Food discharging device capable of preventing materials from being stuck
By introducing a push device and a canvas fence into the food cutting device, the problem of food raw materials is solved, effective anti-blocking effect is achieved, and production efficiency is improved.
Patent Information
- Application Number
- CN202422571825.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-23
AI Technical Summary
The existing food processing and cutting pipelines are prone to blockage, and food raw materials are prone to adhere and accumulate, affecting production efficiency.
A food cutting device that prevents chokes from being used is designed, including a pushing device and a canvas enclosure. The pushing device prevents raw materials from being stacked through the cover plate, cylinder, pushing plate and scraper, and the canvas enclosure separates and adheres raw materials through peristaltic movement.
Effectively prevent raw materials from falling and stacking during pushing, improve production efficiency and reduce the risk of pipeline blockage.
Smart Images

Figure CN223188163U_ABST
Abstract
Description
Technical field:
[0001] The utility model belongs to the technical field of anti-stuck equipment for food processing, and particularly relates to an anti-stuck food feeding device. Background technology:
[0002] The existing food processing discharge pipe is easy to stick to the side surface of the pipe after long-term use, which can easily block the discharge pipe and delay production time. In addition, the discharge pipe with a pushing structure can only push the food raw materials to the lower end of the pipe, and the food raw materials are easy to accumulate at the lower end of the pipe. Utility model content:
[0003] The purpose of this utility model is that when the staff pushes the food raw materials, the feeding port can be blocked to prevent the food raw materials from falling on the pusher when the material is withdrawn, and a canvas enclosure is set at the lower end of the discharge pipe. When the food raw materials accumulate on the canvas, the canvas can be peristalticized, and the food raw materials can be separated from the canvas during the peristaltic process. The technical solution is as follows:
[0004] A food feeding device for preventing material from getting stuck, characterized in that: it comprises a feeding pipe 1 and a pushing device 2 inserted in the middle of the upper surface of the feeding pipe 1, a feeding pipe 3 is connected to the middle of the upper left surface of the feeding pipe 1, a plurality of supporting devices 4 are evenly distributed and connected to the lower edge of the side surface of the feeding pipe 1, a sliding device 5 is inserted in the middle of the inner surface of each supporting device 4, the edges of the lower surface of the feeding pipe 1 are connected to canvas enclosures 6, and the four edges of the lower surface of the canvas enclosure 6 are connected to the lower surface of the feeding pipe 1. The edge is connected to the supporting lower ring 7, the pushing device 2 includes a cover plate 2-1, a cylinder 2-2, a push plate 2-3 and a scraper 2-4, the cylinder 2-2 is inserted in the middle of the upper surface of the cover plate 2-1, the push plate 2-3 is connected to the center of the telescopic end of the lower surface of the cylinder 2-2, and the scraper 2-4 is connected to the edges of the lower surface of the push plate 2-3. The push plate 2-3 is L-shaped, and the cover plate 2-1 and the discharge pipe 1 are connected to each other by a hinge, and the scraper 2-4 is connected to the inner wall of the discharge pipe 1. The support device 4 includes a pillar 4-1, an oblique tie bar 4-2, a slide groove 4-3 and a rubber pad 4-4. The oblique tie bar 4-2 is symmetrically connected to the middle of the upper and lower edges of the inner surface of the pillar 4-1. A slide groove 4-3 is provided in the middle of the inner surface of the pillar 4-1. The middle of the upper and lower surfaces of the slide groove 4-3 are each connected with a rubber pad 4-4. The pillar 4-1 is concave in shape. The upper part of the inner surface of the pillar 4-1 is connected to the outer surface of the discharge pipe 1, and the lower part of the inner surface of the pillar 4-1 is connected to the outer surface of the discharge pipe 1. Connected to the outer surface of the supporting lower ring 7, the sliding device 5 includes a column 5-1, a rodless cylinder 5-2, a support plate 5-3 and a roller 5-4. The rodless cylinder 5-2 is inserted in the middle of the side surface of the column 5-1, the support plate 5-3 is connected in the middle of the inner surface of the rodless cylinder 5-2, and the roller 5-4 is rotatably inserted in the middle of the inner surface of the support plate 5-3. The column 5-1 is inserted inside the slide groove 4-3, and the outer surface of the roller 5-4 is in contact with the outer surface of the canvas enclosure 6.
[0005] The beneficial effects of the utility model are as follows: the staff can block the feed port when pushing the food raw materials to prevent the food raw materials from falling onto the pusher when returning the materials, and a canvas enclosure is set at the lower end of the discharge pipe. When the food raw materials are accumulated on the canvas, the canvas can be peristalticized, and the food raw materials can be separated from the canvas during the peristaltic process. Description of the drawings:
[0006] Figure 1 This is a schematic diagram of the overall structure of the utility model:
[0007] Figure 2 This is a structural diagram of the pusher device 2 of the present utility model;
[0008] Figure 3 This is a schematic structural diagram of the support pillar 4 of the present utility model;
[0009] Figure 4 This is a schematic structural diagram of the sliding device 5 of the present utility model;
[0010] In the figure: unloading pipe 1, pushing device 2, feeding pipe 3, supporting pillar 4, sliding device 5, canvas enclosure 6, supporting lower ring 7, cover plate 2-1, cylinder 2-2, pushing plate 2-3, scraper 2-4, pillar 4-1, oblique tie bar 4-2, slide 4-3, rubber pad 4-4, column 5-1, rodless cylinder 5-2, support plate 5-3, roller 5-4. Specific implementation method:
[0011] Reference Figure 1-Figure 4 The anti-stuck food feeding device is characterized in that it comprises a feeding pipe 1 and a pushing device 2 inserted in the middle of the upper surface of the feeding pipe 1, a feeding pipe 3 is connected to the middle above the left side surface of the feeding pipe 1, a plurality of supporting devices 4 are evenly distributed and connected to the lower edges of the side surfaces of the feeding pipe 1, a sliding device 5 is inserted in the middle of the inner surface of each supporting device 4, and the edges of the lower surface of the feeding pipe 1 are connected to canvas enclosures 6, and the four edges of the lower surface of the canvas enclosure 6 are evenly distributed. The peripheral edge is connected to a supporting lower ring 7, and the pushing device 2 includes a cover plate 2-1, a cylinder 2-2, a push plate 2-3 and a scraper 2-4. The cylinder 2-2 is inserted in the middle of the upper surface of the cover plate 2-1, and the push plate 2-3 is connected to the center of the telescopic end of the lower surface of the cylinder 2-2. The scraper 2-4 is connected to the edges of the lower surface of the push plate 2-3. The push plate 2-3 is L-shaped. The cover plate 2-1 and the discharge pipe 1 are connected to each other by a hinge, and the scraper 2-4 is connected to the inner of the discharge pipe 1. The support device 4 includes a pillar 4-1, an oblique tie bar 4-2, a slide groove 4-3 and a rubber pad 4-4. The oblique tie bar 4-2 is symmetrically connected to the middle of the upper and lower edges of the inner surface of the pillar 4-1. A slide groove 4-3 is provided in the middle of the inner surface of the pillar 4-1. The middle of the upper and lower surfaces of the slide groove 4-3 are each connected with a rubber pad 4-4. The pillar 4-1 is concave in shape. The upper part of the inner surface of the pillar 4-1 is connected to the outer surface of the discharge pipe 1. The lower part of the inner surface of the pillar 4-1 is connected to the outer surface of the discharge pipe 1. The side is connected to the outer surface of the supporting lower ring 7, and the sliding device 5 includes a column 5-1, a rodless cylinder 5-2, a support plate 5-3 and a roller 5-4. The rodless cylinder 5-2 is inserted in the middle of the side surface of the column 5-1, and the support plate 5-3 is connected in the middle of the inner surface of the rodless cylinder 5-2. The roller 5-4 is rotatably inserted in the middle of the inner surface of the support plate 5-3. The column 5-1 is inserted in the slide groove 4-3, and the outer surface of the roller 5-4 is in contact with the outer surface of the canvas enclosure 6.
[0012] During use, the staff first covers the cover plate 2-1 on the pushing device 2 on the upper surface of the discharge pipe 1, and then the staff injects the food raw materials into the discharge pipe 1 through the feed pipe 3, and then starts the cylinder 2-2 to push the push plate 2-3 to move downward. At the same time, since the scraper 2-4 contacts the inner wall of the discharge pipe 1, the food raw materials on the inner wall of the discharge pipe 1 can be hung up and pushed into the canvas enclosure 6. Then start the rodless cylinder 5-2 on the sliding device 5 to slide on the column 5-1, and at the same time drive the support plate 5-3 to slide in the slide groove 4-3 on the supporting device 4. At the same time, the roller 5-4 rolls on the outer surface of the canvas enclosure 6, causing the canvas enclosure 6 to peristaltic to push away the food raw materials on the inner wall of the canvas enclosure 6, and finally discharge it through the supporting lower ring 7.
[0013] During use, the rubber pad 4-4 can limit the rodless cylinder 5-2 to prevent the rodless cylinder 5-2 from hitting the inner wall of the slide groove 4-3, and at the same time, the oblique tie rod 4-2 strengthens the supporting force of the pillar 4-1.
[0014] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by technicians in this technical field within the essential scope of the present invention should also fall within the scope of protection of the present invention.
Claims
1. A food feeding device that prevents food from getting stuck, characterized by: The invention comprises a discharge pipe (1) and a pushing device (2) inserted in the middle of the upper surface of the discharge pipe (1); a feed pipe (3) is connected to the middle of the upper left surface of the discharge pipe (1); a plurality of supporting devices (4) are evenly distributed and connected to the lower edges of the side surfaces of the discharge pipe (1); a sliding device (5) is inserted in the middle of the inner surface of each supporting device (4); the edges of the lower surface of the discharge pipe (1) are connected to canvas enclosures (6); and the edges of the lower surface of the canvas enclosures (6) are connected to supporting lower rings (7).
2. The food discharging device for preventing food from getting stuck according to claim 1, characterized in that: The pushing device (2) comprises a cover plate (2-1), a cylinder (2-2), a push plate (2-3) and a scraper (2-4); the cylinder (2-2) is inserted in the middle of the upper surface of the cover plate (2-1); the push plate (2-3) is connected to the center of the telescopic end of the lower surface of the cylinder (2-2); the scraper (2-4) is connected to the edges of the lower surface of the push plate (2-3); the push plate (2-3) is L-shaped; the cover plate (2-1) and the discharge pipe (1) are connected to each other by a hinge; the scraper (2-4) contacts the inner wall of the discharge pipe (1).
3. The anti-stuck food feeding device according to claim 1, characterized in that: The support device (4) comprises a pillar (4-1), an oblique tie bar (4-2), a slide groove (4-3) and a rubber pad (4-4); the oblique tie bar (4-2) is symmetrically connected to the middle of the upper and lower edges of the inner surface of the pillar (4-1); a slide groove (4-3) is provided in the middle of the inner surface of the pillar (4-1); the middle of the upper and lower surfaces inside the slide groove (4-3) are each connected to a rubber pad (4-4); the pillar (4-1) is concave in shape; the upper side of the inner surface of the pillar (4-1) is connected to the outer side surface of the discharge pipe (1); and the lower side of the inner surface of the pillar (4-1) is connected to the outer side surface of the support lower ring (7).
4. The food discharging device for preventing food from getting stuck according to claim 3, characterized in that: The sliding device (5) includes a column (5-1), a rodless cylinder (5-2), a support plate (5-3) and a roller (5-4); the rodless cylinder (5-2) is inserted in the middle of the side surface of the column (5-1); the support plate (5-3) is connected in the middle of the inner surface of the rodless cylinder (5-2); the roller (5-4) is rotatably inserted in the middle of the inner surface of the support plate (5-3); the column (5-1) is inserted in the inside of the slide groove (4-3); the outer surface of the roller (5-4) is in contact with the outer surface of the canvas enclosure (6).