A spray device for disinfecting the hooves of diseased camels
By designing a threaded conversion component at the water outlet of the disinfection spray bottle, the nozzle and needle can be flexibly switched, solving the problem that the nozzle and needle cannot be used simultaneously in existing devices, and improving the convenience and efficiency of disinfection operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GANSU AGRI UNIV
- Filing Date
- 2025-02-24
- Publication Date
- 2026-07-31
AI Technical Summary
The nozzles and needles of existing spray devices for disinfecting the hooves of diseased camels cannot be interchanged on the same part, which makes it easy to miss areas or cause inconvenience during disinfection.
A conversion component for the water outlet of a disinfection spray bottle was designed. It uses a threaded structure to connect a stepped spray bar and a T-shaped needle, and seals the connection with a nozzle cap to achieve flexible switching between the spray head and the needle. The use of a sealing plug and a sealing plug ensures the normal spraying and injection of disinfectant.
It enables easy switching between spray nozzles and needles, ensuring that disinfectant can be sprayed or injected normally in different modes, avoiding problems of disinfection difficulties and leakage, and improving the convenience and efficiency of operation.
Smart Images

Figure CN224572866U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of veterinary medicine, specifically to a spraying device for disinfecting the hooves of sick camels. Background Technology
[0002] During camel farming, poor management and untimely garbage removal often lead to various bacterial infections in camel hooves, causing various inflammations. To resolve these inflammations, it is necessary to trim the camel's hooves and disinfect and apply medication to the inflamed areas. Existing disinfectants typically use iodine solution or iodine tincture, which are applied using appropriate camel hoof disinfection sprayers.
[0003] Existing spray devices for disinfecting the hooves of diseased camels typically use a disinfectant spray bottle to spray disinfectant. When it is necessary to inject disinfectant into the inside of the diseased hoof, the nozzle on the spray bottle needs to be replaced with a needle, or a special syringe needs to be used for injection. This means that multiple sets of spray nozzles or needles need to be equipped at the same time when disinfecting the diseased hoof. If any part is missed, disinfection will become difficult. Utility Model Content
[0004] The technical problem this invention aims to solve is that the nozzle and needle of the existing spray device for disinfecting the hooves of diseased camels cannot be interchanged on the same part.
[0005] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows: a spraying device for disinfecting the hooves of diseased camels, including a disinfection spray bottle, the water outlet end of the disinfection spray bottle is provided with a conversion assembly for a nozzle and a needle, the conversion assembly includes a stepped spray rod connected to the water outlet end of the disinfection spray bottle by a threaded structure, a nozzle cap fixed to the thin column end of the stepped spray rod by a threaded structure, and a T-shaped needle passing through the center of the nozzle cap, the needle tube of the T-shaped needle being connected to the central through hole of the nozzle cap by a threaded structure, and a sealing plug passing through the needle hole on the bottom surface of the T-shaped needle is welded on the inner wall of the thick column end of the stepped spray rod.
[0006] As an improvement, the tip of the T-shaped needle is provided with a threaded plug to close the needle hole of the T-shaped needle, and the threaded plug corresponds to the central threaded hole of the nozzle cover.
[0007] As an improvement, the bottom end of the T-shaped needle tube is provided with a sealing plug that slides in connection with the inner wall of the thin column end of the stepped spray bar.
[0008] As an improvement, the top surface output end of the T-shaped needle is a planar structure.
[0009] As an improvement, the disinfectant spray bottle is a hand-operated spray bottle.
[0010] As an improvement, the effective length of the cavity at the thin end of the stepped spray bar is less than the effective length of the T-shaped needle tube.
[0011] The advantages of this invention compared to existing technologies are as follows: This device uses a threaded structure to connect a stepped spray bar to the water outlet of the disinfection spray bottle, and inserts a T-shaped needle into the thin column end of the stepped spray bar. Then, the output port of the stepped spray bar is sealed by the nozzle cap. Finally, a sealing plug is welded to the inner wall of the thick column end of the stepped spray bar to seal the pinhole on the bottom surface of the T-shaped needle. When spraying is required, the T-shaped needle is retracted, so that the sealing plug blocks the T-shaped needle while ensuring the normal transmission of disinfectant water in the stepped spray bar, allowing the disinfectant water to enter the nozzle cap normally, thus completing the normal spraying of the nozzle cap. Similarly, after the T-shaped needle is pulled out, the sealing block on the bottom surface of the T-shaped needle will seal the inner hole of the thin column end of the stepped spray bar, so that the disinfectant water can only be sprayed out from the pinhole of the T-shaped needle. Attached Figure Description
[0012] Figure 1 This is a general structural diagram of a spraying device for disinfecting the hooves of a diseased camel according to this utility model.
[0013] Figure 2 This is a cross-sectional view of the conversion component of a spraying device for disinfecting the hooves of a diseased camel according to this utility model.
[0014] Figure 3 This is an exploded view of the conversion component of a spraying device for disinfecting the hooves of a diseased camel, according to this utility model.
[0015] Figure 4 This is a structural diagram of a stepped spray bar for disinfecting the hooves of a diseased camel, according to this utility model.
[0016] As shown in the figure: 1. Disinfecting spray bottle; 2. Conversion assembly; 21. Stepped spray bar; 22. Nozzle cap; 23. T-shaped needle; 231. Sealing plug; 24. Sealing plug; 25. Threaded plug. Detailed Implementation
[0017] The present invention will now be described in further detail with reference to the accompanying drawings.
[0018] As per the instruction manual Figure 1 , 2 As shown in Figures 3 and 4, the device includes a disinfection spray bottle 1, which is a hand-operated spray bottle. The pressure bar of the hand-operated spray bottle provides sufficient pressure to the nozzle and needle to ensure the uniformity of the spray.
[0019] The disinfection spray bottle 1 has a nozzle and needle conversion assembly 2 at its outlet end. The conversion assembly 2 includes a stepped spray rod 21 connected to the outlet end of the disinfection spray bottle 1 via a threaded structure, a nozzle cap 22 fixed to the thin end of the stepped spray rod 21 via a threaded structure, and a T-shaped needle 23 passing through the center of the nozzle cap 22. The needle tube of the T-shaped needle 23 is connected to the central through-hole of the nozzle cap 22 via a threaded structure. A sealing plug 24 passing through a needle hole on the bottom surface of the T-shaped needle 23 is welded to the inner wall of the thick end of the stepped spray rod 21. The tip of the T-shaped needle 23 is provided with a threaded plug 25 to seal the needle hole of the T-shaped needle 23. The threaded plug 25 is connected to the spray rod 23 via a threaded structure. The center screw hole of the nozzle 22 corresponds to the T-shaped needle 23. The bottom end of the needle tube of the T-shaped needle 23 is provided with a sealing plug 231 that is slidably connected to the inner wall of the thin column end of the stepped spray bar 21. In the inner wall of the thick column end of the stepped spray bar 21, a sealing plug 24 is welded to seal the bottom needle hole of the T-shaped needle 23 using a tripod. In order to ensure that the bottom needle hole of the T-shaped needle 23 can be accurately fitted onto the sealing plug 24 after the T-shaped needle 23 is retracted, the effective length of the cavity of the thin column end of the stepped spray bar 21 is less than the effective length of the needle tube of the T-shaped needle 23. At the same time, in order to ensure that the fingers will not be pricked when the T-shaped needle 23 is stretched, the top output end of the T-shaped needle 23 is a planar structure.
[0020] When the T-shaped needle 23 is extended, in order to prevent the nozzle cover 22 from spraying disinfectant at this time, a rubber sealing plug 231 is fitted on the outer wall of the coarse cylindrical surface of the bottom of the T-shaped needle 23. The sealing plug 231 seals the inner hole of the thin cylindrical end of the stepped spray bar 21, so that the disinfectant can only be sprayed out through the internal needle hole of the T-shaped needle 23. After the T-shaped needle 23 is extended, in order to ensure the stability of the needle tube of the T-shaped needle 23, a stud is installed on the bottom surface of the needle tube of the T-shaped needle 23, and a threaded hole corresponding to the stud is opened in the central through hole of the nozzle cover 22. The stability of the T-shaped needle 23 after extension is ensured by the threaded connection between the two.
[0021] Similarly, when the T-shaped needle 23 retracts, the sealing plug 24 blocks the bottom hole of the T-shaped needle 23, and the sealing plug 231 on the bottom of the T-shaped needle 23 passes through the thin end of the stepped spray bar 21, so that it is located in the thick end of the stepped spray bar 21, thereby ensuring normal spraying of the nozzle cover 22 nozzle. In order to ensure the uniformity of spraying, before the T-shaped needle 23 retracts, the threaded plug 25 corresponding to the central screw hole of the nozzle cover 22 is put on the output rod surface of the T-shaped needle 23, and the central screw hole of the nozzle cover 22 is sealed by the threaded plug 25, thereby ensuring that the disinfectant does not drip over a large area when the nozzle cover 22 is spraying.
[0022] In practical implementation, this invention allows for the selection of different spraying modes based on the shear surface of the diseased camel's hoof. When it is necessary to inject disinfectant into the hoof using a syringe, simply unscrew the threaded plug 25, pull out the T-shaped needle 23, and then rotate the stud on the bottom of the T-shaped needle 23 to fix it in the central screw hole of the nozzle cap 22, ensuring that the T-shaped needle 23 will not retract during injection. Press down the pressure lever of the disinfectant spray bottle 1 beforehand to insert the T-shaped needle 23 into the inside of the diseased hoof, and then grip the disinfectant spray bottle. Switch 1 is used to inject disinfectant into the inside of the diseased hoof. Similarly, when large-area disinfection of the diseased hoof is required, simply press back the T-shaped needle 23 and use the threaded plug 25 to seal the central threaded hole of the nozzle cover 22. At this time, the bottom hole of the T-shaped needle 23 is blocked by the sealing plug 24, while the sealing plug 231 is located in the thick column end of the stepped spray bar 21, so that the thin column end of the stepped spray bar 21 is in a passable state, ensuring that the disinfectant can be normally delivered to the nozzle of the nozzle cover 22, thereby completing the spraying of disinfectant.
[0023] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A spray device for disinfecting the hooves of a camelid, comprising a disinfectant spray bottle (1), characterized in that: The water outlet of the disinfection spray bottle (1) is provided with a nozzle and needle conversion assembly (2). The conversion assembly (2) includes a stepped spray rod (21) connected to the water outlet of the disinfection spray bottle (1) by a threaded structure, a nozzle cap (22) fixed to the thin column end of the stepped spray rod (21) by a threaded structure, and a T-shaped needle (23) passing through the center of the nozzle cap (22). The needle tube of the T-shaped needle (23) is connected to the central through hole of the nozzle cap (22) by a threaded structure, and a sealing plug (24) passing through the needle hole on the bottom surface of the T-shaped needle (23) is welded on the inner wall of the thick column end of the stepped spray rod (21).
2. The spray device for disinfecting the hooves of a camelid of claim 1, wherein: The top of the T-shaped needle (23) is provided with a threaded plug (25) to close the needle hole of the T-shaped needle (23), and the threaded plug (25) corresponds to the central threaded hole of the nozzle cover (22).
3. The spray device for disinfecting the hooves of a camelid of claim 1, wherein: The bottom end of the T-shaped needle (23) is provided with a sealing plug (231) that is slidably connected to the inner wall of the thin column end of the stepped spray bar (21).
4. The spraying device for disinfecting the hooves of diseased camels according to claim 1, characterized in that: The top surface output end of the T-shaped needle (23) has a planar structure.
5. The spraying device for disinfecting the hooves of diseased camels according to claim 1, characterized in that: The disinfection spray bottle (1) is a hand-operated spray bottle.
6. The spraying device for disinfecting the hooves of diseased camels according to claim 1, characterized in that: The effective length of the cavity at the thin column end of the stepped spray bar (21) is less than the effective length of the needle tube of the T-shaped needle (23).