Rotary atomizing disc and sock antibacterial finishing liquid spraying machine thereof
By designing a rotating atomizing disc and utilizing a flow-dividing structure and motor drive system, the problem of uneven atomization of liquid was solved, achieving uniform spraying of antibacterial agent for socks and improving the spraying effect.
Patent Information
- Application Number
- CN202520522109.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-24
AI Technical Summary
The existing rotating atomizing disc produces uneven atomization of the antibacterial agent, resulting in uneven coating on socks.
It adopts a rotating atomizing disc design, including the disc body, top cover, flow distribution structure and motor drive system. Multiple baffles and guide plates of the flow distribution structure form an acceleration channel, which, together with the rotation of the disc, ensures uniform distribution of atomized gas.
This technology enables uniform spraying of atomized gas, ensuring that each pair of socks is evenly coated, thus improving spraying efficiency and quality.
Smart Images

Figure CN223866951U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sock production technology, and in particular to a rotating atomizing disc and a sock antibacterial finishing liquid spraying machine. Background Technology
[0002] For sports socks, an antibacterial agent needs to be sprayed on them to improve their antibacterial and odor-resistant properties.
[0003] A search revealed an existing technology that discloses an atomizing disc for a rotary atomizer (publication number: CN103657905ACN103657905A), comprising a spray distribution disc, a top disc, and distribution blocks. The distribution blocks are evenly distributed between the annular surfaces formed by the spray distribution disc and the top disc. The key feature is that it further includes wear-resistant plates. Identical annular grooves are formed between corresponding surfaces of the spray distribution disc and the top disc. The wear-resistant plates have a fan-shaped structure, and their outer end faces have mounting grooves. The upper and lower end faces of each distribution block are respectively embedded in the mounting grooves of the corresponding wear-resistant plates. After installation, the upper and lower wear-resistant plates are combined to form an annular structure and embedded in the annular grooves of the spray distribution disc and the top disc.
[0004] In existing technologies, coating is mainly achieved by spraying the agent through an atomizing disc. However, atomizing discs are mostly fixed, resulting in poor liquid flow. Antibacterial agents are injected into the atomizing disc through pipes and then sprayed out through the multi-holes of the atomizing disc. Because the concentrated antibacterial agent flows inside the atomizing disc without guidance and dispersion, turbulence easily forms inside the atomizing disc. The antibacterial agent sprayed from each nozzle is not uniform, making it difficult to ensure that each pair of socks is evenly coated when coating a batch of socks.
[0005] Therefore, we propose a rotary atomizing disc and its antibacterial finishing liquid spraying machine for socks. Utility Model Content
[0006] The present invention mainly solves the technical problem of uneven atomized liquid spraying mentioned above, and provides a rotating atomizing disc and a sock antibacterial finishing liquid spraying machine.
[0007] To achieve the above objectives, this utility model adopts the following technical solution: a rotating atomizing disc and a sock antibacterial finishing liquid spraying machine, comprising:
[0008] The turntable body and the top cover are detachably connected to the turntable body and together form a closed cylinder. The turntable body and the top cover are connected through a conveying pipe. The turntable body and the top cover are rotatably connected to the conveying pipe. A toothed ring is fixedly installed on the top of the top cover, and the toothed ring is engaged with a gear.
[0009] A diversion structure is set inside the cavity of the turntable body to guide the liquid. The diversion structure includes a first baffle and a guide plate. Several first baffles are fixedly installed inside the turntable body. Two adjacent first baffles form a discharge channel. Several guide plates are fixedly installed on both sides of the first baffles. The discharge channel forms a funnel-shaped acceleration channel through the guide plates. Several injection holes facing the discharge channel are opened on the outer wall of the turntable body.
[0010] In a preferred embodiment of this utility model, the turntable body is a cylindrical structure, the top cover is adapted to the turntable body, and the top cover is locked and sealed to the turntable body by screws.
[0011] In a preferred embodiment of this utility model, both the turntable body and the top cover are fixedly installed with bushings, the conveying pipe is adapted to the bushings, a sealing ring is provided inside the bushings, the conveying pipe is rotatably disposed inside the bushings, and the portion of the conveying pipe located inside the cavity of the turntable body has a discharge port for draining liquid.
[0012] In a preferred embodiment of the present invention, a first partition is fixedly installed on the bottom surface of the turntable body, forming a rectangular plate with the same height as the turntable body cavity. One end of the first partition is fixedly connected to the inner circumferential surface of the turntable body, and the other end of the first partition extends to one side of the conveying pipe. A gap is left between the ends of two adjacent first partitions.
[0013] In a preferred embodiment of this utility model, the guide plate is a rectangular plate, which is fixedly installed on the side wall of the first partition. The widths of multiple guide plates on the same side of the first partition decrease uniformly, and the guide plates of two connected first partitions are arranged in a figure-eight pattern close to each other.
[0014] A sock antibacterial finishing liquid spraying machine includes a processing box, a storage box fixedly installed on the top of the processing box, a spray pump installed inside the storage box, all the aforementioned rotating atomizing discs installed inside the cavity of the processing box, a delivery pipe fixedly installed to the processing box and connected to the liquid outlet of the spray pump, a gear rotatably connected to the top surface inside the processing box, and a motor-driven gear fixedly installed outside the processing box.
[0015] In a preferred embodiment of this utility model, the processing box forms a rectangular box body, a hanging bracket is fixedly installed inside the processing box, the output shaft of the motor extends through the top surface of the processing box into the interior of the processing box, and the conveying pipe extends through the top surface of the processing box and is connected to the spray pump through a hose.
[0016] Beneficial effects
[0017] This utility model provides a rotating atomizing disc and a sock antibacterial finishing liquid spraying machine. It has the following beneficial effects:
[0018] 1. This rotary atomizing disc and its antibacterial finishing liquid spraying machine for socks, by dividing the circular chamber of the disc body into multiple discharge channels by multiple first partitions, and by multiple guide plates in the discharge channels forming an acceleration channel with a gradually narrowing opening. When the atomized gas discharged from the discharge port of the conveying pipe enters the first partition, the atomized gas first enters the discharge channel and then is guided and accelerated by the acceleration channel formed by the multiple guide plates, and then discharged from the spray hole on the side wall of the disc body. This allows the atomized gas to be accelerated and guided when discharged from the inside of the first partition, avoiding the formation of eddies inside the disc body. Combined with the rotating spraying method of the disc body, it can improve the uniformity of spraying, thereby ensuring uniform spraying treatment of socks.
[0019] 2. The rotating atomizing disc and its sock antibacterial finishing liquid spraying machine are achieved by a motor driving a gear to rotate in a circular motion. The gear pushes a gear ring to drive the turntable body and top cover to rotate around the conveying pipe. The bushing and the internal sealing ring can ensure the seal between the conveying pipe and the turntable body and the top cover. The rotation of the turntable body makes the atomized antibacterial liquid sprayed from the spray hole evenly distributed to achieve the spraying operation of socks. Attached Figure Description
[0020] Figure 1 This is a perspective view of the turntable body of this utility model;
[0021] Figure 2 This is a schematic diagram of the internal structure of the turntable body of this utility model;
[0022] Figure 3 This is a perspective view of the first partition and guide plate of this utility model;
[0023] Figure 4 This is a schematic diagram of the turntable installed in the processing box of this utility model;
[0024] Figure 5 This is a three-dimensional view of the entire utility model.
[0025] Legend: 10. Turntable body; 11. Top cover; 12. Conveying pipe; 13. Gear ring; 14. Gear; 15. Discharge port; 20. First partition plate; 21. Guide plate; 30. Processing box. Detailed Implementation
[0026] A rotating atomizing disc and its antibacterial finishing liquid spraying machine for socks, such as Figure 1 As shown, it includes:
[0027] The turntable body 10 and the top cover 11 are detachably connected to the turntable body 10 and form a closed cylinder. The turntable body 10 and the top cover 11 are connected through a conveying pipe 12. The turntable body 10 and the top cover 11 are rotatably connected to the conveying pipe 12. A toothed ring 13 is fixedly installed on the top of the top cover 11. The toothed ring 13 is meshed with a gear 14. The turntable body 10 is a cylindrical structure. The top cover 11 is adapted to the turntable body 10. The top cover 11 is locked and sealed to the turntable body 10 by screws. The turntable body 10 and the top cover 11 are both fixedly installed with bushings. The conveying pipe 12 is adapted to the bushings. A sealing ring is provided inside the bushings. The conveying pipe 12 is rotatably installed inside the bushings. The part of the conveying pipe 12 located in the cavity of the turntable body 10 has a discharge port 15 for draining liquid.
[0028] The motor drives the gear 14 to rotate, and the gear 14 pushes the gear ring 13 to drive the turntable body 10 and the top cover 11 to rotate around the delivery pipe 12. The bushing and the internal sealing ring can ensure the seal between the delivery pipe 12 and the turntable body 10 and the top cover 11. The rotation of the turntable body 10 makes the atomized antibacterial liquid sprayed from the spray hole evenly distributed to achieve the spraying operation on the socks.
[0029] like Figure 2 and Figure 3 As shown, a flow-diverting structure is installed inside the cavity of the turntable body 10 to guide the liquid. The flow-diverting structure includes a first baffle 20 and a guide plate 21. Several first baffles 20 are fixedly installed inside the turntable body 10, and two adjacent first baffles 20 form a discharge channel. Several guide plates 21 are fixedly installed on both sides of the first baffles 20. The discharge channel forms a funnel-shaped acceleration channel through the guide plates 21. Several injection holes facing the discharge channel are opened on the outer wall of the turntable body 10. A second flow-diverting structure is fixedly installed on the inner bottom surface of the turntable body 10. A partition 20 is formed into a rectangular plate with the same height as the chamber of the turntable body 10. One end of the first partition 20 is fixedly connected to the inner circumferential surface of the turntable body 10, and the other end of the first partition 20 extends to one side of the conveying pipe 12. A gap is left between the ends of two adjacent first partitions 20. The guide plate 21 is a rectangular plate and is fixedly set on the side wall of the first partition 20. The width of multiple guide plates 21 on the same side of the first partition 20 decreases uniformly. The guide plates 21 of two connected first partitions 20 are arranged in a figure-eight pattern close to each other.
[0030] In this scheme, multiple first partitions 20 are used to divide the circular chamber of the turntable body 10 and form multiple discharge channels. Multiple guide plates 21 in the discharge channel form an acceleration channel with a gradually narrowing opening. When the atomized gas discharged from the discharge port 15 by the conveying pipe 12 enters the first partition 20, the atomized gas first enters the discharge channel and is then guided and accelerated by the acceleration channel formed by the multiple guide plates 21. Then it is discharged from the spray hole on the side wall of the turntable body 10. This allows the atomized gas to be accelerated and guided when discharged from the inside of the first partition 20, avoiding the formation of vortices inside the turntable body 10. Combined with the rotating spraying method of the turntable body 10, the uniformity of the spray can be improved, thereby ensuring uniform spraying treatment of socks.
[0031] like Figure 4 and Figure 5 As shown, a sock antibacterial finishing liquid spraying machine includes a processing box 30, a storage box fixedly installed on the top of the processing box 30, a spray pump installed inside the storage box, and all the aforementioned rotating atomizing discs installed inside the cavity of the processing box 30. A delivery pipe 12 is fixedly installed in the processing box 30 and connected to the liquid outlet of the spray pump. A gear 14 is rotatably connected to the inner top surface of the processing box 30. A motor-driven gear 14 is fixedly installed on the outside of the processing box 30. The processing box 30 forms a rectangular box. A hanging bracket is fixedly installed inside the processing box 30. The output shaft of the motor extends through the top surface of the processing box 30 into the interior of the processing box 30. The output shaft of the motor is fixedly connected to the gear 14. The delivery pipe 12 extends through the top surface of the processing box 30 and is connected to the spray pump through a hose.
[0032] In this solution, the antibacterial agent is mainly delivered into the delivery pipe 12 by the spray pump in the storage box, and then delivered to the center of the turntable body 10 through the delivery pipe 12. The socks are in pairs and are hung on the rack by the hanger. The rotating turntable body 10 sprays atomized antibacterial agent so that multiple pairs of socks on the rack are evenly sprayed, with good uniformity and high efficiency.
[0033] The working principle of this utility model is as follows: The motor drives the gear 14 to rotate in a circular motion. The gear 14 pushes the gear ring 13 to drive the turntable body 10 and the top cover 11 to rotate around the conveying pipe 12. The bushing and the internal sealing ring can ensure the seal between the conveying pipe 12 and the turntable body 10 and the top cover 11. The rotation of the turntable body 10 makes the atomized antibacterial liquid sprayed from the spray hole evenly distributed to achieve the spraying operation on the socks. Multiple first partitions 20 divide the circular chamber of the turntable body 10 and form multiple discharge channels. Multiple guide plates 21 in the discharge channel form an acceleration channel with a gradually narrowing opening. When the atomized gas discharged from the discharge port 15 of the conveying pipe 12 enters the first partition 20, the atomized gas first enters the discharge channel and then is guided and accelerated by the acceleration channel formed by multiple guide plates 21. Then it is discharged from the spray hole on the side wall of the turntable body 10. With the rotation of the turntable body 10 for spraying, the uniformity of spraying can be improved.
[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A rotating atomizing disc, characterized in that, include: The turntable body (10) and the top cover (11) are detachably connected to the turntable body (10) and together form a closed cylinder. The turntable body (10) and the top cover (11) are connected through a conveying pipe (12). The turntable body (10) and the top cover (11) are rotatably connected to the conveying pipe (12). A toothed ring (13) is fixedly installed on the top of the top cover (11), and the toothed ring (13) is meshed with a gear (14). A diversion structure is set inside the cavity of the turntable body (10) to guide the liquid. The diversion structure includes a first partition (20) and a guide plate (21). Several first partitions (20) are fixedly arranged inside the turntable body (10). Two adjacent first partitions (20) form a discharge channel. Several guide plates (21) are fixedly arranged on both sides of the first partition (20). The discharge channel forms a funnel-shaped acceleration channel through the guide plates (21). Several injection holes facing the discharge channel are opened on the outer wall of the turntable body (10).
2. The rotating atomizing disc according to claim 1, characterized in that: The turntable body (10) is a cylindrical structure, and the top cover (11) is adapted to the turntable body (10). The top cover (11) is locked and sealed to the turntable body (10) by screws.
3. The rotating atomizing disc according to claim 1, characterized in that: Both the turntable body (10) and the top cover (11) are fixedly installed with bushings. The conveying pipe (12) is adapted to the bushing. A sealing ring is provided inside the bushing. The conveying pipe (12) is rotatably installed inside the bushing. The part of the conveying pipe (12) located inside the cavity of the turntable body (10) is provided with a discharge port (15) for draining liquid.
4. The rotating atomizing disc according to claim 1, characterized in that: The bottom surface of the turntable body (10) is fixedly installed with a first partition (20) to form a rectangular plate with the same height as the chamber of the turntable body (10). One end of the first partition (20) is fixedly connected to the inner circumferential surface of the turntable body (10), and the other end of the first partition (20) extends to one side of the conveying pipe (12). A gap is left between the ends of two adjacent first partitions (20).
5. The rotating atomizing disc according to claim 1, characterized in that: The guide plate (21) is a rectangular plate. The guide plate (21) is fixedly installed on the side wall of the first partition (20). The width of multiple guide plates (21) on the same side of the first partition (20) decreases uniformly. The guide plates (21) of two connected first partitions (20) are arranged in a figure-eight pattern close to each other.
6. A sock antibacterial finishing liquid spraying machine, comprising a processing box (30), a storage box fixedly installed on the top of the processing box (30), and a spray pump provided inside the storage box, characterized in that: The processing box (30) is provided with a rotating atomizing disc as described in any one of claims 1-5. The delivery pipe (12) is fixedly installed with the processing box (30) and connected to the liquid outlet of the spray pump. The gear (14) is rotatably connected to the inner top surface of the processing box (30). The processing box (30) is fixedly provided with a motor drive gear (14).
7. The sock antibacterial finishing liquid spraying machine according to claim 6, characterized in that: The processing box (30) forms a rectangular box, and a hanging bracket is fixedly installed inside the processing box (30). The output shaft of the motor extends through the top surface of the processing box (30) and into the processing box (30). The conveying pipe (12) extends through the top surface of the processing box (30) and is connected to the spray pump through a hose.
Citation Information
Patent Citations
Atomizing disc special for rotary atomizer
CN103657905A