4 on the support base 1, insert the guide post 6 into the slot of the fixing block 4, align the corresponding block 5 on the connecting plate 7 with the guide post 6, so that the guide post 6 passes through the through hole of the corresponding block 5, and then move the connecting plate 7 and the beehive 2 downward.

[0042] During the downward movement of the connecting plate 7, the second mounting base 10 and the sleeve 11 will move downward. The sleeve 11 moves downward and fits outside the first vertical magnetic block 27 and the fixing post 13. Due to the setting of the guide mechanism, the first vertical magnetic block 27 and the second vertical magnetic block 26 are coaxially opposite each other and the opposite magnetic poles of the first vertical magnetic block 27 and the second vertical magnetic block 26 are the same.

[0043] It should be noted that the beehive 2 is empty at this time. Due to the repulsive force between the first vertical magnetic block 27 and the second vertical magnetic block 26, the sleeve 11, the connecting plate 7, and the beehive 2 are suspended. However, there will be a horizontal repulsive force between the first vertical magnetic block 27 and the second vertical magnetic block 26. But under the action of the guiding mechanism, the first vertical magnetic block 27 and the second vertical magnetic block 26 are still coaxially arranged.

[0044] At this time, the mounting post 24 and the movable sleeve 23 are opposite to each other and coaxially arranged. Then, the drive mechanism is operated to rotate the drive ring 8 on the sleeve 11. Since the internal thread of the inner wall of the drive ring 8 is engaged with the external thread of the outer wall of the sleeve 11, and the support ring 17 is fixed on the sleeve 11, after the drive ring 8 moves down, the support surface 15 of its inner wall abuts against the upper end of the support ring 17. The support ring 17 plays a supporting and limiting role for the drive ring 8. Since the upper end of the drive ring 8 has no limit structure, its stability needs to be ensured by locking nut 14.

[0045] When the drive ring 8 moves down, the inclined annular surface 16 of the inner wall of the drive ring 8 presses the inclined surface 19 on the rectangular column 18, causing the rectangular column 18 to slide in the rectangular groove of the sleeve 11, and the first spring 21 between the bottom connecting block 20 of the rectangular column 18 and the sleeve 11 is stretched.

[0046] The limiting block 31 limits the movable block 22, preventing the movable block 22 from moving relative to the limiting block 31. Therefore, when the rectangular column 18 moves, it will drive the movable block 22 and the movable sleeve 23 to move synchronously, so that the movable sleeve 23 is fitted on the outside of the mounting column 24. The movement of the movable sleeve 23 causes the second horizontal magnetic block 29 inside to move to the outside of the first horizontal magnetic block 30, so that multiple second horizontal magnetic blocks 29 correspond one-to-one with multiple first horizontal magnetic blocks 30. Since the magnetic poles of the two opposite surfaces are the same, the mounting column 24 is in a stable position inside the movable sleeve 23. At the same time, the two generate a force along the axial direction of the movable sleeve 23, so that the mounting column 24 is in a suspended state. Since the mounting column 24 is fixed on the fixed column 13, it is ensured that the entire beehive 2 is stably suspended through the suspension component.

[0047] Rotate the locking nut 14 to engage with the drive ring 8, lock the drive ring 8, ensure the stable position of the drive ring 8, and thus ensure the stable working state of the suspended assembly.

[0048] Then remove the guide post 6, which will separate the support base 1 from the connecting plate 7 and prevent insects from climbing onto the connecting plate 7 and the beehive 2 through the guide post 6.

[0049] It should be noted that after the guide post 6 is removed, the connecting plate 7 and the sleeve 11 cannot be limited by the guide post 6. Since multiple second horizontal magnetic blocks 29 correspond one-to-one with multiple first horizontal magnetic blocks 30, and the two generate repulsive force, it ensures that the mounting post 24 can be stable in the vertical plane inside the movable sleeve 23, but it cannot ensure that the upper limit is reached in the axial direction. Among them, the first horizontal magnetic blocks 30 are not directly opposite the second horizontal magnetic blocks 29, that is, the first horizontal magnetic blocks 30 are partially located outside the movable sleeve 23, but there is still a repulsive force between them, ensuring that the mounting post 24 is relatively stable inside the movable sleeve 23, that is, in a coaxial state. However, a thrust along the axial direction of the movable sleeve 23 will be generated, causing the mounting post 24 to generate a thrust to move outward from the movable sleeve 23. However, there are multiple mounting posts 24 and multiple movable sleeves 23. Under the cooperation of the repulsive force, the sleeve 11 is fitted on the outside of the fixed post 13, coaxially and relatively stable.

[0050] In this way, the beehive 2 is suspended in the air. Insects and ants on the ground can climb up to the fixed post 13 and the structure above it through the support base 1, but they do not come into contact with the sleeve 11, etc., so that the insects and ants will not climb onto the connecting plate 7 and the beehive 2, effectively preventing insects and ants from affecting the honey.

[0051] After the beehive 2 is stably suspended by the suspension component, the movable block 22 is disengaged from the limiting block 31. Due to the repulsive force between the first horizontal magnetic block 30 and the second horizontal magnetic block 29, the movable sleeve 23 remains stationary, that is, the mounting column 24 and the movable sleeve 23 are relatively stationary.

[0052] Due to seasonal differences, the supplies placed in beehive 2 are also different, such as feed, etc. As the amount of honey on the frame 9 increases, the weight of the connecting plate 7 and beehive 2 increases, causing beehive 2, connecting plate 7 and sleeve 11 to move downward. At this time, the distance between the first vertical magnetic block 27 and the second vertical magnetic block 26 decreases, but the repulsive force increases, which can still support beehive 2 in the air.

[0053] Due to the repulsive force between the first horizontal magnetic block 30 and the second horizontal magnetic block 29, the movable sleeve 23 remains stationary, meaning that the mounting post 24 and the movable sleeve 23 are relatively stationary. Therefore, when the sleeve 11 moves down, it will cause the rectangular post 18 to move down, and the rectangular post 18 will cause the guide rod 34 to move down, meaning that the guide rod 34 slides on the guide block 33. At this time, one of the two second springs 35 is stretched and the other is compressed, preventing the movable sleeve 23 and the rectangular post 18 from moving synchronously. This ensures the stability between the mounting post 24 and the movable sleeve 23, allowing the sleeve 11 to remain in a limiting position in the horizontal direction. This design can meet the stable suspension support requirements of beehives under different weight conditions.

[0054] At this point, the large-scale beekeeping device is installed. Beehive 2 is suspended in the air, and insects can only crawl onto the fixed magnetic part and cannot reach beehive 2, thus ensuring the quality of the honey inside beehive 2.

[0055] Furthermore, since there is space between the movable sleeve 23 and the mounting post 24, and also space between the first vertical magnetic block 27 and the second vertical magnetic block 26, when the beehive 2 is collided or a gust of wind occurs, the beehive 2 will shift. The repulsive force of the magnetic blocks can buffer the impact force or the impact force generated by the collision or gust of wind.

[0056] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A large-scale beekeeping device, comprising a support base (1) with a beehive (2) mounted on top thereon, characterized in that, It also includes multiple sets of suspension components for suspending the beehive (2). The suspension components include a fixed magnetic part set at the upper end of the support base (1) and a suspended magnetic part set at the bottom of the beehive (2). When the fixed magnetic part extends into the interior of the suspended magnetic part, the two do not contact each other. The suspended magnetic part drives the beehive (2) to suspend.

2. The large-scale beekeeping device according to claim 1, characterized in that, The fixed magnetic part includes a first mounting base (12) disposed on the upper end of the support base (1), a fixing column (13) disposed on the first mounting base (12), and a first vertical magnetic block (27) and a first horizontal magnetic block (30) disposed on the fixing column (13).

3. The large-scale beekeeping device according to claim 2, characterized in that, The outer surface of the fixed column (13) is provided with a plurality of mounting columns (24), which are arranged in a circular array on the fixed column (13); There are multiple first horizontal magnetic blocks (30), which are disposed on the outer surface of the mounting post (24).

4. A large-scale beekeeping device according to claim 2, characterized in that, The suspended magnetic part includes a second mounting base (10) provided at the bottom of the beehive (2). A sleeve (11) is provided at the bottom of the second mounting base (10). A receiving cavity (25) is provided inside the sleeve (11). A second vertical magnetic block (26) is provided inside the receiving cavity (25). The magnetic poles of the opposite surfaces of the second vertical magnetic block (26) and the first vertical magnetic block (27) are the same.

5. A large-scale beekeeping device according to claim 4, characterized in that, The suspended magnetic part also includes a movable sleeve (23) that is movably set. The movable sleeve (23) has an installation cavity (28) inside. The installation cavity (28) has a plurality of second horizontal magnetic blocks (29). The second horizontal magnetic blocks (29) have the same magnetic poles on opposite sides as the first horizontal magnetic blocks (30).

6. A large-scale beekeeping device according to claim 5, characterized in that, When the fixed magnetic part extends into the interior of the suspended magnetic part, the movable sleeve (23) is driven to move by the driving mechanism, causing the second horizontal magnetic block (29) to move to the outside of the first horizontal magnetic block (30).

7. A large-scale beekeeping device according to claim 6, characterized in that, The driving mechanism includes a rectangular column (18) that slides through the sleeve (11), the rectangular column (18) has an inclined surface (19), and a connecting block (20) is fixed at the bottom of the rectangular column (18). A first spring (21) is fixed between the connecting block (20) and the sleeve (11). The sleeve (11) is threaded with a drive ring (8). The inner wall of the drive ring (8) is provided with a support surface (15). The support surface (15) is arranged in an annular shape. The bottom of the drive ring (8) is flared outward. The inner wall forms an inclined annular surface (16). The annular surface (16) is configured to cooperate with the inclined surface (19).

8. A large-scale beekeeping device according to claim 7, characterized in that, The outer wall of the sleeve (11) is provided with an external thread, and the inner wall of the drive ring (8) is provided with an internal thread. The internal thread and the external thread are engaged, and the external thread on the sleeve (11) is engaged with a locking nut (14). The locking nut (14) is used to lock the drive ring (8).

9. A large-scale beekeeping device according to claim 5, characterized in that, The movable sleeve (23) is fixed with a movable block (22). The end of the rectangular column (18) is provided with a guide groove (32). A guide rod (34) is fixed in the guide groove (32). A guide block (33) is slidably mounted on the guide rod (34). The guide block (33) slides against the inner wall of the guide groove (32). A second spring (35) is fixed at both ends of the guide block (33). The second spring (35) is fixed to the inner wall of the guide groove (32). The movable block (22) is fixed on the guide block (33).

10. A large-scale beekeeping device according to claim 9, characterized in that, It also includes a limiting member, which is fixed on the inner wall of the sleeve (11). The limiting member includes two limiting blocks (31) distributed vertically. In the initial state, the movable block (22) slides between the two limiting blocks (31). When the fixed magnetic part extends into the interior of the suspended magnetic part, the movable block (22) disengages from the limiting block (31).