Infecula organic fertilizer raw material manufacturing device

By designing a raw material manufacturing device for insect manure, the drive system and lifting system are used to achieve the separation of insect manure, the problem of insect manure mixed with insect bodies is solved, and the treatment efficiency is improved.

CN120590191AInactive Publication Date: 2025-09-05SUZHOU WEI BIOLOGICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510984717.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-09-05
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing device for biotransformation to produce insect protein and insect manure organic fertilizer, insect manure is mixed with insect bodies, affecting subsequent processing.

Method used

A raw material manufacturing device for insect manure organic fertilizer is designed, including a breeding table, drive system, transmission system, lifting system, feeding system, collection tank and support system. The power is provided through the drive system, so that the transmission system is operated and the lifting system is operated, so as to increase the height of the feeding system to achieve separation from the collection tank. The insect manure in the feeding system is screened and falls into the collection tank, and the insect body and insect manure are separated.

Benefits of technology

It realizes effective separation of insect feces and insect bodies, facilitates subsequent processing, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fecula organic fertilizer raw material manufacturing device which comprises a breeding table, a driving system, a transmission system, a lifting system, a feeding system, a collecting tank and a supporting system. The driving system, the transmission system, the lifting system and the supporting system are mounted by taking the breeding platform as a mounting foundation; the driving system is used for power output of the transmission system, so that multi-position synchronous transmission of the transmission system is achieved, the lifting system adjusts the height of the feeding system based on the action of the transmission system, and the collecting tank is arranged on the breeding platform with the supporting system as a supporting point and used for collecting insect excrement in the feeding system. The feeding system rises to be separated from the collecting tank, so that insect feces in the feeding system are separated and fall into the collecting tank, and insect bodies are separated from the insect feces. The device has the advantages that the feeding system is separated from the collecting tank, and fecula and insect bodies can be collected separately.
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Description

Technical Field

[0001] The invention relates to the technical field of organic fertilizer manufacturing, in particular to a device for manufacturing insect excrement organic fertilizer raw materials. Background Art

[0002] Organic waste recycling is an environmentally friendly field of resource recycling with huge economic and environmental benefits. The core of the industry is to convert organic waste that would otherwise be discarded into energy, fertilizer, feed or other useful materials.

[0003] Organic waste can be transformed into insect protein and insect manure organic fertilizer through biotransformation. Among them, organic waste mainly includes kitchen waste, restaurant waste, and agricultural by-products. Black soldier flies, mealworms, maggots and other scavenging insects are used to feed on organic waste. While processing the organic waste, the insect manure produced can be used as raw material for organic fertilizer. Insect bodies can be used as high-protein, high-fat, high-quality animal feed raw materials.

[0004] Existing bioconversion equipment for producing insect protein and insect manure organic fertilizer involves placing scavenging insects such as black soldier flies, mealworms, and maggots in a breeding tank, adding the appropriate organic waste, and allowing the black soldier flies, mealworms, and maggots to consume the organic waste, producing insect manure. However, the resulting insect manure is mixed with the insect bodies, which have different uses. Collecting the mixed insect manure and insect bodies can hinder subsequent processing.

[0005] In view of this, we propose a device for manufacturing insect manure organic fertilizer raw materials. Summary of the Invention

[0006] The object of the present invention is to provide a device for producing insect excrement organic fertilizer raw materials to solve the problems raised in the above background technology.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solutions: a device for producing insect excrement organic fertilizer raw materials, comprising a breeding platform, a driving system, a transmission system, a lifting system, a feeding system, a collecting tank and a supporting system;

[0008] The driving system, transmission system, lifting system and support system are installed with the breeding platform as the installation basis;

[0009] The drive system is used as the power output of the transmission system, so that the transmission system can be synchronously transmitted at multiple positions. The lifting system adjusts the height of the feeding system based on the movement of the transmission system. The collection trough is set on the breeding platform with the support system as the support point, and the collection trough is used to collect insect excrement in the feeding system.

[0010] The feeding system is raised to separate from the collecting tank, and then the insect excrement in the feeding system is separated and falls into the collecting tank, and the insect bodies are separated from the excrement.

[0011] Preferably, the driving system includes a motor, which is fixed to the bottom side of the platform of the breeding platform, and the transmission shaft of the motor passes through the platform of the breeding platform;

[0012] The motor may be a servo motor, which adjusts the driving direction.

[0013] Preferably, the transmission system includes a gear A and a rack, the gear A is arranged on the transmission shaft of the motor, and two racks distributed at 180° from the center of the gear A are both arranged on the breeding platform;

[0014] The bottom of the rack is connected to the breeding platform via a slide rail, and the rack can move on the breeding platform;

[0015] The inner end and the top of the rack are both provided with teeth, and the teeth at the inner end of the rack are meshed with gear A.

[0016] Preferably, the lifting system includes a mounting frame A, a mounting frame B, a connecting rod, a gear B, a sprocket A, a sprocket B and a connecting block, wherein the mounting frame A and the mounting frame B are fixedly arranged on the breeding platform, the two ends of the connecting rod are rotatably connected to the mounting frame A and the mounting frame B respectively, the gear B is sleeved on the connecting rod, the gear B is meshed with the teeth at the top of the rack, the sprocket A is sleeved on the connecting rod, the sprocket B is rotatably arranged on the top of the mounting frame B, and the sprocket A and the sprocket B are connected by chain power;

[0017] The connecting block is fixedly connected to the chain, and the connecting block rises and falls with the movement of the chain.

[0018] Preferably, the feeding system includes a frame A, a frame B and a screen, the frame A is fixedly connected to the connecting block, the frame B is arranged below the frame A, the frame B and the frame A are adjusted in height synchronously, and the screen is arranged in the frame B.

[0019] Preferably, connecting plates are fixedly provided on both sides of the bottom of the frame A, and the connecting plates and the side ends of the frame B are connected by telescopic rods, and the connecting plates and the side ends of the frame B are connected by springs;

[0020] The breeding platform is provided with a transverse motion system, which includes a vertical plate C, an extrusion bar A and an extrusion bar B. The vertical plate C is fixedly set on the breeding platform, and multiple extrusion bars A are fixedly set on the side ends of the vertical plate C in sequence in the longitudinal direction. The extrusion bar B is fixedly set on the side end of the frame B. The extrusion bar B and the extrusion bar A have arc-shaped opposite ends respectively, and the arc-shaped end of the extrusion bar A can squeeze and push the extrusion bar B.

[0021] Preferably, a track is fixedly provided on the breeding platform, and one end of the connecting block can slide on the track.

[0022] Preferably, the support system includes a vertical plate A and a support plate A, the vertical plate A is fixedly arranged on the breeding platform, the support plate A is fixedly arranged on the inner side of the vertical plate A, and the support plate A is used to support the collection tank.

[0023] Preferably, a contact piece is provided in the groove opened on the upper surface of the support plate A, and the contact piece is arc-shaped, and the arched section of the arc-shaped contact piece is located outside the groove, and the arched section of the arc-shaped contact piece can be pressed against the contact groove opened at the bottom of the collection tank.

[0024] Preferably, two guide systems are symmetrically provided at one end of the transverse section of the breeding platform, and the guide system includes a vertical plate B and a support plate B. The vertical plate B is fixedly provided on the breeding platform, and the support plate B is fixedly provided on the inner side of the vertical plate B. The support plate B is used to support the collection trough;

[0025] The upper surface of the support plate B is aligned with the upper surface of the support plate A.

[0026] Compared with the prior art, the present invention has the following beneficial effects:

[0027] The insect feces organic fertilizer raw material manufacturing device provided in the present application includes a breeding platform, a drive system, a transmission system, a lifting system, a feeding system, a collecting trough and a support system. The drive system provides power to activate the transmission system, and then drives the lifting system to increase the height of the feeding system, so that the feeding system is separated from the collecting trough. The insect feces in the feeding system are screened by the screening element in the feeding system and fall into the collecting trough. The collecting trough with collected insect feces can be pulled out horizontally to process the collected insect feces, and the insect bodies in the feeding system can also be collected.

[0028] In the present application, the frame B performs horizontal reciprocating motion, which plays a vibrating role, so that the insect feces in the frame B vibrate through the screen and fall into the collection trough better. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 This is a schematic diagram of the overall structure of the present invention during breeding;

[0030] Figure 2 This is a schematic diagram of the overall structure of the present invention during separation;

[0031] Figure 3 This is a schematic diagram of the overall structure after collection of the present invention;

[0032] Figure 4 It is a schematic structural diagram of the driving part of the present invention;

[0033] Figure 5 It is a schematic diagram of the transmission system structure of the present invention;

[0034] Figure 6It is a schematic structural diagram of the lifting system of the present invention;

[0035] Figure 7 This is a schematic diagram of the distribution of the feeding system and the collection system of the present invention;

[0036] Figure 8 Schematic diagram of the feeding system structure of the present invention;

[0037] Figure 9 This is a schematic diagram of the structure of the lateral motion system of the present invention before operation;

[0038] Figure 10 This is a schematic diagram of the structure of the lateral motion system of the present invention after operation;

[0039] Figure 11 It is a structural schematic diagram of the support system and guide system of the present invention;

[0040] Figure 12 Schematic diagram of the distribution of the abutment pieces of the present invention;

[0041] Figure 13 This is a schematic diagram of the collecting tank structure when viewed from above.

[0042] In the figure: 100, breeding platform; 200, driving system; 300, transmission system; 400, lifting system; 500, feeding system; 600, collecting trough; 700, supporting system; 800, guiding system; 900, lateral motion system; 1000, track;

[0043] 301, gear A; 302, rack; 303, slide rail;

[0044] 401. Mounting frame A; 402. Mounting frame B; 403. Connecting rod; 404. Gear B; 405. Sprocket A; 406. Sprocket B; 407. Chain; 408. Connecting block;

[0045] 501, frame A; 502, frame B; 503, screen; 504, connecting plate; 505, telescopic rod; 506, spring;

[0046] 601, abutment groove;

[0047] 701, vertical plate A; 702, support plate A; 703, abutment piece;

[0048] 7021, groove;

[0049] 801, vertical plate B; 802, support plate B;

[0050] 901. Vertical plate C; 902. Extruded strip A; 903. Extruded strip B. DETAILED DESCRIPTION

[0051] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0052] See also Figures 1 to 4 A device for producing insect manure organic fertilizer raw materials includes a breeding platform 100, a driving system 200, a transmission system 300, a lifting system 400, a feeding system 500, a collecting trough 600 and a support system 700.

[0053] The driving system 200 , the transmission system 300 , the lifting system 400 and the supporting system 700 are installed with the breeding platform 100 as an installation base.

[0054] The drive system 200 is used as the power output of the transmission system 300, so that the multi-position synchronous transmission of the transmission system 300 is realized. The lifting system 400 adjusts the height of the feeding system 500 based on the movement of the transmission system 300. The collection trough 600 is set on the breeding platform 100 with the support system 700 as the support point, and the collection trough 600 is used to collect insect excrement in the feeding system 500.

[0055] The driving system 200 provides power to activate the transmission system 300, which in turn drives the lifting system 400 to increase the height of the feeding system 500, thereby separating the feeding system 500 from the collecting trough 600. The insect feces in the feeding system 500 are screened by the screening element in the feeding system 500 and fall into the collecting trough 600.

[0056] The feeding system 500 is raised to separate from the collecting tank 600, and the insect excrement in the feeding system 500 is separated and falls into the collecting tank 600, and the insect bodies are separated from the excrement.

[0057] The collecting trough 600 containing the insect excrement can be pulled out laterally to process the collected insect excrement, and the insect bodies in the feeding system 500 can also be collected.

[0058] In this embodiment, support legs are fixed at the four corners of the bottom of the breeding platform 100, leaving space between the bottom of the breeding platform 100 and the ground for the installation of the drive system 200.

[0059] For details, please refer to Figure 5 The drive system 200 includes a motor, which is fixed to the bottom side of the platform of the breeding platform 100 , and the transmission shaft of the motor passes through the platform of the breeding platform 100 .

[0060] In this embodiment, the motor can be a servo motor, and the servo motor's supporting servo motor and controller can be set in a corresponding control cabinet, equipped with corresponding electronic control devices and connected lines to control the servo motor to adjust the driving direction.

[0061] See also Figure 5 The transmission system 300 includes a gear A301 and a rack 302. Gear A301 is mounted on the motor's drive shaft. Two racks 302, centered 180 degrees from gear A301, are mounted on the culture platform 100. Racks 302 are provided with teeth on their inner ends and tops, meshing with the teeth on the inner ends of gear A301. The motor's drive shaft rotates gear A301, which in turn drives the two racks 302 to move toward or away from each other.

[0062] In this embodiment, the bottom of the rack 302 is connected to the breeding platform 100 through the slide rail 303, and the rack 302 can move on the breeding platform 100 to maintain stable horizontal movement of the rack 302.

[0063] See also Figure 6 The lifting system 400 includes a mounting frame A401, a mounting frame B402, a connecting rod 403, a gear B404, a sprocket A405, a sprocket B406 and a connecting block 408. The mounting frame A401 and the mounting frame B402 are both fixedly arranged on the breeding platform 100. The two ends of the connecting rod 403 are rotatably connected to the mounting frame A401 and the mounting frame B402 respectively. The gear B404 is sleeved on the connecting rod 403. The gear B404 is engaged with the teeth at the top of the rack 302. The sprocket A405 is sleeved on the connecting rod 403. The sprocket B406 is rotatably set on the top of the mounting frame B402. The sprocket A405 and the sprocket B406 are dynamically connected by a chain 407; the connecting block 408 is fixedly connected to the chain 407, and the connecting block 408 is lifted and lowered with the movement of the chain 407.

[0064] The moving rack 302 drives the gear B404 to rotate, causing the connecting rod 403 to rotate accordingly, and the sprocket A405 to rotate accordingly. The sprocket A405 drives the sprocket B406 to rotate through the chain 407. During the transmission process of the chain 407, the connecting block 408 moves accordingly to adjust the height.

[0065] In this embodiment, both ends of the connecting rod 403 are connected to the mounting bracket A 401 and the mounting bracket B 402 via rotating shafts, respectively.

[0066] See also Figure 7The feeding system 500 includes a frame A501, a frame B502 and a screen 503. The frame A501 is fixedly connected to the connecting block 408. The frame B502 is arranged below the frame A501. The heights of the frames B502 and A501 are adjusted synchronously. The screen 503 is arranged in the frame B502.

[0067] During the height adjustment process of the connecting block 408, the height of the frame A501 is also adjusted, so that the height of the frame A501 and the frame B502 are adjusted relative to the collection tank 600. The frame B502 can be separated from the collection tank 600, and the insect feces in the raised frame B502 falls into the collection tank 600 through the screen 503.

[0068] In this embodiment, the mesh size of the screen 503 allows insect feces to pass through, but does not allow grown insect bodies to pass through.

[0069] For further information, see Figures 7 to 10 , connecting plates 504 are fixedly provided on both sides of the bottom of frame A501, and the connecting plate 504 and the side end of frame B502 are connected by a telescopic rod 505, and the two ends of the telescopic rod 505 are fixedly connected to the connecting plate 504 and the frame B502 respectively; the connecting plate 504 and the side end of frame B502 are connected by a spring 506, and the two ends of the spring 506 are fixedly connected to the connecting plate 504 and the frame B502 respectively.

[0070] In this embodiment, the spring 506 can be sleeved on the telescopic rod 505 .

[0071] A lateral motion system 900 is provided on the breeding platform 100, and the lateral motion system 900 includes a vertical plate C901, an extrusion bar A902 and an extrusion bar B903. The vertical plate C901 is fixedly set on the breeding platform 100, and multiple extrusion bars A902 are fixedly set in sequence longitudinally on the side ends of the vertical plate C901. The extrusion bar B903 is fixedly set on the side ends of the frame B502. The arc-shaped end of the extrusion bar A902 can squeeze and push the extrusion bar B903.

[0072] In this embodiment, opposite ends of the extrusion strip B903 and the extrusion strip A902 are respectively arc-shaped.

[0073] As frame A501 and frame B502 move upward, the extrusion bar B903 moves upward together with frame B502. After the arc-shaped end of the extrusion bar B903 that moves upward contacts the corresponding arc-shaped end of the extrusion bar A902, as the extrusion bar B903 continues to move upward, the arc-shaped end of the extrusion bar A902 squeezes the arc-shaped end of the extrusion bar B903, pushing the extrusion bar B903 horizontally, thereby pushing frame B502 horizontally. The telescopic rod 505 on one side of frame B502 extends, and the telescopic rod 505 on the other side shortens. The spring 506 on one side of frame B502 is stretched, and the spring 506 on the other side is compressed. As the extrusion bar B903 continues to move upward, the arc-shaped end of the extrusion bar B903 gradually locates between the arc-shaped ends of the two adjacent extrusion bars A902. Under the action of the spring 506, frame B502 moves back. The above process is repeated, and the frame B502 performs horizontal reciprocating motion, which plays a vibrating role, so that the insect excrement in the frame B502 vibrates through the screen 503 and falls into the collection tank 600.

[0074] In this embodiment, the horizontal length of the collecting trough 600 is sufficient for the frame B502 to perform horizontal reciprocating motion.

[0075] In this embodiment, refer to Figure 7 A track 1000 is fixedly provided on the breeding platform 100, and one end of the connecting block 408 can slide on the track 1000. When the connecting block 408 is lifted or lowered, one end of the connecting block 408 slides along the track 1000, thereby limiting the moving connecting block 408, keeping the connecting block 408 moving stably, and thus keeping the frame A501 stable in lifting or lowering.

[0076] In further, see Figures 11 to 13 The support system 700 includes a vertical plate A701 and a support plate A702. The vertical plate A701 is fixed on the breeding platform 100, and the support plate A702 is fixed on the inner side of the vertical plate A701. The support plate A702 is used to support the collection trough 600; the collection trough 600 can be pushed in or out horizontally along the upper surface of the support plate A702.

[0077] An abutment piece 703 is disposed within a groove 7021 defined on the upper surface of support plate A702. A raised section of the abutment piece 703 is located outside the groove 7021, and the arc-shaped raised section of the abutment piece 703 can abut within the abutment groove 601 defined at the bottom of the collection trough 600. After the collection trough 600 is pushed in along the upper surface of support plate A702, until the corresponding raised section of the abutment piece 703 abuts within the abutment groove 601, it indicates that the collection trough 600 is properly installed, and the abutment between the raised section of the abutment piece 703 and the abutment groove 601 provides a preliminary position limit for the collection trough 600.

[0078] In this embodiment, the contact piece 703 is arc-shaped and elastic.

[0079] See Figure 11 Two guide systems 800 are symmetrically arranged at one end of the horizontal section of the breeding platform 100. The guide system 800 includes a vertical plate B801 and a support plate B802. The vertical plate B801 is fixed on the breeding platform 100, and the support plate B802 is fixed on the inner side of the vertical plate B801. The support plate B802 is used to support the collection trough 600.

[0080] When pushing the collecting trough 600 into the collecting trough 600, first place the pushing end of the collecting trough 600 on the support plate B802, and push the collecting trough 600 horizontally. The collecting trough 600 is pushed in along the upper surface of the support plate A702.

[0081] In this embodiment, the upper surface of the support plate B802 is aligned with the upper surface of the support plate A702, and the collecting trough 600 pushed in along the upper surface of the support plate B802 is kept horizontally and stably pushed into the support plate A702 to be supported.

[0082] Working principle: At the beginning, frame A501 and frame B502 are in the upward state, the pushing end of the collection trough 600 is placed on the support plate B802, and the collection trough 600 is pushed in horizontally. The collection trough 600 is pushed in along the upper surface of the support plate A702. After the collection trough 600 is pushed in along the upper surface of the support plate A702, it contacts the abutment piece 703, and the abutment piece 703 is squeezed into the groove 7021 until the corresponding arched section of the abutment piece 703 abuts against the abutment groove 601, indicating that the collection trough 600 is installed in place. The servo motor of the drive system 200 drives the gear A301 to rotate, causing the two racks 302 to move away from each other, and the gear B404 rotates, driving the sprocket A405 to rotate through the connecting rod 403, and the chain 407 drives the sprocket B406 to rotate. With the transmission of the chain 407, one end of the connecting block 408 moves down along the track 1000, driving the frame A501 and the frame B502 to move down, and the frame B502 enters the collecting tank 600, and the insect body is placed in the frame B502. Subsequently, organic waste is laid in the frame B502 as food for the insect body. After the insect body eats the organic waste, it produces insect feces.

[0083] When it is necessary to clean the insect excrement, the servo motor of the drive system 200 drives the gear A301 to rotate in the opposite direction, so that the two racks 302 move relative to each other, the gear B404 rotates in the opposite direction, and the sprocket A405 is driven to rotate in the opposite direction through the connecting rod 403, and the chain 407 drives the sprocket B406 to rotate in the opposite direction. With the transmission of the chain 407, one end of the connecting block 408 moves up along the track 1000, driving the frame A501 and the frame B502 to move up; in the process of the frame A501 and the frame B502 moving up, the extrusion bar B903 moves up together with the frame B502, and the arc-shaped end of the extrusion bar B903 that moves up contacts the corresponding extrusion bar. After the curved end of pressing bar A902 is pressed, as the upward movement of squeezing bar B903 continues, the curved end of squeezing bar A902 squeezes the curved end of squeezing bar B903, pushing squeezing bar B903 horizontally, thereby pushing frame B502 horizontally. The telescopic rod 505 on one side of frame B502 extends, and the telescopic rod 505 on the other side shortens. The spring 506 on one side of frame B502 stretches, and the spring 506 on the other side compresses. As squeezing bar B903 continues to move upward, the curved end of squeezing bar B903 gradually locates between the curved ends of two adjacent squeezing bars A902. Under the action of spring 506, frame B502 moves back. Repeating the above process, frame B502 performs horizontal reciprocating motion, which acts as a vibration, causing the insect feces in frame B502 to vibrate through the screen 503 and fall into the collection tank 600. The collection tank 600 containing the insect feces is then extracted by the external clamping device for cleaning.

[0084] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. A device for producing insect excrement organic fertilizer raw materials, characterized by: It comprises a breeding platform (100), a driving system (200), a transmission system (300), a lifting system (400), a feeding system (500), a collecting tank (600) and a supporting system (700); The driving system (200), the transmission system (300), the lifting system (400) and the supporting system (700) are installed with the breeding platform (100) as an installation base; The driving system (200) is used as the power output of the transmission system (300), so that the transmission system (300) can be synchronously driven at multiple positions. The lifting system (400) adjusts the height of the feeding system (500) based on the movement of the transmission system (300). The collecting trough (600) is arranged on the breeding platform (100) with the support system (700) as a support point, and the collecting trough (600) is used to collect insect excrement in the feeding system (500). The feeding system (500) is raised to separate from the collecting tank (600), and the insect excrement in the feeding system (500) is separated and falls into the collecting tank (600), and the insect bodies are separated from the excrement.

2. The device for producing insect excrement organic fertilizer raw materials according to claim 1, characterized in that: The drive system (200) includes a motor, which is fixed to the bottom side of the platform of the breeding platform (100), and the transmission shaft of the motor passes through the platform of the breeding platform (100); The motor may be a servo motor, which adjusts the driving direction.

3. The device for producing insect excrement organic fertilizer raw materials according to claim 2, characterized in that: The transmission system (300) includes a gear A (301) and a rack (302), wherein the gear A (301) is arranged on the transmission shaft of the motor, and two racks (302) distributed at 180 degrees from the center of the gear A (301) are both arranged on the breeding platform (100); The bottom of the rack (302) is connected to the breeding platform (100) via a slide rail (303), and the rack (302) can move on the breeding platform (100); The inner end and the top of the rack (302) are both provided with teeth, and the teeth at the inner end of the rack (302) are meshed and connected with the gear A (301).

4. The device for producing insect excrement organic fertilizer raw materials according to claim 3, characterized in that: The lifting system (400) includes a mounting frame A (401), a mounting frame B (402), a connecting rod (403), a gear B (404), a sprocket A (405), a sprocket B (406) and a connecting block (408), wherein the mounting frame A (401) and the mounting frame B (402) are both arranged on the breeding platform (100), and the two ends of the connecting rod (403) are respectively rotatably connected to the mounting frame A (401) and the mounting frame B (402), the gear B (404) is sleeved on the connecting rod (403), and the gear B (404) is meshed with the teeth at the top of the rack (302), the sprocket A (405) is sleeved on the connecting rod (403), and the sprocket B (406) is rotatably arranged on the top of the mounting frame B (402), and the sprocket A (405) and the sprocket B (406) are dynamically connected via a chain (407); The connecting block (408) is connected to the chain (407), and the connecting block (408) rises and falls with the movement of the chain (407).

5. The device for producing insect excrement organic fertilizer raw materials according to claim 4, characterized in that: The feeding system (500) includes a frame A (501), a frame B (502) and a screen (503), wherein the frame A (501) is connected to the connecting block (408), the frame B (502) is arranged below the frame A (501), the frame B (502) and the frame A (501) are adjusted in height synchronously, and the screen (503) is arranged inside the frame B (502).

6. The device for producing insect excrement organic fertilizer raw materials according to claim 5, characterized in that: Connecting plates (504) are provided on both sides of the bottom of the frame A (501), and the connecting plates (504) and the side ends of the frame B (502) are connected via telescopic rods (505), and the connecting plates (504) and the side ends of the frame B (502) are connected via springs (506); The breeding platform (100) is provided with a transverse motion system (900), and the transverse motion system (900) includes a vertical plate C (901), an extrusion bar A (902), and an extrusion bar B (903). The vertical plate C (901) is provided on the breeding platform (100), and a plurality of the extrusion bars A (902) are longitudinally arranged in sequence at the side ends of the vertical plate C (901). The extrusion bars B (903) are arranged at the side ends of the frame B (502). The extrusion bars B (903) and the extrusion bars A (902) have arc-shaped opposite ends, and the arc-shaped ends of the extrusion bars A (902) can squeeze and push the extrusion bars B (903).

7. The device for producing insect excrement organic fertilizer raw materials according to claim 6, characterized in that: A track (1000) is fixedly provided on the breeding platform (100), and one end of the connecting block (408) can slide on the track (1000).

8. The device for producing insect excrement organic fertilizer raw materials according to claim 1, characterized in that: The support system (700) includes a vertical plate A (701) and a support plate A (702), wherein the vertical plate A (701) is arranged on the breeding platform (100), and the support plate A (702) is fixedly arranged on the inner side of the vertical plate A (701), and the support plate A (702) is used to support the collection tank (600).

9. The device for producing insect excrement organic fertilizer raw materials according to claim 8, characterized in that: A contact piece (703) is provided in the groove (7021) provided on the upper surface of the support plate A (702). The contact piece (703) is arc-shaped. The arched section of the arc-shaped contact piece (703) is located outside the groove (7021). The arched section of the arc-shaped contact piece (703) can be abutted against the contact groove (601) provided at the bottom of the collecting tank (600).

10. The device for producing insect excrement organic fertilizer raw materials according to claim 8, characterized in that: Two guide systems (800) are symmetrically arranged at one end of the transverse section of the breeding platform (100), and the guide system (800) includes a vertical plate B (801) and a support plate B (802). The vertical plate B (801) is arranged on the breeding platform (100), and the support plate B (802) is arranged on the inner side of the vertical plate B (801). The support plate B (802) is used to support the collection tank (600); The upper surface of the support plate B (802) is aligned with the upper surface of the support plate A (702).