Lifting and conveying mechanism for shredded konjac
By using an inclined mesh conveyor belt and a motor-driven konjac noodle lifting and conveying mechanism, the problem of traditional belt conveyors being unable to remove moisture has been solved, achieving stable and efficient konjac noodle conveying and convenient cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU RONGTAI MACHINERY CO LTD
- Filing Date
- 2026-04-23
- Publication Date
- 2026-05-19
AI Technical Summary
Traditional belt conveyors cannot effectively remove moisture during the transport of konjac noodles, resulting in a damp workshop and difficulties in cleaning and maintenance.
The inclined mesh conveyor belt, combined with motor drive and guide plate design, realizes the lifting, conveying and draining functions of konjac noodles, and improves the conveying stability by adjusting the screw and L-shaped channel steel.
It achieves stable and efficient conveying of konjac noodles, reduces water dripping, lowers cleaning and maintenance difficulty, and improves the stability and anti-adhesion performance of the conveyor belt.
Smart Images

Figure CN224257562U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an improved invention for konjac noodle production equipment, and more particularly to an improved invention for a konjac noodle lifting and conveying mechanism. Background Technology
[0002] In the konjac food processing industry, konjac noodles typically contain a large amount of moisture after cooking and need to be transported from the cooking equipment to subsequent processes such as noodle processing and packaging. Traditional lifting and conveying methods often use belt conveyors. However, belt conveyors do not have a drainage function, and the moisture on the surface of the konjac noodles will drip during the conveying process, resulting in a damp workshop floor, increasing cleaning costs. At the same time, konjac noodle residue easily adheres to the belt, making cleaning and maintenance difficult. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a konjac noodle lifting and conveying mechanism.
[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: The konjac noodle lifting and conveying mechanism includes a support frame, characterized in that: an inclined mesh conveyor belt is provided on the support frame, and mounting frames are respectively provided on the left and right sides of the mesh conveyor belt. The mounting frames are fixed on the support frame, and the front and rear ends of the mesh conveyor belt are respectively wound around the front and rear rollers. Both the front and rear rollers can be rotatably set in the mounting frames. A motor is provided directly above the inclined high end of the mesh conveyor belt. The motor is set on a mounting base, and the mounting base is fixed on a gantry frame. The gantry frame is fixed on the mounting frames on both sides, and the motor is connected to the front roller drive.
[0005] Both ends of the front and rear rollers are provided with bearings, which are mounted on the slider. The slider is movably set in the mounting frame, and the corresponding mounting frame is provided with upper and lower guide rails. The upper and lower ends of the slider are provided with sliding grooves, and the slider is equipped with a position adjustment structure.
[0006] The position adjustment structure is an adjustment screw. The front and rear ends of the mounting frame are provided with cover plates. The adjustment screw passes through the cover plates, and one end of the adjustment screw is the adjustment end, while the other end is connected to the slider.
[0007] The inner side of the mounting frame is provided with an L-shaped channel steel, and the side of the mesh conveyor belt is located inside the L-shaped channel steel. The corresponding L-shaped channel steel provides lower support and lateral restraint for the mesh conveyor belt.
[0008] A guide plate is provided below the mesh conveyor belt. The guide plate is fixed on the mounting frame, and the water is directed to the water tank below the guide plate.
[0009] The output end of the motor is connected to one end of the front roller by a chain and sprocket drive, and both the motor and the chain are equipped with an outer cover.
[0010] The motor casing is provided with heat dissipation holes.
[0011] The lifting and conveying mechanism is connected between the konjac noodle cooking mechanism and the konjac noodle sorting mechanism, and the outlet of the lifting and conveying mechanism is equipped with a feeding hopper, which is fixed on the mounting frames on both sides.
[0012] The beneficial effects of this utility model are that the improved konjac noodle lifting and conveying mechanism adopts an inclined mesh chain conveyor belt, which integrates lifting, conveying and draining functions, realizing stable and efficient lifting and conveying of konjac noodles. During the conveying process, the konjac noodles are drained through the mesh of the mesh chain conveyor belt, and the mesh chain conveyor belt is not easy to adhere to residues, making cleaning and maintenance more convenient. At the same time, the motor is centrally located to effectively balance vibration, and with the adjustable tensioning device, the conveyor belt runs more smoothly, reducing the occurrence of konjac noodles falling during the conveying process. Attached Figure Description
[0013] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings.
[0014] Figure 1 This is a schematic diagram of the structure of this utility model.
[0015] Figure 2 This is a rear view of the structure of this utility model.
[0016] Figure 3 This utility model Figure 2 AA sectional view.
[0017] Figure 4 This is a structural diagram of the outer casing for the motor of this utility model. Detailed Implementation
[0018] The accompanying drawings illustrate the structure of this utility model, and further details will be described below with reference to the drawings. In this embodiment, see the attached drawings. Figure 1-4 The konjac noodle lifting and conveying mechanism includes a support frame 1, on which an inclined mesh conveyor belt 2 is provided. Mounting frames 3 are provided on the left and right sides of the mesh conveyor belt 2, and the mounting frames 3 are fixed to the support frame 1. The front and rear ends of the mesh conveyor belt 2 are respectively wound around the front and rear rollers 4, and the front and rear rollers 4 can be rotatably set in the mounting frames. A motor 5 is provided directly above the inclined high end of the mesh conveyor belt 2. The motor 5 is set on a mounting base, which is fixed to a gantry frame 6. The gantry frame 6 is fixed to the mounting frames 3 on both sides. The motor 5 is connected to the front roller 4 for transmission.
[0019] As a further improved specific implementation, bearings are provided at both ends of the front and rear rollers 4, the bearings are mounted on the slider 7, the slider 7 is movably disposed in the mounting frame 3, the mounting frame 3 is provided with upper and lower guide rails, the upper and lower ends of the slider 7 are provided with sliding grooves, and the slider 7 is equipped with a position adjustment structure 8.
[0020] As a further improved implementation, the position adjustment structure 8 is an adjusting screw. The mounting frame 3 has cover plates 9 at its front and rear ends. The adjusting screw passes through the cover plates 9, with one end being the adjusting end, secured with a nut, and the other end connected to the slider 7. During adjustment, tightening the nut causes the slider 7 to move towards the nut, thereby moving the roller to tension the mesh conveyor belt 2, achieving belt tension adjustment and preventing belt slippage that could affect conveying stability.
[0021] As a further improved specific implementation, the inner side of the mounting frame 3 is provided with an L-shaped channel steel 10, and the side of the mesh conveyor belt 2 is located inside the L-shaped channel steel 10. The corresponding L-shaped channel steel 10 forms a lower support and lateral limit for the mesh conveyor belt 2, further improving the conveying stability.
[0022] As a further improved specific implementation, a guide plate 11 is provided below the mesh conveyor belt 2. The guide plate 11 is fixed on the mounting frame 3, and the water is guided to the water tank below the guide plate 11.
[0023] As a further improved specific implementation, the output end of the motor 5 is connected to one end of the front roller 4 by a chain and sprocket drive, and both the motor 5 and the chain are equipped with an outer cover 13 for protection. Preferably, the outer cover of the motor 5 is provided with heat dissipation holes to ensure heat dissipation.
[0024] As a further improved specific implementation, the lifting and conveying mechanism is connected between the konjac noodle cooking mechanism and the noodle sorting mechanism, and the outlet of the lifting and conveying mechanism is equipped with a feeding hopper 12. The feeding hopper 12 is fixed on the two side mounting frames 3, which can accurately guide the lifted konjac noodles to the subsequent noodle sorting mechanism to avoid the konjac noodles from scattering.
[0025] The working principle of this utility model is that the motor 5 drives the front roller 4 to rotate through the chain and sprocket, thereby driving the entire mesh conveyor belt 2 to run in a cycle, realizing the lifting and conveying of konjac noodles from low to high. During the conveying process, the surface moisture of the konjac noodles can drip naturally through the mesh holes onto the guide plate 11 below, and then be guided into the water tank by the guide plate 11.
[0026] In summary, the above are merely preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A konjac noodle lifting and conveying mechanism, comprising a support frame, characterized in that: The support frame is equipped with an inclined mesh conveyor belt. The mesh conveyor belt has mounting frames on its left and right sides, which are fixed to the support frame. The front and rear ends of the mesh conveyor belt are respectively wound around the front and rear rollers, which can be rotatably mounted in the mounting frames. A motor is located directly above the inclined end of the mesh conveyor belt. The motor is mounted on a mounting base, which is fixed to a gantry frame. The gantry frame is fixed to the mounting frames on both sides. The motor is connected to the front roller drive.
2. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: Both ends of the front and rear rollers are provided with bearings, which are mounted on the slider. The slider is movably set in the mounting frame, and the corresponding mounting frame is provided with upper and lower guide rails. The upper and lower ends of the slider are provided with sliding grooves, and the slider is equipped with a position adjustment structure.
3. The konjac noodle lifting and conveying mechanism as described in claim 2, characterized in that: The position adjustment structure is an adjustment screw. The front and rear ends of the mounting frame are provided with cover plates. The adjustment screw passes through the cover plates, and one end of the adjustment screw is the adjustment end, while the other end is connected to the slider.
4. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: The inner side of the mounting frame is provided with an L-shaped channel steel, and the side of the mesh conveyor belt is located inside the L-shaped channel steel. The corresponding L-shaped channel steel provides lower support and lateral restraint for the mesh conveyor belt.
5. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: A guide plate is provided below the mesh conveyor belt. The guide plate is fixed on the mounting frame, and the water is directed to the water tank below the guide plate.
6. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: The output end of the motor is connected to one end of the front roller by a chain and sprocket drive, and both the motor and the chain are equipped with an outer cover.
7. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: The motor casing is provided with heat dissipation holes.
8. The konjac noodle lifting and conveying mechanism as described in claim 1, characterized in that: The lifting and conveying mechanism is connected between the konjac noodle cooking mechanism and the konjac noodle sorting mechanism, and the outlet of the lifting and conveying mechanism is equipped with a feeding hopper, which is fixed on the mounting frames on both sides.