Scorpion breeding disc facilitating efficient processing

By setting climbing holes on the partition and optimizing the design of the troughs, the problems of time-consuming and labor-intensive processing and insufficient space utilization in traditional scorpion breeding trays have been solved, achieving efficient scorpion breeding and high-profit results.

CN224482649UActive Publication Date: 2026-07-14LUOYANG SUYING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521773129.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2026-07-14
Estimated Expiration
2035-08-20

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Abstract

The utility model discloses a scorpion breeding disc convenient to high -efficient processing, including breeding disc body, the upper surface of breeding disc body is equipped with a plurality of sink and forms the nest, is equipped with the baffle and forms a rest nest and a larva nest in every nest, the upper portion or middle portion of both sides outer wall of baffle is equipped with one or more climbing holes respectively. The utility model discloses through setting up the climbing hole in the upper portion or middle upper portion both sides of baffle, can realize the purpose that scorpion is back and forth between rest nest and larva nest under the premise that does not polish the surface of baffle middle upper portion, and the hole is formed on the baffle relatively and is polished to form the rough surface on the baffle surface much more easily, thereby obviously improved the production efficiency of scorpion breeding disc, reduced the cost of cultivation.
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Description

Technical Field

[0001] This utility model relates to a scorpion breeding tray, and more particularly to a scorpion breeding tray that is easy to process efficiently. Background Technology

[0002] A scorpion rearing tray is a device used for raising scorpions. A common structure consists of multiple sunken troughs on the top of the tray. Each trough contains a resting hole for the scorpions and a larval hole for storing larvae, which serve as food for the scorpions. A partition separates the resting hole and the larval hole within the same trough. The top of this partition is lower than the top of the tray. The partition serves two purposes: preventing larvae from entering the resting hole and facilitating the movement of scorpions from the resting hole to the larval hole. To reduce the rearing space and improve efficiency, thus increasing the input-output ratio, multiple scorpion rearing trays are typically stacked vertically together.

[0003] Traditional scorpion breeding trays have the following drawbacks: The material used for these trays is generally smooth plastic, and the manufacturing process typically involves thermoforming. While the smooth inner surface of the troughs prevents larvae from crawling out, the upper surface of the partitions needs to be roughened to facilitate scorpions moving between their resting and larval burrows. This roughening allows scorpions to grip the rough surface and climb over the partitions. Since there are many troughs and partitions, this roughening process is time-consuming and labor-intensive, significantly reducing the production efficiency of the scorpion breeding trays and increasing breeding costs.

[0004] Furthermore, in traditional scorpion breeding trays, the resting holes and larval holes are the same size. However, in reality, scorpions only need a small space to rest, and the insufficient size of the larval holes hinders scorpions from feeding and moving around, thus reducing the scorpion breeding cycle. Additionally, the openings at the bottom of the larval holes in traditional scorpion breeding trays are not concentrated in the center, making it difficult for larvae to gather in the middle of the hole and thus hindering their feeding. Furthermore, traditional scorpion breeding trays have steps along their edges to allow multiple trays to be stacked vertically. This structure results in a large vertical height between adjacent trays, while each tray does not require much vertical space in practical applications. This leads to a low overall breeding density, thus reducing the efficiency and profitability of scorpion breeding. Utility Model Content

[0005] The purpose of this invention is to provide a scorpion breeding tray that is easy to process efficiently and does not require grinding of the upper surface of the partition in order to solve the above problems.

[0006] This utility model achieves the above objectives through the following technical solutions:

[0007] A scorpion breeding tray that is easy to process efficiently includes a breeding tray body. The top of the breeding tray body is provided with multiple sunken grooves. Each groove is provided with a partition to form a resting hole and a larval hole. The upper or middle part of the outer wall of each side of the partition is provided with one or more climbing holes.

[0008] Preferably, to facilitate scorpion climbing, the climbing hole is a blind hole and its centerline direction is one or more of the following directions: horizontal, vertical, and diagonally upward.

[0009] Preferably, in order to facilitate scorpion climbing and simultaneously achieve good isolation between the resting burrow and the larval burrow, the upper cross section of the partition is an inverted "V" shape, the lower width of the partition is greater than its upper width, and partition platforms are formed on both sides of the middle section between the lower and upper parts, with multiple climbing holes provided on each partition platform.

[0010] Preferably, to facilitate scorpion climbing, each of the five climbing holes on the partition platform is arranged horizontally in sequence.

[0011] Preferably, in order to increase the space for feeding and activity without increasing the size of the burrow or affecting the scorpion's rest, the lateral width of the resting burrow is smaller than the lateral width of the larval burrow.

[0012] Preferably, in order to facilitate the larvae to crawl between the upper and lower rearing trays and improve the efficiency of larvae replenishment, the bottom center of the larval burrow is provided with multiple vertical through holes.

[0013] Specifically, each of the larval burrows has five vertical through holes at the bottom center, and these five vertical through holes are located at the four corners and the center of a rectangle, respectively.

[0014] Preferably, in order to reduce the vertical height of the internal space of each breeding tray to increase the breeding density while meeting the activity needs of scorpions, the bottom size of the trough is larger than the top size. The bottom of the breeding tray body is provided with a support opening groove with a lower opening and a lower width greater than the upper width at the position between every two adjacent troughs. The upper wall of the support opening groove is provided with a downward protruding support boss.

[0015] Preferably, in order to further reduce the vertical height of the internal space of each breeding tray, the bottom of the breeding tray body is provided with a movable opening groove with a lower opening and a lower width greater than the upper width, located below each of the partitions.

[0016] Preferably, in order to better limit the positioning when multiple scorpion breeding trays are vertically overlapped, the upper part of the breeding tray body is provided with multiple limiting grooves outside the trough, and the lower part of the support boss can be placed in the corresponding limiting groove.

[0017] The beneficial effects of this utility model are as follows:

[0018] This invention, by providing climbing holes on the upper or upper-middle sides of the partition, allows scorpions to move back and forth between their resting and larval burrows without grinding the upper surface of the partition. Drilling holes in the partition is much easier than grinding it to create a rough surface, thus significantly improving the production efficiency of the scorpion breeding tray and reducing breeding costs. By designing the width of the resting burrow to be greater than the width of the larval burrow, while maintaining the overall size of the trough, it facilitates feeding and movement for scorpions in the larval burrow, shortening the breeding cycle and increasing breeding profits. Concentrating the vertical through-holes at the bottom of the larval burrow in the middle facilitates easier feeding for scorpions. By setting mutually cooperating support opening slots and support protrusions, the vertical space of vertically stacked scorpion breeding trays is reduced, increasing the overall breeding density and thus increasing scorpion breeding efficiency and benefits. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the main structure of the scorpion breeding tray that is easy to process efficiently according to this utility model;

[0020] Figure 2 This is a side view of the scorpion breeding tray that is easy to process efficiently, as described in this utility model.

[0021] Figure 3 This is a top view of the scorpion breeding tray described in this utility model, which is easy to process efficiently.

[0022] Figure 4 yes Figure 3 An enlarged view of the letter "A". Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings:

[0024] like Figures 1-4 As shown, the scorpion breeding tray of this utility model that is easy to process efficiently includes a breeding tray body 1. The breeding tray body 1 has multiple sunken grooves 2 on its upper surface. Each groove 2 has a partition 5 forming a resting hole 4 and a larval hole 3. The upper or middle part of the outer wall on both sides of the partition 5 is provided with one or more climbing holes 12.

[0025] like Figures 1-4 As shown, this utility model also discloses the following more optimized specific structures:

[0026] To facilitate scorpion climbing, climbing hole 12 is a blind hole and its centerline direction is one or more of the following directions: horizontal, vertical, and diagonally upward. The figure shows the vertical direction.

[0027] To facilitate scorpion climbing and simultaneously achieve good isolation between the resting burrow 4 and the larval burrow 3, the upper part 7 of the partition 5 has an inverted "V" shaped cross section. The lower part of the partition 5 is wider than its upper part, and partition platforms 6 are formed on both sides of the middle between the lower and upper parts 7. Each partition platform 6 is provided with multiple climbing holes 12.

[0028] To make it easier for scorpions to climb, each partition platform 6 has five climbing holes 12 arranged horizontally in sequence.

[0029] In order to increase the space for feeding and activity without increasing the size of the burrow 2 or affecting the scorpion's rest, the horizontal width of the resting burrow 4 is smaller than the horizontal width of the larval burrow 3.

[0030] To facilitate the crawling of larvae between the upper and lower rearing trays and improve the efficiency of larval replenishment, the bottom center of the larval burrow 3 is provided with multiple vertical through holes 11.

[0031] Specifically, each larval burrow 3 has five vertical through holes 11 at the bottom center, and these five vertical through holes 11 are located at the four corners and the center of a rectangle, respectively.

[0032] In order to increase the breeding density by reducing the vertical height of the internal space of each breeding tray while meeting the activity needs of scorpions, the bottom size of the trough 2 is larger than the top size. The bottom of the breeding tray body 1 is provided with a support opening groove 10 with a lower opening and a lower width greater than the upper width between every two adjacent troughs 2. The upper wall of the support opening groove 10 is provided with multiple downward protruding support bosses 8.

[0033] To further reduce the vertical height of the internal space of each breeding tray, the bottom of the breeding tray body 1 is provided with a movable opening slot 9 with a lower opening and a lower width greater than the upper width, located below each partition 5.

[0034] To better limit the positioning of multiple scorpion breeding trays when they are vertically overlapped, the upper part of the breeding tray body 1 is provided with multiple limiting grooves 13 outside the trough 2, and the lower part of the supporting boss 8 can be placed in the corresponding limiting groove 13.

[0035] like Figures 1-4As shown, in application, multiple breeding trays 1 are vertically stacked. The lower outer walls of multiple grooves 2 of the upper breeding tray 1 are placed on top of the multiple grooves 2 of the lower breeding tray 1. The lower parts of multiple support protrusions 8 of the upper breeding tray 1 are placed above the corresponding positions on the upper breeding tray 1, and the lower parts of the support protrusions 8 are placed in the corresponding limiting grooves 13 to ensure that the vertical height of each breeding tray 1 meets the space requirements for scorpion activity. One scorpion is placed in each resting hole 4 of the breeding tray 1, and several larvae are placed in each larval hole 3. When replenishing larvae later, only some breeding trays 1 need to be placed with larvae. When scorpions need to eat and move, they climb over the partition 5 from the resting hole 4 to the larval hole 3 by grasping the climbing hole 12. When they need to rest, they climb over the partition 5 from the larval hole 3 to the resting hole 4 by grasping the climbing hole 12. In this way, the mass breeding function of scorpions can be realized.

[0036] The above embodiments are merely preferred embodiments of this utility model and are not intended to limit the technical solutions of this utility model. Any technical solution that can be implemented based on the above embodiments without creative effort should be considered to fall within the scope of protection of this utility model patent.

Claims

1. A scorpion breeding tray for easy and efficient processing, comprising a breeding tray body, wherein the upper surface of the breeding tray body is provided with a plurality of sunken grooves, each groove being provided with a partition to form a resting hole and a larval hole, characterized in that: One or more climbing holes are provided on the upper or middle part of the outer walls on both sides of the partition.

2. The scorpion breeding tray according to claim 1, characterized in that: The climbing hole is a blind hole and its centerline direction is one or more of the following directions: horizontal, vertical, and diagonally upward.

3. The scorpion breeding tray that is easy to process efficiently according to claim 1 or 2, characterized in that: The upper cross section of the partition is an inverted "V" shape. The lower width of the partition is greater than its upper width, and partition platforms are formed on both sides of the middle section between the lower and upper parts. Each partition platform is provided with multiple climbing holes.

4. The scorpion breeding tray according to claim 3, characterized in that: The climbing holes on each of the partition platforms are five arranged horizontally in sequence.

5. The scorpion breeding tray according to claim 1 or 2, characterized in that: The horizontal width of the resting hole is smaller than the horizontal width of the larval hole.

6. The scorpion breeding tray that is easy to process efficiently according to claim 1 or 2, characterized in that: The bottom center of the larval burrow has multiple vertical through holes.

7. The scorpion breeding tray according to claim 6, characterized in that: Each larval burrow has five vertical through holes at the bottom center, and these five vertical through holes are located at the four corners and the center of a rectangle, respectively.

8. The scorpion breeding tray that is easy to process efficiently according to claim 1 or 2, characterized in that: The bottom dimension of the trough is larger than the top dimension. The bottom of the breeding tray body is provided with a support opening groove with a lower opening and a lower width greater than the upper width at the position between every two adjacent troughs. The upper wall of the support opening groove is provided with a downward protruding support boss.

9. The scorpion breeding tray according to claim 8, characterized in that: The bottom of the breeding tray body is provided with a movable opening groove with a lower opening and a lower width greater than the upper width, located below each of the partitions.

10. The scorpion breeding tray according to claim 8, characterized in that: The upper part of the breeding tray body is provided with multiple limiting grooves outside the trough, and the lower part of the support boss can be placed in the corresponding limiting groove.