Protein brevitarsis hatching device for treating black pig manure
By using a combination of support frame, incubation box, water supply pipe and heating component in the white star flower beetle incubation device, the problem of improper temperature and humidity control was solved, and the survival rate of hatching was improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JINAN YUANHU FOOD CO LTD
- Filing Date
- 2025-05-16
- Publication Date
- 2026-04-21
AI Technical Summary
Existing white-spotted flower beetle incubation devices cannot effectively control temperature and humidity, affecting incubation results and survival rates.
A device comprising a support frame, an incubator, a water supply pipe, and a heating component was designed. The incubator is fixed by a structure of sliding connection and limiting block, and the humidity and temperature are controlled by the water supply pipe and the heating component.
This design achieves stable fixation of the incubator, ensuring that the temperature and humidity are within the range required for incubation, thereby improving the survival rate of hatched animals.
Smart Images

Figure CN224139945U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of black pig manure treatment, specifically a white-spotted flower beetle incubation device for treating black pig manure. Background Technology
[0002] When using the white-spotted flower beetle to decompose black pig manure, the larvae of the white-spotted flower beetle need to be hatched first. In traditional hatching, nutrients and eggs are usually mixed and poured into an incubation box, which is then simply placed on a shelf for hatching. However, since the hatching of the white-spotted flower beetle requires not only nutrients but also a certain temperature and humidity, the existing hatching devices are not convenient for controlling the temperature and humidity inside the incubation box, which affects the hatching effect and results in a low survival rate. Utility Model Content
[0003] The purpose of this invention is to provide a white-spotted flower beetle incubation device for treating black pig manure. It can solve the technical problem of inconvenient temperature and humidity control during the incubation of white-spotted flower beetles. The incubation box is firmly fixed in the incubation position, and the humidity and temperature of the incubation box are controlled by water supply pipes and heating components, which greatly improves the survival rate of hatching.
[0004] To achieve the above objectives, this utility model employs the following technical solution:
[0005] A white-spotted beetle hatching device for treating black pig manure includes a support frame with multiple placement cavities. An incubation box is slidably connected to each placement cavity laterally. A slot is provided on the rear side of the incubation box. Multiple horizontal bars are slidably connected to the rear side of the support frame vertically. Multiple limiting blocks and water supply pipes are arrayed on the horizontal bars. The limiting blocks are movably inserted into the slots vertically. The water supply pipes are located above the incubation box. A heating component for use with the incubation box is provided at the bottom of each placement cavity.
[0006] Furthermore, a fixing block is provided on the rear side of the incubator, and the slot is located on the top of the fixing block. After the limiting block moves from top to bottom, it is movably inserted into the slot.
[0007] Furthermore, the longitudinal section of the limiting block is L-shaped, the horizontal part of the L-shape is connected to the crossbar, and the vertical part of the L-shape is movably inserted into the slot.
[0008] Furthermore, the support frame is provided with upright plates symmetrically on the rear side, and the upright plates are provided with sliding grooves. The two ends of the crossbar are respectively slidably connected in the sliding grooves on both sides, and the sliding grooves are provided with power rods that drive the crossbars to slide vertically.
[0009] Furthermore, the power rod is rotatably connected in one of the grooves, the power rod passes through the crossbar and is threadedly connected to it, and a guide rod is provided in the other groove, the guide rod passes through the crossbar and is slidably connected to it.
[0010] Furthermore, the water supply pipe is provided with multiple water spray holes on its periphery.
[0011] Furthermore, the heating component is a heating tape.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] 1. The structure of this utility model features multiple placement cavities on a support frame. The incubator is slidably connected to the placement cavity along the horizontal direction. Simultaneously, multiple horizontal bars are slidably connected to the rear side of the support frame along the vertical direction. Multiple limiting blocks are provided on the horizontal bars. The rear side of the incubator has a slot. The limiting blocks are movably inserted into the slot along the vertical direction. With this structure, after multiple incubators are slidably placed in the placement cavity, multiple horizontal bars are slid vertically at the same time, causing multiple limiting blocks on them to simultaneously insert into the slots. This achieves simultaneous limiting and fixing of multiple incubators, making the incubators firmly fixed in the placement cavity. This facilitates accurate temperature and humidity control, improves the stability of the incubator, makes the incubation process smoother, and further ensures the survival rate of the hatched incubators.
[0014] 2. Multiple water supply pipes are arrayed on the crossbar. When the crossbar slides to limit and fix the incubator, the water supply pipes move to the top of the incubator and supply water to the incubator to maintain the required humidity range. The bottom of the placement chamber is equipped with a heating component for use with the incubator. The heating component is used to heat the fixed incubator to maintain it within the required temperature range. After the incubator is fixed, the water supply pipes and heating component can be used to accurately supply water and heat it, ensuring the conditions required for incubation and further improving the survival rate of hatching. Attached Figure Description
[0015] Appendix Figure 1 This is a three-dimensional structural diagram of the present invention.
[0016] Appendix Figure 2 This is a rear view of the present invention.
[0017] Appendix Figure 3 This is an appendix to this utility model. Figure 2 A cross-sectional view along the AA direction.
[0018] Appendix Figure 4 This is an appendix to this utility model. Figure 3 Cross-sectional view along the BB direction.
[0019] Appendix Figure 5 This is an appendix to this utility model. Figure 3 A magnified view of part C in the middle.
[0020] The labels shown in the attached diagram:
[0021] 1. Support frame; 2. Placement chamber; 3. Incubator; 4. Slot; 5. Crossbar; 6. Limiting block; 7. Water supply pipe; 8. Fixing block; 9. Vertical plate; 10. Slide groove; 11. Power rod; 12. Guide rod; 13. Water spray hole; 14. Heating tape. Detailed Implementation
[0022] The present invention will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined in this application.
[0023] Reference Figure 1 and Figure 2This utility model describes a white-spotted flower beetle hatching device for processing black pig manure. The main structure includes a support frame 1, which is welded from metal rods and serves a supporting function. The support frame 1 has multiple placement chambers 2 arranged in a rectangular array. An incubation box 3 is slidably connected to each placement chamber 2. The incubation box 3 is generally made of plastic and has an open top. White-spotted flower beetle eggs and nutrients are poured into the incubation box 3 through the open top. The size of the incubation box 3 is generally smaller than... The placement cavity 2 allows the incubator 3 to be easily accessed and stored within it. A slot 4 is provided on the rear side of the incubator 3. Multiple horizontal bars 5 are vertically slidably connected to the rear side of the support frame 1. Each horizontal bar 5 extends laterally to multiple placement cavities 2 at the same height. The horizontal bars 5 are driven to slide using any existing power structure. Multiple limiting blocks 6 and water supply pipes 7 are arranged in an array on the horizontal bars 5 by welding or bolting. The limiting blocks 6 are vertically movably inserted into the slot 4. This structure is present in multiple incubators 3. After being slid into the placement cavity 2, the horizontal bar 5 is slid vertically, causing multiple limiting blocks 6 on the horizontal bar 5 to simultaneously insert into multiple slots 4 at the same height. This horizontally limits the incubator 3, preventing it from continuing to slide within the placement cavity 2 and ensuring the stability of the incubator 3. The water supply pipe 7 is located above the incubator 3 and is connected to an external water supply system. The water supply pipe 7 sprays water onto the fixed incubator 3 from above, maintaining the humidity range required for incubation. The bottom of the placement cavity 2 is equipped with a heating component that works with the incubator 3. The heating component heats the incubator 3 from the bottom, maintaining the temperature range required for incubation. This structure, after fixing multiple incubators 3 vertically by sliding the horizontal bar 5, uses the water supply pipe 7 and heating component to replenish water and heat the fixed incubator 3. This makes the incubator 3 less prone to tipping or shaking due to external forces, ensuring stability during the incubation process, ensuring that the temperature and humidity are within the required range for incubation, ensuring the smooth progress of incubation, and further improving the success rate of incubation.
[0024] Preferably, a fixing block 8 is fixed to the rear side of the incubator 3 by welding or bolting, and the slot 4 is set on the top of the fixing block 8. After the limiting block 6 moves from top to bottom, it is movably inserted into the slot 4. This arrangement allows the limiting block 6 to be inserted into the slot 4 when the crossbar 5 slides down. This not only fixes the position of the incubator 3 in the horizontal direction, but also presses and fixes the incubator 3 to the bottom of the placement cavity 2 in the vertical direction, further improving the limiting and fixing effect of the incubator 3.
[0025] Preferred, refer to Figure 3 and Figure 5The longitudinal section of the limiting block 6 is L-shaped. The horizontal part of the L-shape is fixedly connected to the crossbar 5 by welding or integral molding. The vertical part of the L-shape is movably inserted into the slot 4. This structure makes the structure after the limiting block 6 and the slot 4 are inserted and connected more firmly and not easy to separate, further improving the firmness of the limiting and fixing of the incubator 3.
[0026] Preferably, the support frame 1 has upright plates 9 symmetrically fixed to its rear side by welding or bolts. The opposite sides of the upright plates 9 are provided with sliding grooves 10. The two ends of the crossbar 5 are respectively slidably connected in the sliding grooves 10 on both sides. The sliding grooves 10 are provided with power rods 11 that drive the crossbar 5 to slide vertically. This structure uses the power rods 11 to drive the two ends of the crossbar 5 to slide vertically in the sliding grooves 10, which improves the stability of the vertical sliding structure of the crossbar 5. This allows the limiting blocks 6 on the crossbar 5 to accurately limit and fix the multiple incubators 3, thereby improving the overall robustness of the device.
[0027] Preferred, refer to Figure 4 The power rod 11 is rotatably connected to one of the slide grooves 10 via bearings. A motor drives the power rod 11 to rotate. Specifically, the motor is located within the slide groove 10, and its output shaft is fixedly connected to the power rod 11 by welding or bolts. The power rod 11 passes through the crossbar 5 and is threadedly connected to it. Specifically, multiple threaded sections are set at different heights of the power rod 11, each threaded section passing through a crossbar 5 at a different height. This allows the power rod 11 and the crossbar 5 to form a screw-slider drive mechanism, enabling the power rod 11 to simultaneously drive multiple crossbars 5. A guide rod 12 is fixed to another slide groove 10 by welding or bolts. The guide rod 12 passes through the crossbar 5 and is slidably connected to it. With this structure, when the power rod 11 rotates, the threaded connection drives multiple crossbars 5 to slide vertically along the guide rod 12 within the slide groove 10, making the sliding drive of multiple crossbars 5 more accurate and convenient.
[0028] Preferably, the water supply pipe 7 is provided with multiple water spray holes 13 on its periphery, so that water is evenly sprayed into the incubator 3 from multiple positions on the side, making the water supply more uniform and covering a larger area, thus ensuring the accuracy of the humidity inside the incubator 3.
[0029] Preferably, the heating component is a heating cable 14. The heating cable 14 can use the structure of an electric heating cable 14 commonly used in the market. It can be adjusted to an appropriate temperature as needed and can make better contact with the bottom of the incubator 3, so as not to burn the incubator 3, thus ensuring the accuracy and convenience of temperature control of the incubator 3.
[0030] Working Principle: This invention features a structure with multiple placement cavities 2 on a support frame 1. Incubators 3 are slidably connected laterally within these cavities. Simultaneously, multiple horizontal bars 5 are vertically slidably connected to the rear side of the support frame 1, each bar 5 bearing a set of limiting blocks 6. A slot 4 is located on the rear side of the incubators 3, with the limiting blocks 6 vertically engaging with the slots 4. This structure allows multiple incubators 3 to be slidably placed within the placement cavities 2, while the horizontal bars 5 slide vertically, causing the limiting blocks 6 to simultaneously engage with the slots 4. This simultaneous positioning and fixation of the incubators 3 securely within the placement cavities 2, facilitating accurate temperature and humidity control. The stability of the incubator 3 is improved, making the incubation process smoother and further ensuring the survival rate of hatched animals. Multiple water supply pipes 7 are arrayed on the crossbar 5. When the crossbar 5 slides to limit and fix the incubator 3, the water supply pipes 7 move to the top of the incubator 3 and supply water to the incubator 3 through the water supply pipes 7 to maintain it within the required humidity range. The bottom of the placement cavity 2 is equipped with a heating component that works with the incubator 3. The heating component is used to heat the fixed incubator 3 to keep it within the required temperature range. After the incubator 3 is fixed, it can be accurately watered and heated using the water supply pipes 7 and the heating component, ensuring the conditions required for incubation and further improving the survival rate of hatched animals.
Claims
1. A white-spotted flower beetle incubation device for treating black pig manure, comprising a support frame (1), wherein the support frame (1) is provided with a plurality of placement cavities (2), and an incubation box (3) is slidably connected in the placement cavity (2) along the transverse direction, characterized in that: The incubator (3) has a slot (4) on its rear side. The support frame (1) has multiple horizontal bars (5) that slide vertically on its rear side. Multiple limiting blocks (6) and water supply pipes (7) are arranged in an array on the horizontal bars (5). The limiting blocks (6) are movably inserted into the slot (4) vertically. The water supply pipes (7) are located above the incubator (3). The bottom of the placement cavity (2) is provided with a heating component that works with the incubator (3).
2. The Oryctes boas incubation device for processing black pig manure according to claim 1, characterized by: The incubator (3) has a fixing block (8) on its rear side, and the slot (4) is located on the top of the fixing block (8). The limiting block (6) moves from top to bottom and is movably inserted into the slot (4).
3. The Oryctes boas incubation device for processing black pig feces according to claim 2, characterized in that: The longitudinal section of the limiting block (6) is L-shaped. The horizontal part of the L-shape is connected to the crossbar (5), and the vertical part of the L-shape is movably inserted into the slot (4).
4. The Oryctes boas incubator for processing black pig excreta according to claim 1, characterized by: The support frame (1) is symmetrically provided with upright plates (9) on the rear side. The upright plates (9) are provided with sliding grooves (10). The two ends of the crossbar (5) are slidably connected in the sliding grooves (10) on both sides. The sliding grooves (10) are provided with power rods (11) that drive the crossbar (5) to slide vertically.
5. The Oryctes boas incubation device for processing black pig feces according to claim 4, characterized in that: The power rod (11) is rotatably connected in one of the slides (10), the power rod (11) passes through the crossbar (5) and is threadedly connected to it, and the other slide (10) is provided with a guide rod (12), the guide rod (12) passes through the crossbar (5) and is slidably connected to it.
6. The Oryctes boas incubator for processing black pig excrements according to claim 1, characterized by: The water supply pipe (7) is provided with multiple water spray holes (13) on its periphery.
7. The Oryctes boas incubator for processing black pig excrements according to claim 1, characterized by: The heating component is a heating tape (14).