Temporary transfer device for crayfish processing

By introducing an oxygen supply mechanism and a damping shock absorber into the crayfish transport device, the problem of insufficient oxygen supply is solved, transportation stability and freshness of crayfish are improved, and the fishing process is simplified.

CN223247330UActive Publication Date: 2025-08-22YUEYANG LONGFENG AGRICULTURAL & ANIMAL HUSBANDRY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422411573.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-22
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing temporary crayfish processing transfer device cannot effectively provide oxygen during transportation, making it difficult to guarantee the freshness.

Method used

An oxygen supply mechanism including an oxygen pump, a connecting chamber, a gas pipe and an air inlet is designed to ensure continuous oxygen supply during transportation, and the movement stability of the device is improved through damping shock absorbers and universal shafts. At the same time, a hydraulic cylinder and a hanging plate system are installed to facilitate the automatic fishing of crayfish.

Benefits of technology

The oxygen supply of crayfish during the transfer process is realized, the movement stability of the device is improved, and the fishing operation of crayfish is simplified, ensuring the freshness and safety of the transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a temporary transfer device for crayfish processing, which comprises a transfer box, the bottom end of the transfer box is fixedly connected with a bottom plate, one side of the top of the bottom plate is fixedly connected with a handle, the top end of one side of the transfer box is fixedly connected with a water inlet valve pipe, and the bottom end of the other side of the transfer box is fixedly connected with a drain valve. And an oxygen supply mechanism for providing oxygen is arranged at the top end of the bottom plate. According to the temporary transfer device for crayfish processing, by arranging an oxygen pump, a connecting pipe, a communicating bin, an air conveying pipe and an air inlet, in the transfer process, the oxygen pump is started to suck oxygen, the oxygen is guided into the communicating bin through the connecting pipe, and then the communicating bin conveys the oxygen into the air conveying pipe; finally, oxygen is fed into water in the transfer box through an air inlet in the top of an air conveying pipe, so that sufficient oxygen is guaranteed for the crayfishes in the transfer process, and the problem that the oxygen content cannot be kept in the transfer process is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of crayfish processing, in particular to a temporary transfer device for crayfish processing. Background Art

[0002] Crayfish is a very popular snack in the summer, and now there are more and more cooking methods and more and more flavors. Some factories specializing in processing crayfish need to process a large number of crayfish every day in the summer. After the crayfish are transported to the processing factory, special transfer equipment is needed to transport the fresh crayfish to the processing site;

[0003] However, the temporary transfer device currently used for crayfish processing still has some defects in use. It cannot effectively provide oxygen during transportation, resulting in the inability to effectively ensure the freshness of the crayfish during transportation.

[0004] Now a novel temporary transfer device for processing crayfish is proposed to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to provide a temporary transfer device for processing crayfish, so as to solve the problem in the above-mentioned background technology that the oxygen content cannot be maintained during the transfer process.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a temporary transfer device for processing crayfish, comprising a transfer box, wherein the bottom end of the transfer box is fixedly connected to a bottom plate, a handle is fixedly connected to one side of the top of the bottom plate, a water inlet valve pipe is fixedly connected to the top end of one side of the transfer box, a drain valve is fixedly connected to the bottom end of the other side of the transfer box, and an oxygen supply mechanism for providing oxygen is provided on the top end of the bottom plate;

[0007] The oxygen supply mechanism includes an oxygen pump and a connecting chamber. The connecting chamber is fixedly connected to one side of the top of the bottom plate, the top of the connecting chamber is fixedly connected to the oxygen pump, the output end of the oxygen pump is fixedly connected to a connecting pipe, the bottom end inside the transfer box is fixedly connected to an air pipe, and the top of the air pipe is fixedly connected to an air inlet.

[0008] Preferably, the gas pipe passes through one side of the transfer box and is fixedly connected to the connecting warehouse, and the gas pipe is communicated with the interior of the connecting warehouse.

[0009] Preferably, the connecting pipe passes through the top of the communicating chamber and is connected to the interior of the communicating chamber, and the air inlets at the top of the air delivery pipe are arranged at equal intervals.

[0010] Preferably, a group of mounting seats are fixedly connected to both ends of the bottom of the base plate, the bottom end of the mounting seat is fixedly connected to a universal shaft, the bottom end of the universal shaft is movably connected to a mounting cover, the top end of the inside of the mounting cover is fixedly connected to a damping shock absorber, and the bottom end of the damping shock absorber is fixedly connected to a moving wheel.

[0011] Preferably, the center line of the mounting cover and the center line of the universal shaft are in the same vertical plane, and the center line of the mounting seat and the center line of the universal shaft are in the same vertical plane.

[0012] Preferably, a connecting frame is provided inside the transfer box, the bottom end of the connecting frame is fixedly connected to a fixing frame, the inside of the fixing frame is fixedly connected to a salvage net, a group of hanging plates are fixedly connected on both sides of the top two ends of the connecting frame, the top of one end of the hanging plate is fixedly connected to a connecting plate, the two ends of the transfer box are fixedly connected to a group of hydraulic cylinders, the output end of the hydraulic cylinder is fixedly connected to a piston rod, the bottom end of the connecting plate is fixedly connected to a connecting groove, one end of the hanging plate is fixedly connected to a limiting block, and a group of limiting grooves are respectively provided on both sides of the two ends of the interior of the transfer box.

[0013] Preferably, the limiting groove is slidably connected to the limiting block, and the center line of the connecting frame and the center line of the transfer box are on the same vertical plane.

[0014] Preferably, the piston rod is movably connected to the connecting groove, and the hanging plate is movably connected to the transfer box.

[0015] Compared with the prior art, the present invention has the following beneficial effects: the temporary transfer device for processing crayfish can not only provide oxygen throughout the entire process, improve the stability during the transfer process, prevent water splashing, but also facilitate the removal of crayfish;

[0016] (1) By providing an oxygen pump, a connecting pipe, a connecting chamber, an air delivery pipe and an air inlet, during the transportation process, the oxygen pump is started to inhale oxygen and the oxygen is introduced into the interior of the connecting chamber through the connecting pipe, the connecting chamber then delivers the oxygen into the interior of the air delivery pipe, and finally delivers the oxygen into the water inside the transfer box through the air inlet at the top of the air delivery pipe, thereby ensuring that the crayfish have sufficient oxygen during the transportation process, and realizing that oxygen can be continuously provided during the transportation process to keep the crayfish fresh;

[0017] (2) By providing a moving wheel, a bottom plate, a mounting cover, a universal shaft, a mounting seat and a damping shock absorber, during the process of transfer, when the device moves, the damping shock absorber located on the top of the moving wheel can effectively play a shock-absorbing and buffering effect, preventing the transfer box from vibrating violently due to bumps during the movement, thereby causing water inside the transfer box to splash out, and the damping shock absorber can maintain flexible steering ability by being connected to the universal shaft through the mounting cover, thereby improving the stability of the device during movement;

[0018] (3) By providing a hanging plate, a connecting plate, a fixing frame, a salvage net, a connecting frame, a limiting groove, a limiting block, a hydraulic cylinder, a piston rod and a connecting groove, after the transfer box is transferred to the designated position, the hydraulic cylinders at both ends of the transfer box can be started at the same time, and the hydraulic cylinder pushes the connecting plate to rise through the piston rod, and the connecting plate then drives the connecting frame to rise through the hanging plate, and the connecting frame drives the salvage net to rise through the fixing frame to scoop up the crayfish inside the transfer box, thereby facilitating the staff to scoop up the crayfish for processing, and the limiting block at one end of the hanging plate fits inside the limiting groove to ensure the stability of the salvage net when it is raised, thereby realizing that the crayfish can be automatically scooped up. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present utility model;

[0020] Figure 2 This is a schematic diagram of the cross-sectional structure of the transfer box of the present invention;

[0021] Figure 3 This is a schematic diagram of the side cross-sectional structure of the connecting plate of the present invention;

[0022] Figure 4 This is a schematic diagram of an enlarged front cross-sectional structure of the installation cover of the present invention.

[0023] In the figure: 1. Transfer box; 2. Hanging plate; 3. Connecting plate; 4. Water inlet valve pipe; 5. Handle; 6. Oxygen pump; 7. Connecting pipe; 8. Connecting chamber; 9. Action wheel; 10. Bottom plate; 11. Air pipe; 12. Air inlet; 13. Mounting cover; 14. Drain valve; 15. Fixing bracket; 16. Salvage net; 17. Connecting frame; 18. Limiting groove; 19. Limiting block; 20. Hydraulic cylinder; 21. Piston rod; 22. Connecting groove; 23. Universal joint; 24. Mounting seat; 25. Damping shock absorber. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] Example 1: Please refer to Figure 1-4 A temporary transfer device for processing crayfish includes a transfer box 1, the bottom end of the transfer box 1 is fixedly connected to a bottom plate 10, one side of the top of the bottom plate 10 is fixedly connected to a handle 5, the top end of one side of the transfer box 1 is fixedly connected to a water inlet valve pipe 4, the bottom end of the other side of the transfer box 1 is fixedly connected to a drain valve 14, and the top end of the bottom plate 10 is provided with an oxygen supply mechanism for providing oxygen;

[0026] The oxygen supply mechanism includes an oxygen pump 6 and a connecting chamber 8. The connecting chamber 8 is fixedly connected to one side of the top of the bottom plate 10. The top of the connecting chamber 8 is fixedly connected to the oxygen pump 6. The output end of the oxygen pump 6 is fixedly connected to the connecting pipe 7. The bottom end of the interior of the transfer box 1 is fixedly connected to the air supply pipe 11, and the top of the air supply pipe 11 is fixedly connected to the air inlet 12.

[0027] The gas pipe 11 passes through one side of the transfer box 1 and is fixedly connected to the communication chamber 8. The gas pipe 11 is connected to the interior of the communication chamber 8.

[0028] The connecting pipe 7 passes through the top of the connecting chamber 8 and is connected to the interior of the connecting chamber 8. The air inlets 12 at the top of the air delivery pipe 11 are arranged at equal intervals.

[0029] Specifically, if Figure 1 As shown, during the transfer process, the oxygen pump 6 is started to inhale oxygen and introduce the oxygen into the interior of the connecting chamber 8 through the connecting pipe 7. The connecting chamber 8 then sends the oxygen into the interior of the gas pipe 11, and finally the oxygen is sent into the water inside the transfer box 1 through the air inlet 12 at the top of the gas pipe 11, thereby ensuring that the crayfish have sufficient oxygen during the transfer process, and realizing that oxygen can be continuously provided during the transfer process to keep the crayfish fresh.

[0030] Embodiment 2: A set of mounting seats 24 are fixedly connected to both ends of the bottom of the base plate 10. The bottom ends of the mounting seats 24 are fixedly connected to a universal shaft 23. The bottom end of the universal shaft 23 is movably connected to a mounting cover 13. The top end of the interior of the mounting cover 13 is fixedly connected to a damping shock absorber 25. The bottom end of the damping shock absorber 25 is fixedly connected to the moving wheel 9.

[0031] The center line of the mounting cover 13 and the center line of the universal shaft 23 are in the same vertical plane, and the center line of the mounting seat 24 and the center line of the universal shaft 23 are in the same vertical plane;

[0032] Specifically, if Figure 1 and Figure 4 As shown, during the transfer process, when the device moves, the damping shock absorber 25 located on the top of the moving wheel 9 can effectively play a shock-absorbing and buffering role to prevent the transfer box 1 from vibrating violently due to bumps during movement, thereby causing water inside the transfer box 1 to splash out, and the damping shock absorber 25 is connected to the universal shaft 23 through the mounting cover 13 to maintain flexible steering ability, thereby improving the stability of the device during movement.

[0033] Example 3: A connecting frame 17 is provided inside the transfer box 1, and the bottom end of the connecting frame 17 is fixedly connected to the fixing frame 15, and the inside of the fixing frame 15 is fixedly connected to a salvage net 16. A group of hanging plates 2 are fixedly connected to both sides of the top of the connecting frame 17 at both ends, and the top of one end of the hanging plate 2 is fixedly connected to the connecting plate 3. A group of hydraulic cylinders 20 are fixedly connected to both ends of the transfer box 1, and the output end of the hydraulic cylinder 20 is fixedly connected to the piston rod 21. The bottom end of the connecting plate 3 is fixedly connected to the connecting groove 22. One end of the hanging plate 2 is fixedly connected to the limiting block 19. A group of limiting grooves 18 are respectively provided on both sides of the two ends of the interior of the transfer box 1;

[0034] The limiting groove 18 is slidably connected to the limiting block 19, and the center line of the connecting frame 17 and the center line of the transfer box 1 are on the same vertical plane;

[0035] The piston rod 21 is movably connected to the connecting groove 22, and the hanging plate 2 is movably connected to the transfer box 1;

[0036] Specifically, if Figure 1 、 Figure 2 and Figure 3 As shown, after being transferred to the designated position, the hydraulic cylinders 20 at both ends of the transfer box 1 can be started at the same time. The hydraulic cylinder 20 pushes the connecting plate 3 to rise through the piston rod 21, and the connecting plate 3 then drives the connecting frame 17 to rise through the hanging plate 2. The connecting frame 17 drives the salvage net 16 to rise through the fixed frame 15 to scoop up the crayfish inside the transfer box 1, thereby making it convenient for the staff to scoop up the crayfish for processing, and the limiting block 19 at one end of the hanging plate 2 fits inside the limiting groove 18 to ensure the stability of the salvage net 16 when it is raised, so that the crayfish can be automatically scooped up.

[0037] Working principle: When the present invention is in use, during the process of transportation, the oxygen pump 6 is started to inhale oxygen and the oxygen is introduced into the interior of the connecting chamber 8 through the connecting pipe 7. The connecting chamber 8 then sends the oxygen into the interior of the air supply pipe 11, and finally the oxygen is sent into the water inside the transfer box 1 through the air inlet 12 on the top of the air supply pipe 11, thereby ensuring that the crayfish have sufficient oxygen during the transportation process. During the movement of the device, the damping shock absorber 25 located on the top of the action wheel 9 can effectively play a shock-absorbing and buffering role, preventing the transfer box 1 from vibrating violently due to bumps during movement, thereby causing the water inside the transfer box 1 to splash. The transfer box 1 is provided with a plurality of movable parts, and the movable parts are placed on the transfer box 1. The movable parts are placed on the transfer box 1. When the movable parts are placed on the transfer box 1, the movable parts are placed on the transfer box 1. When the movable parts are placed on the transfer box 1, the movable parts are placed on the transfer box 1.

Claims

1. A temporary transfer device for processing crayfish, comprising a transfer box (1), characterized in that: The bottom end of the transfer box (1) is fixedly connected to a bottom plate (10), one side of the top of the bottom plate (10) is fixedly connected to a handle (5), the top end of one side of the transfer box (1) is fixedly connected to a water inlet valve pipe (4), the bottom end of the other side of the transfer box (1) is fixedly connected to a drain valve (14), and the top end of the bottom plate (10) is provided with an oxygen supply mechanism for providing oxygen; The oxygen supply mechanism comprises an oxygen pump (6) and a connecting chamber (8); one side of the top of the bottom plate (10) is fixedly connected to the connecting chamber (8); the top of the connecting chamber (8) is fixedly connected to the oxygen pump (6); the output end of the oxygen pump (6) is fixedly connected to a connecting pipe (7); the bottom end inside the transfer box (1) is fixedly connected to an air supply pipe (11); and the top of the air supply pipe (11) is fixedly connected to an air inlet (12).

2. The temporary transport device for crayfish processing according to claim 1, characterized in that: The gas delivery pipe (11) passes through one side of the transfer box (1) and is fixedly connected to the communication chamber (8), and the gas delivery pipe (11) is communicated with the interior of the communication chamber (8).

3. The temporary transport device for crayfish processing according to claim 1, characterized in that: The connecting pipe (7) passes through the top of the communicating chamber (8) and is connected to the interior of the communicating chamber (8), and the air inlets (12) at the top of the air delivery pipe (11) are arranged at equal intervals.

4. The temporary transport device for crayfish processing according to claim 1, characterized in that: A group of mounting seats (24) are fixedly connected to both ends of the bottom of the base plate (10), the bottom end of the mounting seat (24) is fixedly connected to a universal shaft (23), the bottom end of the universal shaft (23) is movably connected to a mounting cover (13), the top end of the inside of the mounting cover (13) is fixedly connected to a damping shock absorber (25), and the bottom end of the damping shock absorber (25) is fixedly connected to a moving wheel (9).

5. The temporary transport device for crayfish processing according to claim 4, characterized in that: The center line of the mounting cover (13) and the center line of the universal shaft (23) are on the same vertical plane, and the center line of the mounting seat (24) and the center line of the universal shaft (23) are on the same vertical plane.

6. The temporary transport device for crayfish processing according to claim 1, characterized in that: The transfer box (1) is provided with a connection frame (17) inside, the bottom end of the connection frame (17) is fixedly connected to a fixing frame (15), the inside of the fixing frame (15) is fixedly connected to a salvage net (16), the two sides of the top of the two ends of the connection frame (17) are respectively fixedly connected to a group of hanging plates (2), the top of one end of the hanging plate (2) is fixedly connected to a connecting plate (3), the two ends of the transfer box (1) are respectively fixedly connected to a group of hydraulic cylinders (20), the output end of the hydraulic cylinder (20) is fixedly connected to a piston rod (21), the bottom end of the connecting plate (3) is fixedly connected to a connecting groove (22), one end of the hanging plate (2) is fixedly connected to a limiting block (19), and a group of limiting grooves (18) are respectively provided on both sides of the two ends of the interior of the transfer box (1).

7. The temporary transport device for crayfish processing according to claim 6, characterized in that: The limiting groove (18) is slidably connected to the limiting block (19), and the center line of the connecting frame (17) and the center line of the transfer box (1) are on the same vertical plane.

8. The temporary transport device for processing crayfish according to claim 6, characterized in that: The piston rod (21) is movably connected to the connecting groove (22), and the hanging plate (2) is movably connected to the transfer box (1).