Quick-release type potamox brevitarsis larva culture pond

By designing detachable columns and crossbars to connect and form an adjustable breeding pond, the problem of difficult disassembly of traditional breeding ponds is solved, enabling flexible breeding of white-spotted flower beetle larvae and improving breeding efficiency and site adaptability.

CN224084482UActive Publication Date: 2026-04-07SHANDONG AGRI & ENG UNIV +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Traditional breeding ponds for white-spotted flower beetle larvae are complex to build, difficult to disassemble and adjust, affecting breeding efficiency and flexibility, and are inconvenient to maintain.

Method used

A quick-release breeding pond for white-spotted flower beetle larvae is designed, which uses detachable column components and crossbar components, connected by pins to form an adjustable overlapping frame, which is convenient for installation and disassembly and can be adapted to different sizes and sites.

Benefits of technology

It improves the flexibility and convenience of aquaculture ponds, making them easy to assemble, disassemble, and store quickly, adapting to the needs of aquaculture of different scales, and improving aquaculture efficiency and environmental adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a quick release type potamocorpus brevitarsis larva culture pond, which comprises a vertical column component, a transverse rod component and a culture net, a plurality of transverse rod components are sequentially distributed along the circumferential direction to enclose a lap joint frame, and the adjacent transverse rod components are connected through the vertical column component. The stand column assembly comprises a stand pipe and a connecting piece detachably and fixedly connected to the stand pipe, the cross rod assembly is detachably and fixedly connected with the connecting piece, the breeding net is placed in the lap joint frame, and the edge of the breeding net is erected and fixed to the cross rod assembly. The vertical pipes are fixedly arranged on the ground in an inserted mode, the adjacent transverse rod assemblies are fixedly connected through the connecting pieces on the vertical pipes, and therefore the multiple transverse rod assemblies form a lap joint frame for supporting the breeding net, and the breeding net can be used for larva breeding after the circumferential edge of the breeding net is fixed to the multiple transverse rod assemblies in a lap joint mode. The vertical pipe and the connecting piece are detachably installed, the cross rod assembly and the connecting piece are detachably installed, the structure is simple, and installation, detachment and storage are convenient.
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Description

Technical Field

[0001] This utility model relates to the field of insect breeding equipment technology, specifically to a quick-release breeding pond for white-spotted flower beetle larvae. Background Technology

[0002] White-spotted flower beetle larvae have broad application prospects and high economic value in fields such as ecological agriculture and biotransformation. Currently, the breeding of white-spotted flower beetle larvae mostly adopts traditional fixed breeding methods, which suffer from problems such as complex pond construction, poor flexibility, and difficulty in adjusting to different breeding sites and scales. Once traditional breeding ponds are built, they are difficult to dismantle and recombine, hindering the replanning of breeding sites and the expansion or reduction of breeding scale. Furthermore, the maintenance and cleaning of the breeding ponds are inconvenient during the breeding process, affecting the breeding efficiency and quality of white-spotted flower beetle larvae. Therefore, there is a need for a breeding pond with a simple structure, easy installation and dismantling, and flexible combination to meet the breeding requirements of white-spotted flower beetle larvae. Utility Model Content

[0003] This utility model addresses the shortcomings of existing technologies by providing a quick-disassembly breeding pond for white-spotted flower beetle larvae. This facility can effectively improve the utilization rate of idle land, facilitate short-term or temporary breeding, and is easy to assemble and disassemble quickly. After disassembly, it is easy to store without affecting secondary use.

[0004] This utility model is achieved through the following technical solution: a quick-release white-spotted flower beetle larvae breeding pond, comprising vertically arranged column components, horizontally arranged crossbar components, and a breeding net. Multiple crossbar components are arranged in sequence along the circumference to form an overlapping frame. Adjacent crossbar components are connected through the column components. Each column component includes a vertical pipe and a connector that can be detachably fixed to the vertical pipe. The crossbar components are detachably fixed to the connector. The breeding net is placed in the overlapping frame, and the edge of the breeding net is erected and fixed on the crossbar components.

[0005] This system is used by inserting risers into the ground and fixing them in place. Adjacent horizontal bar assemblies are connected and fixed using connectors on the risers, thus forming an overlapping frame that supports the aquaculture net. The circumferential edges of the aquaculture net are then overlapped and fixed to these horizontal bar assemblies for larval rearing. The risers and connectors, as well as the horizontal bar assemblies and connectors, are all detachable, making the structure simple, easy to install and disassemble, and convenient for storage.

[0006] As an optimization, the riser has multiple first pin holes along its length. The connector includes an outer sleeve and multiple insertion tubes. The outer sleeve is fitted onto the riser, and a first pin that mates with the first pin holes passes through the outer sleeve. The insertion tubes are arranged laterally, and the multiple insertion tubes are distributed circumferentially along the outer sleeve and fixedly connected to it. The crossbar assembly is detachably fixed to the insertion tubes. In this optimized design, the connector achieves a detachable connection through the engagement of the first pins with the first pin holes of the riser. The multiple first pin holes allow the connector to be fixed at different heights, thus facilitating the adjustment of the crossbar assembly's support height for the aquaculture net.

[0007] As an optimization, the outer sleeve is circumferentially fixed with four connecting pipes. In this optimized solution, one connecting pipe can connect to multiple crossbar assemblies circumferentially, facilitating the connection and installation of adjacent overlapping frames.

[0008] As an optimization, the crossbar assembly includes two first horizontal tubes arranged opposite each other and a second horizontal tube connecting the two first horizontal tubes. Multiple second pin holes are formed along the length of each first horizontal tube. One end of the first horizontal tube is inserted into the second horizontal tube, and both ends of the second horizontal tube are fitted with second pins that mate with the second pin holes. The other end of the first horizontal tube is inserted into the insertion tube, which is also fitted with second pins that mate with the second pin holes. In this optimized solution, the first horizontal tube engages with the insertion tube via the second pins, enabling a detachable connection of the crossbar assembly. Furthermore, the length of the crossbar assembly can be adjusted by varying the insertion depth of the first horizontal tube into the second horizontal tube. This allows for adjustments to the overlapping frame area of ​​different sizes according to the site size, facilitating the installation of aquaculture nets of varying sizes, and making the use more convenient and flexible.

[0009] As an optimization, the length of the second horizontal tube is no greater than the sum of the lengths of the two first horizontal tubes. This optimization, where the length of the second horizontal tube is less than the sum of the lengths of the two first horizontal tubes, ensures that the horizontal bar assembly reaches its minimum length when the two first horizontal tubes are in contact.

[0010] As an optimization, a pointed plug is inserted and fixed to the lower end of the riser. This optimization solution seals the lower end of the riser with the pointed plug to prevent soil from entering, and the pointed design facilitates the insertion of the riser into the soil.

[0011] As an optimization, a universal base is detachably fixed to the upper end of the riser. This optimization solution facilitates the installation of equipment and instruments for monitoring insect conditions by providing a universal base at the upper end of the riser.

[0012] As an optimization, a connecting rod is fixedly connected to the bottom of the universal base. The connecting rod is inserted into the riser and fixedly connected by a first pin. In this optimized solution, the universal base and the riser are connected by the first pin, achieving a detachable connection and facilitating assembly and disassembly.

[0013] The beneficial effects of this utility model are as follows: The riser is fixed to the ground by insertion, and adjacent horizontal bar assemblies are connected and fixed by connectors on the riser, thus forming an overlapping frame supporting the aquaculture net. The aquaculture net can be used for larval rearing by overlapping and fixing its circumferential edges to the multiple horizontal bar assemblies. The riser and connectors, as well as the horizontal bar assemblies and connectors, are all detachable, resulting in a simple structure that facilitates quick installation and disassembly, and is convenient for storage.

[0014] By setting multiple first pin holes on the riser, the connector can be fixed at different heights, which facilitates the adjustment of the support height of the crossbar assembly for the aquaculture net;

[0015] The length of the crossbar assembly can be adjusted by adjusting the insertion depth of the first crossbar into the second crossbar, thus facilitating the adjustment of the overlapping frame area of ​​different sizes according to the site size, making it easier to set up aquaculture nets of different sizes, and making it more convenient and flexible to use.

[0016] By setting a universal base at the top of the riser, it is convenient to install equipment and instruments for monitoring insect status. Attached Figure Description

[0017] Figure 1 A schematic diagram of the installation of an overlapping frame;

[0018] Figure 2 A schematic diagram showing the installation of two overlapping frames;

[0019] Figure 3 This is a front view of the present utility model;

[0020] Figure 4 This is a top view of the present invention;

[0021] Figure 5 This is a schematic diagram of the column assembly;

[0022] Figure 6 This is a schematic diagram of the crossbar assembly;

[0023] As shown in the figure:

[0024] 1. Aquaculture net; 2. Post assembly; 21. Riser; 22. Connector; 221. Outer sleeve; 222. Insert pipe; 23. Pointed plug; 24. Universal base; 241. Support truncated cone; 242. Mounting plate; 243. Connecting rod; 3. Horizontal bar assembly; 31. First horizontal tube; 32. Second horizontal tube; 4. First pin hole; 5. First pin; 6. Second pin hole; 7. Second pin; 8. Binding strap. Detailed Implementation

[0025] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.

[0026] like Figures 1-6 As shown, a quick-release breeding pond for white-spotted flower beetle larvae includes vertically arranged column components 2, horizontally arranged crossbar components 3, and a breeding net 1. Multiple crossbar components 3 are arranged circumferentially to form an overlapping frame, and adjacent crossbar components 3 are connected by the column components 2. Each column component 2 includes a riser 21 and a connector 22 detachably fixed to the riser 21. The crossbar components 3 are detachably fixed to the connectors 22. The breeding net 1 is placed within the overlapping frame, and the edges of the breeding net are attached and fixed to the crossbar components 3.

[0027] In this embodiment, a rectangular overlapping frame is formed by four horizontal bar components 3. The four horizontal bar components 3 are connected and fixed by four column components 2. One breeding net 1 is supported in one overlapping frame for the breeding of white-spotted flower beetle larvae.

[0028] The column assembly 2 is fixed by inserting the riser 21 into the ground. To facilitate the insertion of the riser 21 into the soil, the lower end of the riser 21 in this embodiment is fixed with a pointed plug 23. The pointed plug seals the lower end of the riser to prevent soil from entering, and the pointed design facilitates the insertion of the riser into the soil.

[0029] The breeding net 1 uses 20-mesh mesh. During installation, the breeding net 1 is cut into a rectangular shape according to the size of the overlapping frame. The four edges of the breeding net 1 are laid on the four horizontal bar components 3 and fixed with buckles or binding straps 8 to achieve the support and installation of the breeding net 1. The breeding net, supported by the overlapping frame, can maintain the air and water permeability at the bottom, providing a good growth environment for larvae.

[0030] Specifically, the riser 21 has multiple first pin holes 4 along its length. The connector 22 includes an outer sleeve 221 and multiple insertion tubes 222. The outer sleeve 221 is fitted onto the riser 21, and a first pin 5 that mates with the first pin holes 4 passes through the outer sleeve 221. The insertion tubes 222 are arranged laterally, and the multiple insertion tubes 222 are distributed circumferentially along the outer sleeve 221 and fixedly connected to the outer sleeve 221. The crossbar assembly 3 is detachably fixedly connected to the insertion tubes 222.

[0031] Since the overlapping frame in this embodiment is rectangular, four insertion pipes 222 are evenly fixed to the outer sleeve 221 around its circumference. One connector 22 can connect four crossbar assemblies 3, facilitating the connection and assembly of adjacent overlapping frames, making it more convenient to use, and saving costs. The connector 22 achieves a detachable connection by engaging with the first pin hole 4 of the riser 21 through the first pin 5. By providing multiple first pin holes 4, the riser 21 allows the connector 22 to be fixed at different heights, thereby facilitating the adjustment of the support height of the crossbar assembly 3 on the aquaculture net 1.

[0032] Specifically, the crossbar assembly 3 includes two first horizontal tubes 31 arranged opposite each other and a second horizontal tube 32 connecting the two first horizontal tubes 31. The first horizontal tubes 31 have multiple second pin holes 6 along their length. One end of the first horizontal tube 31 is inserted into the second horizontal tube 32, and both ends of the second horizontal tube 32 are provided with second pins 7 that mate with the second pin holes 6. The other end of the first horizontal tube 31 is inserted into the insertion tube 222, and the insertion tube 22 is also provided with second pins 7 that mate with the second pin holes 6.

[0033] The first horizontal tube 31 is connected to the insertion tube 222 via the second pin 7, enabling a detachable connection between the horizontal bar assembly 3 and the connector 22 for easy assembly and disassembly. The length of the horizontal bar assembly 3 can be adjusted by changing the insertion depth of the first horizontal tube 31 into the second horizontal tube 32. This allows for adjustments to the overlapping frame area of ​​different sizes based on site dimensions, facilitating the installation of different sized aquaculture nets and making the process more convenient and flexible.

[0034] Preferably, the length of the second horizontal tube 32 is not greater than the sum of the lengths of the two first horizontal tubes 31. Since the length of the second horizontal tube is not greater than the sum of the lengths of the two first horizontal tubes, the ends of the two first horizontal tubes can be brought into contact when adjusting the length of the horizontal bar assembly, thereby achieving the minimum length of the horizontal bar assembly.

[0035] Preferably, a universal base 24 is detachably fixed to the upper end of the riser 21. By providing a universal base 24 at the upper end of the riser 21, it is convenient to install equipment and instruments for monitoring insect growth or environmental conditions (such as cameras, temperature and humidity monitors, or light intensity monitors), and it is easy for personnel to install.

[0036] The universal base 24 includes a supporting frustum 241 and a mounting plate 242 fixed on the top of the supporting frustum 241. The mounting plate 242 has bolt holes for easy screwing and fixing of equipment and instruments.

[0037] A connecting rod 243 is fixedly connected to the bottom of the universal base 24. The connecting rod 243 is inserted into the riser 21 and fixedly connected by a first pin 5. In this embodiment, the connecting rod 243 is fixed to the bottom of the supporting frustum 241. The connecting rod 243 and the supporting frustum 241 are integrally formed, which is convenient for processing. A through hole is opened on the connecting rod 243, which corresponds to the first pin hole 4 at the upper end of the riser 21. The first pin 5 passes through the first pin hole 4 and the through hole to connect and fix the connecting rod 243 and the riser 21. The universal base 24 and the riser 21 are connected by the first pin 5, which realizes a detachable fixed connection and facilitates disassembly and assembly.

[0038] Working Principle: During installation, the size of the overlapping frame is determined according to the site size. First, four vertical pipes 21 are inserted into the soil for fixation, and the connectors 22 are connected and fixed to the vertical pipes 21 using the first pins 5. The length of the horizontal bar assembly 3 is adjusted by adjusting the insertion depth of the first horizontal pipe 31 into the second horizontal pipe 32. The first horizontal pipe 31 and the second horizontal pipe 32 are fixed using the second pins 7. The ends of the two first horizontal pipes 31 that are far apart from each other are fixed to the insertion pipes 222 on the adjacent vertical pipe assembly 2 using the second pins 7. After the four horizontal bar assemblies 3 are fixed, the overlapping frame is formed. Then, the universal base 24 is fixed to the upper end of the vertical pipes 21 using the first pins 5. The breeding net 1 is placed in the overlapping frame, with the bottom of the breeding net 1 adhering to the ground. The edges of the breeding net 1 are fixed to the horizontal bar assembly 3, completing the installation of the breeding net. Finally, culture medium is placed into the breeding net 1 for raising larvae.

[0039] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.

Claims

1. A quick-release breeding pond for white-spotted flower beetle larvae, characterized in that: The system includes vertically arranged column components (2), horizontally arranged crossbar components (3), and aquaculture net (1). Multiple crossbar components (3) are arranged in sequence along the circumference to form an overlapping frame. Adjacent crossbar components (3) are connected through the column components (2). The column components (2) include a riser (21) and a connector (22) that is detachably fixed to the riser (21). The crossbar components (3) and the connector (22) are detachably fixed. The aquaculture net (1) is placed in the overlapping frame, and the edge of the aquaculture net (1) is erected and fixed on the crossbar components (3).

2. The quick-release white-spotted flower beetle larvae rearing pond according to claim 1, characterized in that: The riser (21) has multiple first pin holes (4) along its length. The connector (22) includes an outer tube (221) and multiple insertion tubes (222). The outer tube (221) is sleeved on the riser (21). A first pin (5) that mates with the first pin hole (4) is passed through the outer tube (221). The insertion tubes are arranged laterally. Multiple insertion tubes (222) are distributed circumferentially along the outer tube (221) and fixedly connected to the outer tube (221). The crossbar assembly (3) is detachably fixedly connected to the insertion tubes (222).

3. The quick-release white-spotted flower beetle larvae rearing pond according to claim 2, characterized in that: The outer sleeve (221) is circumferentially fixed with four insertion tubes (222).

4. The quick-release white-spotted flower beetle larvae rearing pond according to claim 2, characterized in that: The crossbar assembly (3) includes two first cross tubes (31) arranged opposite to each other and a second cross tube (32) connecting the two first cross tubes. The first cross tube (31) has multiple second pin holes (6) in the length direction. One end of the first cross tube (31) is inserted into the second cross tube (32), and both ends of the second cross tube (32) are provided with second pins (7) that cooperate with the second pin holes (6). The other end of the first cross tube (31) is inserted into the insertion tube (222), and the insertion tube (222) is also provided with second pins (7) that cooperate with the second pin holes (6).

5. The quick-release white-spotted flower beetle larvae rearing pond according to claim 4, characterized in that: The length of the second horizontal tube (32) is not greater than the sum of the lengths of the two first horizontal tubes (31).

6. The quick-release white-spotted flower beetle larvae rearing pond according to claim 1, characterized in that: The lower end of the riser (21) is fixed with a pointed plug (23).

7. The quick-release white-spotted flower beetle larvae rearing pond according to claim 1, characterized in that: The upper end of the riser (21) is detachably fixed with a universal base (24).

8. The quick-release white-spotted flower beetle larvae rearing pond according to claim 7, characterized in that: The bottom of the universal base (24) is fixedly connected to a connecting rod (243), which is inserted into the riser (21) and fixedly connected by a first pin (5).