Breading machine for food processing

By designing a support device and a coating device for food processing, a coating machine is used to achieve continuous coating of food and recycling of powder by utilizing a rotating rod and a motor-driven spiral conveyor blade. This solves the problems of cumbersome operation and low coating efficiency in existing technologies and improves coating efficiency.

CN116509022BActive Publication Date: 2025-11-04DALIAN ZHONGTONG FOOD MASCH CO LTD
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Patent Information

Application Number
CN202310676584.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-08
Publication Date
2025-11-04
Estimated Expiration
2043-06-08

AI Technical Summary

Technical Problem

Existing food coating machines require multiple additions when processing large quantities of food, making operation cumbersome and resulting in low coating efficiency and an inability to continuously coat food.

Method used

A food processing coating machine was designed, comprising a support device, a coating device 1, and a coating device 2. The machine achieves uniform powder delivery through a rotating rod and a motor-driven spiral conveyor blade. Combined with a filtration device and a powder collection box, it enables continuous coating of food and recycling of powder.

Benefits of technology

It enables continuous coating of food, avoids food sticking and uneven coating, improves coating efficiency, and realizes powder reuse through the powder collection box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a food processing powder coating machine, and the motor is started, a synchronous belt drives a rotating rod to convey powder, food falling from a food adding hopper is preliminarily coated with powder, food is not prone to adhesion to each other, and the food is not prone to adhesion to the outer wall of a powder coating device one and the inner wall of a powder coating device two, when the motor rotates, a connecting rod two synchronously drives a fixed tube two to rotate, so that the food is fully coated with powder in the inner cavity of a hole cavity four, the food after being coated with powder falls to the plate body of a filtering device through a discharging port, and under the guidance of the connecting rod one, the filtering bottom plate is driven to vibrate up and down, the food after being coated with powder is conveyed to the inside of a food collecting box, the food without being coated with powder can continuously fall from the food adding hopper to be coated with powder, and the excess powder falls into the inside of a powder collecting box from a filtering hole and is circulated and coated with powder through cooperation of a powder pneumatic diaphragm pump and a sealing cover.
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Description

Technical Field

[0001] This invention relates to the field of breading machines for food processing, and in particular to breading machines for food processing. Background Technology

[0002] When coating food, common coating machines involve adding the food to be coated into the machine. When there is a large amount of food to be coated, it is necessary to add the food into the machine multiple times, which is quite cumbersome.

[0003] For example, Chinese patent application CN201922426845.8 discloses a food coating machine, the specific content of which is as follows: In actual operation, after the food and coating powder are put into the coating drum, a sealing plate is inserted into the opening of the coating drum and fixed to the outer wall of the coating drum by means of a locking screw. The drive motor is turned on, and the drive motor drives the drive gear plate to drive the coating drum to rotate. When the two sets of drive motors are running, it is ensured that the coating drum rotates normally in the same direction. The food and coating powder are tumbled and mixed inside the coating drum. However, it has the following technical problems:

[0004] When coating food, the food to be coated needs to be placed inside the coating roller for coating. After coating, both the food and the coating fall into the receiving box. When the amount of food to be coated exceeds the capacity of the coating roller, it cannot continue to coat the food. Summary of the Invention

[0005] To address the issues raised in the background section regarding the limited functionality of demonstration boards and the inability to adjust their height, making writing at higher points difficult, this invention provides the following technical solution:

[0006] A breading machine for food processing includes a support device.

[0007] The support device is equipped with a coating device 1 for storing powder, and a coating device 2 for coating food in conjunction with the coating device 1.

[0008] The supporting device includes a coating machine outer casing. A partition for supporting and limiting the coating device 2 is installed in the middle of the coating machine outer casing. The partition divides the inner cavity of the coating machine outer casing into an upper cavity and a lower cavity. A food collection box for collecting coated food is installed on the side of the coating machine outer casing. A filter device for filtering residue from the coated food is installed in the lower cavity of the coating machine outer casing in conjunction with the coating device 2.

[0009] The powder coating device one includes a sealing cover for closing the support device, the sealing cover includes a fixed tube one, the inside of the fixed tube one is provided with a hole cavity three for storing powder, the upper end of the fixed tube one is provided with a powder outlet for powder circulation, the lower end of the sealing cover is provided with a guide plate for guiding food, the inside of the sealing cover is provided with a rotating rod for conveying powder, the outer wall of the rod body of the rotating rod is provided with a spiral conveying blade for conveying powder.

[0010] The powder coating device two includes a fixed tube two for storing food, the lower end of the fixed tube two is provided with a semicircular plate for guiding food, the plate body of the semicircular plate is provided with a discharge port for food falling, the lower end of the fixed tube two is provided with a connecting rod one for controlling the up-down movement of the filtering device.

[0011] The filtering device includes a filtering bottom plate for guiding food, the plate body of the filtering bottom plate is provided with a filtering hole for powder falling, the middle part of the filtering bottom plate is provided with a guide column for controlling the lifting of the filtering bottom plate in cooperation with the connecting rod one, and the middle part of the guide column is provided with a sliding block for sliding up and down in the connecting rod one.

[0012] The inside of the connecting rod one is provided with a reciprocating spiral groove for controlling the up-down movement of the filtering device in cooperation with the sliding block, the lower end of the fixed tube two is provided with a motor for controlling the rotation of the fixed tube two, and the output end of the motor is provided with a connecting rod two for controlling the rotation of the rotating rod.

[0013] Further, the plate body of the partition plate is provided with a sliding groove for the rotation of the fixed tube two, the middle part of the partition plate is provided with a hole cavity one for food falling, the lower cavity of the powder coating machine outer box is provided with a powder collecting box for collecting falling powder, the side of the powder collecting box is provided with a powder pneumatic diaphragm pump for controlling the powder conveying to the inside of the sealing cover, the side wall of the powder coating machine outer box is provided with a limiting block for limiting the filtering device, and the side wall of the powder coating machine outer box is provided with a discharge port for food circulation.

[0014] Further, the side of the filtering bottom plate is provided with a side baffle for limiting food, the side of the side baffle is provided with a fixed block one for limiting the filtering bottom plate in cooperation with the limiting block, and the upper end of the guide column is provided with a limiting ring block for limiting the filtering bottom plate in cooperation with the connecting rod one.

[0015] Further, the upper end of the sealing cover is provided with a powder adding hopper for conveying powder to the inner cavity of the hole cavity three, and the upper end of the sealing cover is provided with a food adding hopper for conveying food to the inside of the fixed tube two.

[0016] Further, the upper end of the fixed tube one is provided with a connecting port for cooperating with the powder pneumatic diaphragm pump to reuse the filtered powder.

[0017] Further, the lower end of the rotating rod is provided with a cross key for cooperating with the motor to control the rotation of the rotating rod.

[0018] Further, the inside of the fixed tube two is provided with a hole cavity four for storing food, and the connecting rod one is installed at the lower end of the semicircular plate, and the inside of the connecting rod one is provided with a lifting groove for the extension and contraction of the limiting ring block.

[0019] Further, the upper end of the connecting rod two is provided with a key groove for limiting the cross key, and the semicircular plate is installed at the middle part of the connecting rod two.

[0020] Compared with the prior art, the beneficial effects of the present application are:

[0021] When the motor is started, the rotating rod is driven synchronously to convey the powder, so that the food falling from the food adding hopper is preliminarily coated with powder, so that the food is not easy to stick to each other, and the food is not easy to stick to the outer wall of the powder coating device one and the inner wall of the powder coating device two. When the motor rotates, the connecting rod two synchronously drives the fixed tube two to rotate, so that the food in the inner cavity of the hole cavity four is fully coated with powder. The coated food falls through the discharge port to the plate body of the filtering device, and under the guidance of the connecting rod one, the filtering bottom plate is driven to vibrate up and down, and the coated food is conveyed to the inside of the food collecting box. The food without powder can continue to fall through the food adding hopper to be coated with powder, and the excess powder falls through the filtering hole to the inside of the powder collecting box, and is recycled by the powder pneumatic diaphragm pump cooperating with the sealing cover. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a structure schematic view of the powder coating machine of the present application;

[0023] Figure 2 It is a structure schematic view of the supporting device of the present application;

[0024] Figure 3 It is a structure schematic view of the filtering device of the present application;

[0025] Figure 4 It is a structure schematic view of the powder coating device one of the present application;

[0026] Figure 5Structure diagram of the second powder coating device of the present application.

[0027] Figure 6 Structure diagram of the second powder coating device of the present application. Figure 5 Enlarged view of A of the present application.

[0028] In the drawings, the names of the parts represented by the reference numerals are listed as follows:

[0029] 001 - support device

[0030] 100 - powder coating machine outer box, 110 - partition, 111 - sliding groove, 112 - hole cavity, 120 - powder collection box, 130 - food collection box, 140 - powder pneumatic diaphragm pump, 141 - transmission pipe, 150 - limiting block, 160 - discharge port, 200 - filtering device, 210 - filtering bottom plate, 211 - filtering hole, 220 - side edge baffle, 221 - fixed block, 230 - guide column, 231 - limiting ring block, 232 - sliding block, 233 - hole cavity

[0031] 002 - first powder coating device

[0032] 300 - sealing cover, 310 - food additive hopper, 320 - powder additive hopper, 330 - fixed pipe, 331 - hole cavity, 332 - powder outlet, 333 - guide plate, 334 - connecting port, 400 - rotating rod, 410 - spiral conveying blade, 420 - cross key

[0033] 003 - second powder coating device

[0034] 500 - fixed pipe, 510 - hole cavity, 520 - semicircular plate, 521 - discharge port, 530 - connecting rod, 531 - lifting groove, 532 - reciprocating spiral groove, 600 - motor, 610 - connecting rod, 611 - key groove DETAILED DESCRIPTION

[0035] The preferred specific embodiments for implementing the present application are described in detail below, and a clear and complete description is made in conjunction with the drawings.

[0036] Please refer to Figures 1-6The application provides a food processing powder coating machine, which comprises a supporting device 001, a powder coating device one 002 and a powder coating device two 003. The powder coating device one 002 is installed in the interior of the supporting device 001 and used for storing powder. The powder coating device two 003 is also installed in the interior of the supporting device 001 and used for storing food to be coated with powder. The powder coating device one 002 is arranged in the inner cavity of a fixed pipe two 500 and used for coating food with powder in cooperation with the powder coating device two 003. A guide plate 333 guides food. When food is put into the inner cavity of a hole cavity four 510 through a food adding hopper 310, a rotating rod 400 drives a spiral conveying blade 410 to convey powder, so that the powder is conveyed to the inner cavity of the hole cavity four 510 through a powder outlet 332, so that the food is contaminated by the powder squeezed out of the powder outlet 332 when falling, so that the food is not easy to stick to the plate body of the guide plate 333 and is not easy to stick to each other. When the spiral conveying blade 410 conveys the powder to the inner cavity of the hole cavity four 510 through the powder outlet 332, the powder in the inner cavity of the hole cavity four 510 is mixed with food when the fixed pipe two 500 rotates due to the limiting of the guide plate 333. Finally, the food falls to the plate body of a filtering device 200 through a discharging opening 521 and is finally conveyed to the interior of a food collecting box 130.

[0037] Through the arrangement of the powder coating device one 002 and the powder coating device two 003, the food processing powder coating machine provided by the application can continuously coat food with powder. Powder can be added to the inner cavity of a hole cavity three 331 through a powder adding hopper 320, and food can be added to the inner cavity of the hole cavity four 510 through the food adding hopper 310.

[0038] The supporting device 001 comprises a powder coating machine outer box 100. A partition plate 110 for supporting and limiting the powder coating device two 003 is arranged in the middle of the powder coating machine outer box 100. A sliding groove 111 for allowing the fixed pipe two 500 to rotate is arranged in the middle of the plate body of the partition plate 110. A hole cavity one 112 for allowing food to fall is arranged in the middle of the partition plate 110. A ball is arranged at the lower end of the fixed pipe two 500, so that the fixed pipe two 500 can rotate in the groove cavity of the sliding groove 111. The partition plate 110 divides the inner cavity of the powder coating machine outer box 100 into an upper cavity and a lower cavity. A food collecting box 130 for collecting food coated with powder is arranged at the side of the powder coating machine outer box 100. A powder collecting box 120 for collecting powder falling from the filtering hole 211 is arranged in the lower cavity of the powder coating machine outer box 100.

[0039] When the connecting rod one 530 drives the filtering device 200 to vibrate up and down, the vibration of the filtering device 200 shakes off the powder that is not firmly adhered to the food, and the powder falls from the filtering hole 211 to the inside of the powder collecting box 120 for collection; the side of the powder collecting box 120 is provided with a powder pneumatic diaphragm pump 140 for controlling the powder in the inner cavity of the powder collecting box 120 to be transported to the inside of the sealing cover 300, so that the filtered powder can be reused to coat the food; the side wall of the coating machine outer box 100 is fixedly provided with a limiting block 150 for limiting the filtering device 200, and the side of the limiting block 150 is provided with a sliding groove for the fixed block one 221 to slide up and down;

[0040] The lower cavity of the coating machine outer box 100 is provided with a filtering device 200 for cooperating with the second coating device 003 to filter the food after coating, so that the powder that is not adhered to the food can fall into the inside of the powder collecting box 120 and be reused in cooperation with the powder pneumatic diaphragm pump 140; the filtering device 200 comprises a filtering bottom plate 210 for guiding the food, and the filtering bottom plate 210 is inclinedly arranged in the lower cavity of the coating machine outer box 100, so as to facilitate the food to quickly fall into the inside of the food collecting box 130; one end of the plate body of the filtering bottom plate 210 is provided with a filtering hole 211 for the powder to fall, and the powder falls into the inside of the powder collecting box 120; the side of the filtering bottom plate 210 is fixedly provided with a side baffle 220 for limiting the food, so that when the filtering device 200 moves up and down, the food is not easy to be shaken out of the outside of the filtering device 200; the side of the side baffle 220 is fixedly provided with a fixed block one 221 for cooperating with the limiting block 150 to limit the filtering bottom plate 210; the middle part of the filtering bottom plate 210 is fixedly provided with a guide column 230 for cooperating with the connecting rod one 530 to control the filtering bottom plate 210 to ascend and descend; the upper end of the guide column 230 is fixedly provided with a limiting ring block 231 for cooperating with the connecting rod one 530 to limit the filtering bottom plate 210; the middle part of the guide column 230 is provided with a sliding block 232 for sliding up and down in the connecting rod one 530; the middle part of the guide column 230 is provided with a hole cavity two 233 for the connecting rod two 610 to rotate; when the motor 600 controls the fixed tube two 500 to rotate, the sliding block 232 slides up and down in the groove cavity of the reciprocating spiral groove 532, and the limiting ring block 231 moves up and down in the groove cavity of the lifting groove 531; in this way, when the motor 600 rotates, the filtering device 200 is controlled by the fixed tube two 500 to vibrate in the lower cavity of the coating machine outer box 100;

[0041] The powder coating device 002 comprises a sealing cover 300 for closing the supporting device 001, the sealing cover 300 can be fixed to the upper end of the powder coating machine outer box 100, and the sealing cover 300 cannot rotate due to the limitation of the powder coating machine outer box 100; the sealing cover 300 comprises a fixed tube one 330 fixedly installed at the lower end of the sealing cover 300, a hole cavity three 331 for storing powder is formed in the inside of the fixed tube one 330, a powder outlet 332 for powder circulation is formed at the upper end of the fixed tube one 330, a guide plate 333 for guiding food is fixedly installed on the outer wall of the lower end of the sealing cover 300, a connecting port 334 for cooperating with the powder pneumatic diaphragm pump 140 to utilize the filtered powder again is formed at the upper end of the fixed tube one 330, the powder pneumatic diaphragm pump 140 transmits the powder in the powder collecting box 120 to the inner cavity of the hole cavity three 331 through the transmission tube 141, and the transmission tube 141 extends to the connecting port 334, so as to facilitate the powder to fall into the inner cavity of the hole cavity three 331; a powder adding hopper 320 for conveying powder to the inner cavity of the hole cavity three 331 is fixedly installed at the upper end of the sealing cover 300, when the powder is less, the powder adding hopper 320 can be used to convey powder to the inner cavity of the hole cavity three 331, a food adding hopper 310 for conveying food to the inner cavity of the hole cavity four 510 is fixedly installed at the upper end of the sealing cover 300, the food adding hopper 310 can continuously convey food to the inner cavity of the hole cavity four 510, and when falling to the powder outlet 332, the powder squeezed out from the powder outlet 332 can preliminarily coat the food, and the food preliminarily coated falls onto the plate body of the guide plate 333, the guide plate 333 is inclinedly arranged on the outer sidewall of the fixed tube one 330, so as to slow down the falling speed of the food, so that when the fixed tube two 500 rotates, the food in the inner cavity of the hole cavity four 510 is fully mixed, and is not easy to stick;

[0042] A rotating rod 400 for conveying powder is installed in the sealing cover 300, a spiral conveying blade 410 for conveying powder is fixedly installed on the outer wall of the rod body of the rotating rod 400, a cross key 420 for cooperating with the motor 600 to control the rotation of the rotating rod 400 is fixedly installed at the lower end of the rotating rod 400, and the cross key 420 is inserted into the groove cavity of the key groove 611, so that when the motor 600 controls the connecting rod two 610 to rotate, the connecting rod two 610 synchronously controls the rotating rod 400 to rotate, so that the spiral conveying blade 410 conveys the powder, drives the powder to be conveyed to the inner cavity of the hole cavity four 510 through the powder outlet 332, and preliminarily coats the food falling;

[0043] The powder coating device two 003 comprises a fixed tube two 500 for storing food, the inside of the fixed tube two 500 is provided with a hole cavity four 510 for storing food, the bottom wall of the fixed tube two 500 is provided with a ball for sliding in the groove cavity of the sliding groove 111, facilitating the rotation of the fixed tube two 500; the lower end of the fixed tube two 500 is fixedly provided with a semicircular plate 520 for guiding food, facilitating the falling of food from the inner cavity of the hole cavity four 510 to the filter device 200, the plate body of the semicircular plate 520 is provided with a discharge port 521 for the falling of food; the lower end of the fixed tube two 500 is fixedly provided with a connecting rod one 530 for controlling the up-down movement of the filter device 200, and the connecting rod one 530 is installed at the lower end of the semicircular plate 520, the connecting rod two 610 and the semicircular plate 520 are fixedly connected, so that when the motor 600 drives the connecting rod two 610 to rotate, the connecting rod two 610 drives the fixed tube two 500 to rotate while driving the rotating rod 400 to rotate; the inside of the connecting rod one 530 is provided with a lifting groove 531 for the extension and retraction of the limiting ring block 231, the inside of the connecting rod one 530 is provided with a reciprocating spiral groove 532 for controlling the up-down movement of the filter device 200 in cooperation with the sliding block 232, when the connecting rod two 610 drives the connecting rod one 530 to rotate, the filter device 200 is limited by the limiting block 150 and the connecting rod one 530, so that the sliding block 232 slides up and down in the groove cavity of the reciprocating spiral groove 532, and the limiting ring block 231 slides up and down in the groove cavity of the lifting groove 531, so that when the connecting rod one 530 rotates, the filter device 200 vibrates up and down, facilitating the shaking off of the unfirmly adhered powder;

[0044] The lower end of the second fixed pipe 500 is fixedly installed with a motor 600 for controlling the rotation of the second fixed pipe 500, the output end of the motor 600 is fixedly installed with a connecting rod two 610 for controlling the rotation of the rotating rod 400, the upper end of the connecting rod two 610 is provided with a key groove 611 for limiting the cross key 420, and the semicircular plate 520 is installed at the middle part of the connecting rod two 610, so that when the motor 600 is started, the motor 600 drives the rotating rod 400 and the second fixed pipe 500 to rotate synchronously, the rotating rod 400 controls the powder food to enter and exit the powder coating, so that the food is not easy to stick together, the second fixed pipe 500 cooperates with the sealing cover 300 to control the food to be fully coated with powder, and at the same time, the food coated with powder is conveyed to the plate body of the filter bottom plate 210 through the discharge port 521, the connecting rod one 530 drives the filter bottom plate 210 to vibrate up and down, drives the food coated with powder to be conveyed to the inside of the food collecting box 130, and the excess powder falls into the inside of the powder collecting box 120 from the filter hole 211, and is recycled by the cooperation of the powder pneumatic diaphragm pump 140, and the food can be continuously coated with powder by the cooperation of the powder coating device one 002 and the filter device 200, the sealing cover 300, the rotating rod 400, the second fixed pipe 500 and the motor 600.

[0045] Based on the above content and the drawings, those skilled in the art can understand and implement the present application. In addition, any non-creative modification of the present application made by those skilled in the art without creative labor still falls within the protection scope of the present application.

Claims

1. A breading machine for food processing, comprising a support device (001), characterized in that: The support device (001) is equipped with a powder coating device one (002) for storing powder, and the support device (001) is equipped with a powder coating device two (003) for coating food in conjunction with the powder coating device one (002). The support device (001) includes a coating machine outer casing (100). A partition (110) for supporting and limiting the coating device 2 (003) is installed in the middle of the coating machine outer casing (100). The partition (110) divides the inner cavity of the coating machine outer casing (100) into an upper cavity and a lower cavity. A food collection box (130) for collecting coated food is installed on the side of the coating machine outer casing (100). A filter device (200) for filtering residue from the coated food in conjunction with the coating device 2 (003) is installed in the lower cavity of the coating machine outer casing (100). The coating device 1 (002) includes a sealing cover (300) for sealing the support device (001). The sealing cover (300) includes a fixing tube 1 (330). The fixing tube 1 (330) has a cavity 3 (331) for storing powder inside. The upper end of the fixing tube 1 (330) has a powder outlet (332) for allowing powder to flow through. The lower end of the sealing cover (300) is equipped with a guide plate (333) for guiding food. The sealing cover (300) has a rotating rod (400) for conveying powder inside. The outer wall of the rotating rod (400) is equipped with a spiral conveying blade (410) for conveying powder. The coating device 2 (003) includes a fixed tube 2 (500) for storing food. The lower end of the fixed tube 2 (500) is equipped with a semi-circular plate (520) for guiding the food. The semi-circular plate (520) has a feeding port (521) for the food to fall into. The lower end of the fixed tube 2 (500) is equipped with a connecting rod 1 (530) for controlling the up and down movement of the filter device (200). The filtering device (200) includes a filter base plate (210) for guiding food. One end of the filter base plate (210) is provided with a filter hole (211) for powder to fall. A guide column (230) is installed in the middle of the filter base plate (210) for cooperating with the connecting rod (530) to control the lifting and lowering of the filter base plate (210). A sliding block (232) is installed in the middle of the guide column (230) for sliding up and down inside the connecting rod (530). The connecting rod 1 (530) has a reciprocating spiral groove (532) inside for cooperating with the sliding block (232) to control the up and down movement of the filter device (200). The lower end of the fixed tube 2 (500) is equipped with a motor (600) for controlling the rotation of the fixed tube 2 (500). The output end of the motor (600) is equipped with a connecting rod 2 (610) for controlling the rotation of the rotating rod (400).

2. The breading machine for food processing according to claim 1, characterized in that: The partition (110) has a sliding groove (111) in the middle for the fixed tube (500) to rotate. The partition (110) has a cavity (112) in the middle for food to fall. The lower cavity of the outer box (100) of the breading machine is equipped with a powder collection box (120) for collecting the fallen powder. The side of the powder collection box (120) is equipped with a powder pneumatic diaphragm pump (140) for controlling the powder to be conveyed into the sealing cover (300). The side wall of the outer box (100) of the breading machine is equipped with a limiting block (150) for limiting the filter device (200). The side wall of the outer box (100) of the breading machine is equipped with a discharge port (160) for food to flow through.

3. The breading machine for food processing according to claim 2, characterized in that: The filter base plate (210) is equipped with a side baffle (220) for limiting the food. The side baffle (220) is equipped with a fixing block (221) for limiting the filter base plate (210) in conjunction with the limiting block (150). The upper end of the guide post (230) is equipped with a limiting ring block (231) for limiting the filter base plate (210) in conjunction with the connecting rod (530).

4. The breading machine for food processing according to claim 1, characterized in that: The upper end of the sealing cap (300) is equipped with a powder feeding hopper (320) for conveying powder into the inner cavity of the third cavity (331), and the upper end of the sealing cap (300) is equipped with a food feeding hopper (310) for conveying food into the interior of the second fixed tube (500).

5. The breading machine for food processing according to claim 2, characterized in that: The upper end of the fixed tube (330) is provided with a connection port (334) for cooperating with the powder pneumatic diaphragm pump (140) to reuse the filtered powder.

6. The breading machine for food processing according to claim 5, characterized in that: The lower end of the rotating rod (400) is equipped with a cross key (420) for cooperating with the motor (600) to control the rotation of the rotating rod (400).

7. The breading machine for food processing according to claim 3, characterized in that: The fixed tube 2 (500) has a cavity 4 (510) for storing food inside, and the connecting rod 1 (530) is installed at the lower end of the semi-circular plate (520). The connecting rod 1 (530) has a lifting groove (531) inside for the extension and retraction of the limiting ring block (231).

8. The breading machine for food processing according to claim 6, characterized in that: The upper end of the second connecting rod (610) is provided with a keyway (611) for limiting the cross key (420), and the semi-circular plate (520) is installed in the middle of the second connecting rod (610).

Citation Information

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