Raw material pretreatment equipment for can processing

By designing a raw material pretreatment equipment for canning processing, using a gear system to drive the cooling cylinder to rotate, and combining the cooling mechanism and agitating device, the problem of uneven food cooling is solved, and efficient and uniform food cooling effect is achieved.

CN222881514UActive Publication Date: 2025-05-16XINYANG XINMEI FOOD CO LTD
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Patent Information

Application Number
CN202421915286.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-16
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

When the existing food cooling device cools the food, the external food can be effectively cooled, while the internal food cannot be fully cooled due to accumulation of together, and the cooling speed is slow and uneven.

Method used

A raw material pretreatment equipment for canning processing is designed, including a box, a cooling cylinder, a driving frame, a motor, a driving gear, a driven gear and a cooling mechanism. The gear system is driven by the motor to rotate, the cooling cylinder is rotated, and the food is cooled through the cooling mechanism. At the same time, the food is stirred and rolled with a fixed column and agitated rod to ensure uniform cooling.

Benefits of technology

The full cooling of food raw materials is achieved, the cooling rate is high, and the cooling is more uniform, solving the problem of uneven cooling in the prior art.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides raw material pretreatment equipment for can processing, which belongs to the technical field of food processing, and comprises a box body, a feeding pipe arranged on the upper surface of the box body, a discharging pipe arranged on the lower surface of the box body, a driving frame arranged at the center of the rear wall of the box body, and a driven gear arranged at the upper part in the driving frame, a driven gear is installed on the lower portion in the driving frame, the driving gear is in meshed connection with the driven gear, a motor is arranged below the outer wall of the driving frame, the output end of the motor penetrates through the outer wall of the driving frame and is connected to the center of the end of the driving gear, and a cooling cylinder is arranged in the center of the end of the driven gear and located in the box body; a plurality of air holes are evenly formed in the surface of the cooling cylinder, a discharging opening is formed in the center of the outer wall of the cooling cylinder, and cooling mechanisms used for cooling food are arranged on the two outer side walls of the box body; the food raw materials can be fully cooled, the cooling speed is high, and cooling is more uniform.
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Description

Technical Field

[0001] The utility model relates to the technical field of food processing, in particular to a raw material pre-processing device for canned food processing. Background Art

[0002] Canning is a method of packaging food, which can be canned beverages, including canned soda, coffee, juice, frozen milk tea, beer, etc. It can also be canned food, including luncheon meat and other foods. Meat food raw materials need to be cooled during processing, but most existing food cooling devices pile them up in a cooling box and use a fan to blow cold air to cool the food raw materials. Since the food raw materials are piled together, the food outside can be effectively cooled, but the raw materials piled inside cannot be fully cooled, the cooling speed is slow, and the cooling is uneven. Utility Model Content

[0003] In view of this, the utility model provides a raw material pre-treatment device for canned food processing, which can fully cool the food raw materials, with a high cooling rate and more uniform cooling.

[0004] In order to solve the above technical problems, the utility model provides a raw material pre-processing equipment for canned food processing, including a box body, a feeding pipe is arranged on the upper surface of the box body, a discharging pipe is arranged on the lower surface of the box body, a driving frame is arranged at the center of the rear wall of the box body, a driven gear is installed on the upper part of the driving frame, a driven gear is installed on the lower part of the driving frame, and the driving gear is meshed with the driven gear, a motor is arranged at the lower part of the outer wall of the driving frame, the output end of the motor passes through the outer wall of the driving frame and is connected to the end center of the driving gear, a cooling cylinder is arranged at the end center of the driven gear, and the cooling cylinder is located inside the box body, a plurality of air holes are evenly opened on the surface of the cooling cylinder, and a discharging port is arranged at the center of the outer wall of the cooling cylinder, and cooling cylinders for cooling food are arranged on both outer side walls of the box body. The cooling mechanism is started, and the staff starts the motor. The output end of the motor drives the active gear to rotate, and the active gear drives the driven gear to rotate, and the driven gear drives the cooling cylinder to rotate, so that the discharge port on the surface of the cooling cylinder corresponds to the position of the feed pipe, and the discharge port is opened, and then the food to be cooled is poured into the feed pipe, and then enters the cooling cylinder through the discharge port, and then the discharge port is closed. The food in the cooling cylinder is cooled by the cooling mechanism, and the motor is started at the same time, so that the motor drives the cooling cylinder to rotate. When the cooling cylinder rotates, it drives the food raw materials inside to roll. At the same time, the fixed column and the stirring rod stir the food raw materials, so that the food raw materials roll and stir while cooling, so that the food raw materials can be fully cooled, the cooling rate is high, and the cooling is more uniform.

[0005] A first observation window is provided at the center of the box surface, and a second observation window is provided at the center of the end of the cooling cylinder. Both the first observation window and the second observation window are made of transparent glass, which is convenient for staff to observe the cooling status of food.

[0006] The cooling mechanism includes a fan arranged on the two outer sides of the box body, the output end of the fan passes through the outer sides of the box body, and a delivery pipe is arranged at the output end of the fan, a diversion pipe is arranged at the end of the delivery pipe, and a plurality of nozzles are evenly arranged on the surface of the diversion pipe. When the staff starts the fan, the fan blows the cold air into the diversion pipe through the delivery pipe, and then sprays the cold air into the box body through the nozzles on the surface of the diversion pipe, so that the cold air is blown onto the surface of the food through the air holes on the surface of the cooling cylinder, thereby cooling the food.

[0007] A filter is provided inside the conveying pipe, which can filter the dust blown in by the fan to prevent the dust from contaminating the food.

[0008] Support columns are arranged on both sides of the lower inner wall of the box body, and support frames are arranged on the upper ends of the support columns. The support frames can support the cooling cylinder and improve the stability of the cooling cylinder during rotation.

[0009] The cross section of the support frame is arc-shaped, and the arc-shaped support frame further improves the stability of the cooling cylinder during rotation.

[0010] A dust cover is provided on the upper end of the feed pipe. After the staff finishes adding materials, the dust cover is placed above the feed pipe to prevent dust from entering the box.

[0011] In summary, compared with the prior art, the present application includes at least one of the following beneficial technical effects:

[0012] 1. When the utility model is used, the staff starts the motor, the output end of the motor drives the driving gear to rotate, the driving gear drives the driven gear to rotate, the driven gear drives the cooling cylinder to rotate, and then the discharge port on the surface of the cooling cylinder corresponds to the position of the feed pipe, the discharge port is opened, and then the food to be cooled is poured into the feed pipe, and then enters the inside of the cooling cylinder through the discharge port, and then the discharge port is closed, and the food in the cooling cylinder is cooled by the cooling mechanism, and at the same time, the motor is started to drive the cooling cylinder to rotate, and when the cooling cylinder rotates, the food raw materials inside are driven to roll, and at the same time, the fixed column and the stirring rod stir the food raw materials, so that the food raw materials roll and stir while cooling, so that the food raw materials can be fully cooled, the cooling rate is high, and the cooling is more uniform.

[0013] 2. When the utility model is used, the first observation window and the second observation window are both made of transparent glass, which is convenient for staff to observe the cooling status of food.

[0014] 3. When the utility model is used, the support frame can support the cooling cylinder to improve the stability of the cooling cylinder during rotation.

[0015] 4. When the utility model is used, the staff starts the fan, and the fan blows the cold air into the shunt pipe through the delivery pipe, and then sprays it into the box through the nozzle on the surface of the shunt pipe, so that the cold air is blown onto the surface of the food through the air holes on the surface of the cooling cylinder, thereby cooling the food. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the main structure of the utility model;

[0017] Figure 2 This is a cross-sectional view of the internal structure of the drive frame of the utility model;

[0018] Figure 3 This is a cross-sectional view of the internal structure of the cooling cylinder of the utility model;

[0019] Figure 4 It is a front sectional view of the interior of the box of the utility model.

[0020] Explanation of the reference numerals: 100, casing; 101, first observation window; 102, discharge pipe; 200, fan; 201, conveying pipe; 202, diverter pipe; 203, nozzle; 300, drive frame; 301, motor; 302, driving gear; 303, driven gear; 400, cooling cylinder; 401, second observation window; 402, fixing column; 403, stirring rod; 404, supporting column; 405, supporting frame; 406, discharge port; 500, feed pipe; 501, dust cover. DETAILED DESCRIPTION

[0021] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model clearer, the following will be combined with the appended drawings of the embodiment of the utility model. Figure 1-4 , the technical scheme of the embodiment of the utility model is clearly and completely described. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the described embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field belong to the scope of protection of the utility model.

[0022] According to one embodiment of the utility model, Figure 1 , Figure 2 , Figure 3 and Figure 4As shown: This embodiment provides a raw material pretreatment device for canned food processing, including a box body 100, a feed pipe 500 is arranged on the upper surface of the box body 100, a discharge pipe 102 is arranged on the lower surface of the box body 100, a driving frame 300 is arranged at the center of the rear wall of the box body 100, a driven gear 303 is installed on the upper part of the driving frame 300, a driven gear 303 is installed on the lower part of the driving frame 300, and the driving gear 302 is meshed with the driven gear 303, a motor 301 is arranged at the lower part of the outer wall of the driving frame 300, and the output end of the motor 301 passes through the outer wall of the driving frame 300 and is connected to the driving gear 302. The end center of the driven gear 303 is provided with a cooling cylinder 400, and the cooling cylinder 400 is located inside the box 100. A plurality of air holes are evenly opened on the surface of the cooling cylinder 400, and a discharge port 406 is provided at the center of the outer wall of the cooling cylinder 400. The two outer side walls of the box 100 are provided with cooling mechanisms for cooling food. The staff starts the motor 301, and the output end of the motor 301 drives the driving gear 302 to rotate, the driving gear 302 drives the driven gear 303 to rotate, and the driven gear 303 drives the cooling cylinder 400 to rotate, so that the discharge port 406 on the surface of the cooling cylinder 400 corresponds to the feeding pipe. 500, the discharge port 406 is opened, and then the food to be cooled is poured into the feed pipe 500, and then enters the cooling cylinder 400 through the discharge port 406, and then the discharge port 406 is closed, and the food in the cooling cylinder 400 is cooled by the cooling mechanism, and at the same time, the motor 301 is started, so that the motor 301 drives the cooling cylinder 400 to rotate, and the cooling cylinder 400 drives the food raw materials inside to roll when rotating, and at the same time, the fixed column 402 and the stirring rod 403 stir the food raw materials, so that the food raw materials roll and stir while cooling, so that the food raw materials can be fully cooled, the cooling rate is high, and the cooling More uniform; a first observation window 101 is provided at the center of the surface of the box 100, and a second observation window 401 is provided at the center of the end of the cooling cylinder 400. The first observation window 101 and the second observation window 401 are both made of transparent glass, which is convenient for the staff to observe the cooling status of the food; support columns 404 are provided on both sides of the lower inner wall of the box 100, and a support frame 405 is provided on the upper end of the support column 404. The support frame 405 can support the cooling cylinder 400 to improve the stability of the cooling cylinder 400 during the rotation process; the cross section of the support frame 405 is arc-shaped, and the arc-shaped support frame 405 further improves the stability of the cooling cylinder 400 during the rotation process

[0023] According to another embodiment of the present invention, Figure 1 , Figure 3 and Figure 4As shown, the cooling mechanism includes a fan 200 arranged on the two outer walls of the box 100, the output end of the fan 200 penetrates the outer wall of the box 100, and the output end of the fan 200 is provided with a delivery pipe 201, the end of the delivery pipe 201 is provided with a shunt pipe 202, and a plurality of nozzles 203 are evenly arranged on the surface of the shunt pipe 202. When the staff starts the fan 200, the fan 200 blows the cold air into the shunt pipe 202 through the delivery pipe 201, and then passes through the surface of the shunt pipe 202. The nozzle 203 sprays into the box body 100, so that the cold air is blown onto the surface of the food through the air holes on the surface of the cooling cylinder 400, thereby cooling the food; a filter is arranged inside the conveying pipe 201, and the filter can filter the dust blown in by the fan 200 to prevent the dust from contaminating the food; a dust cover 501 is arranged on the upper end of the feeding pipe 500, and after the staff finishes adding the materials, the dust cover 501 is placed above the feeding pipe 500 to prevent dust from entering the inside of the box body 100.

[0024] The use of this utility model:

[0025] The staff starts the motor 301, the output end of the motor 301 drives the driving gear 302 to rotate, the driving gear 302 drives the driven gear 303 to rotate, and the driven gear 303 drives the cooling cylinder 400 to rotate, so that the discharge port 406 on the surface of the cooling cylinder 400 corresponds to the position of the feed pipe 500, the discharge port 406 is opened, and then the food to be cooled is poured into the feed pipe 500, and then enters the cooling cylinder 400 through the discharge port 406, and then the discharge port 406 is closed, and the fan 200 is started. The fan 200 blows the cold air into the shunt pipe 202 through the conveying pipe 201, and then sprays it into the box 100 through the nozzle 203 on the surface of the shunt pipe 202, so that the cold air passes through the air holes on the surface of the cooling cylinder 400. The cooling drum 400 is blown on the surface of the food to cool the food, and the motor 301 is started to drive the motor 301 to rotate. When the cooling drum 400 rotates, the food raw materials inside are driven to roll. At the same time, the fixed column 402 and the stirring rod 403 stir the food raw materials, so that the food raw materials roll and stir while cooling. After the food is cooled, the discharge port 406 on the surface of the cooling drum 400 is rotated to the position of the discharge pipe 102, and the discharge port 406 is opened to discharge the food raw materials from the discharge pipe 102. The utility model can make the food raw materials roll and stir while cooling through the roller and the stirring rod 403, so that the food raw materials can be fully cooled, the cooling rate is high, and the cooling is more uniform.

[0026] The above is a preferred embodiment of the present invention. It should be pointed out that, for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. A raw material pretreatment device for canned food processing, comprising a box (100), a feed pipe (500) is arranged on the upper surface of the box (100), and a discharge pipe (102) is arranged on the lower surface of the box (100), characterized in that: A driving frame (300) is arranged at the center of the rear wall of the box body (100), a driven gear (303) is installed at the upper part of the driving frame (300), a driven gear (303) is installed at the lower part of the driving frame (300), and the driving gear (302) is meshedly connected with the driven gear (303), a motor (301) is arranged at the lower part of the outer wall of the driving frame (300), the output end of the motor (301) passes through the outer wall of the driving frame (300) and is connected to the end center of the driving gear (302), a cooling cylinder (400) is arranged at the end center of the driven gear (303), and the cooling cylinder (400) is located inside the box body (100), a plurality of air holes are evenly opened on the surface of the cooling cylinder (400), and a discharge port (406) is arranged at the center of the outer wall of the cooling cylinder (400), and cooling mechanisms for cooling food are arranged on the two outer side walls of the box body (100).

2. A raw material pretreatment equipment for canned food processing as claimed in claim 1, characterized in that: A first observation window (101) is provided at the center of the surface of the box body (100), and a second observation window (401) is provided at the center of the end of the cooling cylinder (400).

3. The raw material pretreatment equipment for canned food processing according to claim 1, characterized in that: The cooling mechanism comprises a fan (200) arranged on two outer side walls of the box body (100), the output end of the fan (200) passes through the outer side wall of the box body (100), and the output end of the fan (200) is provided with a delivery pipe (201), the end of the delivery pipe (201) is provided with a shunt pipe (202), and a plurality of nozzles (203) are evenly arranged on the surface of the shunt pipe (202).

4. A raw material pretreatment equipment for canned food processing as claimed in claim 3, characterized in that: A filter screen is arranged inside the delivery pipe (201).

5. The raw material pretreatment equipment for canned food processing according to claim 1, characterized in that: Support columns (404) are arranged on both sides of the lower inner wall of the box body (100), and support frames (405) are arranged on the upper ends of the support columns (404).

6. A raw material pretreatment equipment for canned food processing as claimed in claim 5, characterized in that: The cross section of the support frame (405) is arc-shaped.

7. The raw material pretreatment equipment for canned food processing according to claim 1, characterized in that: The upper end of the feed pipe (500) is provided with a dust cover (501).