Partitioned insect feeding device

By designing a zoned insect rearing device, the problems of limited functionality and inconvenient management of traditional devices are solved, enabling flexible adjustment and efficient management of the insect rearing space, thereby improving the efficiency and health of insect rearing.

CN121195902APending Publication Date: 2025-12-26TIBET AUTONOMOUS REGION INST OF PLATEAU BIOLOGY
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Patent Information

Application Number
CN202511748845.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-26
Publication Date
2025-12-26

AI Technical Summary

Technical Problem

Traditional insect rearing equipment has limited functionality and cannot meet the diverse needs of insects throughout their entire life cycle. Its fixed spatial layout makes it difficult to adjust flexibly, it is inconvenient to clean and prone to bacterial growth, and it lacks effective management tools.

Method used

Design a zoned insect rearing device, which adopts adjustable blocking mechanisms and semi-circular plates to achieve flexible adjustment of the rearing space and regional restriction of insects. It is equipped with side tubes and rods for guidance and cleaning, and combined with heating devices and excrement collection structures.

Benefits of technology

It enables flexible layout and efficient management of insect rearing space, simplifies the process of insect transfer and cleaning, improves the accuracy and efficiency of experiments, and reduces operational complexity.

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Abstract

The invention discloses a partitioned insect feeding device, and relates to the technical field of insect feeding devices. Comprising a base, a plurality of feeding modules are installed on the base and annularly distributed, each feeding module comprises an arc-shaped feeding chamber, the side face of each arc-shaped feeding chamber is of a transparent structure, and the two ends and the top of each arc-shaped feeding chamber are of an open structure; the arc-shaped top plate is located in the top opening of the arc-shaped feeding chamber, the arc-shaped top plate and one side of the top of the arc-shaped feeding chamber form an outer arc-shaped slide way, and the arc-shaped top plate and the other side of the top of the arc-shaped feeding chamber form an inner arc-shaped slide way. By arranging the adjustable blocking mechanism, the mounting shaft and the vertical rod can synchronously slide in the inner arc-shaped slide way and the outer arc-shaped slide way according to actual requirements, the position of the mounting frame is adjusted, the leaf plates are driven to be opened or closed by screwing a rotating handle on the basis of transmission of a driving gear and a rack, and therefore connection or disconnection of the feeding modules is achieved.
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Description

Technical Field

[0001] This invention relates to the field of insect rearing equipment technology, and more particularly to a partitioned insect rearing equipment. Background Technology

[0002] The limitations of traditional rearing containers are the primary factor restricting entomological research and large-scale breeding. Early insect rearing mainly relied on basic containers such as petri dishes, test tubes, and insect tanks. These devices have limited functions and cannot meet the diverse needs of insects throughout their entire life cycle. For example, lepidopteran insects need to go through four stages: egg, larva, pupa, and adult. Traditional methods require frequent transfer of insects between different containers, which is not only cumbersome but also harmful to the insects.

[0003] The existing breeding equipment has a relatively fixed spatial layout and lacks flexibility, making it difficult to rationally divide the breeding area according to actual needs, which limits the efficiency of insect breeding and the accuracy of experiments.

[0004] In addition, management and maintenance during the rearing process are also issues that need to be considered. Insects produce excrement, which, if not cleaned up in a timely manner, can easily breed bacteria and parasites, affecting the healthy growth of insects and even potentially leading to the spread of diseases. However, some existing rearing devices are not well-designed for cleaning excrement, are cumbersome to operate, and increase the workload of researchers. Furthermore, traditional devices lack effective auxiliary tools when it is necessary to observe, guide, or repel insects.

[0005] A search revealed Chinese patent application CN202080069851.5, which discloses an insect rearing box for raising insects from the egg stage to the pupa stage. The insect rearing box includes side walls, a top cover, and a bottom cover, the top and bottom covers being detachably connected to the side walls to form insect rearing chambers. The insect rearing box in the aforementioned literature has the following shortcomings: it cannot flexibly adjust the rearing space; each rearing chamber is relatively independent and cannot be connected or isolated as needed. Summary of the Invention

[0006] The purpose of this invention is to address the shortcomings of existing technologies by proposing a partitioned insect rearing device.

[0007] To achieve the above objectives, the present invention adopts the following technical solution: A partitioned insect rearing device includes: a base, on which multiple rearing modules are mounted, the multiple rearing modules being arranged in a ring, each rearing module comprising: The curved rearing room has transparent sides and open ends and top. The curved top plate is located inside the top opening of the curved feeding room. The curved top plate and one side of the top of the curved feeding room form an outer curved slide, and the curved top plate and the other side of the top of the curved feeding room form an inner curved slide. The connecting frame is fixed to the arc-shaped feeding room, and the middle part of the connecting frame is connected to the arc-shaped top plate through the connecting plate; An adjustable barrier mechanism is installed in the arc-shaped feeding chamber.

[0008] As a preferred embodiment of the present invention, the adjustable blocking mechanism comprises: The mounting frame has a vertical pole installed on its top, which is movably installed inside the outer arc-shaped slide rail. The mounting shaft is rotatably mounted inside the mounting bracket. The top of the mounting shaft passes through the inner arc-shaped slide and is fitted with a handle. The bottom of the mounting shaft is fitted with a drive gear. The rack is slidably mounted on the bottom of the mounting frame along the radial direction of the arc-shaped feeding chamber. The rack has protruding teeth on both sides, and one of the protruding teeth on the rack meshes with the drive gear. Mounting rods are rotatably mounted on the bottom of the mounting frame. Multiple mounting rods are distributed linearly at equal intervals. Blades are fixed on both sides of the mounting rods. Driven gears are mounted on the mounting rods, and the driven gears mesh with the convex teeth on the other side of the rack. The baffle is fixed to both sides of the bottom of the mounting frame, near the side wall of the arc-shaped breeding chamber.

[0009] As a preferred embodiment of the present invention: the arc-shaped feeding chamber and the arc-shaped top plate are provided with mounting holes distributed along both sides of the outer arc-shaped slide. The uprights are used in conjunction with a semi-circular plate, which is provided with rod holes for the uprights to be inserted. The bottom of the semi-circular plate is fixed with a mounting column. When the semi-circular plate is installed on the uprights through the rod holes, the mounting column is inserted into the mounting holes.

[0010] As a preferred embodiment of the present invention: when the mounting frames of two adjacent adjustable blocking mechanisms come together, the two uprights are inserted into the rod holes of the two semicircular plates, and the two semicircular plates are combined to form a disc-shaped structure; the mounting posts of the two semicircular plates are inserted into the mounting holes of their respective arc-shaped feeding chambers, and the sides of the semicircular plates are provided with fixing grooves. The two combined semicircular plates are fixedly connected by reinforcement components.

[0011] As a preferred embodiment of the present invention: the reinforcement includes two arc-shaped buckles, one arc-shaped buckle has slots at both ends, and the other arc-shaped buckle has pins at both ends that are adapted to the slots. The two arc-shaped buckles are installed in the fixing slots of two combined semi-circular plates, and the pins are engaged in the slots to form a closed-loop structure.

[0012] As a preferred embodiment of the present invention: a central seat is installed in the middle of the base, a heating device is installed on the central seat, and the arc-shaped feeding chamber has evenly distributed strip-shaped openings on the side near the central seat.

[0013] As a preferred embodiment of the present invention: the bottom of the arc-shaped feeding chamber is provided with evenly distributed drainage holes, and a receiving drawer is detachably installed at the bottom of the arc-shaped feeding chamber, the receiving drawer having an arc-shaped structure adapted to the arc-shaped feeding chamber.

[0014] As a preferred embodiment of the present invention: a positioning cylinder is fixed on the outer wall of the central seat, a positioning post adapted to the positioning cylinder is installed on the outer wall of the receiving drawer side, and a pull handle is provided on the receiving drawer side.

[0015] As a preferred embodiment of the present invention: a plurality of side tubes are provided outside the arc-shaped breeding room, and an elastic membrane is fixed inside one end of the side tube near the arc-shaped breeding room. The elastic membrane has a "rice" shaped opening. A first end cap or a second end cap is detachably installed at the other end of the side tube by means of threads. The second end cap has a ball seat fixed in the middle, and a movable ball is movably installed inside the ball seat. A rod is slidably connected inside the movable ball.

[0016] As a preferred embodiment of the present invention, the rod comprises: The lever is slidably installed inside the movable ball, and a second operating handle is provided on the outer side of one end of the lever; The inner rod is slidably installed inside the sleeve rod, and a first operating handle is installed at one end of the inner rod; The sleeve rod has a strip-shaped opening on one side, and an elastic piece is connected to one end of the strip-shaped opening. The other end of the elastic piece is fixed to the end side wall of the inner rod. Brush heads are evenly distributed on the outer side of the elastic piece.

[0017] The beneficial effects of this invention are as follows: 1. By setting an adjustable blocking mechanism, the present invention can simultaneously slide the mounting shaft and the upright in the inner arc-shaped slide and the outer arc-shaped slide according to actual needs, thereby adjusting the position of the mounting frame. By turning the handle, based on the transmission of the drive gear and rack, the blades are driven to open or close, thereby realizing the conduction or blocking of each feeding module.

[0018] 2. This invention allows for easy modification of the rearing space layout of the rearing device through the adjustment of multiple adjustable blocking mechanisms. Furthermore, the adjustable blocking mechanisms can be adjusted as needed to confine insects to a designated area, thereby enabling the removal and maintenance of other rearing modules, making it flexible and convenient to use.

[0019] 3. By setting up structures such as semi-circular plates, the present invention can fix the mounting frame in the arc-shaped breeding chamber through the cooperation of the semi-circular plates, mounting columns and mounting holes. It can also move two mounting frames to the connection point of two arc-shaped breeding chambers. Through the cooperation of two semi-circular plates and two arc-shaped buckles, the adjacent mounting frames are fixedly connected, thereby realizing the connection of two adjacent arc-shaped breeding chambers.

[0020] 4. By setting up a side tube, a first end cap, and a second end cap, the present invention can seal the side tube as needed, or install the second end cap inside the side tube and extend it into the arc-shaped rearing chamber through a rod to guide or drive away insects, thus facilitating better rearing and management.

[0021] 5. By setting up rods, the present invention can insert rods as needed. By pushing the inner rod into the sleeve rod, the elastic plate deforms and bulges to both sides, thereby better exposing the brush head to the outside. The internal space of the arc-shaped breeding chamber can be easily cleaned by operating the rods; there is no need to remove the arc-shaped breeding chamber for maintenance, which improves convenience. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of a partitioned insect rearing device proposed in this invention; Figure 2 This is a schematic diagram of the structure of a partitioned insect rearing device proposed in this invention, showing the removal of the arc-shaped rearing chamber; Figure 3 This is a schematic diagram of the disassembled receiving drawer of the arc-shaped rearing chamber of a partitioned insect rearing device proposed in this invention. Figure 4 This is a cross-sectional structural diagram of the outer rod and inner rod of a partitioned insect feeding device proposed in this invention; Figure 5 This is a schematic diagram of the inner side of the arc-shaped rearing chamber of a partitioned insect rearing device proposed in this invention; Figure 6 This is a schematic diagram of the disassembled semicircular plate and upright pole of a partitioned insect rearing device proposed in this invention. Figure 7 This is a schematic diagram of the drive gear, rack, and driven gear transmission structure of a partitioned insect rearing device proposed in this invention.

[0023] In the diagram: 1-Base; 2-Arc-shaped top plate; 3-Center seat; 4-Mounting hole; 5-Connecting frame; 6-Pull handle; 7-Receiver drawer; 8-First end cover; 9-Side cylinder; 10-Arc-shaped feeding chamber; 11-Outer arc-shaped slide; 12-Inner arc-shaped slide; 13-Positioning cylinder; 14-Leaf plate; 15-Elastic membrane; 16-Sleeve rod; 17-Leakage hole; 18-Positioning column; 19-First operating handle; 20-Second operating handle; 21-Ball seat; 22-Moving ball; 23-Elastic plate; 24-Brush head; 25-Second end cap; 26-Inner rod; 27-Strip-shaped opening; 28-Mounting bracket; 29-Semi-circular plate; 30-Driven gear; 31-Upright rod; 32-Mounting post; 33-Arc-shaped buckle; 34-Slot; 35-Rod hole; 36-Clip post; 37-Handle; 38-Baffle; 39-Mounting rod; 40-Rack; 41-Drive gear. Detailed Implementation

[0024] The technical solution of the present invention will be further described in detail below with reference to specific embodiments.

[0025] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0026] Example 1: A partitioned insect rearing device, such as Figure 1-7 As shown, it includes: a base 1, on which multiple feeding modules are mounted, arranged in a ring shape, and each feeding module includes: The curved rearing room 10 has a transparent structure on the sides and an open structure at both ends and the top. The arc-shaped top plate 2 is located inside the top opening of the arc-shaped feeding room 10. The arc-shaped top plate 2 and one side of the top of the arc-shaped feeding room 10 form an outer arc-shaped slide 11, and the arc-shaped top plate 2 and the other side of the top of the arc-shaped feeding room 10 form an inner arc-shaped slide 12. The connecting frame 5 is fixed on the arc-shaped feeding chamber 10, and the middle part of the connecting frame 5 is connected to the arc-shaped top plate 2 through the connecting plate; An adjustable blocking mechanism is installed inside the arc-shaped feeding chamber 10.

[0027] To facilitate adjustment of the internal space of the arc-shaped feeding chamber 10; such as Figure 2 , Figure 5 , Figure 6 , Figure 7 As shown, the adjustable blocking mechanism includes: Mounting bracket 28, with a vertical rod 31 mounted on the top of the mounting bracket 28, the vertical rod 31 being movably mounted inside the outer arc-shaped slide rail 11; The mounting shaft is rotatably mounted in the mounting bracket 28. The top of the mounting shaft passes through the inner arc-shaped slide 12 and is fitted with a handle 37. The bottom of the mounting shaft is fitted with a drive gear 41. The rack 40 is slidably mounted on the bottom of the mounting frame 28 along the radial direction of the arc-shaped feeding chamber 10. The rack 40 has protruding teeth on both sides, and one of the protruding teeth on the rack 40 meshes with the drive gear 41. Mounting rod 39 is rotatably mounted on the bottom of mounting bracket 28. Multiple mounting rods 39 are linearly distributed at equal intervals. Blade plates 14 are fixed on both sides of mounting rod 39. Driven gear 30 is mounted on mounting rod 39. Driven gear 30 meshes with the convex tooth on the other side of rack 40. Baffle 38 is fixed to both sides of the bottom of the mounting frame 28, near the side wall of the arc-shaped feeding chamber 10; By setting an adjustable blocking mechanism, the mounting shaft and the upright 31 can be slid synchronously in the inner arc-shaped slide rail 12 and the outer arc-shaped slide rail 11 according to actual needs, so as to adjust the position of the mounting frame 28. By turning the handle 37, based on the transmission of the drive gear 41 and the rack 40, each blade 14 is driven to open or close, thereby realizing the conduction or blocking of each feeding module. With the adjustment of multiple adjustable blocking mechanisms, the layout of the breeding space of the breeding device can be easily changed, and the adjustable blocking mechanisms can be adjusted as needed to restrict the insects to a designated area, thereby making it easier to remove and maintain other breeding modules, making it flexible and convenient to use.

[0028] To facilitate structural fixation; such as Figure 6 As shown, the arc-shaped feeding chamber 10 and the arc-shaped top plate 2 are provided with mounting holes 4 distributed along both sides of the outer arc-shaped slide rail 11. The upright 31 is used in conjunction with a semi-circular plate 29. The semi-circular plate 29 is provided with rod holes 35 for the upright 31 to be inserted. The bottom of the semi-circular plate 29 is fixed with a mounting post 32. When the semi-circular plate 29 is installed on the upright 31 through the rod holes 35, the mounting post 32 is inserted into the mounting hole 4.

[0029] To facilitate structural fixation; such as Figure 6 As shown, the ratio of the number of arc-shaped feeding chambers 10 to adjustable blocking mechanisms is 1:2. When the mounting frames 28 of two adjacent adjustable blocking mechanisms are close together, the two uprights 31 are inserted into the rod holes 35 of the two semi-circular plates 29, and the two semi-circular plates 29 are combined to form a disc-shaped structure. The mounting posts 32 of the two semi-circular plates 29 are inserted into the mounting holes 4 of their respective arc-shaped feeding chambers 10. The sides of the semi-circular plates 29 are provided with fixing grooves. The two combined semi-circular plates 29 are fixedly connected by reinforcement components.

[0030] To facilitate structural fixation; such as Figure 6 As shown, the reinforcement includes two arc-shaped buckles 33. One arc-shaped buckle 33 has slots 34 at both ends, and the other arc-shaped buckle 33 has pins 36 at both ends that are adapted to the slots 34. The two arc-shaped buckles 33 are installed in the fixing slots of the two combined semi-circular plates 29, and the pins 36 are engaged in the slots 34 to form a closed loop structure. By setting up structures such as the semi-circular plate 29, the mounting frame 28 can be fixed in the arc-shaped feeding chamber 10 through the cooperation of the semi-circular plate 29, the mounting column 32 and the mounting hole 4. It is also possible to move the two mounting frames 28 to the connection point of the two arc-shaped feeding chambers 10. Through the cooperation of the two semi-circular plates 29 and the two arc-shaped buckles 33, the adjacent mounting frames 28 are fixedly connected, thereby realizing the connection of the two adjacent arc-shaped feeding chambers 10.

[0031] For the convenience of heating; such as Figure 1 As shown, a central seat 3 is installed in the middle of the base 1, and a heating device is installed on the central seat 3. The arc-shaped feeding chamber 10 has evenly distributed strip-shaped openings 27 on the side near the central seat 3.

[0032] To facilitate the collection of excrement; such as Figure 3 As shown, the bottom of the arc-shaped feeding chamber 10 is provided with evenly distributed drainage holes 17, and a receiving tray 7 is detachably installed at the bottom of the arc-shaped feeding chamber 10. The receiving tray 7 has an arc-shaped structure that is adapted to the arc-shaped feeding chamber 10.

[0033] For ease of disassembly and assembly; such as Figure 3 As shown, a positioning cylinder 13 is fixed on the outer wall of the center seat 3, a positioning post 18 adapted to the positioning cylinder 13 is installed on the outer wall of one side of the receiving drawer 7, and a pull handle 6 is provided on one side of the receiving drawer 7.

[0034] For ease of cleaning; such as Figure 3 , Figure 4 , Figure 5 As shown, a plurality of side tubes 9 are provided on the outside of the arc-shaped feeding chamber 10. An elastic membrane 15 is fixed inside one end of the side tube 9 near the inside of the arc-shaped feeding chamber 10. An "X"-shaped opening is provided on the elastic membrane 15. A first end cap 8 or a second end cap 25 is detachably installed on the other end of the side tube 9 by means of threads. The second end cap 25 has a ball seat 21 fixed in the middle, and a movable ball 22 is movably installed inside the ball seat 21. A rod is slidably connected inside the movable ball 22. By setting up the side tube 9, the first end cap 8, and the second end cap 25, the side tube 9 can be sealed as needed, or the second end cap 25 can be installed inside the side tube 9 and inserted into the arc-shaped rearing chamber 10 through a rod to guide or drive away insects, which facilitates better rearing and management.

[0035] For ease of cleaning; such as Figure 3 , Figure 4 , Figure 5 As shown, the rod includes: Sleeve 16 is slidably installed inside movable ball 22, and a second operating handle 20 is provided on the outer side of one end of sleeve 16; Inner rod 26 is slidably installed inside sleeve rod 16, and a first operating handle 19 is installed at one end of inner rod 26; The sleeve rod 16 has a strip-shaped opening on one side, and an elastic piece 23 is connected to one end of the strip-shaped opening. The other end of the elastic piece 23 is fixed to the end side wall of the inner rod 26. The outer side of the elastic piece 23 is provided with evenly distributed brush heads 24. By setting up the rods, the rods can be inserted as needed. By pushing the inner rod 26 into the sleeve rod 16, the elastic plate 23 deforms and bulges to both sides, thereby better exposing the brush head 24 to the outside. The internal space of the arc-shaped feeding chamber 10 can be easily cleaned by operating the rods. There is no need to remove the arc-shaped feeding chamber 10 for maintenance, which improves convenience.

[0036] The sides of the arc-shaped feeding chamber 10 are preferably made of transparent material.

[0037] For the parts not disclosed in detail in this invention, such as necessary control modules, specific control methods, signal transmission methods, power supply methods, etc., those skilled in the art can ensure the smooth implementation of the solution of this invention based on common sense, normal thinking logic and existing technology.

[0038] 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 partitioned insect rearing device, characterized in that, The utility model relates to a kind of livestock raising device, including: Base (1), multiple feeding modules are installed on the base (1), multiple feeding modules are arranged in annular distribution, the feeding module includes: Arc feeding room (10), the side of arc feeding room (10) is transparent structure, and both ends of arc feeding room (10) and top are open structure; Arc top plate (2), arc top plate (2) is located in the top opening of arc feeding room (10), and arc top plate (2) and the top side of arc feeding room (10) form outer arc slide (11), and arc top plate (2) and the other side of arc feeding room (10) top form inner arc slide (12); Connecting frame (5), connecting frame (5) is fixed on arc feeding room (10), and connecting frame (5) is connected with arc top plate (2) by connecting plate in middle part; Adjustable blocking mechanism, adjustable blocking mechanism is installed in arc feeding room (10).

2. The partitioned insect rearing apparatus according to claim 1, wherein The adjustable blocking mechanism includes: Mounting bracket (28), vertical rod (31) is installed on the top of mounting bracket (28), and vertical rod (31) is movably installed in outer arc slide (11); Mounting shaft, mounting shaft is rotatably installed in mounting bracket (28), and drive gear (41) is installed on the top of mounting shaft after penetrating inner arc slide (12), and the bottom of mounting shaft is installed with handle (37); Rack (40), rack (40) is slidably installed on the bottom of mounting bracket (28) along arc feeding room (10) radial, and rack (40) is provided with protruding teeth on both sides, and the protruding teeth of one side of rack (40) is engaged with drive gear (41); Mounting rod (39), mounting rod (39) is rotatably installed on the bottom of mounting bracket (28), and multiple mounting rods (39) are linearly distributed at equal intervals, and blade (14) is fixed on both sides of mounting rod (39), and driven gear (30) is installed on mounting rod (39), and driven gear (30) is engaged with the protruding teeth of the other side of rack (40); Baffle (38), baffle (38) is fixed on the bottom of mounting bracket (28) both sides, close to the side wall of arc feeding room (10).

3. The partitioned insect rearing apparatus according to claim 2, wherein The arc feeding room (10) and arc top plate (2) are provided with mounting hole (4) distributed along both sides of outer arc slide (11), vertical rod (31) is used with semicircular plate (29) in cooperation, semicircular plate (29) is provided with rod hole (35) for vertical rod (31) insertion, and mounting column (32) is fixed on the bottom of semicircular plate (29), when semicircular plate (29) is installed on vertical rod (31) through rod hole (35), mounting column (32) is inserted into mounting hole (4).

4. The partitioned insect rearing apparatus according to claim 3, wherein When the mounting bracket (28) of two adjacent adjustable blocking mechanisms is close, two vertical rods (31) are inserted into the rod hole (35) of two semicircular plates (29), and the mounting column (32) of two semicircular plates (29) is inserted into the mounting hole (4) of respective arc feeding room (10), and the side of semicircular plate (29) is provided with fixed slot, and two combined semicircular plates (29) are fixedly connected by reinforcing member.

5. The partitioned insect rearing apparatus according to claim 4, wherein The reinforcing piece comprises two arc-shaped buckles (33), the two ends of one arc-shaped buckle (33) are provided with clamping grooves (34), the two ends of the other arc-shaped buckle (33) are provided with clamping columns (36) matched with the clamping grooves (34), the two arc-shaped buckles (33) are installed in the fixing grooves of the two combined half-round plates (29), and the clamping columns (36) are clamped into the clamping grooves (34) to form a closed loop structure.

6. The partitioned insect rearing apparatus according to claim 1, wherein The center seat (3) is installed in the middle of the base (1), the heating device is installed on the center seat (3), and the arc-shaped breeding chamber (10) is provided with uniformly distributed strip-shaped openings (27) on the side close to the center seat (3).

7. The partitioned insect rearing apparatus according to claim 6, wherein The arc-shaped breeding chamber (10) is provided with uniformly distributed leakage holes (17) in the bottom, and the arc-shaped breeding chamber (10) is detachably provided with a receiving drawer (7) in an arc-shaped structure matched with the arc-shaped breeding chamber (10).

8. The partitioned insect rearing apparatus according to claim 7, wherein The outer wall of the center seat (3) is fixedly provided with a positioning cylinder (13), the outer wall of one side of the receiving drawer (7) is provided with a positioning column (18) matched with the positioning cylinder (13), and one side of the receiving drawer (7) is provided with a pull handle (6).

9. The partitioned insect rearing apparatus according to claim 1, wherein The arc-shaped breeding chamber (10) is provided with a plurality of side cylinders (9), the inner side of one end of the side cylinder (9) close to the arc-shaped breeding chamber (10) is fixedly provided with an elastic film (15), the elastic film (15) is provided with a "rice" shaped opening, and the other end of the side cylinder (9) is detachably provided with a first end cover (8) or a second end cover (25) through threads; The second end cover (25) is fixedly provided with a ball seat (21) in the middle, the ball seat (21) is movably provided with a movable ball (22), and the movable ball (22) is slidably connected with a rod.

10. The partitioned insect rearing apparatus according to claim 9, wherein The rod comprises: A sleeve rod (16) is slidably installed in the movable ball (22), one end of the sleeve rod (16) is provided with a second operating handle (20) on the outer side; An inner rod (26) is slidably installed in the sleeve rod (16), and one end of the inner rod (26) is provided with a first operating handle (19); One end of the sleeve rod (16) is provided with a strip-shaped opening on the side surface, one end of the strip-shaped opening is connected with an elastic sheet (23), the other end of the elastic sheet (23) is fixed to the side wall of the end of the inner rod (26), and the outer side of the elastic sheet (23) is provided with uniformly distributed brush heads (24).

Citation Information

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