Scorpion breeding plate convenient for scorpions to freely select temperature and humidity
By setting up an internal warming chamber and a temperature and humidity regulating chamber inside the scorpion rearing tray, combined with an insect guiding component, the problem of existing scorpion rearing trays being unable to independently regulate temperature and humidity has been solved. This enables scorpions to autonomously select temperature and humidity and to feed them precisely, thereby improving the growth and reproduction efficiency of scorpions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-03-24
AI Technical Summary
Existing scorpion rearing trays cannot independently regulate temperature and humidity, making it difficult to adapt to the differentiated needs of scorpions at different growth stages or physiological states. This results in high energy consumption and makes it difficult to meet the requirements for scorpion growth, reproduction, and survival.
A scorpion rearing tray was designed to allow scorpions to freely choose the temperature and humidity. By setting an internal warming chamber, horizontal bars, and isolation blocks inside the scorpion tray to form a temperature and humidity regulating chamber, combined with insect guiding components and crawling block structures, the scorpions can choose the temperature and humidity in different areas and be fed precisely.
It enables scorpions to autonomously select the temperature and humidity in different areas, improving their growth, reproduction and survival rates, reducing energy consumption and achieving precise feeding and automatic feeding.
Smart Images

Figure CN224022653U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of scorpion farming technology, and in particular to a scorpion farming tray that allows scorpions to freely choose the temperature and humidity. Background Technology
[0002] Scorpion farming, as an important part of the special economic animal breeding field, places high demands on environmental control technology due to its large-scale and refined breeding practices. The growth, reproduction, and survival rate of scorpions are closely related to the temperature and humidity of their habitat, and the temperature and humidity requirements of different growth stages (such as juvenile scorpions, adult scorpions, and pregnant scorpions) vary significantly.
[0003] Existing scorpion breeding trays mainly rely on an overall indoor environmental control system to transfer temperature through air convection or heating devices. This passive diffusion mode from the outside to the inside results in uneven temperature distribution within the tray. At the same time, individual scorpion breeding trays cannot achieve independent adjustment of temperature and humidity, and must rely on a central control system to uniformly set parameters. This results in high energy consumption and makes it difficult to adapt to the differentiated needs of scorpions at different growth stages or physiological states. Utility Model Content
[0004] In view of the problem that the existing scorpion breeding trays are difficult to adapt to the differentiated needs of scorpions at different growth stages or physiological states, this utility model is proposed.
[0005] Therefore, the purpose of this utility model is to provide a scorpion rearing tray that allows scorpions to freely choose the temperature and humidity, with the aim of allowing scorpion rearing trays to freely choose the temperature and humidity.
[0006] To solve the above technical problems, this utility model provides the following technical solution: a scorpion breeding tray that allows scorpions to freely choose the temperature and humidity, including a humidifying and heating base, a set of scorpion tray bodies are placed on the top of the humidifying and heating base and at each breeding station, and the scorpion tray bodies in the same set are stacked vertically, and insect guiding components are placed on both sides of the top of the scorpion tray body.
[0007] The scorpion disc body has horizontal baffles installed on both sides near the center inside. The interior of the scorpion disc body is divided into two breeding chambers and an inner warming chamber by the two horizontal baffles. A connecting hole connected to the inner warming chamber is opened in the middle of the bottom of the scorpion disc body. Multiple partition plates are fixed at equal intervals inside the breeding chamber. The interior of the breeding chamber is divided into several scorpion cavities by the multiple partition plates.
[0008] As an improved technical solution, the internal heating chamber is fixedly equipped with four isolation blocks, and isolation strips are fixed between the two opposite sides of two adjacent isolation blocks.
[0009] Two adjacent isolation blocks and two isolation strips are opposite to each other and form a temperature and humidity adjusting cavity connected with the communication hole.
[0010] As an improved technical solution, the inside of the scorpion cavity is sequentially installed with the second climbing block and the first climbing block from outside to inside, the two sides of the inner wall of the humidifying and warming base plate are provided with a ladder-shaped climbing ladder, and the inside of the scorpion cavity is separated into a breeding section, a feeding end section and a living section by the second climbing block and the first climbing block.
[0011] As an improved technical solution, the bottom of the scorpion disc body is fixed with a group of clamping blocks, and a clamping cavity for clamping the isolation strip plate is formed between two adjacent clamping blocks in the same group.
[0012] As an improved technical solution, the insect guiding assembly comprises a horizontal strip plate, an upward arc-shaped flange is integrally formed on the outward side of the top of the horizontal strip plate, a triangular block is fixed to the top of the arc-shaped flange, and a row of insect feeding holes is formed in the top of the horizontal strip plate and located between the arc-shaped flange and the triangular block.
[0013] As an improved technical solution, the bottom of the horizontal strip plate is fixed with a positioning strip block on one side close to the arc-shaped flange.
[0014] After the above technical scheme is adopted, the beneficial effects of the scorpion disc are as follows.
[0015] 1. The scorpion disc body is installed with an insect guiding assembly for controlling the amount of insects, and the insects can accurately enter the breeding section of the scorpion cavity, and the scorpions live in the living section of the scorpion cavity, so that the scorpion and the insect coexist, accurate feeding and automatic feeding are realized, and the temperature and humidity of the scorpion cavity are adjusted by the internal temperature increasing room arranged on the scorpion disc body, each group of scorpion disc bodies can adjust different required temperature and humidity states, and the temperature and humidity can be freely selected according to actual requirements.
[0016] 2. The insect guiding assembly is used for covering and blocking the breeding section of the scorpion cavity, meanwhile, the insect feeding hole is opposite to the breeding section and communicates with the breeding section, the insects are sprayed into the inside of the insect storage cavity by the insect feeder, the insects can climb into the breeding section of the scorpion cavity through the insect feeding hole, the flow of the insects entering the breeding section can be controlled through the arrangement of the insect feeding hole, the amount of the insects entering the breeding section per day is 1-3, and the amount of the insects is avoided to be too much. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.
[0018] Figure 1 The whole structure schematic view of the scorpion breeding disc convenient for the scorpion to freely select temperature and humidity.
[0019] Figure 2 The three-dimensional structure schematic view of the scorpion disc body of the scorpion breeding disc convenient for the scorpion to freely select temperature and humidity.
[0020] Figure 3 The top view structure schematic view of the scorpion disc body of the scorpion breeding disc convenient for the scorpion to freely select temperature and humidity.
[0021] Figure 4 The structure schematic view of the scorpion breeding disc convenient for the scorpion to freely select temperature and humidity. Figure 4 The structure schematic view of the A place in the middle.
[0022] Figure 5 The structure schematic view of the insect guiding assembly of the scorpion breeding disc convenient for the scorpion to freely select temperature and humidity.
[0023] Explanation of the reference signs:
[0024] 1, humidifying and warming base disc; 2, scorpion disc body; 3, insect guiding assembly; 31, horizontal strip plate; 32, positioning strip block; 33, arc-shaped upturned edge; 34, triangular block; 35, insect inlet hole; 4, clamping block; 5, clamping cavity; 6, horizontal blocking strip; 7, material placing cavity; 8, isolation block; 9, isolation strip; 10, communication hole; 11, temperature and humidity adjusting cavity; 12, climbing block one; 13, climbing block two; 14, isolation strip plate; 15, climbing ladder. DETAILED DESCRIPTION
[0025] In order to make the above-mentioned purpose, features and advantages of the present application more apparent and easy to understand, the specific embodiments of the present application will be described in detail in conjunction with the drawings of the specification.
[0026] Embodiment 1
[0027] Reference Figures 1-4For the first embodiment of the utility model provides a kind of scorpion free selection temperature and humidity's scorpion breeding disc, this one scorpion free selection temperature and humidity's scorpion breeding disc, including humidification and heating base 1, the top of humidification and heating base 1 and be located on each breeding station are placed with a group of scorpion disc body 2, and same group scorpion disc body 2 is vertically stacked and placed, scorpion disc body 2 top both sides are placed with insect guide assembly 3;
[0028] The inside of scorpion disc body 2 is installed with horizontal barrier 6 in both sides of middle part, the top of horizontal barrier 6 is provided with multiple grooves in equal interval, the inside of scorpion disc body 2 is separated into two breeding cavities and inner temperature increasing room by two horizontal barriers 6, and inner temperature increasing room is located between two breeding cavities, the middle part of scorpion disc body 2 bottom is provided with communication hole 10 connected with inner temperature increasing room, the inside of breeding cavity is fixed with multiple partition strip plates 14 in equal interval, the top of partition strip plate 14 and the side close to horizontal barrier 6 are provided with multiple grooves, the inside of breeding cavity is divided into several scorpion cavities by multiple partition strip plates 14.
[0029] Inner temperature increasing room is fixedly installed with four isolation blocks 8, the top of isolation block 8 is provided with groove, the opposite sides between the opposite faces of adjacent two isolation blocks 8 are fixed with isolation strips 9, and the top of isolation strip 9 is provided with groove.
[0030] The opposite faces between adjacent two isolation blocks 8 and two isolation strips 9 form temperature and humidity adjusting cavity 11 connected with communication hole 10, two horizontal barriers 6, adjacent two isolation blocks 8 and two isolation strips 9 form material placing cavity 7, and materials are placed in the inside of material placing cavity 7, for blocking airflow to flow into the inside of scorpion cavity, to make airflow flow slowly to scorpion cavity.
[0031] The inside of scorpion cavity is sequentially installed with climbing block two 13 and climbing block one 12 from outside to inside, and the two sides of the inner wall of humidification and heating base 1 are provided with ladder-shaped climbing ladders 15, the inside of scorpion cavity is separated into insect breeding section, feeding end section and living section by climbing block two 13 and climbing block one 12, feeding end section is located between insect breeding section and living section, and the temperature of living section is higher than that of insect breeding section, so that scorpion can freely select suitable temperature area, and scorpion can live or molt in living section of scorpion cavity, and scorpion can move back and forth in scorpion cavity and enter insect breeding section to eat insects.
[0032] The bottom of scorpion disc body 2 is fixed with a group of clamping blocks 4, and the opposite faces of adjacent two clamping blocks 4 in the same group form clamping cavity 5 clamped with partition strip plate 14.
[0033] In use, the temperature and humidity of scorpion cavity are controlled by inner temperature increasing room arranged on scorpion disc body 2, each group of scorpion disc body 2 can control different required temperature and humidity state, to realize free selection of temperature and humidity according to actual demand, and scorpion lives in living section of scorpion cavity, so as to realize scorpion and insect symbiosis, accurate feeding and automatic feeding.
[0034] Embodiment 2
[0035] With reference to Figure 1 And Figure 5 , the second embodiment of the utility model, this embodiment is different from the first embodiment is: the worm guide assembly 3 includes horizontal strip board 31, the top of horizontal strip board 31 outwardly integrally forms upward arc-shaped flange 33, the top of arc-shaped flange 33 is fixed with triangular block 34, and the arc-shaped flange 33 and triangular block 34 form a worm storage cavity, a row of worm entry holes 35 are formed in the top of horizontal strip board 31 and between arc-shaped flange 33 and triangular block 34, the worm guide assembly 3 is installed on both sides of scorpion disc body 2, the worm guide assembly 3 is used to cover and block the worm breeding section of scorpion cavity, meanwhile, the worm entry hole 35 is opposite and communicated with the worm breeding section, the flow of worms entering the worm breeding section can be controlled by the setting of worm entry hole 35, the amount of worms entering the worm breeding section per day is 1-3, and too much amount of worms is avoided.
[0036] The bottom of horizontal strip board 31 and the side close to arc-shaped flange 33 are fixed with positioning strip block 32.
[0037] In the use process, the worm guide assembly 3 for controlling the amount of worms is installed on both sides of scorpion disc body 2, and the worms can also accurately enter the worm breeding section of scorpion cavity.
[0038] The rest of the structure is the same as that of embodiment 1.
[0039] In combination with embodiments 1-2, the working principle of the utility model is as follows: the scorpions are placed in the living section in the scorpion cavity, the feed eaten by the worms is placed in the worm breeding section, multiple scorpion disc bodies 2 can be vertically stacked together to form a scorpion breeding disc group, and the scorpion breeding disc group is placed on the breeding station on humidification and warming base disc 1.
[0040] The temperature and humidity module on each breeding station on humidification and warming base disc 1 applies temperature and humidity to the corresponding scorpion disc body 2, the temperature and humidity airflow enters the inside of temperature and humidity adjusting cavity 11 through communication hole 10 and diffuses to the inside of scorpion cavity, to regulate the temperature and humidity parameters in scorpion cavity.
[0041] The worms are sprayed into the inside of worm storage cavity by worm feeder, and the worms can crawl into the worm breeding section of scorpion cavity through worm entry hole 35.
[0042] It should be noted that the above embodiments are only used to illustrate the technical solutions of the utility model and not limit, although the utility model is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the utility model, which should be covered in the claim scope of the utility model.
Claims
1. A scorpion rearing tray that allows scorpions to freely choose temperature and humidity, comprising a humidifying and heating base (1), characterized in that: The top of the humidifying and warming base (1) is provided with a group of scorpion disc bodies (2) on each breeding station, and the same group of scorpion disc bodies (2) are vertically stacked, and the two sides of the top of the scorpion disc body (2) are provided with a worm guiding assembly (3); The two sides of the middle part of the inside of the scorpion disc body (2) are provided with horizontal blocking strips (6), the inside of the scorpion disc body (2) is divided into two breeding cavities and an inner warming chamber by the two horizontal blocking strips (6), the middle part of the bottom of the scorpion disc body (2) is provided with a communication hole (10) in communication with the inner warming chamber, and the inside of the breeding cavity is fixed with a plurality of partition strip plates (14) at equal intervals, and the inside of the breeding cavity is divided into a plurality of scorpion cavities by the plurality of partition strip plates (14).
2. The scorpion breeding disc according to claim 1, wherein: The inner warming chamber is fixedly provided with four isolation blocks (8), and the opposite sides of the opposite surfaces of two adjacent isolation blocks (8) are fixedly provided with isolation strips (9).
3. The scorpion breeding disc according to claim 2, wherein: The opposite surfaces of two adjacent isolation blocks (8) and two isolation strips (9) are formed with a temperature and humidity adjusting cavity (11) in communication with the communication hole (10), and the material placing cavity (7) is formed between the two horizontal blocking strips (6), two adjacent isolation blocks (8) and two isolation strips (9).
4. The scorpion breeding disc according to claim 3, wherein: The inside of the scorpion cavity is sequentially provided with a climbing block two (13) and a climbing block one (12) from outside to inside, the two sides of the inner wall of the humidifying and warming base (1) are provided with stepped climbing ladders (15), and the inside of the scorpion cavity is divided into a worm breeding section, a feeding end section and a living section by the climbing block two (13) and the climbing block one (12).
5. The scorpion breeding disc according to claim 4, wherein: The bottom of the scorpion disc body (2) is fixed with a group of clamping blocks (4), and the same group of two adjacent clamping blocks (4) are formed with a clamping cavity (5) for clamping the partition strip plate (14).
6. The scorpion breeding disc according to claim 5, wherein: The worm guiding assembly (3) comprises a horizontal strip plate (31), an upward arc-shaped upturned edge (33) is integrally formed on the top of the horizontal strip plate (31), a triangular block (34) is fixed to the top of the arc-shaped upturned edge (33), and a row of worm inlet holes (35) are formed in the top of the horizontal strip plate (31) and between the arc-shaped upturned edge (33) and the triangular block (34).
7. The scorpion breeding disc according to claim 6, wherein: The bottom of the horizontal strip plate (31) is fixed with a positioning strip block (32) on one side close to the arc-shaped upturned edge (33).