Shrimp seed breeding workshop

By designing an adjustable probe position and limiting mechanism in the shrimp larvae farming workshop, the problem of inconvenient pH meter placement was solved, enabling accurate measurement and easy disassembly of water at different depths, thus ensuring the quality and efficiency of water quality monitoring in the shrimp larvae farming environment.

CN223810277UActive Publication Date: 2026-01-20ZHUHAI HAIMENG AQUACULTURE APPL RES & DEV CO LTD
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Patent Information

Application Number
CN202520360997.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-01-20
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

In existing shrimp larvae farming workshops, the location of pH meters is inconvenient to adjust, resulting in inaccurate pH measurements of water at different depths in the farming ponds. Furthermore, the meters are difficult to install and disassemble, increasing the difficulty of maintenance.

Method used

Design a shrimp larvae farming workshop that uses an adjustable probe position. The probe is positioned by inserting a rod into a slot to limit its movement, enabling detection of water at different depths. When disassembling, the probe is released by spring extension, facilitating the installation and removal of the probe.

Benefits of technology

It enables pH value measurement at different depths, ensuring comprehensive water quality data acquisition, reducing maintenance difficulty, and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shrimp seed breeding workshop which comprises a breeding workshop body, a plurality of breeding ponds are arranged in the breeding workshop body, mounting plates are arranged in the breeding ponds, the mounting plates are connected with the inner walls of the breeding ponds in a sliding mode, and driving mechanisms used for driving the mounting plates to move are arranged in the breeding ponds. Two limiting grooves are formed in each of the two ends of the mounting plate, limiting rods are arranged in the four limiting grooves, the limiting rods are slidably connected with the mounting plate, the two limiting rods located on the same side are fixedly connected with the same connecting plate, fixing seats are fixedly connected to the sides, away from each other, of the two connecting plates, and rolling wheels are arranged on the fixing seats; the rollers are rotationally connected with the fixing seats. According to the utility model, pH value measurement can be carried out at different depths, comprehensive water quality data is ensured to be obtained, data deviation caused by a layering phenomenon is avoided, water quality can be adjusted in real time according to a detection result, the probe is convenient to mount and dismount, the difficulty of maintenance work is reduced, and the working efficiency is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shrimp seed breeding technology field especially relates to a shrimp seed breeding workshop. BACKGROUND

[0002] Shrimp seed generally refers to the juvenile shrimp after hatching in aquaculture, usually in the juvenile stage of shrimp, and the management and breeding of shrimp seed are very important because their growth conditions and environment greatly affect the health and yield of adult shrimp, and shrimp seed is generally bred in a breeding workshop, which is provided with various equipment and management systems to ensure the growth of shrimp seed under the best conditions.

[0003] In the shrimp seed breeding process, the pH value of the water in the breeding pond is a key water quality index that affects the health, growth and survival rate of shrimp seed, and a pH meter is generally arranged in the breeding pond to detect the pH value of the water, but it is inconvenient to adjust the position of the pH meter, inconvenient to detect the water at different depths in the breeding pond, and may lead to inaccurate pH value measurement of different levels (such as surface water or bottom water) of the water body, and it is inconvenient to install and dismount the pH meter, which increases the difficulty of maintaining the pH meter, so a shrimp seed breeding workshop needs to be designed to solve the above problems. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the shortcomings in the prior art and provides a shrimp seed breeding workshop.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A shrimp larvae farming workshop includes a main body, inside which are arranged several farming ponds. Each farming pond has an installation plate slidably connected to its inner wall. The farming pond has a drive mechanism for moving the installation plate. Each end of the installation plate has two limiting grooves, and each of the four limiting grooves has a limiting rod slidably connected to the installation plate. Two limiting rods on the same side are fixedly connected to the same connecting plate. Two connecting plates on opposite sides are fixedly connected to a fixing seat, and the fixing seat is provided with... The rollers are rotatably connected to a fixed base. Each roller has a side plate on its opposite side, which is fixedly connected to the inner wall of the aquaculture pond. A spring is fitted onto a limiting rod. An L-shaped plate is fixedly connected to one side of a connecting plate. Insert rods are fixedly connected to the two L-shaped plates on their adjacent sides. Two positioning rods are fixedly connected to the top of one end of a mounting plate. Both positioning rods are fitted with the same connector. Slots are provided at both ends of the connector, and these slots are adapted to the insert rods. A probe is screwed to the connector on the side away from the mounting plate. This design allows for vertical movement. The system involves adjusting the probe position to detect water at different depths and employing a technique to insert the probe rod into the slot during probe descent. As the probe descends, rollers move along the side plate, bringing the two rollers closer together. This allows the probe rod to be inserted into the slot, limiting the position of the connector and thus installing the probe. Further adjustments to the probe position allow for water depth detection. For disassembly, continuously raising the probe causes the spring to extend, moving the two probe rods away from each other and removing them from the slot. This releases the limiting effect on the connector, allowing the probe and connector to be removed for maintenance. This invention effectively solves the problems mentioned in the background technology, such as the inconvenience of adjusting the position of the pH meter, the inconvenience of testing water at different depths in aquaculture ponds, which may lead to inaccurate pH measurement of different water layers (such as surface water or bottom water), and the inconvenience of installing and disassembling the pH meter, which increases the difficulty of pH meter maintenance. It enables pH measurement at different depths, ensures the acquisition of comprehensive water quality data, avoids data deviation caused by stratification, allows for real-time adjustment of water quality based on test results, facilitates probe installation and disassembly, reduces the difficulty of maintenance work, and ensures work efficiency.

[0007] Preferably, the driving mechanism includes a driving screw, a screw nut is sleeved on the driving screw, the screw nut is adapted to the driving screw, and an external fixed connection mounting plate is provided for the screw nut.

[0008] Preferably, a top plate is fitted onto the top end of the drive screw, the drive screw is rotatably connected to the top plate, and the top plate is fixedly connected to the inner wall of the top end of the aquaculture pond.

[0009] Preferably, the top of the driving screw rod is fixedly connected with a worm gear, and one side of the worm gear is provided with a worm that matches the worm gear.

[0010] Preferably, the two ends of the worm are both sleeved with bearing seats, and the inner ring inner wall of the bearing on the bearing seat is fixedly connected with the worm.

[0011] Preferably, one side of the worm is fixedly connected with a handle.

[0012] Preferably, the top of the breeding pool is fixedly connected with a display screen, and the display screen and the probe are electrically connected through a data line.

[0013] The beneficial effects of the utility model are as follows:

[0014] Since the position of the probe can be adjusted up and down to detect water of different depths, and the plug rod can be inserted into the insertion slot during the process of lowering the probe, the roller moves along the side plate during the process of lowering the probe, the two rollers approach each other, the plug rod is inserted into the insertion slot to limit the position of the connecting piece, the probe is installed, the position of the probe is adjusted to detect water of different depths, the probe is continuously raised during disassembly, the contracted spring is stretched, the two plug rods are moved away from each other from the insertion slot, the limiting of the connecting piece is released, the probe and the connecting piece are disassembled, and maintenance work is performed, the technical effects of being capable of measuring the pH value at different depths, ensuring to obtain comprehensive water quality data, avoiding data deviation caused by stratification, being capable of adjusting water quality in real time according to the detection result, being convenient for installing and dismounting the probe, reducing the difficulty of maintenance work, and ensuring work efficiency are achieved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 A workshop structure schematic view of the shrimp fry breeding workshop is provided for the utility model;

[0016] Figure 2 A workshop internal structure schematic view of the shrimp fry breeding workshop is provided for the utility model;

[0017] Figure 3 A breeding pool structure schematic view of the shrimp fry breeding workshop is provided for the utility model;

[0018] Figure 4 A partial structure schematic view of the shrimp fry breeding workshop is provided for the utility model;

[0019] Figure 5 A driving screw structure schematic view of the shrimp breeding workshop is provided for the utility model;

[0020] Figure 6 An installation plate structure schematic view of the shrimp breeding workshop is provided for the utility model;

[0021] Figure 7 A cross-section installation plate structure schematic view of the shrimp breeding workshop is provided for the utility model.

[0022] In the figure: 1, breeding workshop body; 2, breeding pond; 3, driving screw; 4, screw nut; 5, installation plate; 6, limiting groove; 7, limiting rod; 8, connecting plate; 9, spring; 10, L-shaped plate; 11, insertion rod; 12, positioning rod; 13, connecting piece; 14, insertion slot; 15, probe; 16, fixed seat; 17, roller; 18, side plate; 19, top plate; 20, worm wheel; 21, worm; 22, bearing seat; 23, handle; 24, display screen; 25, data line. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0024] REFERENCE Figures 1-7The utility model provides a shrimp seedling cultivation workshop, including the cultivation workshop body 1, the inside of cultivation workshop body 1 is provided with a plurality of cultivation ponds 2, the inside of cultivation pond 2 is provided with mounting plate 5, mounting plate 5 slidingly connects the inner wall of cultivation pond 2, the inside of cultivation pond 2 is provided with the drive mechanism for driving mounting plate 5 moves, the both ends of mounting plate 5 are all seted up two limit slots 6, four limit slots 6 are all provided with the limiting rod 7, limiting rod 7 slidingly connects mounting plate 5, two limiting rods 7 in the same side are all fixedly connected with same connecting plate 8, two connecting plates 8 in the side away from each other are all fixedly connected with fixed seat 16, and the fixed seat 16 is provided with the gyro wheel 17, the gyro wheel 17 rotationally connects fixed seat 16, and two gyro wheels 17 in the side away from each other are all provided with the side plate 18, and the side plate 18 is fixedly connected with the inner wall of cultivation pond 2, and the limiting rod 7 is sleeved with spring 9, and one side of connecting plate 8 is fixedly connected with L shaped plate 10, and two L shaped plates 10 in the side close to each other are all fixedly connected with the plug rod 11, and one end top of mounting plate 5 is fixedly connected with two positioning rods 12, and two positioning rods 12 are all sleeved with same connecting piece 13, and the position of connecting piece 13 is positioned through positioning rod 12, and both ends of connecting piece 13 are all seted up the slot 14, and the slot 14 is matched with the plug rod 11, and the plug rod 11 is inserted into the slot 14 to limit the position of connecting piece 13, the position of probe 15 can be fixed, and the probe 15 is fastened and connected with the probe 15 on the side away from mounting plate 5 using screw, since the position of probe is adjusted up and down to detect water of different depths, and the plug rod is inserted into the slot in the process of lowering probe, so in the process of lowering probe, the gyro wheel moves along the side plate, two gyro wheels approach each other, the plug rod is inserted into the slot to limit the position of connecting piece, the probe is installed, the position of probe is adjusted to detect water of different depths, the probe is continuously raised when disassembling, the spring is stretched, two plug rods are away from each other and removed from the slot, the limiting of connecting piece is released, the probe and connecting piece are disassembled, and maintenance work is carried out, the position of pH meter is not convenient to adjust in the background art, water of different depths in cultivation pond is not convenient to detect, the pH value of different levels of water body such as surface water or bottom water may not be accurately measured, and the pH meter is not convenient to install and disassemble, the difficulty of maintaining pH meter is increased, the pH value can be measured at different depths, comprehensive water quality data is ensured, data deviation caused by stratification is avoided, water quality can be adjusted in real time according to the detection result, the probe is convenient to install and disassemble, the difficulty of maintenance work is reduced, and the technical effect of ensuring work efficiency is realized.

[0025] In the utility model, the drive mechanism includes the drive screw rod 3, the screw rod nut 4 is sleeved on the drive screw rod 3, the screw rod nut 4 is matched with the drive screw rod 3, and the outside of the screw rod nut 4 is fixedly connected with the mounting plate 5.

[0026] In the utility model, the top end of the driving screw rod 3 is sleeved with a top plate 19, the driving screw rod 3 is rotationally connected with the top plate 19, and the top plate 19 is fixedly connected with the top end inner wall of the breeding pond 2.

[0027] In the utility model, the top of the driving screw rod 3 is fixedly connected with a worm wheel 20, one side of the worm wheel 20 is provided with a worm 21 matched with the worm wheel 20, the worm 21 drives the worm wheel 20 to rotate, the worm wheel 20 drives the driving screw rod 3 to rotate in turn, so that the height of the probe 15 is adjusted, and the pH value of different water depths of different breeding ponds 2 is detected.

[0028] In the utility model, the two ends of the worm 21 are both sleeved with bearing seats 22, and the inner ring inner wall of the bearing on the bearing seat 22 is fixedly connected with the worm 21.

[0029] In the utility model, one side of the worm 21 is fixedly connected with a handle 23.

[0030] In the utility model, the top of the breeding pond 2 is fixedly connected with a display screen 24, the display screen 24 and the probe 15 are electrically connected through a data line 25, and the built-in processor of the probe 15 displays the detected data on the display screen 24 so as to be observed by staff.

[0031] Working principle: when in use, the water in the aquaculture pond 2 can be detected by the probe 15 to detect the pH value in the water, the pH value should be maintained at 7.0-8.5, according to the detection result, the corresponding neutralizing agent is put into the aquaculture pond 2, the detection result of the probe 15 is processed by the built-in processor and transmitted to the display screen 24 through the data line 25 for display, so that the staff can observe, the staff can rotate the handle 23, the rotation of the handle 23 will drive the worm 21 to rotate, the worm 21 will drive the worm gear 20 to rotate, the worm gear 20 will drive the driving lead screw 3 to rotate, the driving lead screw 3 will drive the lead screw nut 4 to move, the lead screw nut 4 will drive the mounting plate 5 to move, the mounting plate 5 will move along the inner wall of the aquaculture pond 2, the mounting plate 5 will drive the limiting rod 7 to move, the limiting rod 7 will drive the connecting plate 8 to move, the connecting plate 8 will drive the L-shaped plate 10 to move, the L-shaped plate 10 will drive the insertion rod 11 to move, the insertion rod 11 will drive the connecting piece 13 to move, the connecting piece 13 will drive the probe 15 to move, to adjust the height of the probe 15, to detect the pH value of the water at different depths in the aquaculture pond 2, to adjust the pH value of the water in the aquaculture pond 2 according to the data, to ensure that the water at different depths in the aquaculture pond 2 can be suitable for the growth of shrimp fry, when installing, use screws to pass through the holes on the connecting piece 13 and fasten the probe 15, when maintaining the probe 15 later, the probe 15 does not need to be separated from the connecting piece 13, the connecting piece 13 is sleeved on the two positioning rods 12, the handle 23 is rotated to make the driving lead screw 3 rotate, so that the mounting plate 5 descends, at this time the connecting plate 8 also descends, the connecting plate 8 will drive the fixing seat 16 to descend, the fixing seat 16 will drive the roller 17 to descend along the side plate 18, if the roller 17 continues to descend when it moves to the inclined edge of the side plate 18, the two rollers 17 can be close to each other, the movement of the roller 17 will drive the fixing seat 16 to move, the movement of the fixing seat 16 will drive the connecting plate 8 to move in the limiting groove 6, the movement of the connecting plate 8 will extrude the spring 9 to make the spring 9 contract, the two connecting plates 8 close to each other will drive the two L-shaped plates 10 to close to each other, the L-shaped plate 10 will drive the insertion rod 11 to move and insert into the insertion slot 14, that is, the position of the connecting piece 13 can be limited, that is, the position of the probe 15 can be fixed, continue to adjust the position of the probe 15 for detection, when disassembling, make the probe 15 continue to rise, when the roller 17 rises and continues to move after passing through the inclined edge of the side plate 18, the two springs 9 will be stretched, that is, the two connecting plates 8 can be away from each other, that is, the insertion rod 11 can be removed from the insertion slot 14, that is, the limiting of the connecting piece 13 can be released, that is, the connecting piece 13 and the probe 15 can be taken out together, that is, the probe 15 can be maintained.

[0032] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A shrimp larvae farming workshop, comprising a farming workshop body (1), characterized in that, The main body (1) of the breeding workshop is provided with several breeding ponds (2). The breeding ponds (2) are provided with mounting plates (5). The mounting plates (5) are slidably connected to the inner wall of the breeding ponds (2). The breeding ponds (2) are provided with a driving mechanism for moving the mounting plates (5). Two limiting grooves (6) are opened at both ends of the mounting plates (5). Limiting rods (7) are provided in each of the four limiting grooves (6). The limiting rods (7) are slidably connected to the mounting plates (5). The two limiting rods (7) on the same side are fixedly connected to the same connecting plate (8). The two connecting plates (8) are fixedly connected to the fixed seats (16) on the opposite sides. Rollers (17) are provided on the fixed seats (16). The rollers (17) are rotatably connected to the fixed seats. The fixed seat (16) has two rollers (17) with side plates (18) on the opposite sides. The side plates (18) are fixedly connected to the inner wall of the breeding pond (2). The limiting rod (7) is fitted with a spring (9). One side of the connecting plate (8) is fixedly connected with an L-shaped plate (10). The two L-shaped plates (10) are fixedly connected with insert rods (11) on the opposite sides. The top of one end of the mounting plate (5) is fixedly connected with two positioning rods (12). The two positioning rods (12) are fitted with the same connector (13). The connector (13) has slots (14) at both ends. The slots (14) are adapted to the insert rods (11). The connector (13) is fastened with a probe (15) by screws on the side away from the mounting plate (5).

2. The shrimp larvae rearing workshop according to claim 1, characterized in that, The driving mechanism includes a driving screw (3), on which a screw nut (4) is sleeved. The screw nut (4) is adapted to the driving screw (3), and the screw nut (4) is externally fixedly connected to a mounting plate (5).

3. The shrimp larvae rearing workshop according to claim 2, characterized in that, The top of the drive screw (3) is fitted with a top plate (19), the drive screw (3) is rotatably connected to the top plate (19), and the top plate (19) is fixedly connected to the inner wall of the top of the aquaculture pond (2).

4. The shrimp larvae rearing workshop according to claim 3, characterized in that, The top of the drive screw (3) is fixedly connected to a worm gear (20), and a worm (21) is provided on one side of the worm gear (20) to cooperate with it.

5. The shrimp larvae rearing workshop according to claim 4, characterized in that, Both ends of the worm (21) are fitted with bearing seats (22), and the inner wall of the inner ring of the bearing on the bearing seat (22) is fixedly connected to the worm (21).

6. The shrimp larvae rearing workshop according to claim 5, characterized in that, A handle (23) is fixedly connected to one side of the worm (21).

7. The shrimp larvae rearing workshop according to claim 1, characterized in that, The top of the aquaculture pond (2) is fixedly connected to a display screen (24), and the display screen (24) and the probe (15) are electrically connected by a data cable (25).