Shrimp meal fishing hopper structure convenient to replace
By adopting a combined structure of insert blocks and sockets in the shrimp powder hopper, combined with the design of sealing gasket and tension spring, the problem of rust on the fixing bolt affecting replacement is solved, and the rapid replacement of the hopper body and more efficient disassembly convenience is achieved.
Patent Information
- Application Number
- CN202420842435.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-22
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-04-22
AI Technical Summary
The existing shrimp powder hopper fixing bolts are prone to rust after long-term use, which makes it difficult to remove the bolts when replacing the hopper, affecting the replacement efficiency and convenience.
A shrimp powder hopper structure is designed for easy replacement, adopting a combination structure of insertion blocks and sockets, and a sealing gasket and tension spring are provided on the fixing seat to ensure that the insertion blocks are securely plugged in and easy to remove.
The rapid disassembly and replacement of the hopper body is realized, which avoids the problem of rust on the fixing bolts and improves the efficiency and convenience of later disassembly and replacement.
Smart Images

Figure CN222960533U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of shrimp powder separation, in particular to a shrimp powder fishing hopper structure which is convenient to replace. Background Technique
[0002] After extracting components such as shrimp oil from shrimp, the remaining shrimp powder and other residues need to be separated from the extraction liquid. The existing method generally uses a fishing hopper to fish for shrimp powder. After fishing, the extraction liquid drops from the water drainage holes of the fishing hopper, and the solid shrimp powder remains in the fishing hopper, so as to realize the effective separation of shrimp powder. During the use of the existing fishing hopper, since it needs to be in contact with the liquid extraction liquid for a long time, it is very easy to rust and other situations. Moreover, the fishing hopper is a net structure with water drainage holes, and it is very easy to break at the water drainage holes after long-term use, resulting in the need to regularly replace the fishing hopper. The existing fishing hopper is generally fixed by bolts. After long-term use, the bolts are very easy to rust, resulting in very laborious disassembly of the bolts when replacing the fishing hopper, which affects the efficiency and convenience of replacing the fishing hopper later. Content of the Utility Model
[0003] The purpose of the utility model is to provide a shrimp powder fishing hopper structure which is convenient to replace. It can solve the technical problem that the fixing bolts rust after long-term use of the fishing hopper, which affects the replacement of the fishing hopper, makes the disassembly and fixing operation of the fishing hopper and the conveyor belt more convenient, the fixed fishing hopper is more firm, and it is not easy to rust after long-term use, which affects the disassembly and replacement of the fishing hopper, and improves the efficiency and convenience of disassembly and replacement.
[0004] In order to achieve the above object, the utility model is realized through the following technical solutions:
[0005] A shrimp powder fishing hopper structure which is convenient to replace, including a conveyor belt arranged on a bracket, a plurality of hopper bodies are arranged in an array on the conveyor belt, a plurality of water drainage holes are arranged on the hopper bodies, a plurality of fixing seats are arranged in an array on the conveyor belt, insertion holes are arranged on the fixing seats, a plurality of insertion blocks which are in plug-in fit with the insertion holes are arranged on the hopper bodies, sealing gaskets for cooperating with the insertion blocks are arranged at the ends of the insertion holes, a blocking rod for blocking the insertion blocks in the insertion holes is slidably connected to the fixing seats, and a tension spring is arranged between the blocking rod and the fixing seats.
[0006] Furthermore, a sliding groove is arranged on the fixing seat, the blocking rod is slidably connected in the sliding groove, a limiting convex block is arranged at the end of the blocking rod, and a limiting step for cooperating with the limiting convex block is arranged in the sliding groove.
[0007] Furthermore, a roller is rotatably connected to the end of the blocking rod, and the roller is in rolling contact with the insertion block during the process of the insertion block being inserted into the insertion hole.
[0008] Furthermore, a limiting groove for cooperating with the roller is provided on the hopper body.
[0009] Furthermore, a plurality of reinforcing ribs are provided on the hopper body, and the hopper body is made of metal or plastic.
[0010] Furthermore, the conveyor belt includes a chain, and a sprocket meshing with the chain is rotatably connected to the bracket.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] 1. In the structure of the present utility model, a plurality of fixing seats are arranged in an array on the conveyor belt, jacks are provided on the fixing seats, a plurality of insertion blocks inserted and matched with the jacks are arranged in an array on the hopper body, and a sealing gasket for cooperating with the insertion block is provided at the end of the jack. Such a structure enables the hopper body to be directly fixed to the conveyor belt by inserting the insertion block into the jack during installation. The structure is simple and the operation is convenient. The setting of the sealing gasket makes it difficult for external liquid to enter the jack, so that the insertion block is not easily rusted when inserted into the jack. During the disassembly process after long-term use, the insertion block can still be quickly pulled out of the jack to realize the quick replacement of the hopper body, greatly improving the efficiency and convenience of later disassembly and replacement;
[0013] 2. A stop rod for blocking the insertion block in the jack is slidably arranged on the fixing seat, and a tension spring is arranged between the stop rod and the fixing seat. After the insertion block is inserted into the jack, the stop rod is blocked at the insertion block at the end of the jack under the action of the tension spring, preventing the insertion block from disengaging from the jack, thus ensuring the structural stability of the hopper body after installation. During later disassembly, only need to slide the stop rod to separate it from the insertion block, and then the insertion block can be easily pulled out, making the later disassembly more efficient and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Att Figure 1 is a three-dimensional structural schematic diagram of the present utility model.
[0015] Att Figure 2 is a structural schematic diagram of the cooperation between the insertion block and the jack of the present utility model.
[0016] Att Figure 3 is the enlarged partial view of part A in Att Figure 2 of the present utility model.
[0017] Reference numerals shown in the drawings:
[0018] 1. Bracket; 2. Hopper body; 3. Drainage hole; 4. Fixing seat; 5. Jack; 6. Insertion block; 7. Stop rod; 8. Tension spring; 9. Chute; 10. Limiting convex block; 11. Limiting step; 12. Roller; 13. Limiting groove; 14. Reinforcing rib; 15. Chain; 16. Sprocket; 17. Sealing gasket. Detailed implementation manners
[0019] The following further elaborates the present utility model in conjunction with specific embodiments. It should be understood that these embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. In addition, it should be understood that after reading the content taught by the present utility model, those skilled in the art can make various changes or modifications to the present utility model, and these equivalent forms also fall within the scope defined by this application.
[0020] Refer to Figure 1 and Figure 2, the utility model relates to a shrimp powder ladling hopper structure which is convenient to replace. The main structure includes a conveyor belt arranged on a bracket 1. The conveyor belt is driven to rotate by a power structure such as a motor on the bracket 1. The conveyor belt is inclined towards the storage pool of shrimp powder. A plurality of hopper bodies 2 are arranged in an array on the conveyor belt. One end of the hopper body 2 is open. When the conveyor belt drives the hopper body 2 to pass by the shrimp powder storage pool, the mixture of the extraction liquid and shrimp powder enters the hopper body 2 from the open end and is lifted up along with the continuous rotation of the conveyor belt. A plurality of water drainage holes 3 are arranged on the hopper body 2. After being lifted up, the extraction liquid in the mixture passes through the penetrated water drainage holes 3 and then falls back into the storage pool again, while the solid shrimp powder remains in the hopper body 2, thus realizing the effective separation of shrimp powder and extraction liquid. The repeated operation of a plurality of hopper bodies 2 realizes the continuous separation treatment of shrimp powder. A plurality of fixing seats 4 are arranged in an array on the conveyor belt. The fixing seats 4 are fixed on the conveyor belt by welding or bolts. A jack 5 is arranged on the fixing seat 4. The jack 5 penetrates through one side of the fixing seat 4. A plurality of insertion blocks 6 which are in plug-in fit with the jack 5 are welded or bolted on the hopper body 2. The insertion blocks 6 enter the jack 5 from the penetrated side, realizing the plug-in fit between the insertion blocks 6 and the jack 5. A sealing gasket 17 for use with the insertion block 6 is arranged at the end of the jack 5. The arrangement of the sealing gasket 17 closes the end of the jack 5 in contact with the insertion block 6 after the insertion block 6 enters the jack 5, thus avoiding the entry of liquid components such as extraction liquid into the jack 5 during the ladling process, and avoiding the rusting of the insertion block 6 after long-term use and its difficulty in being pulled out of the jack 5, enabling the quick pulling out of the insertion block 6 during replacement after long-term use, realizing the quick disassembly and replacement of the hopper body 2, and greatly improving the convenience and efficiency of disassembly and replacement. A retaining rod 7 for blocking the insertion block 6 in the jack 5 is slidably connected to the fixing seat 4. Preferably, the number of retaining rods 7 arranged at each hopper body 2 is at least 2 and symmetric. A tension spring 8 is arranged between the retaining rod 7 and the fixing seat 4. In such a structure, when installing, the retaining rod 7 is slid to make it deviate from the installation path of the insertion block 6. During this process, the tension spring 8 is stretched. After the insertion block 6 is inserted into the jack 5, the retaining rod 7 is released. Under the action of the tension spring 8, the retaining rod 7 automatically resets and slides to one side of the insertion block 6, realizing the effective blocking of the insertion block 6, so that the installed hopper body 2 is more firmly fixed on the conveyor belt. Preferably, a handle is arranged on the retaining rod 7. During later disassembly, only by pulling the handle to slide the retaining rod 7 in advance can the firmness of the ladling hopper structure be ensured while improving the disassembly and replacement efficiency.
[0021] Preferably, referring to Figure 3, a chute 9 is provided on the fixed seat 4, and the chute 9 penetrates to the surface of the fixed seat 4. The baffle rod 7 passes through the penetrated position and is slidably connected in the chute 9. A limiting convex block 10 is fixedly welded or integrally formed at the end of the baffle rod 7. A limiting step 11 for cooperating with the limiting convex block 10 is provided in the chute 9. Such a structure enables the baffle rod 7 to effectively limit its maximum sliding distance when sliding in the chute 9 by the cooperation of the limiting convex block 10 and the limiting step 11, avoiding the baffle rod 7 from detaching from the chute 9, thereby ensuring the stability of its blocking structure for the insertion block 6.
[0022] Preferably, a roller 12 is rotatably connected to the end of the baffle rod 7 through a bearing. During the process of the insertion block 6 being inserted into the insertion hole 5, the roller 12 is in rolling contact with the insertion block 6. Such a structure does not require manual sliding of the baffle rod 7 during installation. Placing the insertion block 6 at the end of the baffle rod 7 and pressing the hopper main body 2 towards the fixed seat 4 can cause the insertion block 6 to automatically retract. When the insertion block 6 descends to align with the insertion hole 5, slide the insertion block 6 horizontally. During this process, the end of the baffle rod 7 maintains rolling contact with the insertion block 6 through the roller 12, making the insertion process of the insertion block 6 smoother. After the insertion block 6 is completely inserted into the insertion hole 5, the baffle rod 7 is located on the side of the insertion block 6 after rolling separation from the insertion block 6 through the roller 12, making the entire installation process of the hopper main body 2 more convenient and efficient.
[0023] Preferably, a limiting groove 13 for cooperating with the roller 12 is provided on the hopper main body 2. After the baffle rod 7 separates from the insertion block 6 when the insertion block 6 enters the insertion hole 5, the baffle rod 7 slides back to its original position under the action of the tension spring 8, causing the roller 12 at the end of the baffle rod 7 to enter the limiting groove 13. The hopper main body 2 improves the stability of its connection structure with the conveyor belt through the cooperation of the limiting groove 13 and the roller 12, avoiding the shaking of the hopper main body 2 after installation and further improving the firmness of the hopper main body 2.
[0024] Preferably, a plurality of reinforcing ribs 14 are provided on the hopper main body 2, and the hopper main body 2 is made of metal or plastic. Such a structure makes the hopper main body 2 not prone to breakage and rust at the water drainage holes 3 during use, further improving the service life of the hopper main body 2 and reducing the frequency of replacement and repair.
[0025] Preferably, the conveyor belt includes a chain 15, and a sprocket 16 meshing with the chain 15 is rotatably connected to the bracket 1. The sprocket 16 rotates under the drive of a motor. By the rotation of the sprocket 16, the rotation of the chain 15 meshing with it is driven. The fixed seat 4 is welded or bolted to the chain 15, making the rotation structure of the conveyor belt more firm and not prone to slipping even when bearing a large load, improving the efficiency and stability of shrimp powder scooping.
[0026] Working principle: In the structure of the present utility model, a plurality of fixed seats 4 are arrayed on the conveyor belt. A jack 5 is provided on the fixed seat 4. A plurality of insertion blocks 6 that are inserted and matched with the jack 5 are arrayed on the hopper main body 2. A sealing gasket 17 for cooperating with the insertion block 6 is provided at the end of the jack 5. Such a structure enables the hopper main body 2 to be directly fixed to the conveyor belt by inserting the insertion block 6 into the jack 5 during installation. The structure is simple and the operation is convenient. The setting of the sealing gasket 17 makes it difficult for external liquid to enter the jack 5, so that the insertion block 6 is not easily rusted when inserted inside the jack 5. During the disassembly process after long-term use, the insertion block 6 can still be quickly pulled out from the jack 5 to realize the quick replacement of the hopper main body, greatly improving the efficiency and convenience of later disassembly and replacement; A stop lever 7 that blocks the insertion block 6 inside the jack 5 is slidably arranged on the fixed seat 4. A tension spring 8 is provided between the stop lever 7 and the fixed seat 4. After the insertion block 6 is inserted into the jack 5, the stop lever 7 blocks the insertion block 6 at the end of the jack 5 under the action of the tension spring 8, preventing the insertion block 6 from disengaging from the jack 5, thus ensuring the structural stability after the hopper main body is installed. During later disassembly, only by sliding the stop lever 7 to separate it from the insertion block 6 can the insertion block 6 be easily pulled out, making the later disassembly more efficient and convenient.
Claims
1. A shrimp powder scooping hopper structure that is easy to replace, comprising a conveyor belt arranged on a bracket (1), a plurality of hopper bodies (2) arranged in an array on the conveyor belt, a plurality of drainage holes (3) being arranged on the hopper body (2), characterized in that: A plurality of fixed seats (4) are arranged in an array on the conveyor belt, and a plug hole (5) is provided on the fixed seat (4). A plurality of plug blocks (6) that are plugged into and matched with the plug holes (5) are provided on the hopper body (2), and a sealing gasket (17) that is used to match the plug block (6) is provided at the end of the plug hole (5). A stopper rod (7) for blocking the plug block (6) in the plug hole (5) is slidably connected to the fixed seat (4), and a tension spring (8) is provided between the stopper rod (7) and the fixed seat (4).
2. According to claim 1, a shrimp powder scooping hopper structure that is easy to replace is characterized by: The fixing seat (4) is provided with a slide groove (9), the shift rod (7) is slidably connected in the slide groove (9), a limiting protrusion (10) is provided at the end of the shift rod (7), and a limiting step (11) used in conjunction with the limiting protrusion (10) is provided in the slide groove (9).
3. The shrimp powder scooping hopper structure that is easy to replace according to claim 1 is characterized by: The end of the shift rod (7) is rotatably connected to a roller (12), and the roller (12) and the plug block (6) are in rolling contact during the insertion of the plug block (6) into the plug hole (5).
4. The shrimp powder scooping hopper structure that is easy to replace according to claim 3 is characterized by: The hopper body (2) is provided with a limiting groove (13) used in conjunction with the roller (12).
5. The shrimp powder scooping hopper structure that is easy to replace according to claim 1 is characterized by: The hopper body (2) is provided with a plurality of reinforcing ribs (14), and the hopper body (2) is made of metal or plastic.
6. The shrimp powder scooping hopper structure that is easy to replace according to claim 1, characterized in that: The conveyor belt comprises a chain (15), and a sprocket (16) meshing with the chain (15) is rotatably connected to the bracket (1).