Disinfecting and spraying device for meat duck slaughtering and processing

By designing a meat duck slaughtering and processing disinfection spray device including factory components, spray components and adjustment components, the problem that the existing device is inconvenient to adjust the angle of the spray head is solved, and the effective coverage of the disinfectant and bacterial killing effect are achieved.

CN222967827UActive Publication Date: 2025-06-13SAKURA SOURCE CO LTD
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Patent Information

Application Number
CN202422197597.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-06-13
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The existing meat duck slaughtering and processing disinfection spraying device is not convenient to adjust the use angle of the spray head, resulting in insufficient coverage of the disinfectant and reducing the disinfection effect of meat duck.

Method used

A meat duck slaughtering and processing disinfection spray device including factory components, spray components and adjustment components is designed. The spray head is angled through two sets of adjustment components to ensure that the disinfectant can cover the surface that needs to be disinfected.

Benefits of technology

By adjusting the angle of the spray head, it is ensured that the disinfectant can effectively cover the surface that needs to be disinfected, thereby effectively killing bacteria and other pathogenic microorganisms, improving the disinfection effect of meat ducks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of meat duck processing, in particular to a meat duck slaughtering, processing, disinfecting and spraying device. Comprising a plant assembly, a spraying assembly and an adjusting assembly, the plant assembly comprises a spraying chamber and a chain track, the spraying assembly comprises a liquid storage pipe and a positioning rod, the adjusting assembly comprises a power box, a rotating shaft and a second linkage shaft, guide plates are symmetrically connected to the inner wall of the spraying chamber, one end of the liquid storage pipe is connected with a liquid inlet pipe, and the other end of the liquid storage pipe is connected with a liquid outlet pipe. One end of the liquid storage pipe is connected with a plurality of flow dividing pipes, a linkage pipe is arranged on the inner side of the spraying chamber, a bearing is arranged on the outer ring of the linkage pipe, and the outer wall of the linkage pipe is connected with a spraying head. Through the arrangement of the two groups of adjusting assemblies, the two groups of spraying heads are respectively subjected to corresponding angle adjustment, and a disinfectant sprayed by the spraying heads can cover a surface needing to be disinfected by adjusting the use angles of the spraying heads, so that the disinfectant can effectively kill bacteria and other pathogenic microorganisms.
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Description

Technical Field

[0001] The utility model relates to the technical field of meat duck processing, in particular to a disinfection spraying device for meat duck slaughter and processing. Background Art

[0002] In recent years, the meat chicken and meat duck industries in China have developed rapidly, and the per capita consumption of chicken and duck meat has been continuously rising. Therefore, it is particularly important to control the quality and safety of meat chickens during the slaughter and processing process. In the production chain of meat chicken slaughter and processing, microbial contamination has become the primary problem, and it is necessary to carry out processing disinfection spraying on it.

[0003] The disinfection spraying device for slaughter and processing is an important device used to ensure food safety and hygiene in the meat processing industry. This device is mainly used in the production line in the slaughterhouse to reduce the risk of microbial contamination. The design purpose of the disinfection spraying device is to clean and disinfect the surfaces of animal carcasses, internal organs, cut meat pieces, and other surfaces that may come into contact with food by spraying disinfectants.

[0004] The existing disinfection spraying device for meat duck slaughter and processing is not convenient to adjust the use angle of the spray head during use, which affects the range of the disinfectant solution covering the surface to be disinfected and reduces the disinfection effect on meat ducks. Summary of the Utility Model

[0005] Aiming at the above problems, the purpose of the present utility model is to provide a disinfection spraying device for meat duck slaughter and processing, which solves the problem that it is not convenient to adjust the use angle of the spray head during use, affects the range of the disinfectant solution covering the surface to be disinfected, and reduces the disinfection effect on meat ducks. By adjusting the use angle of the spray head, the sprayed disinfectant solution can cover the surface to be disinfected, thereby ensuring that the disinfectant can effectively kill bacteria and other pathogenic microorganisms.

[0006] To achieve the above purpose, the technical solution adopted by the present utility model is: a disinfection spraying device for meat duck slaughter and processing, including a factory building component, a spraying component, and an adjusting component. The factory building component includes a spraying chamber and a chain track. The spraying component includes a liquid storage pipe and a positioning rod. The adjusting component includes a power box, a rotating shaft, and a second linkage shaft. The inner walls of the spraying chamber are symmetrically connected with flow guiding plates. A grid plate is arranged inside the spraying chamber. One end of the liquid storage pipe is connected with a liquid inlet pipe. One end of the liquid storage pipe is connected with a plurality of shunt pipes. A linkage pipe is arranged inside the spraying chamber. A bearing is arranged on the outer circle of the linkage pipe. A spray head is connected to the outer wall of the linkage pipe. A motor is arranged inside the power box. A first gear is connected to the outer circle of the rotating shaft. A second gear is arranged inside the power box. One end of the second gear is connected with a first linkage shaft.

[0007] The beneficial effects of the utility model are as follows: by setting up two groups of adjustment components, the two groups of spray heads can be adjusted at corresponding angles respectively, and by adjusting the angles of the spray heads, the sprayed disinfectant can cover the surface that needs to be disinfected, thereby ensuring that the disinfectant can effectively kill bacteria and other pathogenic microorganisms.

[0008] To block impurities dropped from the duck during the disinfection spraying process:

[0009] As a further improvement of the above technical solution: both ends of the spray chamber are symmetrically provided with make way grooves, the chain track passes through both sides of the spray chamber and the two make way grooves at the same time, and the lower end of the chain track is connected with a hook.

[0010] The beneficial effects of this improvement are as follows: through the symmetrical opening of the give way grooves, it is used to install the chain track and the channel inside the spray chamber for the meat ducks to enter and exit; through the setting of the guide plate, it is used to guide the liquid after spraying to the grille plate; through the setting of the grille plate, it is used to block impurities falling from the meat ducks during the disinfection spraying process.

[0011] In order to divert the disinfectant in the liquid storage pipe and transport it to the sprinkler head through the diversion pipe for disinfection spraying:

[0012] As a further improvement of the above technical solution: the end of the liquid inlet pipe away from the liquid storage pipe is connected to the disinfection tank, the liquid storage pipe is connected to the outer wall of the spray chamber through a positioning rod, and the end of the diversion pipe away from the liquid storage pipe passes through one side wall of the linkage pipe and extends to be connected to the spray head.

[0013] The beneficial effect of this improvement is that when in use, the pump body in the disinfection tank is started, and the disinfectant in the disinfection tank is transported to the liquid storage tube through the liquid inlet pipe, and then the disinfectant is diverted in the liquid storage tube and transported to the spray head through the diverter pipe for disinfection spraying.

[0014] In order to ensure that the disinfectant can be transported into the sprinkler head after the linkage pipe rotates:

[0015] As a further improvement of the above technical solution: the diverter pipe comprises a telescopic hose, and the telescopic hose is arranged at the position where the diverter pipe is located inside the spray chamber.

[0016] The beneficial effect of this improvement is that through the provision of the telescopic hose, when the linkage pipe rotates driven by the first linkage shaft, the telescopic hose can transport the disinfectant into the sprinkler head through its own elasticity after the linkage pipe rotates.

[0017] In order to facilitate the linkage pipe to rotate under the drive of the first linkage shaft:

[0018] As a further improvement of the above technical solution: The bearing on the outer ring of the linkage pipe is connected to the inner wall of the spraying chamber through a positioning rod, and the bearings on the outer ring of the linkage pipe are arranged at equal intervals between adjacent telescopic hoses.

[0019] The beneficial effect of this improvement is that by arranging a bearing on the outer ring of the linkage pipe, it is convenient for the linkage pipe to rotate under the drive of the first linkage shaft, and thus it is convenient to adjust the use angle of the spray head.

[0020] In order to make the disinfected liquid sprayed by it cover the surface to be disinfected:

[0021] As a further improvement of the above technical solution: There are two sets of the adjusting components in total, and the two power boxes are symmetrically installed on the same side of the outer wall of the spraying chamber, and the motor is electrically connected to the operation panel.

[0022] The beneficial effect of this improvement is that through the setting of two sets of adjusting components, the corresponding angle adjustment of the two sets of spray heads can be carried out respectively. By adjusting the use angle of the spray heads, the disinfected liquid sprayed by them can cover the surface to be disinfected, and thus it is ensured that the disinfectant can effectively kill bacteria and other pathogenic microorganisms.

[0023] In order for the motor to work and drive the rotation of the first gear through the rotating shaft:

[0024] As a further improvement of the above technical solution: The second gear is in meshing transmission connection with the first gear, one end of the rotating shaft is connected to the output end of the motor through a coupling, and the end of the rotating shaft away from the motor is rotationally connected to the inner wall of the power box through a bearing.

[0025] The beneficial effect of this improvement is that after starting the operation of the motor, the motor works and drives the rotation of the first gear through the rotating shaft, and then the rotation of the first gear realizes the rotation of the second gear in meshing transmission connection with it.

[0026] In order to realize the adjustment of the spraying angle of the spray head:

[0027] As a further improvement of the above technical solution: The end of the first linkage shaft away from the second gear penetrates through the wall of the spraying chamber and extends to be connected to the linkage pipe. The first linkage shaft is rotationally connected to the spraying chamber through a bearing. One end of the linkage pipe away from the first linkage shaft is connected to a second linkage shaft, and the end of the second linkage shaft away from the linkage pipe is rotationally connected to the inner wall of the spraying chamber through a bearing.

[0028] The beneficial effect of this improvement is that when the first linkage shaft rotates driven by the second gear, the first linkage shaft drives the linkage pipe to rotate during the rotation process, and thus the adjustment of the spraying angle of the spray head is realized. Description of the Drawings

[0029] Figure 1 It is a schematic diagram of the top cross-sectional structure of the utility model.

[0030] Figure 2 for Figure 1 Schematic diagram of the enlarged structure at point A in the middle.

[0031] Figure 3 for Figure 1 Schematic diagram of the enlarged structure at point B in the middle.

[0032] Figure 4 It is a side cross-sectional structural schematic diagram of the utility model.

[0033] Figure 5 It is a three-dimensional structural schematic diagram of the spray room of the utility model.

[0034] Figure 6 It is a schematic cross-sectional structural diagram of the power box of the utility model.

[0035] In the figure: 1. Plant assembly; 11. Spray room; 12. Give way slot; 13. Chain track; 14. Hook; 15. Guide plate; 16. Grille plate; 2. Spray assembly; 21. Liquid storage pipe; 22. Liquid inlet pipe; 23. Positioning rod; 24. Diverter pipe; 25. Telescopic hose; 26. Linkage pipe; 27. Bearing; 28. Spray head; 3. Adjustment assembly; 31. Power box; 32. Motor; 33. Rotating shaft; 34. First gear; 35. Second gear; 36. First linkage shaft; 37. Second linkage shaft. DETAILED DESCRIPTION

[0036] In order to enable those skilled in the art to better understand the technical solution of the utility model, the utility model is described in detail below in conjunction with the accompanying drawings. The description in this part is only exemplary and explanatory and should not have any limiting effect on the protection scope of the utility model.

[0037] like Figures 1-6As shown, a meat duck slaughtering and disinfection spraying device includes a plant assembly 1, a spray assembly 2, and an adjustment assembly 3. The plant assembly 1 includes a spray chamber 11 and a chain track 13. The spray assembly 2 includes a liquid storage pipe 21 and a positioning rod 23. The adjustment assembly 3 includes a power box 31, a rotating shaft 33, and a second linkage shaft 37. The inner wall of the spray chamber 11 is symmetrically connected with a guide plate 15, and a grid plate 16 is arranged on the inner side of the spray chamber 11. One end of the liquid storage pipe 21 is connected with a liquid inlet pipe 22, and one end of the liquid storage pipe 21 is connected with a plurality of shunt pipes 24. A linkage pipe 26 is arranged on the inner side of the spray chamber 11, and a bearing 27 is arranged on the outer ring of the linkage pipe 26. The outer wall of the linkage pipe 26 is connected with a spray head 28 A motor 32 is arranged on the inner side of the power box 31, a first gear 34 is connected to the outer ring of the rotating shaft 33, a second gear 35 is arranged on the inner side of the power box 31, one end of the second gear 35 is connected to the first linkage shaft 36, and symmetrically arranged clearance grooves 12 are arranged at both ends of the spray chamber 11, the chain track 13 passes through both sides of the spray chamber 11 and passes through two clearance grooves 12 at the same time, and a hook 14 is connected to the lower end of the chain track 13; the symmetrical opening of the clearance grooves 12 is used for the installation of the chain track 13 and the passage for the meat duck to enter and exit the inner side of the spray chamber 11, and the setting of the guide plate 15 is used to guide the liquid after spraying to the grille plate 16, and the setting of the grille plate 16 is used to guide the liquid from the meat duck during the disinfection spraying process. Impurities dropped from the duck are blocked, the end of the liquid inlet pipe 22 away from the liquid storage pipe 21 is connected to the disinfection tank, the liquid storage pipe 21 is connected to the outer wall of the spray chamber 11 through the positioning rod 23, and the end of the shunt pipe 24 away from the liquid storage pipe 21 passes through the side wall of the linkage pipe 26 and extends to communicate with the spray head 28; when in use, the pump body in the disinfection tank is started, and the disinfectant in the disinfection tank is transported to the liquid storage pipe 21 through the liquid inlet pipe 22, and then the disinfectant is shunted in the liquid storage pipe 21 and transported to the spray head 28 through the shunt pipe 24 for disinfection spraying, the shunt pipe 24 includes a telescopic hose 25, and the telescopic hose 25 is arranged at the position where the shunt pipe 24 is located in the spray chamber 11; through the arrangement of the telescopic hose 25, When the linkage tube 26 rotates under the drive of the first linkage shaft 36, the telescopic hose 25 can transport the disinfectant to the spray head 28 through its own elasticity after the linkage tube 26 rotates. The bearing 27 on the outer ring of the linkage tube 26 is connected to the inner wall of the spray chamber 11 through the positioning rod 23, and the bearings 27 on the outer ring of the linkage tube 26 are arranged at equal intervals between adjacent telescopic hoses 25; by arranging the bearing 27 on the outer ring of the linkage tube 26, it is convenient for the linkage tube 26 to rotate under the drive of the first linkage shaft 36, thereby facilitating the adjustment of the use angle of the spray head 28. The adjustment assembly 3 is provided with two groups in total, and the two power boxes 31 are symmetrically installed on the same side of the outer wall of the spray chamber 11, and the motor 32 is electrically connected to the operation panel;The two groups of adjustment components 3 are provided to adjust the angles of the two groups of spray heads 28 respectively. By adjusting the angles of the spray heads 28, the disinfectant sprayed by the spray heads 28 can cover the surface to be disinfected, thereby ensuring that the disinfectant can effectively kill bacteria and other pathogenic microorganisms. The second gear 35 is meshed and transmission-connected with the first gear 34. One end of the rotating shaft 33 is connected to the output end of the motor 32 through a coupling. The end of the rotating shaft 33 away from the motor 32 is rotationally connected to the inner wall of the power box 31 through a bearing 27. After the motor 32 is started, the motor 32 works and drives the first gear 34 to rotate through the rotating shaft 33, thereby the first gear 35 is driven by the first gear 34. 4 is rotated to realize the rotation of the second gear 35 meshing with it, the end of the first linkage shaft 36 away from the second gear 35 penetrates the wall of the spray chamber 11 and extends to connect with the linkage pipe 26, the first linkage shaft 36 is rotatably connected with the spray chamber 11 through the bearing 27, the end of the linkage pipe 26 away from the first linkage shaft 36 is connected with the second linkage shaft 37, and the end of the second linkage shaft 37 away from the linkage pipe 26 is rotatably connected with the inner wall of the spray chamber 11 through the bearing 27; when the first linkage shaft 36 is driven by the second gear 35 to rotate, the first linkage shaft 36 drives the linkage pipe 26 to rotate during the rotation process, thereby realizing the adjustment of the spray angle of the spray head 28. ;

[0038] The working principle of the utility model is as follows: when in use, the pump body in the disinfection tank is started, and the disinfectant in the disinfection tank is transported to the liquid storage tube 21 through the liquid inlet pipe 22, and then the disinfectant is shunted in the liquid storage tube 21 and transported to the spray head 28 through the shunt pipe 24 for disinfection spraying. After the operation of the motor 32 is started, the motor 32 works and drives the rotation of the first gear 34 through the rotating shaft 33, and then the second gear 35 meshing and connected with it is rotated through the rotation of the first gear 34. When the first linkage shaft 36 is driven by the second gear 35 to rotate, the first linkage shaft 36 drives the linkage pipe 26 to rotate during the rotation process, thereby realizing the adjustment of the spraying angle of the spray head 28. Through the setting of the telescopic hose 25, when the linkage pipe 26 rotates under the drive of the first linkage shaft 36, the telescopic hose 25 uses its own elasticity to make After the linkage tube 26 rotates, the disinfectant can be transported to the inside of the spray head 28. By arranging a bearing 27 on the outer ring of the linkage tube 26, the linkage tube 26 can be rotated driven by the first linkage shaft 36, so as to facilitate the adjustment of the angle of the spray head 28. The two groups of adjustment components 3 are arranged to adjust the angles of the two groups of spray heads 28 respectively. By adjusting the angles of the spray heads 28, the disinfectant sprayed by them can cover the surface to be disinfected, thereby ensuring that the disinfectant can effectively kill bacteria and other pathogenic microorganisms. The symmetrical opening of the give way grooves 12 is used for the installation of the chain track 13 and the passage inside the spray chamber 11 for the meat ducks to enter and exit. The guide plate 15 is arranged to guide the liquid after spraying to the grille plate 16. The grille plate 16 is arranged to block impurities dropped from the meat ducks during the disinfection spraying process.

[0039] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or apparatus.

[0040] This article uses specific examples to illustrate the principles and implementation methods of the utility model. The above examples are only used to help understand the method and core ideas of the utility model. The above is only the preferred implementation method of the utility model. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principle of the utility model, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the concept and technical solution of the utility model to other occasions without improvement, should be regarded as the protection scope of the utility model.

Claims

1. A meat duck slaughtering and disinfection spraying device, comprising a plant assembly (1), a spray assembly (2), and an adjustment assembly (3), wherein the plant assembly (1) comprises a spray chamber (11) and a chain track (13), the spray assembly (2) comprises a liquid storage pipe (21) and a positioning rod (23), and the adjustment assembly (3) comprises a power box (31), a rotating shaft (33), and a second linkage shaft (37), characterized in that: The inner wall of the spray chamber (11) is symmetrically connected to a guide plate (15), a grid plate (16) is arranged on the inner side of the spray chamber (11), one end of the liquid storage pipe (21) is connected to a liquid inlet pipe (22), one end of the liquid storage pipe (21) is connected to a plurality of flow distribution pipes (24), a linkage pipe (26) is arranged on the inner side of the spray chamber (11), a bearing (27) is arranged on the outer ring of the linkage pipe (26), a spray head (28) is connected to the outer wall of the linkage pipe (26), a motor (32) is arranged on the inner side of the power box (31), the outer ring of the rotating shaft (33) is connected to a first gear (34), a second gear (35) is arranged on the inner side of the power box (31), and one end of the second gear (35) is connected to the first linkage shaft (36).

2. A meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: The two ends of the spray chamber (11) are symmetrically provided with clearance grooves (12), the chain track (13) passes through both sides of the spray chamber (11) and simultaneously passes through the two clearance grooves (12), and the lower end of the chain track (13) is connected to a hook (14).

3. A meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: One end of the liquid inlet pipe (22) away from the liquid storage pipe (21) is connected to the disinfection tank, and the liquid storage pipe (21) is connected to the outer wall of the spray chamber (11) through a positioning rod (23). One end of the diversion pipe (24) away from the liquid storage pipe (21) penetrates a side wall of the linkage pipe (26) and extends to communicate with the spray head (28).

4. A meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: The diverter pipe (24) comprises a telescopic hose (25), and the telescopic hose (25) is arranged at a position where the diverter pipe (24) is located inside the spray chamber (11).

5. A meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: The bearing (27) on the outer ring of the linkage tube (26) is connected to the inner wall of the spray chamber (11) via a positioning rod (23), and the bearing (27) on the outer ring of the linkage tube (26) is arranged at equal intervals between adjacent telescopic hoses (25).

6. A meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: The regulating components (3) are provided in two groups in total, the two power boxes (31) are symmetrically mounted on the same side of the outer wall of the spray chamber (11), and the motor (32) is electrically connected to the operation panel.

7. The meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: The second gear (35) is meshed and transmission-connected with the first gear (34); one end of the rotating shaft (33) is connected to the output end of the motor (32) via a coupling; and one end of the rotating shaft (33) away from the motor (32) is rotationally connected to the inner wall of the power box (31) via a bearing (27).

8. The meat duck slaughtering and disinfection spraying device according to claim 1, characterized in that: One end of the first linkage shaft (36) away from the second gear (35) penetrates the wall of the spray chamber (11) and extends to be connected to the linkage pipe (26); the first linkage shaft (36) is rotatably connected to the spray chamber (11) via a bearing (27); one end of the linkage pipe (26) away from the first linkage shaft (36) is connected to the second linkage shaft (37); and one end of the second linkage shaft (37) away from the linkage pipe (26) is rotatably connected to the inner wall of the spray chamber (11) via a bearing (27).