Partitioned insect feeding device
By adopting an adjustable partition design and rotary partition cleaning mechanism in the insect feeding device, the problem of inconvenient partition size in the prior art is solved, and flexible feeding management and efficient cleaning operations are achieved.
Patent Information
- Application Number
- CN202510250174.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-05-30
AI Technical Summary
In existing insect feeding devices, the size of the partitioned area cannot be adjusted according to the amount of insect feeding, resulting in insufficient or wasteful feeding areas and troublesome cleaning of legacy materials.
A partitioned insect feeding device is designed, adopting a circular box structure and a detachable rotary cylinder. By interlacing the fixed partition and the rotary partition, an adjustable feeding partition is formed, and the rotary column is driven to move the rotary partition to realize the material cleaning in the feeding partition.
The adjustment of the feeding partition is achieved, suitable for feeding different numbers and types of insects, and the cleaning process in the feeding partition is simplified, improving the convenience of operation.
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Figure CN120052312A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of insect breeding, and specifically relates to a partitioned insect breeding device. Background Art
[0002] In the prior art, in insect breeding technology, most insect breedings do not involve raising only one type of insect. Especially in technical research, many types of insects need to be raised. Therefore, it is necessary to partition the insect breeding device, such as devices like breeding boxes and breeding barrels with partitions.
[0003] In the prior art, for example: the "insect breeding box" disclosed in Publication (Announcement) No.: CN114513952A breeds insects through the cooperation of a top cover and a bottom cover; for example: the "device for limited cultivation and breeding of insect larvae" disclosed in Publication (Announcement) No.: CN116138218A has several breeding areas and an incubation area inside; for example: the "insect ecological breeding box" disclosed in Publication (Announcement) No.: CN110447606A has multiple connected boxes inside for partitioning.
[0004] However, in most of the design schemes of the breeding partitions in the above technical solutions, the size of the partitioned area cannot be adjusted according to the breeding quantity of insects. For example, in technical research, when the quantity of a certain type of insect to be raised is large, while the breeding quantity of a certain other type of insect is small, it will cause insufficient breeding areas and waste of breeding areas, and cannot be effectively adjusted.
[0005] In addition, when the breeding device is used for breeding and after breeding is completed, it is necessary to clean the internal breeding materials and the remaining feces, etc. In the prior art, the cleaning of such remaining substances is very troublesome. If it is a single breeding area, the cleaning is relatively convenient, but for a partitioned breeding device with multiple breeding areas, the cleaning will be very inconvenient.
[0006] Therefore, in order to solve the above problems, it is necessary to develop a partitioned insect breeding device with adjustable breeding area size and convenient cleaning. Summary of the Invention
[0007] The purpose of the present invention is to provide a partitioned insect breeding device in view of the deficiencies of the prior art; the technical solution is as follows:
[0008] A partitioned insect breeding device includes a breeding box, which is a circular box structure, and a coaxial rotating cylinder is also provided at the middle position of the breeding box. The rotating cylinder is detachably installed and can rotate correspondingly inside the breeding box. The area between the rotating cylinder and the breeding box forms an annular breeding area;
[0009] A plurality of fixed partitions are also provided on the inner wall of the box body of the breeding box. The fixed partitions are evenly spaced and all point to the center of the breeding box and the rotating cylinder. The inner ends of the fixed partitions lean against the outer wall of the rotating cylinder without interfering with the rotation of the rotating cylinder.
[0010] On the outer wall of the rotating cylinder, a plurality of radially divergent rotating partitions are correspondingly installed. The rotating partitions are evenly spaced, and the outer ends of the rotating partitions lean against the inner wall of the breeding box. When the rotating partitions follow the rotation of the rotating cylinder, it will not interfere with the movement of the rotating partitions.
[0011] The fixed partitions and the rotating partitions are both located in the breeding area, and a breeding partition is formed between adjacent fixed partitions and rotating partitions. The area size of the breeding partition can be correspondingly adjusted by moving the position of the rotating partition.
[0012] Further, four fixed partitions and four rotating partitions are provided respectively. The four fixed partitions and the four rotating partitions are arranged alternately, so as to form eight breeding partitions in the breeding area.
[0013] Further, an annular slot is provided at the lower end of the rotating cylinder, and an annular block corresponding to the position of the annular slot is provided on the bottom plate of the breeding box. When the rotating cylinder is installed in the breeding box, the annular block is correspondingly inserted into the annular slot, and the rotating cylinder can rotate correspondingly, and the rotating cylinder can be lifted upward and separated from the breeding box.
[0014] Further, a T-shaped handle is also installed on the upper end surface of the rotating cylinder, and the rotating cylinder is rotated and lifted correspondingly through the T-shaped handle.
[0015] Further, a collection box is also provided below the breeding box. The collection box is detachably arranged with the breeding box, and the breeding box is placed on the collection box.
[0016] Further, L-shaped separation slots are provided at the upper end of the collection box and the lower end of the breeding box respectively. The breeding box is placed on the collection box through the separation slots.
[0017] Further, discharge openings are provided on both sides of each fixed partition, and corresponding covers are provided on the discharge openings. The covers can be taken out from the discharge openings.
[0018] When the cover is removed, the rotating cylinder drives the rotating partition to move, and the materials in the breeding partition are pushed from the discharge opening into the collection box.
[0019] Further, the discharge openings and the covers are both of strip-shaped structures; and the side walls of the discharge openings are arranged as inclined side wall structures, and the covers are made of rubber materials.
[0020] Beneficial effects: The present invention has the following beneficial effects:
[0021] 1) In the present invention, the fixed partition on the inner wall of the breeding box and the rotating partition on the rotating cylinder form a breeding partition for breeding insects. On the one hand, a lot of breeding partitions are separated by the fixed partition and the rotating partition, which can be used for breeding a variety of different types of insects and are suitable for conducting breeding research on different types of insects.
[0022] 2) The rotating cylinder itself in the present invention can rotate, and when the rotating cylinder rotates, it will drive the corresponding movement of the rotating partition on the rotating cylinder. The four rotating partitions and the four fixed partitions are arranged alternately, and the area between adjacent rotating partitions and fixed partitions will change, thereby adjusting the size of the breeding partition, which is suitable for breeding different numbers and different types of insects.
[0023] 3) In the present invention, discharge ports are provided on both sides of each fixed partition. First, the rotating cylinder can be controlled to rotate counterclockwise so that the rotating partition rotates counterclockwise to the maximum position, so that the rotating partition can push the feces and other residues in the breeding partition counterclockwise into the corresponding discharge port to achieve discharge and cleaning. Then, the rotating cylinder is controlled to rotate clockwise so that the rotating partition rotates clockwise to the maximum position, and the feces and the like in the remaining breeding partition are pushed into the discharge port on the other side to achieve discharge. In this way, the internal cleaning of the breeding partition is realized by the counterclockwise maximum rotation and the clockwise maximum rotation of the rotating partition, and the structure is ingenious.
[0024] 4) A detachable collection box is also provided at the lower end of the breeding box in the present invention. Feces and the like enter the collection box from the discharge port, and the collection box can be separated, which is convenient for processing; and a T-shaped handle is provided for convenient operation to facilitate the rotation of the rotating cylinder. In addition, the rotating cylinder itself is also detachable. The rotating cylinder realizes rotation and installation through the cooperation of an annular card slot and an annular card block, and can be directly detached from the breeding box, and the structure is reasonable. Brief description of the drawings
[0025] Figure 1 It is the structural diagram of the present invention;
[0026] Figure 2 It is the top view of the present invention;
[0027] Figure 3 It is the position diagram of the discharge port in the present invention;
[0028] Figure 4 is Figure 3 the A-A cross-sectional view in;
[0029] Figure 5 It is the position diagram of the counterclockwise rotation of the rotating cylinder in the present invention;
[0030] Figure 6 It is the clockwise rotation position diagram of the rotating cylinder in the present invention;
[0031] Among them, breeding box 1; rotating cylinder 2; breeding area 3; fixed partition 4; rotating partition 5; breeding sub-area 6; annular card slot 7; annular card block 8; T-shaped handle 9; collection box 10; separation card slot 11; blanking port 12; cover body 13. Specific embodiments
[0032] The present invention will be further clarified below in conjunction with the accompanying drawings and specific embodiments. These embodiments are implemented on the premise of the technical solution of the present invention, and it should be understood that these embodiments are only used to illustrate the present invention and not to limit the scope of the present invention.
[0033] As Figure 1 and Figure 2 shown, a partitioned insect breeding device includes a breeding box 1, which is a circular box structure, and a concentric rotating cylinder 2 is also provided at the middle position of the breeding box 1. The rotating cylinder 2 is detachably installed and can rotate correspondingly in the breeding box 1. The area between the rotating cylinder 2 and the breeding box 1 forms an annular breeding area 3;
[0034] A plurality of fixed partitions 4 are also provided on the inner wall of the box body of the breeding box 1. The fixed partitions 4 are evenly spaced and all point to the center direction of the breeding box 1 and the rotating cylinder 2. The inner ends of the fixed partitions 4 lean against the outer wall of the rotating cylinder 2 without hindering the rotation of the rotating cylinder 2;
[0035] And a plurality of diverging rotating partitions 5 are correspondingly installed on the outer wall of the rotating cylinder 2. The rotating partitions 5 are evenly spaced, and the outer ends of the rotating partitions 5 lean against the inner wall of the breeding box 1. When the rotating partitions 5 follow the rotation of the rotating cylinder 2, it will not hinder the movement of the rotating partitions 5;
[0036] Both the fixed partition 4 and the rotating partition 5 are located in the breeding area 3, and the area between the adjacent fixed partition 4 and the rotating partition 5 forms a breeding sub-area 6. The area size of the breeding sub-area 6 can be correspondingly adjusted by moving the position of the rotating partition 5.
[0037] Four fixed partitions 4 and four rotating partitions 5 are provided respectively. The four fixed partitions 4 and the four rotating partitions 5 are arranged alternately, so as to form eight breeding sub-areas 6 in the breeding area 3.
[0038] As Figure 3 and Figure 4As shown in the figure, an annular clamping groove 7 is provided at the lower end of the rotating cylinder 2, and an annular clamping block 8 corresponding to the position of the annular clamping groove 7 is provided on the bottom plate of the breeding box 1. When the rotating cylinder 2 is installed in the breeding box 1, the annular clamping block 8 is correspondingly inserted into the annular clamping groove 7, the rotating cylinder 2 can rotate correspondingly, and the rotating cylinder 2 can be lifted upward and separated from the breeding box 1.
[0039] A T-shaped handle 9 is also installed on the upper end surface of the rotating cylinder 2, and the rotating cylinder 2 is rotated and lifted correspondingly through the T-shaped handle 9.
[0040] A collection box 10 is also provided below the breeding box 1. The collection box 10 is detachably arranged with the breeding box 1, and the breeding box 1 is placed on the collection box 10.
[0041] L-shaped separation clamping grooves 11 are provided at the upper end of the collection box 10 and the lower end of the breeding box 1. The breeding box 1 is placed on the collection box 10 correspondingly through the separation clamping grooves 11.
[0042] Feeding ports 12 are provided on both sides of each fixed partition 4, and corresponding covers 13 are provided on the feeding ports 12. The covers 13 can be taken out from the feeding ports 12.
[0043] After the cover 13 is removed, the rotating partition 5 is driven by the rotating cylinder 2 to move, and the materials in the breeding area 6 are pushed from the feeding port 12 into the collection box 10.
[0044] Both the feeding port 12 and the cover 13 are in a strip-shaped structure; and the side wall of the feeding port 12 is provided with an inclined side wall structure, and the cover 13 is made of rubber.
[0045] The specific working principle and process of the present invention are as follows: The fixed partitions on the inner wall of the breeding box in the present invention and the rotating partitions on the rotating cylinder form breeding areas for breeding insects. On the one hand, many breeding areas are separated by the fixed partitions and the rotating partitions, which can be used for breeding various different types of insects and are suitable for conducting breeding research on different types of insects; on the other hand, the partition positions and areas can be adjusted according to the position of the rotating cylinder.
[0046] As Figure 2 shown, the rotating cylinder itself can rotate, and while the rotating cylinder rotates, the rotating partitions on the rotating cylinder will move correspondingly. The four rotating partitions and the four fixed partitions are arranged alternately, and the areas between adjacent rotating partitions and fixed partitions will change, thereby adjusting the size of the breeding area and being suitable for breeding different numbers and different types of insects.
[0047] As Figure 3 、 Figure 5 and Figure 6As shown, both sides of each fixed partition are provided with feed discharge ports. After the feeding is completed and the insects are taken out, the remaining feed and feces and other residues in the feeding area need to be cleaned up. It is very inconvenient to clean them manually. If the size of the overall device is set to be small, it can be cleaned barely. However, if the size of the overall device is set to be large, it is very inconvenient to clean.
[0048] The present invention can utilize the structural setting of the rotating cylinder and the rotating partition to realize the cleaning of the residues in the feeding zone; in the present invention, both sides of each fixed partition are provided with a feed opening, which means that each feeding zone is provided with a feed opening, and each feed opening should be provided with a cover body, which is embedded in the feed opening. During normal feeding, the feed opening is blocked by the cover body, and when cleaning, the cover body is removed and the two lower openings are opened. The cover body can be made of rubber, plastic, etc., and the shape of the feed opening can also be set accordingly to facilitate the installation and disassembly of the cover body.
[0049] When cleaning, Figure 5 and Figure 6 As shown, the rotating cylinder can be controlled to rotate counterclockwise first, so that the rotating partition rotates counterclockwise to the maximum position, so that the rotating partition can push the feces and other residues in the feeding area counterclockwise into the corresponding discharge port to achieve discharge and cleaning, and then the rotating cylinder can be controlled to rotate clockwise, so that the rotating partition rotates clockwise to the maximum position, and the remaining feces and the like in the feeding area are pushed into the discharge port on the other side to achieve discharge. In this way, the cleaning inside the feeding area is achieved by the maximum counterclockwise rotation and clockwise rotation of the rotating partition, and the structural setting is very ingenious and reasonable.
[0050] A separate collecting box is also provided at the lower end of the feeding box, and feces and the like enter the collecting box from the feeding port, and the collecting box can be separated for easy processing; and in order to facilitate the rotation of the rotating cylinder, a T-shaped handle is also provided for easy operation. In addition, the rotating cylinder itself can also be disassembled. The rotating cylinder can be rotated and installed through the cooperation of the annular groove and the annular block, and can be directly disassembled from the feeding box, with a reasonable structure.
[0051] The above specific implementation is only a preferred embodiment of the present invention and is not intended to limit the implementation of the present invention and the scope of the claims. All equivalent changes and modifications made according to the content of the patent protection scope of the present invention should be included in the scope of the patent application of the present invention.
Claims
1. A partitioned insect breeding device, characterized in that: The feeding box (1) comprises a feeding box (1), the feeding box (1) being a circular box structure, and a rotating cylinder (2) having the same center is arranged at the middle position of the feeding box (1), the rotating cylinder (2) being detachably mounted and being rotatable in the feeding box (1), and the area between the rotating cylinder (2) and the feeding box (1) forming a circular feeding area (3); The inner wall of the feeding box (1) is also provided with a plurality of fixed partitions (4), the fixed partitions (4) being evenly spaced and pointing in the direction of the center of the feeding box (1) and the rotating cylinder (2), and the inner ends of the fixed partitions (4) are against the outer wall of the rotating cylinder (2) so as not to hinder the rotation of the rotating cylinder (2); A plurality of divergent rotating baffles (5) are correspondingly mounted on the outer wall of the rotating cylinder (2). The rotating baffles (5) are evenly spaced and the outer ends of the rotating baffles (5) are against the inner wall of the feeding box (1). When the rotating baffles (5) rotate along with the rotating cylinder (2), the movement of the rotating baffles (5) will not be hindered. The fixed partitions (4) and the rotating partitions (5) are both located in the feeding area (3), and a feeding partition (6) is formed between adjacent fixed partitions (4) and rotating partitions (5). The size of the feeding partition (6) can be adjusted accordingly by moving the position of the rotating partition (5).
2. A partitioned insect breeding device according to claim 1, characterized in that: Four of the fixed partitions (4) and four of the rotating partitions (5) are provided, and the four fixed partitions (4) and the four rotating partitions (5) are arranged alternately with each other, thereby forming eight feeding zones (6) in the feeding area (3).
3. A partitioned insect breeding device according to claim 1, characterized in that: The lower end of the rotating cylinder (2) is provided with an annular slot (7), and the bottom plate of the feeding box (1) is provided with an annular block (8) corresponding to the position of the annular slot (7); when the rotating cylinder (2) is installed in the feeding box (1), the annular block (8) is correspondingly inserted into the annular slot (7), the rotating cylinder (2) can rotate accordingly, and the rotating cylinder (2) can be separated from the feeding box (1) after being pulled upward.
4. A partitioned insect breeding device according to claim 3, characterized in that: The upper end surface of the rotating cylinder (2) is also provided with a T-shaped handle (9), and the rotating cylinder (2) can be correspondingly rotated and lifted by means of the T-shaped handle (9).
5. The partitioned insect breeding device according to claim 1, characterized in that: A collecting box (10) is also provided below the feeding box (1); the collecting box (10) and the feeding box (1) are arranged separately, and the feeding box (1) is placed on the collecting box (10).
6. A partitioned insect breeding device according to claim 5, characterized in that: The upper end of the collection box (10) and the lower end of the feeding box (1) are both provided with an L-shaped separation slot (11), and the feeding box (1) is correspondingly placed on the collection box (10) via the separation slot (11).
7. A partitioned insect breeding device according to claim 6, characterized in that: Each fixed partition (4) is provided with a feed opening (12) at both sides thereof, and a corresponding cover (13) is provided on the feed opening (12), and the cover (13) can be taken out from the feed opening (12); When the cover (13) is removed, the rotating cylinder (2) drives the rotating partition (5) to move, and the material in the feeding partition (6) is pushed down from the discharge port (12) into the collection box (10).
8. A partitioned insect breeding device according to claim 7, characterized in that: The feed opening (12) and the cover body (13) are both long strip structures; the side wall of the feed opening (12) is arranged as an inclined side wall structure, and the cover body (13) is made of rubber.
Citation Information
Patent Citations
Ecological insect breeding box
CN110447606A
Insect feeding box
CN114513952A
Insect larva limited breeding and feeding device
CN116138218A
Larva breeding device, breeding system containing same and method for breeding black soldier fly larvae on basis of breeding system
CN106259209A
Natural science insect feeding observer
CN212852227U