Self-cleaning food blending equipment

By designing self-cleaning food blending equipment, using electric telescopic rods and flushing mechanisms to achieve automatic cleaning, combined with the moving mechanism of the worm and gear system, the problem of manual cleaning and liquid delivery methods in existing equipment is solved, and the working efficiency is improved.

CN222998647UActive Publication Date: 2025-06-20JIANGXI HAOYIMEI FOOD CO LTD
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Patent Information

Application Number
CN202422212996.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-06-20
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

During the blending process, existing food blending equipment requires workers to manually clean the blending chamber, which increases the workload of workers. At the same time, the liquid delivery method is single, and the liquid in the liquid storage tank needs to be frequently replaced, reducing work efficiency.

Method used

A self-cleaning food blending equipment is designed, using an electric telescopic rod and a flushing mechanism to drive the plate and blocks to move through the cylinder, drive the vertical rod to rotate, and the nozzle automatically flush the inner wall of the tank to reduce manual cleaning; at the same time, the moving mechanism realizes the automatic up and down movement of the cylinder through the worm and gear system, which facilitates the replacement of the blending solvent.

Benefits of technology

Automatic cleaning of food blending equipment is realized, reducing the workload of manual cleaning for workers; through the automated liquid delivery system, the efficiency of blending solvent replacement is improved and the overall working efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food processing, in particular to self-cleaning food blending equipment which comprises a frame, a flushing mechanism is installed in a first shell, a moving mechanism is installed on the outer wall of the lower side of the frame, the outer wall of the frame is fixedly connected with a water tank, and the left end of the water tank is fixedly connected with a first pump body. According to the self-cleaning food blending equipment, through cooperation of a washing mechanism and a second box body, an air cylinder extends to drive a plate body to move, the plate body drives a block body to move, then workers do not need to manually wash the inner wall of the tank body, the workload of the workers is reduced, and through cooperation of a moving mechanism and a frame, a third motor drives a worm to rotate; by means of the mode, the blending solvent is lifted to make contact with the pipe body, then the blending solvent is guided into the tank body, the second motor rotates to replace the blending solvent up-regulation area of the column body so that different blending solvents can be replaced, workers do not need to frequently replace the blending solvents in the work process, and then the work efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processing, in particular to a self-cleaning food blending device. Background Technique

[0002] Food blending is a cooking technique that adjusts the ingredients and proportions of food to achieve the best taste and nutritional value, including the reasonable use of seasonings to make the taste of food more rich and the nutrition more balanced. After the food blending is completed, the equipment needs to be cleaned.

[0003] For example, a functional food blending device with the authorization announcement number of "CN215138896U" can blend two or more functional food raw materials, and the blending is thorough, greatly improving the production efficiency and well meeting the production requirements. However, for this functional food blending device, when blending food, workers need to manually clean the blending cavity, which increases the workload of workers. At the same time, for this functional food blending device, the liquid transportation for blending is relatively single. To transport other liquids into the food, the liquid in the liquid storage tank needs to be replaced subsequently, thus reducing the work efficiency. Content of the Utility Model

[0004] The purpose of the utility model is to solve the problems that when blending food, workers need to manually clean the blending cavity, thus increasing the workload of workers, and the liquid transportation for blending is relatively single. To transport other liquids into the food, the liquid in the liquid storage tank needs to be replaced subsequently, thus reducing the work efficiency, and to propose a self-cleaning food blending device.

[0005] To achieve the above purpose, the utility model provides the following technical scheme:

[0006] Design a self-cleaning food blending device, including a frame. The upper inner wall of the frame is fixedly connected with an electric telescopic rod. The output end of the electric telescopic rod is fixedly connected with a first shell. A flushing mechanism is installed inside the first shell. The lower outer wall of the frame is equipped with a moving mechanism. The outer wall of the frame is fixedly connected with a water tank. The left end of the water tank is fixedly connected with a first pump body.

[0007] Preferably, the flushing mechanism includes a cylinder. The bottom end of the cylinder is fixedly connected with the first shell. The output end of the cylinder is fixedly connected with a plate body. Both ends of the plate body are slidably connected with the first shell. The inner walls of the plate body are all slidably connected with vertical rods. Both ends of the vertical rods are fixedly connected with the first shell. The middle inner wall of the plate body is slidably connected with a block. The outer wall of the block is fixedly connected with a vertical rod. The outer wall of the vertical rod is rotationally connected with the first shell through a sealing bearing. The lower end of the vertical rod is fixedly connected with a nozzle.

[0008] Preferably, the moving mechanism includes a second housing, the lower end of the second housing is fixedly connected to the frame, the second housing is fixedly connected to a third motor through a bracket, the output shaft of the third motor is connected to a worm through a speed reducer, both sides of the worm are rotatably connected to the second housing through bearings, the right end of the worm is engaged with a worm gear, the worm gear is rotatably connected to the second housing through a rotating shaft, the outer wall of the rotating shaft of the worm gear is fixedly connected to a first gear, the left end of the first gear is engaged with a second gear, the second gear is rotatably connected to the second housing through a rotating shaft, rod bodies are fixedly connected to the outer walls of the first gear and the second gear, the outer walls of the rod bodies are rotatably connected to rollers through bearings, and the upper ends of the rollers are in contact with the second box body.

[0009] Preferably, the first pump body is communicated with a spray head through a hose, the inner wall of the lower side of the frame is fixedly connected to a tank body, a feed port is arranged at the right end of the tank body, a discharge port is arranged at the lower end of the tank body, electromagnetic valves are arranged inside the feed port and the discharge port, the inner wall of the tank body is lapped with a first box body, the tank body is threadedly connected to the first box body through bolts, and the first box body is fixedly connected to a first motor through a bracket.

[0010] Preferably, the output shaft of the first motor is connected to a stirring rod through a speed reducer, the upper outer wall of the stirring rod is rotatably connected to the first box body through a bearing, the left end of the tank body is fixedly connected to a second pump body, the second pump body is communicated with a frame body through a pipe body, and the right end of the pipe body penetrates through the frame body.

[0011] Preferably, the lower end of the frame body is fixedly connected to the frame, the outer wall of the frame body is slidably connected to a second box body, the second box body is fixedly connected to a second motor through a bracket, the output shaft of the second motor is rotatably connected to the second box body through a bearing, and the output shaft of the second motor is connected to a column through a speed reducer.

[0012] A self-cleaning food blending device proposed by the present utility model has the beneficial effects that: through the cooperation of the flushing mechanism and the second box body, when the air cylinder extends, it drives the plate body to move, the plate body drives the block body to move, the block body drives the vertical rod to rotate by a certain degree, and the vertical rod drives the four spray heads to rotate. In this way, the spray heads flush the inner wall of the tank body, so that it is not necessary for workers to manually flush the inner wall of the tank body later, thereby reducing the workload of workers.

[0013] Through the cooperation of the moving mechanism and the frame, the third motor drives the worm to rotate, the worm drives the worm wheel to rotate, and the worm and the worm wheel have a self-locking function, thereby preventing the column from shaking when it is not moving. The worm wheel drives the first gear to rotate, the first gear drives the second gear to rotate, and the rotation of the first gear and the second gear causes the two rod bodies to swing inward. The inward swing of the two rod bodies causes the two rollers to swing inward. When the two rollers swing inward, they drive the second box body to move upward, thereby causing the column to move upward. In this way, the blending solvent is raised to contact the pipe body, and then the blending solvent is introduced into the tank body. Then, by rotating the second motor, the area of the blending solvent on the replaceable column can be changed, so as to replace different blending solvents. During the work, workers do not need to frequently replace the blending solvent, thereby improving work efficiency. Description of the Drawings

[0014] Figure 1 It is a schematic structural diagram of the present invention;

[0015] Figure 2 is Figure 1 a partial front elevation sectional view;

[0016] Figure 3 is Figure 2 a front elevation sectional view of the first housing in

[0017] Figure 4 is Figure 3 a top view of

[0018] Figure 5 is Figure 2 a partial front elevation sectional view of

[0019] Figure 6 is Figure 5 an enlarged view of part A in

[0020] Figure 7 is Figure 5 a top view of the column in

[0021] Figure 8 is Figure 3 a top view of the vertical rod in

[0022] In the figure: 1. Frame, 2. Flushing mechanism, 201. Vertical rod, 202. Cylinder, 203. Plate body, 204. Block, 205. Stand column, 3. Moving mechanism, 301. Second housing, 302. Third motor, 303. Worm, 304. Worm gear, 305. First gear, 306. Second gear, 307. Rod body, 308. Roller, 4. Electric telescopic rod, 5. Water tank, 6. First pump body, 7. Hose, 8. Sprayer head, 9. Tank body, 10. Feed inlet, 11. Discharge outlet, 12. First box body, 13. First motor, 14. Stirring rod, 15. Second motor, 16. Second pump body, 17. Pipe body, 18. Frame body, 19. Column body, 20. Second box body, 21. First housing. Detailed implementation mode

[0023] The present utility model will be further described below with reference to the accompanying drawings:

[0024] Refer to the attached Figures 1-8 In this embodiment, a self-cleaning food blending device includes a frame 1. The upper inner wall of the frame 1 is fixedly connected to an electric telescopic rod 4. The model of the electric telescopic rod 4 can meet the working requirements according to actual needs. The output end of the electric telescopic rod 4 is fixedly connected to a first housing 21. A flushing mechanism 2 is installed inside the first housing 21. A moving mechanism 3 is installed on the lower outer wall of the frame 1. The outer wall of the frame 1 is fixedly connected to a water tank 5. The water tank 5 is a prior art, and the model of the water tank 5 can meet the working requirements according to actual needs. The left end of the water tank 5 is fixedly connected to a first pump body 6. The model of the first pump body 6 can meet the working requirements according to actual needs;

[0025] The first pump body 6 is connected to the spray head 8 through a hose 7. The spray head 8 is a prior art, and the model of the spray head 8 can meet the working requirements according to actual needs. The lower inner wall of the frame 1 is fixedly connected to a tank body 9. The right end of the tank body 9 is provided with a feed inlet 10, and the lower end of the tank body 9 is provided with a discharge outlet 11. Solenoid valves are provided inside both the feed inlet 10 and the discharge outlet 11. The inner wall of the tank body 9 abuts against a first box body 12. The tank body 9 is threadedly connected to the first box body 12 through bolts. The first box body 12 is fixedly connected to a first motor 13 through a bracket. The first motor 13 is threadedly connected to the bracket through bolts and can be removed from the bracket if necessary. The model of the first motor 13 can meet the working requirements according to actual needs;

[0026] The output shaft of the first motor 13 is connected to the stirring rod 14 through a speed reducer. The first motor 13 drives the stirring rod 14 to rotate. The upper outer wall of the stirring rod 14 is rotatably connected to the first box body 12 through a bearing. The stirring rod 14 rotates inside the first box body 12. The left end of the tank body 9 is fixedly connected to the second pump body 16. The model of the second pump body 16 can meet the working requirements according to actual needs. The second pump body 16 is connected to the frame body 18 through a pipe body 17. The right end of the pipe body 17 penetrates through the frame body 18. The lower end of the frame body 18 is fixedly connected to the frame 1. The outer wall of the frame body 18 is slidably connected to the second box body 20. The frame body 18 slides on the second box body 20. The second box body 20 is fixedly connected to the second motor 15 through a bracket. The second motor 15 is threadedly connected to the bracket through bolts and can be removed from the bracket when necessary. The model of the second motor 15 can meet the working requirements according to actual needs. The output shaft of the second motor 15 is rotatably connected to the second box body 20 through a bearing. The output shaft of the second motor 15 rotates inside the second box body 20. The output shaft of the second motor 15 is connected to the column body 19 through a speed reducer. The second motor 15 drives the column body 19 to rotate. The column body 19 is divided into four areas, and different blending solvents can be placed separately in each area.

[0027] Refer to the attached Figure 3 , Figure 4 and Figure 8 : The flushing mechanism 2 includes a cylinder 202. The model of the cylinder 202 can meet the working requirements according to actual needs. The bottom end of the cylinder 202 is fixedly connected to the first shell 21. The output end of the cylinder 202 is fixedly connected to the plate body 203. The cylinder 202 drives the plate body 203 to move. Both ends of the plate body 203 are slidably connected to the first shell 21. The plate body 203 slides inside the first shell 21. The inner walls of the plate body 203 are slidably connected to the vertical rods 201. The plate body 203 slides on the vertical rods 201;

[0028] Both ends of the vertical rod 201 are fixedly connected to the first shell 21. The middle inner wall of the plate body 203 is slidably connected to the block body 204. The plate body 203 drives the block body 204 to move. The outer wall of the block body 204 is fixedly connected to the vertical rod 205. The block body 204 drives the vertical rod 205 to rotate. The outer wall of the vertical rod 205 is rotatably connected to the first shell 21 through a sealed bearing. The rotation range of the vertical rod 205 is 90° (when the vertical rod 205 rotates, the vertical rod 205 is in an inclined state. The vertical rod 205 will not rotate directly above or move directly below, so the vertical rod 205 will not be stuck). The vertical rod 205 rotates inside the first shell 21. The lower end of the vertical rod 205 is fixedly connected to the spray head 8. The vertical rod 205 drives the spray head 8 to rotate.

[0029] Refer to the attached Figure 5 and Figure 6The moving mechanism 3 includes a second housing 301. The lower end of the second housing 301 is fixedly connected to the frame 1. The second housing 301 is fixedly connected to a third motor 302 through a bracket. The third motor 302 is threadedly connected to the bracket by bolts and can be removed from the bracket if necessary. The model of the third motor 302 can meet the working requirements according to actual needs. The output shaft of the third motor 302 is connected to a worm 303 through a speed reducer. The third motor 302 drives the worm 303 to rotate. Both sides of the worm 303 are rotationally connected to the second housing 301 through bearings. The worm 303 rotates within the second housing 301. The right end of the worm 303 meshes with a worm gear 304. The worm 303 drives the worm gear 304 to rotate. The worm gear 304 is rotationally connected to the second housing 301 through a rotating shaft. The worm gear 304 rotates within the second housing 301;

[0030] The outer wall of the rotating shaft of the worm gear 304 is fixedly connected to a first gear 305. The worm gear 304 drives the first gear 305 to rotate. The left end of the first gear 305 meshes with a second gear 306. The first gear 305 drives the second gear 306 to rotate. The second gear 306 is rotationally connected to the second housing 301 through a rotating shaft. The second gear 306 rotates within the second housing 301. Rod bodies 307 are fixedly connected to the outer walls of both the first gear 305 and the second gear 306. The first gear 305 and the second gear 306 drive the rod bodies 307 to swing. The outer walls of the rod bodies 307 are rotationally connected to rollers 308 through bearings. The rod bodies 307 drive the rollers 308 to swing. The upper ends of the rollers 308 are in contact with the second box body 20. The rollers 308 drive the second box body 20 to move.

[0031] Working principle:

[0032] When it is necessary to mix food, the feed inlet 10 of the tank body 9 is opened through the solenoid valve. Subsequently, the worker imports the food raw materials into the tank body 9 through the feed inlet 10. After the food raw materials are imported into the tank body 9, the feed inlet 10 is closed through the solenoid valve. Then, the external power supply of the first motor 13 is connected and started. The first motor 13 drives the stirring rod 14 to rotate. The outer wall of the stirring rod 14 contacts the food raw materials and stirs them. Then, the external power supply of the second motor 15 is connected and started. The second motor 15 drives the column body 19 to rotate. The column body 19 is divided into four areas, and different mixing solvents can be placed separately in each area. Then, the area of the mixing solvent required on the column body 19 is rotated to the lower part of the pipe body 17 (the mixing solvent can meet the working requirements according to needs). After the required area of the mixing solvent is rotated to the lower part of the pipe body 17, the second motor 15 is turned off;

[0033] Connect the external power supply of the third motor 302 and start it. The third motor 302 drives the worm 303 to rotate, and the worm 303 drives the worm gear 304 to rotate. The worm 303 and the worm gear 304 have a self-locking function, thereby preventing the column 19 from shaking when it is not moving. The worm gear 304 drives the first gear 305 to rotate, and the first gear 305 drives the second gear 306 to rotate (the first gear 305 and the second gear 306 rotate in opposite directions). The rotation of the first gear 305 and the second gear 306 causes the two rod bodies 307 to swing inward. The inward swing of the two rod bodies 307 causes the two rollers 308 to swing inward. When the two rollers 308 swing inward, they drive the second box body 20 to move upward, thereby causing the column 19 to move upward. When the blending solvent in the column 19 exceeds the end of the pipe body 17, turn off the third motor 302, connect the external power supply of the second pump body 16 and start it. The second pump body 16 introduces the blending solvent in the column 19 into the food raw materials being stirred in the tank body 9 through the pipe body 17, and stirs and mixes with the blending solvent during the stirring process of the food raw materials, thereby performing the blending work on the food raw materials;

[0034] When different blending solvents are needed to blend the food raw materials, reverse the third motor 302 according to the above method to reset the column 19 (at this time, the pipe body 17 is separated from the blending solvent in the column 19). After the position of the column 19 is reset, turn off the third motor, and then start the second motor 15 to drive the column 19 to rotate, thereby causing the column 9 to change the area of the blending solvent. When the area of the blending solvent in the column 9 rotates and changes to the required area, turn off the motor 15, and then transport another blending solvent into the tank body 9 according to the above method;

[0035] After the food blending is completed, turn off the first motor 13, and then open the discharge port 11 through the solenoid valve. The blended food raw materials will be discharged out of the tank body 9 through the discharge port 11, and the worker can collect them using an external box body. After the blended food raw materials are discharged out of the tank body 9, close the discharge port 11 through the solenoid valve, and complete the blending work of the food through the above method.

[0036] When the tank body 9 needs to be cleaned, turn the bolts on both sides of the tank body 9 to separate it from the first box body 12, thus canceling the fixation of the first box body 12. After the first box body 12 is removed from the tank body 9, connect the external power supply of the electric telescopic rod 4 and start it (the worker cleans the stirring rod 14 separately). The electric telescopic rod 4 drives the first shell 21 to move slowly downward, thereby driving the four nozzles 8 to move slowly downward. Connect the external power supply of the air cylinder 202 and start it. The air cylinder 202 extends to drive the plate body 203 to move, and the plate body 203 drives the block body 204 to move (the outer wall of the block body 204 is relatively smooth, which will reduce the friction with the plate body 203, thus reducing the damage to the plate body 203 and the block body 204). The block body 204 drives the vertical rod 205 to rotate 90 degrees, and the vertical rod 205 drives the four nozzles 8 to rotate. After the vertical rod 205 drives the nozzles 8 to rotate 90 degrees, the air cylinder 202 retracts, thereby driving the four nozzles 8 to rotate in the reverse direction. According to the above method, the four nozzles 8 rotate reciprocally. After the four nozzles 8 move to the lowest end of the tank body 9, the electric telescopic rod 4 retracts to drive the four nozzles 8 to move slowly upward in the tank body 9;

[0037] Connect the external power supply of the first pump body 6 and start it. The first pump body 6 introduces the water source in the water tank 5 into the hose 7, and then the nozzles 8 spray the water source in the hose 7 onto the inner wall of the tank body 9 to wash the inner wall of the tank body 9. Through the above method, the electric telescopic rod 4 drives the reciprocally rotating nozzles 8 to wash the inner wall of the tank body 9 (the nozzles 8 wash the inner wall of the tank body 9 from bottom to top in the tank body 9). After the four nozzles 8 move out of the tank body 9, turn off the first pump body 6 to stop the nozzles 8 from washing the tank body 9. The water source sprayed by the nozzles 8 will remain in the tank body 9 (the food raw materials washed down by the nozzles will also be stored in the water). Then, open the discharge port 11 through the solenoid valve. The water and the washed raw materials in the tank body 9 will be discharged from the tank body 9 through the discharge port 11 together. The worker can use an external box for collecting waste water to collect it. After the water and food raw materials in the tank body 9 are discharged completely, close the discharge port 11 through the solenoid valve. Through the above method, the automatic cleaning work of the tank body 9 is completed. The tank body 9 can be cleaned multiple times according to the above method to improve the cleaning effect of the tank body 9. Then, the first box body 12 is placed on the tank body 1 again, and finally, turn the bolts to fix it.

[0038] Although the present utility model has been illustrated and described by referring to the preferred embodiments, those of ordinary skill in the art should understand that various changes in form and details may be made within the scope of the claims.

Claims

1. A self-cleaning food blending device, comprising a frame (1), characterized in that: The upper inner wall of the frame (1) is fixedly connected to the electric telescopic rod (4), the output end of the electric telescopic rod (4) is fixedly connected to the first shell (21), a flushing mechanism (2) is installed inside the first shell (21), the lower outer wall of the frame (1) is installed with a moving mechanism (3), the outer wall of the frame (1) is fixedly connected to the water tank (5), and the left end of the water tank (5) is fixedly connected to the first pump body (6).

2. A self-cleaning food blending device according to claim 1, characterized in that: The flushing mechanism (2) comprises a cylinder (202), the bottom end of the cylinder (202) is fixedly connected to the first shell (21), the output end of the cylinder (202) is fixedly connected to the plate body (203), both ends of the plate body (203) are slidably connected to the first shell (21), the inner wall of the plate body (203) is slidably connected to the vertical rod (201), both ends of the vertical rod (201) are fixedly connected to the first shell (21), the middle inner wall of the plate body (203) is slidably connected to the block body (204), the outer wall of the block body (204) is fixedly connected to the vertical rod (205), the outer wall of the vertical rod (205) is rotatably connected to the first shell (21) via a sealed bearing, and the lower end of the vertical rod (205) is fixedly connected to a spray head (8).

3. A self-cleaning food blending device according to claim 1, characterized in that: The moving mechanism (3) comprises a second housing (301), the lower end of the second housing (301) is fixedly connected to the frame (1), the second housing (301) is fixedly connected to the third motor (302) via a bracket, the output shaft of the third motor (302) is connected to the worm (303) via a reduction gear box, both sides of the worm (303) are rotatably connected to the second housing (301) via bearings, the right end of the worm (303) is meshed with a worm wheel (304), and the worm wheel (304) is connected to the second housing (301) via a rotating shaft. The outer wall of the rotating shaft of the worm gear (304) is fixedly connected to the first gear (305), the left end of the first gear (305) is meshed with the second gear (306), the second gear (306) is rotationally connected to the second housing (301) via the rotating shaft, the outer walls of the first gear (305) and the second gear (306) are fixedly connected to a rod body (307), the outer walls of the rod body (307) are rotationally connected to a roller (308) via a bearing, and the upper end of the roller (308) is in contact with the second housing (20).

4. A self-cleaning food blending device according to claim 1, characterized in that: The first pump body (6) is connected to the nozzle (8) through a hose (7); the lower inner wall of the frame (1) is fixedly connected to the tank body (9); a feed port (10) is provided at the right end of the tank body (9); a discharge port (11) is provided at the lower end of the tank body (9); solenoid valves are provided inside the feed port (10) and the discharge port (11); the inner wall of the tank body (9) is overlapped with the first box body (12); the tank body (9) is threadedly connected to the first box body (12) through bolts; and the first box body (12) is fixedly connected to the first motor (13) through a bracket.

5. A self-cleaning food blending device according to claim 4, characterized in that: The output shaft of the first motor (13) is connected to the stirring rod (14) via a reduction gear box; the upper outer wall of the stirring rod (14) is rotatably connected to the first box body (12) via a bearing; the left end of the tank body (9) is fixedly connected to the second pump body (16); the second pump body (16) is connected to the frame body (18) via a tube body (17); and the right end of the tube body (17) passes through the frame body (18).

6. A self-cleaning food blending device according to claim 5, characterized in that: The lower end of the frame (18) is fixedly connected to the frame (1); the outer wall of the frame (18) is slidably connected to the second box (20); the second box (20) is fixedly connected to the second motor (15) via a bracket; the output shaft of the second motor (15) is rotationally connected to the second box (20) via a bearing; and the output shaft of the second motor (15) is connected to the column (19) via a reduction box.

Citation Information

Patent Citations

  • Functional food blending device

    CN215138896U