Escape-proof cage for wasp breeding and use method of escape-proof cage

By designing Hufeng's breeding anti-escaping cage, the top cover is raised structure, wooden rod jack and multi-functional anti-escaping components, the problems of queen bee flight and honeycomb instability are solved, and the stability of the honeycomb and effective protection of materials are achieved.

CN120477142APending Publication Date: 2025-08-15曹键
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Patent Information

Application Number
CN202510762620.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The existing bee breeding cages have the risk of queen bee flying, and the king-controlled tablets are prone to jamming worker bees, resulting in material drops and farming losses, and the honeycomb is unstable and easy to fall.

Method used

A Hufeng breeding anti-escaping cage was designed, which adopts a top cover raised structure, wooden rod jack, strap hole, multi-functional anti-escaping components and feeding components, including king-controlled sheets and mesh sheets. The conical cylinder prevents the queen bee from flying, reduces the drop of materials on the landing platform, and enhances the stability of the honeycomb.

Benefits of technology

Effectively prevent queen bees from flying, reduce the fall of worker bees, improve the stability of honeycombs, and reduce breeding losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of bee breeding cages, and discloses a wasp breeding escape-proof cage and a using method thereof.The top of a cage body is provided with a top cover, the top cover protrudes upwards, the two ends of the protruding part are provided with stick insertion holes, a stick is transversely inserted into the two stick insertion holes, the protruding part is provided with a top platform, and the top cover is provided with a feeding hole; raised stripes are arranged on the inner wall of the top cover; the top cover is provided with multiple groups of bandage holes; a door frame is arranged on the front face of the cage body and connected with a multifunctional anti-escape assembly. The multifunctional escape-proof assembly comprises a frame, a queen bee control piece is hinged to the outer surface of the left side of the frame, the queen bee control piece is arranged on the frame in an opening and closing mode, the queen bee control piece is provided with a queen bee control hole and a round hole, the queen bee control piece is connected with a conical barrel on the inner side of the round hole, the outer end of the conical barrel is wide, the inner end of the conical barrel is narrow, and an inner port of the conical barrel is not larger than the queen bee control hole. A mesh piece is hinged to the outer surface of the left side of the queen bee control piece, and the mesh piece is arranged on the queen bee control piece in an opening and closing mode. By using the device, worker bees can return to nests conveniently, and falling of worker bee materials is reduced; the honeycomb is more stable.
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Description

Technical Field

[0001] The invention belongs to the technical field of bee breeding cages, and in particular relates to an escape-proof cage for hornet breeding and a use method thereof. Background Art

[0002] Bee farming requires the use of queen bees to reproduce and give birth to brood bees. When breeding wasps on a large scale and after the breeding is completed, they need to be released into the wild. However, since the queen bee has the risk of flying away and moving at a certain stage, this will cause the queen bee to leave and never return, further causing unnecessary losses to the breeding.

[0003] The size of the existing queen control plate hole is mainly for the purpose of locking the queen bee, ignoring the problem that the working bees will waste time climbing over the queen control plate when returning to the hive, and ignoring the problem that the queen control plate will block the food brought back by the working bees.

[0004] Existing queen control sheets are not equipped with a special mechanism to lock up worker bees, and are often replaced by paper, tape, plastic sheets, etc. When paper, tape, plastic sheets, etc. are used to block the queen control sheet, the shaking will cause the worker bees to leave the nest and injure people.

[0005] Moreover, when using traditional breeding cages, hornets can only build their hives on a smooth top cover. Due to the gravity of the hive and weather conditions, the hives often fall, causing losses to hornet breeding. Summary of the Invention

[0006] In order to overcome the above technical problems, the present invention provides an escape-proof cage for breeding hornets and a method for using the same.

[0007] The present invention adopts the following technical solutions: The anti-escape cage for hornet breeding comprises a cage body, a top cover is installed on the top of the cage body, the top cover is raised, wooden stick insertion holes are provided at both ends of the raised part, a wooden stick is inserted horizontally into the two wooden stick insertion holes, the raised part has a top platform, the top cover is provided with a feeding hole, and the inner wall of the top cover is provided with raised stripes; a plurality of groups of strap holes are provided on the top cover; a door frame is provided on the front side of the cage body, and the door frame is connected to a multifunctional anti-escape component; the multifunctional anti-escape component comprises a frame, a king control piece is hingedly connected to the left outer surface of the frame so that the king control piece is opened and closed and is set on the frame, the king control piece is provided with a king control hole and a circular hole, the king control piece is connected to a conical tube on the inner side of the circular hole, the outer end of the conical tube is wide and the inner end is narrow, and the inner end of the conical tube is not larger than the king control hole; the left outer surface of the king control piece is hingedly connected to a mesh piece so that the mesh piece is opened and closed and is set on the king control piece.

[0008] Preferably, a window frame is provided on the side of the cage body, the window frame is connected to the feeding assembly, the feeding assembly includes a window panel, the window panel has a feeding hole, the inner wall of the window panel is provided with a feeding platform, and the window panel also has a hinge hole above each feeding hole, and a swinging feeding door can be provided through the hinge hole to control the opening and closing of the feeding hole.

[0009] Preferably, the window plate is also reserved with a king-control through-hole, and the king-control through-hole is pre-arranged with a blocking piece for blocking.

[0010] Preferably, the top platform of the top cover is provided with a communication hole for the incubator, and a rain shield is detachably connected to the top of the top cover. The rain shield is flat and a plug rod is provided on the bottom of the rain shield. The top platform of the top cover has a corresponding slot, and the rain shield covers the communication hole for the incubator.

[0011] Preferably, the outer wall of the mesh sheet is provided with a footing platform.

[0012] Preferably, the frame is provided with a lock nose 1, the control piece is provided with a corresponding lock hole 1, the outer wall of the control piece is provided with a lock nose 2, and the mesh piece is provided with a corresponding lock hole 2.

[0013] The method of using the anti-escape cage for hornet breeding includes the following steps: During the breeding phase, the queen control panel and mesh panels are closed, preventing all bees from leaving the cage. S2. Wooden sticks and raised stripes help reinforce the honeycomb, and the strap holes are used to pass straps through to bind the wooden sticks and honeycomb; During the stocking stage, the queen control plate is closed and the mesh plate is opened. The queen control plate intercepts the queen bee, while worker bees can move in and out freely. S4. When worker bees return to the hive, they can climb back into the cage through the circular hole and conical tube to prevent the dropping of materials caused by collisions when flying through the queen control plate; S5. Beekeepers can open the feeding hole and place food on the feeding platform for the bees to take.

[0014] Compared with the prior art, the present invention has the following beneficial effects: The multifunctional housing assembly of the present invention is hingedly provided with a queen control plate and a mesh plate, which can be flexibly opened and closed. The queen control plate has a circular hole, and the inner side of the circular hole is connected to a tapered tube with a wide outer end and a narrow inner end. The inner end has a smaller hole diameter to prevent the queen bee from drilling out, while the outer end has a larger hole diameter to facilitate the return of worker bees to the hive. When returning to the hive from the tapered tube, it is not easy to collide with or drop materials. This solution provides a wooden stick insertion hole for inserting a wooden stick, and the inner wall of the top cover is provided with raised stripes, which can enhance the stability of the honeycomb, and the provision of a strap hole facilitates the use of straps to reinforce the honeycomb; Traditional breeding cages are not designed with a resting place for worker bees to return to the nest. When worker bees enter the cage and climb over the queen control plate, they have to hover while looking for the entry and exit holes. Food often falls during the hovering period. This solution sets a landing platform on the mesh plate for worker bees to land and observe the through-holes, reducing food drops. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is an overall schematic diagram of Example 1; Figure 2 Schematic diagram of the top cover and cage body of Example 1; Figure 3 It is a schematic diagram of a multifunctional anti-escape component; Figure 4 This is a schematic diagram of the feeding component; Figure 5 It is a schematic diagram of the top cover and cage body of the second embodiment.

[0016] Description of reference numerals: 1. Frame; 2. King control plate; 3. Round hole; 4. Conical tube; 5. Mesh plate; 6. Landing platform; 7. Lock nose 1; 8. Lock hole 1; 9. Lock nose 2; 10. Lock hole 2; 11. Window panel; 12. Feeding hole; 13. Hinge hole; 14. Feeding platform; 15. Cage body; 16. Door frame; 18. Rain shield; 19. Top cover; 20. Wooden stick insertion hole; 21. Feeding hole; 22. Incubator connecting hole; 23. Raised stripes; 24. Window frame. DETAILED DESCRIPTION

[0017] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings. The same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. Unless otherwise specified, the raw materials and equipment used are commercially available or commonly used in the art. The methods in the embodiments, unless otherwise specified, are conventional methods in the art. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0018] Example 1 like Figures 1 to 3 As shown, the anti-escape cage for hornet breeding includes a cage body 15, a top cover 19 is installed on the top of the cage body 15, and the top cover 19 is bolted or tied to the cage body 15 through the installation holes along the circumference. The top cover 19 is raised, and wooden stick insertion holes 20 are provided at both ends of the raised part. A wooden stick is inserted horizontally into the two wooden stick insertion holes 20. The raised part has a top platform, and the top cover 19 is provided with a feeding hole 21. The inner wall of the top cover 19 is provided with raised stripes 23. The top cover 19 is provided with multiple groups of strap holes. By providing wooden sticks and raised stripes 23, the beehive construction can be made more solid and not easy to fall. The strap holes can assist in fixing the wooden sticks and the beehive. The beehive can be tied to a position near the door frame 16 using the strap holes, which is beneficial for the worker bees to find pheromones and return to the nest; the front of the cage body 15 is provided with a door frame 16, and the door frame 16 is connected to the multifunctional anti-escape component ( Figure 3The multifunctional anti-escape component includes a frame 1, which is installed on the door frame 16 through the installation holes. The left outer surface of the frame 1 is hinged with a control piece 2, so that the control piece 2 is opened and closed on the frame 1. The frame 1 is provided with a lock nose 7, and the control piece 2 is correspondingly provided with a lock hole 8. The lock nose 7 and the lock hole 8 are used to lock the control piece 2 in the closed state. The control piece 2 is provided with a control hole and a circular hole 3. The control piece 2 is connected to a conical cylinder 4 on the inner side of the circular hole 3. The conical cylinder 4 is connected to the inner side of the circular hole 3. The outer end of the tube 4 is wide and the inner end is narrow. The inner port of the tapered tube 4 is not larger than the queen control hole, and both the inner port and the queen control hole can prevent the queen bee from escaping. The left outer surface of the queen control plate 2 is hinged to the mesh plate 5, so that the mesh plate 5 is opened and closed on the queen control plate 2. The outer wall of the king control plate 2 is provided with two locking noses 9, and the mesh plate 5 is correspondingly provided with two locking holes 10. The locking noses 9 and the locking holes 10 are used to lock the mesh plate 5 in the closed state. When the king control plate 2 and the mesh plate 5 are closed, all bees cannot enter or exit freely.

[0019] See also Figure 1 、 Figure 4 , a window frame 24 is provided on the side of the cage body 15, and the window frame 24 is connected to the feeding assembly ( Figure 4 ), the feeding assembly includes a window panel 11, which is mounted to the window frame 24 through mounting holes along the circumference. The window panel 11 has feeding holes 12, and a feeding platform 14 is set on the inner wall of the window panel 11. The window panel 11 also has a hinge hole 13 above each feeding hole 12. A swing-type feeding door can be set through the hinge hole 13 to control the opening and closing of the feeding hole 12. The feeding door is moved to one side to open the feeding hole 12, so that food can be placed through the feeding hole 12 to the feeding platform 14 for the bees to use. The window panel 11 can also have a reserved queen control hole, which is pre-set with a blocking piece to block it and can be opened and used optionally; the outer wall of the mesh sheet 5 is provided with a landing platform 6, which can provide a landing place for worker bees to observe the location of the entrance and exit holes.

[0020] The method of using the anti-escape cage for hornet breeding includes the following steps: S1 cultivation stage, close the control piece 2, mesh piece 5, and use a hook or lock to lock the nose 7, lock the nose 9 II, all bees can not be caged; S2. The sticks and raised stripes 23 assist in reinforcing the hive, the strap holes are used to pass through the straps to bind the sticks and the hive; S3 stocking stage, keep the control piece 2 closed, open the mesh sheet 5, the control piece 2 intercepts the queen bee, worker bees can freely move in and out of work; S4. When the worker bees return to the nest, they can climb back into the cage through the circular hole 3 and the conical tube 4 to prevent the material from falling when flying through the control piece 2 and colliding; S5. The beekeeper can open the feeding hole 12 and put food into the feeding platform 14 for the bees to take.

[0021] Example 2 The difference between this embodiment and the first embodiment is that the top platform of the top cover 19 is provided with an incubator communication hole 22, and the top of the top cover 19 is detachably connected to the rain shield 18 ( Figure 5 ), the rain shield 18 is in the shape of a flat plate, a plug rod is set on the bottom surface of the rain shield 18, and a slot is correspondingly provided on the top platform of the top cover 19. The rain shield 18 is installed by plugging and fitting the plug rod and the slot. The rain shield 18 covers the connecting hole 22 of the incubator.

[0022] Initially, the rain shield 18 is removed and a cultivation box is placed on the top cover 19 for cultivation. After the cultivation is completed, the cultivation box is removed and the rain shield 18 is installed to block and shield the cultivation box communication hole 22.

[0023] Although the 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 variations may be made to the above embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A cage for breeding and escaping hornets, comprising a cage body, characterized in that: The cage is equipped with a top cover, which is raised upward. The two ends of the raised part are provided with wooden stick insertion holes. A wooden stick is inserted horizontally into the two wooden stick insertion holes. The raised part has a top platform, a feeding hole is provided on the top cover, and the inner wall of the top cover is provided with raised stripes. The top cover is provided with multiple sets of strap holes. The front of the cage is provided with a door frame, and the door frame is connected to the multifunctional anti-escape component. The multifunctional anti-escape component includes a frame, and the left outer surface of the frame is hinged to a control plate so that the control plate can be opened and closed on the frame. The control plate is provided with a control hole and a circular hole. The control plate is connected to a conical tube on the inner side of the circular hole. The outer end of the conical tube is wide and the inner end is narrow. The inner end of the conical tube is no larger than the control hole; the left outer surface of the control plate is hinged to a mesh plate so that the mesh plate can be opened and closed on the control plate.

2. The anti-escape cage for hornet breeding according to claim 1, characterized in that: A window frame is provided on the side of the cage body, and the window frame is connected to the feeding assembly. The feeding assembly includes a window panel, a feeding hole is provided on the window panel, and a feeding platform is provided on the inner wall of the window panel. The window panel also has a hinge hole above each feeding hole, and a swinging feeding door can be provided through the hinge hole to control the opening and closing of the feeding hole.

3. The anti-escape cage for hornet breeding according to claim 2, characterized in that: The window panel also has a reserved king-control through hole, which is pre-set with a blocking piece to block it.

4. The anti-escape cage for hornet breeding according to claim 1, characterized in that: The top platform of the top cover is provided with a communication hole for the incubator. The top of the top cover is detachably connected to a rain shield, which is flat and has a plug-in rod on its bottom. The top platform of the top cover has a corresponding slot, and the rain shield covers the communication hole for the incubator.

5. The anti-escape cage for hornet breeding according to claim 1, characterized in that: The outer wall of the mesh sheet is provided with a footing platform.

6. The anti-escape cage for hornet breeding according to claim 1, characterized in that: The frame is provided with a lock nose, the king-controlling piece is provided with a lock hole one correspondingly, the outer wall of the king-controlling piece is provided with a lock nose two, and the mesh piece is provided with a lock hole two correspondingly.

7. A method for using a hornet's nesting cage, characterized in that: The anti-escape cage for hornet breeding according to claim 2 further comprises the following: During the breeding phase, the queen control panel and mesh panels are closed, preventing all bees from leaving the cage. S2. Wooden sticks and raised stripes help reinforce the honeycomb, and the strap holes are used to pass straps through to bind the wooden sticks and honeycomb; During the stocking stage, the queen control plate is closed and the mesh plate is opened. The queen control plate intercepts the queen bee, while worker bees can move in and out freely. S4. When worker bees return to the hive, they can climb back into the cage through the circular hole and conical tube to prevent the dropping of materials caused by collisions when flying through the queen control plate; S5. Beekeepers can open the feeding hole and place food on the feeding platform for the bees to take.