Ozone water-based boneless chicken feet efficient cleaning and sterilization integrated device

By introducing multiple transmission devices and stirring blades into the boneless chicken feet cleaning and sterilization device, combined with ozone water and ultraviolet sterilization, the problems of incomplete cleaning and self-cleaning are solved, achieving efficient and safe cleaning and sterilization results.

CN224539330UActive Publication Date: 2026-07-24YUNNAN XIAOMAER FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUNNAN XIAOMAER FOOD CO LTD
Filing Date
2025-06-23
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Traditional boneless chicken feet cleaning and sterilization devices lack a stirring device, resulting in incomplete cleaning and sterilization dead spots, which poses a food safety hazard. Long-term consumption may cause potential harm to human health, and residual raw materials on the inner wall of the device can contaminate the next batch of products.

Method used

Design an integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water. The device uses multiple transmission devices in conjunction with stirring fan blades to ensure that the water flow and disinfectant evenly cover the surface of the chicken feet. It combines ultraviolet sterilization and is equipped with stirring fan blades and a cleaning shell for self-cleaning.

Benefits of technology

It achieves uniform cleaning and sterilization of chicken feet, avoids local residue and uneven sterilization problems, reduces food safety risks, improves work efficiency, and reduces the cost of self-cleaning equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to food processing technical field especially based on the integration device of high -efficient cleaning sterilization of boneless chicken feet of ozone water, including the mounting panel, still including the drive motor, the mounting panel one side fixedly connected with drive motor, drive motor's output fixedly connected with drive shaft, drive shaft rotation is connected on the mounting panel, drive shaft's other end fixedly connected with connecting rod, be equipped with first sliding post on connecting rod, connecting rod one side is equipped with U type rotary frame, first sliding post sliding connection is in on U type rotary frame, the utility model discloses through multiple transmission device cooperation stirring fan blade carries out rotation, stirs boneless chicken feet, makes chicken claw to turn over fully in the cleaning process, avoids the partial residual problem caused by traditional static cleaning, and the stirring function can also promote the mixing homogeneity of chemical sterilizing agent or ozone and water body, avoids the sterilization failure or chemical reagent residual problem caused by the nonuniformity of concentration, to reduce food safety risk.
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Description

Technical Field

[0001] This utility model relates to the field of food processing technology, and in particular to an integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water. Background Technology

[0002] The boneless chicken feet cleaning and sterilization device is an automated equipment specifically designed for chicken feet processing. It deeply removes surface dirt and residue through a variety of cleaning and sterilization technologies, while combining ozone, ultraviolet light, or food-grade disinfectant for efficient sterilization, effectively eliminating harmful microorganisms such as E. coli. The boneless chicken feet cleaning and sterilization device adopts a fully enclosed stainless steel structure to avoid cross-contamination and can also significantly improve processing efficiency, processing 500-1000 kg of raw materials per hour. It helps food companies meet hygiene certification standards such as HACCP, solving the industry pain points of low efficiency and high hygiene risks of traditional manual cleaning. It is widely used in pre-prepared food factories and central kitchens.

[0003] Traditional boneless chicken feet cleaning and sterilization devices lack a stirring mechanism, which prevents the chicken feet from being fully turned over during the cleaning process. Some areas may remain with bloodstains, dirt, and microorganisms because they do not come into contact with water or disinfectant. Incomplete cleaning can lead to the growth of harmful bacteria such as E. coli, posing food safety risks and even causing gastrointestinal discomfort, vomiting, or diarrhea in consumers. Long-term consumption may pose potential health hazards. At the same time, the device cannot scrape off the raw materials adhering to the inner wall, resulting in residual materials adhering to the inside of the device and contaminating the next batch of products.

[0004] Therefore, to address the issues of traditional boneless chicken feet cleaning and sterilization devices lacking a stirring mechanism, having blind spots in cleaning and sterilization, posing food safety hazards, and causing potential health risks with long-term consumption, as well as the inability to achieve self-cleaning, a highly efficient integrated cleaning and sterilization device for boneless chicken feet based on ozone water with a stirring mechanism can be designed. Utility Model Content

[0005] To overcome the problems of traditional boneless chicken feet cleaning and sterilization devices lacking a stirring device, resulting in blind spots in cleaning and sterilization, posing food safety hazards, and causing potential harm to human health with long-term consumption, and failing to achieve self-cleaning.

[0006] The technical solution of this utility model is as follows: an integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water, including a mounting plate; and a drive motor. The drive motor is fixedly connected to one side of the mounting plate, and a drive shaft is fixedly connected to the output end of the drive motor. The drive shaft is rotatably connected to the mounting plate, and a connecting rod is fixedly connected to the other end of the drive shaft. A first sliding column is provided on the connecting rod, and a U-shaped rotating frame is provided on one side of the connecting rod. The first sliding column is slidably connected to the U-shaped rotating frame. A first connecting shaft is provided above the U-shaped rotating frame and is rotatably connected to the mounting plate. A cam rotating frame is provided on the other side of the U-shaped rotating frame and is rotatably connected to the mounting plate. A second sliding column is provided on the cam rotating frame and is slidably connected to the U-shaped rotating frame. A second connecting shaft is fixedly connected to the other side of the cam rotating frame, and a stirring fan blade is fixedly connected to the outside of the second connecting shaft.

[0007] Preferably, when uniformly cleaning and sterilizing boneless chicken feet, the drive motor outputs torque to the drive shaft, causing the drive shaft to rotate. This rotates the connecting rod, causing the first sliding column on the connecting rod to slide on the U-shaped rotating frame. Consequently, the first connecting shaft on the U-shaped rotating frame rotates on the mounting plate, simultaneously causing the second sliding column, which is slidably connected to the U-shaped rotating frame, to slide. This causes the cam rotating frame to rotate with the rotation of the U-shaped rotating frame, further driving the second connecting shaft and the stirring fan blades to rotate, thus uniformly stirring the boneless chicken feet and achieving efficient cleaning and sterilization.

[0008] Preferably, a cleaning housing is fixedly connected to the mounting plate, with a feed pipe above the cleaning housing and a drain pipe below the cleaning housing.

[0009] Preferably, a control valve is fixedly connected to the drain pipe, and several transparent windows are provided on the surface of the cleaning housing.

[0010] Preferably, the stirring blades are rotatably connected to the cleaning housing, the stirring blades are provided with several filter holes, and an ultraviolet germicidal lamp is fixedly connected to the stirring blades.

[0011] Preferably, an ozone water tank is fixedly connected to the mounting plate, a booster pump is fixedly connected above the ozone water tank, a water supply pipe is fixedly connected to the output end of the booster pump, and the other end of the water supply pipe is fixedly connected to the cleaning housing.

[0012] Preferably, a dryer is fixedly connected to the mounting plate, an air supply duct is fixedly connected to the output end of the dryer, and the other end of the air supply duct is fixedly connected to the cleaning housing.

[0013] Preferably, an arc-shaped sealing door panel is movably connected to the bottom of the cleaning housing, and a connecting support is fixedly connected to the arc-shaped sealing door panel.

[0014] Preferably, a hopper is fixedly connected to the bottom of the cleaning housing, and a micro motor is fixedly connected to the hopper. The output end of the micro motor is fixedly connected to the connecting support, and the connecting support is rotatably connected to the hopper.

[0015] The beneficial effects of this utility model are:

[0016] 1. Multiple transmission devices work in conjunction with the stirring fan blades to agitate the boneless chicken feet, ensuring that the chicken feet are thoroughly turned over during the cleaning process. This ensures that the water and disinfectant evenly cover the surface and crevices of the chicken feet, thoroughly removing bloodstains, dirt, and microorganisms attached to the crevices. This avoids the localized residue problems caused by traditional static cleaning. At the same time, the stirring function also promotes the uniformity of mixing of chemical disinfectants or ozone with the water, avoiding sterilization failure or chemical reagent residue problems caused by uneven concentration, thereby reducing food safety risks.

[0017] 2. The mixing fan blades are designed to contact the cleaning shell, which self-cleans the inner wall of the cleaning shell. This prevents residual raw materials from adhering to the inner wall of the device, which could contaminate the next batch of products, reduce product quality, save on subsequent cleaning costs, and improve work efficiency. Attached Figure Description

[0018] Figure 1 The diagram shown is a schematic representation of the overall three-dimensional structure of this utility model.

[0019] Figure 2 The diagram shown is a schematic cross-sectional view of the overall structure of this utility model.

[0020] Figure 3 The diagram shown is a structural schematic of the ozone water tank of this utility model.

[0021] Figure 4 The diagram shown is a schematic representation of the structure of the stirring blade of this utility model.

[0022] Figure 5 The diagram shown is a schematic representation of the arc-shaped sealing door panel of this utility model.

[0023] Explanation of reference numerals in the attached drawings: 1. Mounting plate; 2. Drive motor; 3. Drive shaft; 4. Connecting rod; 401. First sliding column; 5. U-shaped rotating frame; 501. First connecting shaft; 6. Cam rotating frame; 601. Second sliding column; 7. Second connecting shaft; 8. Stirring blade; 801. Filter hole; 9. Ultraviolet germicidal lamp; 10. Cleaning shell; 1001. Feed pipe; 1002. Drain pipe; 1003. Transparent window; 11. Control valve; 12. Ozone water tank; 13. Booster pump; 14. Water supply pipe; 15. Dryer; 16. Air supply pipe; 17. Arc-shaped sealing door panel; 18. Connecting support; 19. Micro motor; 20. Feed hopper. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] Please see Figures 1-5 This utility model provides an embodiment of an integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water, including a mounting plate 1; it also includes a drive motor 2, with the drive motor 2 fixedly connected to one side of the mounting plate 1, and a drive shaft 3 fixedly connected to the output end of the drive motor 2. The drive shaft 3 is rotatably connected to the mounting plate 1, and a connecting rod 4 fixedly connected to the other end of the drive shaft 3. A first sliding column 401 is provided on the connecting rod 4, and a U-shaped rotating frame 5 is provided on one side of the connecting rod 4. The first sliding column 401 is slidably connected to the U-shaped rotating frame 5. A first connecting shaft 501 is provided above the U-shaped rotating frame 5 and is rotatably connected to the mounting plate 1. A cam rotating frame 6 is provided on the other side of the U-shaped rotating frame 5 and is rotatably connected to the mounting plate 1. A second sliding column 601 is provided on the cam rotating frame 6. Two sliding columns 601 are slidably connected to the U-shaped rotating frame 5. A second connecting shaft 7 is fixedly connected to the other side of the cam rotating frame 6. A stirring fan blade 8 is fixedly connected to the outside of the second connecting shaft 7. When the boneless chicken feet are uniformly cleaned and sterilized, the drive motor 2 outputs torque to the drive shaft 3, causing the drive shaft 3 to rotate, which in turn drives the connecting rod 4 to rotate. This causes the first sliding column 401 on the connecting rod 4 to slide on the U-shaped rotating frame 5, thereby causing the first connecting shaft 501 on the U-shaped rotating frame 5 to rotate on the mounting plate 1. At the same time, this causes the second sliding column 601, which is slidably connected to the U-shaped rotating frame 5, to slide. This causes the cam rotating frame 6 to rotate with the rotation of the U-shaped rotating frame 5, further driving the second connecting shaft 7 and the stirring fan blade 8 to rotate, thus uniformly stirring the boneless chicken feet and efficiently cleaning and sterilizing them.

[0026] Please see Figures 1-5In this embodiment, a cleaning housing 10 is fixedly connected to the mounting plate 1. A feed pipe 1001 is located above the cleaning housing 10, and a drain pipe 1002 is located below it. Boneless chicken feet are fed into the cleaning housing 10 through the feed pipe 1001, and wastewater is discharged from the cleaning housing 10 through the drain pipe 1002. A control valve 11 is fixedly connected to the drain pipe 1002. Several transparent windows 1003 are provided on the surface of the cleaning housing 10. The control valve 11 controls the opening and closing of the drain pipe 1002, allowing workers to observe the situation inside the cleaning housing 10 through the transparent windows 1003. A stirring blade 8 is rotatably connected to the cleaning housing 10, and the stirring blade 8 is equipped with... There are several filter holes 801. An ultraviolet germicidal lamp 9 is fixedly connected to the stirring fan blade 8. The ozone water can be kept circulating during stirring through the filter holes 801 on the stirring fan blade 8. At the same time, the ultraviolet germicidal lamp 9 provides auxiliary sterilization, achieving a highly efficient cleaning and sterilization function. An ozone water tank 12 is fixedly connected to the mounting plate 1. A booster pump 13 is fixedly connected above the ozone water tank 12. A water supply pipe 14 is fixedly connected to the output end of the booster pump 13. The other end of the water supply pipe 14 is fixedly connected to the cleaning housing 10. When cleaning and sterilizing, the booster pump 13 outputs pressure to draw out the ozone water in the ozone water tank 12 and deliver it to the cleaning housing 10 through the water supply pipe 14.

[0027] Please see Figures 1-5 In this embodiment, a dryer 15 is fixedly connected to the mounting plate 1. An air supply duct 16 is fixedly connected to the output end of the dryer 15. The other end of the air supply duct 16 is fixedly connected to the cleaning housing 10. After cleaning, the dryer 15 generates a dry airflow, which is blown into the cleaning housing 10 through the air supply duct 16 to dry the residual moisture of the boneless chicken feet. An arc-shaped sealing door plate 17 is movably connected to the bottom of the cleaning housing 10. A connecting support 18 is fixedly connected to the arc-shaped sealing door plate 17. By rotating the connecting support 18, the arc-shaped sealing door plate 17 is opened. A feeding hopper 20 is fixedly connected to the bottom of the cleaning housing 10. A micro motor 19 is fixedly connected to the feeding hopper 20. The output end of the micro motor 19 is fixedly connected to the connecting support 18. The connecting support 18 is rotatably connected to the feeding hopper 20. The micro motor 19 outputs torque to the connecting support 18, causing the connecting support 18 to rotate, so that the boneless chicken feet in the cleaning housing 10 are discharged into the cleaning housing 10 along the feeding hopper 20.

[0028] During operation, boneless chicken feet are fed into the cleaning housing 10 through the feed pipe 1001. The booster pump 13 outputs pressure to extract ozone water from the ozone water tank 12 and deliver it to the cleaning housing 10 through the water supply pipe 14. Then, the drive motor 2 outputs torque to the drive shaft 3, causing the drive shaft 3 to rotate. This rotates the connecting rod 4, causing the first sliding column 401 on the connecting rod 4 to slide on the U-shaped rotating frame 5. This causes the first connecting shaft 501 on the U-shaped rotating frame 5 to rotate on the mounting plate 1. Simultaneously, this causes the second sliding column 601, which is slidably connected to the U-shaped rotating frame 5, to slide. This causes the cam rotating frame 6 to rotate with the rotation of the U-shaped rotating frame 5, further driving the second connecting shaft 7 and the stirring fan blade 8 to rotate, thus processing the boneless chicken feet. During the uniform stirring process, the ozone water is kept circulating through the filter holes 801 on the stirring fan blades 8, while the ultraviolet germicidal lamp 9 provides auxiliary sterilization, achieving a highly efficient cleaning and sterilization function. Then, the control valve 11 opens the drain pipe 1002 to discharge the wastewater in the cleaning shell 10. The dryer 15 generates a dry airflow, which is blown into the cleaning shell 10 through the air supply pipe 16 to dry the residual moisture in the boneless chicken feet. The staff can observe the situation in the cleaning shell 10 through the transparent window 1003. After the boneless chicken feet are processed, the micro motor 19 outputs torque to the connecting support 18, causing the connecting support 18 to rotate and control the arc-shaped sealing door 17 to open, allowing the boneless chicken feet in the cleaning shell 10 to be discharged into the cleaning shell 10 along the feed hopper 20.

[0029] Through the above steps, multiple transmission devices are used in conjunction with the rotating agitator blades 8 to agitate the boneless chicken feet. This ensures that the chicken feet are fully turned over during the cleaning process, guaranteeing that the water and disinfectant evenly cover the surface and crevices of the chicken feet. This thoroughly removes blood stains, dirt, and microorganisms attached to the crevices, avoiding the localized residue problems caused by traditional static cleaning. Simultaneously, the agitator function promotes the uniform mixing of chemical disinfectants or ozone with the water, preventing sterilization failure or chemical residue problems caused by uneven concentration, thereby reducing food safety risks. Furthermore, the agitator blades 8 contact the cleaning housing 10, self-cleaning the inner wall of the cleaning housing 10. This prevents residual materials from adhering to the inner wall of the device, which could contaminate the next batch of products, reduce product quality, save on subsequent cleaning costs, and improve work efficiency. This addresses the problems of traditional boneless chicken foot cleaning and sterilization devices lacking agitator devices, having cleaning and sterilization dead zones, posing food safety hazards, and potentially causing long-term health risks due to ingestion, as well as the inability to achieve self-cleaning.

Claims

1. An integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water, comprising a mounting plate (1); characterized in that: It also includes a drive motor (2), a drive motor (2) is fixedly connected to one side of the mounting plate (1), a drive shaft (3) is fixedly connected to the output end of the drive motor (2), the drive shaft (3) is rotatably connected to the mounting plate (1), a connecting rod (4) is fixedly connected to the other end of the drive shaft (3), a first sliding column (401) is provided on the connecting rod (4), a U-shaped rotating frame (5) is provided on one side of the connecting rod (4), the first sliding column (401) is slidably connected to the U-shaped rotating frame (5), and a U-shaped rotating frame (5) is provided above the U-shaped rotating frame (5). There is a first connecting shaft (501), which is rotatably connected to the mounting plate (1). A cam rotating frame (6) is provided on the other side of the U-shaped rotating frame (5), which is rotatably connected to the mounting plate (1). A second sliding column (601) is provided on the cam rotating frame (6), which is slidably connected to the U-shaped rotating frame (5). A second connecting shaft (7) is fixedly connected on the other side of the cam rotating frame (6), and a stirring fan blade (8) is fixedly connected to the outside of the second connecting shaft (7).

2. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 1, characterized in that: A cleaning housing (10) is fixedly connected to the mounting plate (1). A feed pipe (1001) is provided above the cleaning housing (10), and a drain pipe (1002) is provided below the cleaning housing (10).

3. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 2, characterized in that: A control valve (11) is fixedly connected to the drain pipe (1002), and several transparent windows (1003) are provided on the surface of the cleaning housing (10).

4. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 3, characterized in that: The stirring blade (8) is rotatably connected to the cleaning housing (10). The stirring blade (8) has several filter holes (801) and an ultraviolet germicidal lamp (9) is fixedly connected to the stirring blade (8).

5. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 4, characterized in that: An ozone water tank (12) is fixedly connected to the mounting plate (1). A booster pump (13) is fixedly connected above the ozone water tank (12). A water supply pipe (14) is fixedly connected to the output end of the booster pump (13). The other end of the water supply pipe (14) is fixedly connected to the cleaning housing (10).

6. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 5, characterized in that: A dryer (15) is fixedly connected to the mounting plate (1). An air supply duct (16) is fixedly connected to the output end of the dryer (15). The other end of the air supply duct (16) is fixedly connected to the cleaning housing (10).

7. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 6, characterized in that: An arc-shaped sealing door panel (17) is movably connected to the bottom of the cleaning housing (10), and a connecting support (18) is fixedly connected to the arc-shaped sealing door panel (17).

8. The integrated device for efficient cleaning and sterilization of boneless chicken feet based on ozone water according to claim 7, characterized in that: A hopper (20) is fixedly connected to the bottom of the cleaning housing (10), and a micro motor (19) is fixedly connected to the hopper (20). The output end of the micro motor (19) is fixedly connected to the connecting support (18), and the connecting support (18) is rotatably connected to the hopper (20).