Spiral tower mesh belt with small turning radius
By using the design of plug-in blocks and connecting rods, combined with locking components and rubber sealing gaskets, the problems of poor connection stability and troublesome disassembly of the mesh belt are solved, achieving both stability and convenience, making it suitable for seafood transportation.
Patent Information
- Application Number
- CN202520223061.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-12
AI Technical Summary
Existing conveyor belts have poor stability when connected and are difficult to disassemble, usually requiring the use of external tools.
It adopts a plug-in block and connecting rod design, and achieves quick connection and disassembly through locking components. It uses the cooperation of tension spring and moving block to achieve limit and separation. Combined with the design of rubber sealing gasket and elastic rope, it enhances stability and ease of operation.
It improves the stability of the mesh belt connection, simplifies the disassembly process, enhances the ease of operation, and is suitable for transporting seafood and other seafood products.
Smart Images

Figure CN223804287U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of mesh belt, in particular to a spiral tower small turning radius mesh belt. BACKGROUND
[0002] Food spiral tower is a common equipment in food industry, and the spiral tower is usually matched with a small turning radius mesh belt to spiral transport and cool food. The mesh belt is a device that can be bent and set, and can transport materials in a continuous manner through friction driving. The mesh belt can form a material conveying process on a certain conveying line from the initial feeding point to the final unloading point. It can transport both scattered materials and assembled articles. In addition to pure material transportation, it can also be combined with the process requirements in the production process of various industrial enterprises to form a rhythmic assembly line.
[0003] A flat grid type mesh belt chain disclosed by Chinese utility model (publication number: CN216612706U) relates to the technical field of conveying belts, and aims to improve the problem that articles with water droplets easily affect the use of the mesh belt chain. The flat grid type mesh belt chain comprises a plurality of mesh belt bodies. An end wall of each mesh belt body is provided with a connecting hole penetrating along the length direction of the mesh belt body. The connecting holes are oppositely arranged at the two ends in the width direction of the mesh belt body. A plurality of plug-in interfaces are formed on the two sides of the mesh belt body in the width direction. The plug-in interfaces on the opposite two sides of the mesh belt body are staggered and distributed along the length direction of the mesh belt body. The teeth of the adjacent plug-in interfaces are matched with each other. The teeth of the adjacent mesh belt bodies are engaged with each other. A connecting shaft is jointly arranged in the connecting holes of the engaged teeth. A plurality of water draining holes are formed in the outer wall of the mesh belt body along the thickness direction of the mesh belt body.
[0004] In the process of implementing the present utility model, the inventors found that at least the following problems exist in the prior art. The existing mesh belt is usually connected by using the friction of the connecting shaft to limit the different mesh belts, which has poor stability. Or the mesh belt is connected by using the plug-in type installation, which needs to be disassembled with the help of external tools, and the operation is relatively troublesome. Therefore, the spiral tower small turning radius mesh belt is proposed. CONTENT OF THE UTILITY MODEL
[0005] In order to solve the problem that the existing mesh belt is usually connected by using the friction of the connecting shaft to limit the different mesh belts, which has poor stability, or the mesh belt is connected by using the plug-in type installation, which needs to be disassembled with the help of external tools, and the operation is relatively troublesome, the present application provides a spiral tower small turning radius mesh belt.
[0006] The spiral tower small turning radius mesh belt provided by the present application adopts the following technical scheme:
[0007] The small turning radius spiral tower mesh belt comprises a first mesh belt body and a second mesh belt body, a plurality of plug-in interfaces are staggered on both sides of the first mesh belt body and the second mesh belt body along the width direction, the plug-in interfaces are arranged at intervals along the length direction of the first mesh belt body and the second mesh belt body, plug-in blocks matched with the plug-in interfaces are fixedly installed on the opposite sides of the first mesh belt body and the second mesh belt body, a through groove is formed in the plug-in block, a connecting rod is arranged in the through groove, the first mesh belt body and the second mesh belt body are rotationally connected through the connecting rod, and a locking assembly for locking the connecting rod is arranged in the plug-in block on the side of the outermost end of the first mesh belt body and the second mesh belt body.
[0008] By adopting the above technical scheme, after the first mesh belt body and the second mesh belt body are connected through the connecting rod, the locking assembly can fix the connecting rod, and when the first mesh belt body and the second mesh belt body need to be disassembled, the connecting rod can be quickly disassembled by the staff through the locking assembly.
[0009] Preferably, the locking assembly comprises a tension spring, an installation groove is formed in the plug-in block on the side of the outermost end of the first mesh belt body and the second mesh belt body, the tension spring is fixedly installed on the inner wall of the installation groove, one end of the tension spring is fixedly installed with a moving block, one side of the moving block is fixedly installed with a limiting rod, and a limiting groove matched with the limiting rod is formed in the connecting rod.
[0010] By adopting the above technical scheme, after the first mesh belt body and the second mesh belt body are connected through the connecting rod, the locking assembly can fix the connecting rod, and when the first mesh belt body and the second mesh belt body need to be disassembled, the connecting rod can be quickly disassembled by the staff through the locking assembly.
[0011] Preferably, a draining hole is formed in the first mesh belt body and the second mesh belt body.
[0012] By adopting the above technical scheme, when seafood and other marine products are transported, the water on the seafood can be drained through the draining hole on the first mesh belt body and the second mesh belt body.
[0013] Preferably, a long strip sliding hole is formed in the plug-in block on the side of the outermost end of the first mesh belt body and the second mesh belt body, the long strip sliding hole is in communication with the installation groove, a push plate is fixedly installed on one side of the moving block, and the push plate is arranged in the long strip sliding hole.
[0014] By adopting the technical scheme, the push plate can facilitate the staff to push the moving block.
[0015] Preferably, the spring is internally and fixedly installed on the plug-in block connected to the other side of the outermost end of the first mesh belt body and the second mesh belt body, and one end of the spring is in contact with the connecting rod.
[0016] By adopting the technical scheme, when the limiting rod is separated from the limiting groove on the connecting rod, the spring can restore the elastic force to push out the connecting rod, thereby facilitating the staff to take out the connecting rod.
[0017] Preferably, the inner wall of the long sliding hole internally provided in the plug-in block connected to one side of the outermost end of the first mesh belt body and the second mesh belt body is provided with a rubber sealing gasket.
[0018] By adopting the technical scheme, the rubber sealing gasket can reduce the influence of the external environment on the internal structure of the long sliding hole.
[0019] Preferably, the sliding block is fixedly installed on the side of the moving block away from the push plate, and the plug-in block internally provided on one side of the outermost end of the first mesh belt body and the second mesh belt body is internally provided with a sliding groove matched with the sliding block.
[0020] By adopting the technical scheme, the sliding block and the sliding groove can limit the movement range of the moving block, and the moving block can move more stably.
[0021] Preferably, the inner wall of the long sliding hole internally provided in the plug-in block connected to one side of the outermost end of the first mesh belt body and the second mesh belt body is fixedly installed with an elastic rope, and one end of the elastic rope is fixedly connected with the rubber sealing gasket.
[0022] By adopting the technical scheme, when the rubber sealing gasket is opened, the elastic rope can bind the rubber sealing gasket, thereby reducing the loss of the rubber sealing gasket.
[0023] In summary, the present application has at least one of the following beneficial technical effects:
[0024] After the first mesh belt body and the second mesh belt body are connected by the connecting rod, the tension spring can limit the limiting rod and the limiting groove on the connecting rod through the moving block, so that the first mesh belt body and the second mesh belt body are more stable during use. When the connecting rod needs to be removed, the staff only needs to control the movement of the moving block, the moving block can stretch the tension spring and drive the limiting rod to move, so that the limiting rod is separated from the limiting groove on the connecting rod, thereby enabling the staff to quickly remove the connecting rod. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1The whole structure diagram of the small turning radius mesh belt of the spiral tower according to the embodiment of the present application is shown in the figure.
[0026] Figure 2 The main embodiment of the present application is shown in the figure. Figure 1 The enlarged structure diagram of position A in the figure.
[0027] Figure 3 The main embodiment of the present application is shown in the figure.
[0028] Figure 4 The main embodiment of the present application is shown in the figure. Figure 1 The enlarged structure diagram of position B in the figure.
[0029] The figure shows the following signs: 1, first mesh belt body; 2, second mesh belt body; 3, insertion port; 4, insertion block; 5, through slot; 6, connecting rod; 7, tension spring; 8, moving block; 9, limiting rod; 10, drainage hole; 11, push plate; 12, spring; 13, rubber sealing gasket; 14, sliding block; 15, elastic rope. DETAILED DESCRIPTION
[0030] The following will be combined with the attached Figures 1-4 The present application will be further described in detail.
[0031] The embodiment of the present application discloses a small turning radius mesh belt of a spiral tower.
[0032] Please refer to Figure 1 The small turning radius mesh belt of the spiral tower comprises a first mesh belt body 1 and a second mesh belt body 2. The first mesh belt body 1 and the second mesh belt body 2 are internally provided with drainage holes 10. When transporting seafood and other marine products, the water on the seafood can be drained through the drainage holes 10 on the first mesh belt body 1 and the second mesh belt body 2.
[0033] Please refer to Figure 1 The first mesh belt body 1 and the second mesh belt body 2 are alternately provided with a plurality of insertion ports 3 on both sides along the width direction. The insertion ports 3 are arranged at intervals along the length direction of the first mesh belt body 1 and the second mesh belt body 2. The opposite sides of the first mesh belt body 1 and the second mesh belt body 2 are both fixedly installed with insertion blocks 4 matched with the insertion ports 3. The insertion blocks 4 are internally provided with through slots 5. The inside of the through slots 5 is provided with connecting rods 6. The first mesh belt body 1 and the second mesh belt body 2 are rotationally connected through the connecting rods 6.
[0034] Please refer to Figure 1 and Figure 2The plug-in block 4 connected to the outermost end of the first mesh belt body 1 and the second mesh belt body 2 is provided with a locking component for locking the connecting rod 6. The locking component includes a tension spring 7. The plug-in block 4 connected to the outermost end of the first mesh belt body 1 and the second mesh belt body 2 has an installation groove. The tension spring 7 is fixedly installed on the inner wall of the installation groove. A moving block 8 is fixedly installed at one end of the tension spring 7. A limit rod 9 is fixedly installed on one side of the moving block 8. A limit groove adapted to the limit rod 9 is provided inside the connecting rod 6. After connecting the first mesh belt body 1 and the second mesh belt body 2 using the connecting rod 6, the tension spring 7 can limit the limiting rod 9 to the limiting groove on the connecting rod 6 through the moving block 8, thereby making the first mesh belt body 1 and the second mesh belt body 2 more stable during use. When it is necessary to remove the connecting rod 6, the operator only needs to control the moving block 8 to move. The moving block 8 can stretch the tension spring 7 and drive the limiting rod 9 to move, so that the limiting rod 9 is separated from the limiting groove on the connecting rod 6, thereby allowing the operator to quickly remove the connecting rod 6.
[0035] Please refer to Figure 1 and Figure 2 A slider 14 is fixedly installed on the side of the movable block 8 away from the push plate 11. The inner cavity of the insertion block 4, which connects to the outermost end of the first mesh belt body 1 and the second mesh belt body 2, is provided with a groove adapted to the slider 14. The slider 14 and the groove limit the movement range of the movable block 8 and make its movement more stable. An elongated sliding hole is provided inside the insertion block 4, which connects to the mounting groove. A push plate 11 is fixedly installed on one side of the movable block 8, and the push plate 11 is located inside the elongated sliding hole. The push plate 11 facilitates the movement of the movable block 8 by the operator.
[0036] Please refer to Figure 2 and Figure 3 A rubber sealing gasket 13 is provided on the inner wall of the elongated sliding hole inside the plug-in block 4 connected to the outermost side of the first mesh belt body 1 and the second mesh belt body 2. The rubber sealing gasket 13 can reduce the influence of the external environment on the internal structure of the elongated sliding hole. An elastic rope 15 is fixedly installed on the inner wall of the elongated sliding hole inside the plug-in block 4 connected to the outermost side of the first mesh belt body 1 and the second mesh belt body 2. One end of the elastic rope 15 is fixedly connected to the rubber sealing gasket 13. When the rubber sealing gasket 13 is opened, the elastic rope 15 can bind the rubber sealing gasket 13, thereby reducing the possibility of the rubber sealing gasket 13 being lost.
[0037] Please refer to Figure 1 and Figure 4The inner part of the connecting plug 4 connected to the outermost part of the first mesh belt body 1 and the second mesh belt body 2 is fixedly installed with a spring 12, and one end of the spring 12 can be in contact with the connecting rod 6. When the limiting rod 9 is separated from the limiting groove on the connecting rod 6, the spring 12 can restore the elastic force to push out the connecting rod 6, thereby facilitating the worker to take out the connecting rod 6.
[0038] The utility model discloses the implementation principle is: through the design of first mesh belt body 1, second mesh belt body 2, plug interface 3, plug block 4, through groove 5, connecting rod 6, tension spring 7, moving block 8, limiting rod 9, drainage hole 10, push plate 11, spring 12, rubber sealing pad 13, sliding block 14 and elastic rope 15, after using connecting rod 6 to connect first mesh belt body 1 and second mesh belt body 2, tension spring 7 can be through moving block 8 and limiting rod 9 with the limiting groove on connecting rod 6 is limited, thereby making first mesh belt body 1 and second mesh belt body 2 more stable when using, when needing to remove connecting rod 6, the worker only needs to control moving block 8 and moves, and moving block 8 can stretch tension spring 7 and drive limiting rod 9 to move, make limiting rod 9 with the limiting groove on connecting rod 6 separates, thereby can make the worker can quickly remove connecting rod 6, when limiting rod 9 with the limiting groove on connecting rod 6 separates, spring 12 can restore the elastic force to push out connecting rod 6, thereby facilitating the worker to take out connecting rod 6.
[0039] The above are the preferred embodiments of the present application, and are not limited to the protection scope of the present application, so: all equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.
Claims
1. Spiral tower small turn radius mesh belt, characterized by: The utility model provides a kind of first and second mesh belt body, the first mesh belt body (1) and second mesh belt body (2) are staggered with multiple plug-in interfaces (3) on both sides along width direction, the plug-in interface (3) is arranged at intervals along the length direction of the first mesh belt body (1) and second mesh belt body (2), the opposite sides of the first mesh belt body (1) and second mesh belt body (2) are fixedly installed with the plug-in block (4) compatible with the plug-in interface (3), the inside of the plug-in block (4) is provided with through groove (5), the inside of the through groove (5) opened in the plug-in block (4) is provided with connecting rod (6), the first mesh belt body (1) and second mesh belt body (2) are rotatably connected by connecting rod (6), the inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is provided with locking assembly for locking connecting rod (6).
2. The spiral tower small turn radius mesh belt of claim 1, wherein: The locking assembly includes a tension spring (7), the inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is provided with an installation groove, the tension spring (7) is fixedly installed on the inner wall of the installation groove, one end of the tension spring (7) is fixedly installed with a moving block (8), one side of the moving block (8) is fixedly installed with a limiting rod (9), the inside of the connecting rod (6) is provided with a limiting groove compatible with the limiting rod (9).
3. The spiral tower small turn radius mesh belt of claim 1, wherein: The inside of the first mesh belt body (1) and second mesh belt body (2) is provided with a draining hole (10).
4. The spiral tower small turn radius mesh belt of claim 2, wherein: The inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is provided with a long strip sliding hole, the long strip sliding hole is in communication with the installation groove, one side of the moving block (8) is fixedly installed with a push plate (11), the push plate (11) is arranged in the long strip sliding hole.
5. The spiral tower small turn radius mesh belt of claim 1, wherein: The inside of the plug-in block (4) connected to the other side of the outermost end of the first mesh belt body (1) and second mesh belt body (2) is fixedly installed with a spring (12), one end of the spring (12) can contact the connecting rod (6).
6. The spiral tower small turn radius mesh belt of claim 4, wherein: The inner wall of the long strip sliding hole in the inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is provided with a rubber sealing gasket (13).
7. The spiral tower small turn radius mesh belt of claim 4, wherein: The side of the moving block (8) away from the push plate (11) is fixedly installed with a sliding block (14), the inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is provided with a sliding groove compatible with the sliding block (14).
8. The spiral tower small turn radius mesh belt of claim 7, wherein: The inner wall of the long strip sliding hole in the inside of the plug-in block (4) connected to the outermost side of the first mesh belt body (1) and second mesh belt body (2) is fixedly installed with a spring (12), one end of the spring (12) can contact the connecting rod (6).
Citation Information
Patent Citations
Flat lattice type mesh belt chain
CN216612706U