A disinfection device for processing a knitted cap
By using a disinfection device for knitted hat processing with enlarged holes in the hat body and an atomizing disinfection mechanism, the problem of contamination during the transfer and transportation of knitted hats has been solved, achieving a comprehensive disinfection effect.
Patent Information
- Application Number
- CN202521601825.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-30
AI Technical Summary
Knitted hats are easily contaminated with dirt and bacteria during transmission and transfer, and are difficult to disinfect effectively due to the closed holes in the knitting.
A disinfection device for knitted hat processing was designed, comprising a hat body hole expansion mechanism and an atomizing disinfection mechanism. It disinfects the hat by expanding the holes and using atomized disinfectant for all-round immersion and vibration disinfection.
It achieves all-round disinfection of knitted hats, effectively removing dirt and bacteria, and improving the disinfection effect.
Smart Images

Figure CN224671841U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of knitted hat disinfection technology, specifically a disinfection device for knitted hat processing. Background Technology
[0002] Knitted hats are head accessories made of wool using a knitting process, commonly used in cold weather. Their main materials include wool, cotton, and blended wool, with a fine knit creating a windproof structure, and fleece lining further enhancing their warmth.
[0003] Because wool yarn needs to go through multiple processes of transfer or transportation during the knitting process, and the transfer or transportation equipment is exposed to the external environment for a long time, once there are flying dirt or humid air currents in the working environment, the wool yarn will be contaminated by dirt and bacteria after being transferred or transported. In addition, as the knitted hat is formed, the holes of the hat are closed due to shrinkage, making it difficult to achieve effective disinfection and cleaning.
[0004] In view of this, a disinfection device for knitted hat processing was designed to solve the above problems. Utility Model Content
[0005] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.
[0006] Therefore, the technical solution adopted by this utility model is as follows: A disinfection device for knitted hat processing includes a knitted hat, a hat body enlarging mechanism for expanding the knitted hat, and an atomizing disinfection mechanism installed within the hat body enlarging mechanism and transferring atomized disinfectant liquid. The atomizing disinfection mechanism includes a spray pipe, a flexible hose installed at the top of the spray pipe, a screw pipe installed at the bottom of the spray pipe, a nut movably installed on the threaded section of the screw pipe, a second bottom pad installed on the screw pipe, a return spring connected to the top of the second bottom pad, a top pad connected to the top of the return spring, multiple clamps fixedly installed at the bottom of the top pad, and a traction frame movably installed on the clamps. A first bottom pad is installed at the bottom of the screw pipe. The hat body enlarging mechanism includes six evenly distributed enlarging brackets and a slanted frame fixedly installed inside the enlarging brackets, with a transverse hole opened inside the slanted frame. The other end of the traction frame is movably installed in the transverse hole.
[0007] In a preferred embodiment, the present invention can be further configured such that the cap body enlarging mechanism also includes an outer pad foot and a first insert rod; The inclined frame has a slot inside, and the outer pads are adapted to be inserted into the slot; The first insertion rod is inserted into the slot, and the first insertion rod is movably mounted in the outer pad.
[0008] In a preferred embodiment, the present invention can be further configured such that: six evenly distributed inner pad feet are fixedly installed on the outside of the second base pad, a tension spring is fixedly installed on the inner pad feet, and a limiting clip is fixedly installed on the bottom of the second base pad, and the other end of the tension spring is fixedly installed on the outer pad feet.
[0009] In a preferred embodiment, the present invention may be further configured such that the atomizing disinfection mechanism includes three guide pads fixedly installed inside the spiral tube, a vertical rod movably installed inside the three guide pads, and an impeller fixedly installed at the top of the vertical rod.
[0010] In a preferred embodiment, the present invention may be further configured as follows: the atomizing disinfection mechanism further includes a slide rod fixedly installed at the bottom of the vertical rod, a slide sleeve movably installed outside the slide rod, a slider movably installed in the groove of the outer wall of the slide rod, a guide rod installed inside the slider and extending through to the outside of the spiral tube, an end plate movably installed at the outer end of the guide rod, a second insert rod inserted to the top of the end plate, and a striking pin installed outside the second insert rod. The firing pin is adapted to penetrate into the limiting clamp.
[0011] In a preferred embodiment, the present invention can be further configured such that: a groove is formed on the outer wall of the spiral tube, and a conduit is installed on the outside of the sliding sleeve, and the conduit is adapted to penetrate into the groove.
[0012] In a preferred embodiment, the present invention can be further configured such that the nozzle is composed of a vertical pipe and a cylindrical air chamber, and the impeller is located at the bottom of the inner cavity of the cylindrical air chamber.
[0013] In a preferred embodiment, the present invention can be further configured such that: a horizontal groove is provided at the bottom of the first base pad, and a groove is provided on the outer wall of the enlarged hole bracket, with the horizontal groove communicating with the groove.
[0014] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows: 1. This utility model uses a cap body enlarging mechanism to expand the seam holes of the cap to their maximum extent until the seam holes are fully exposed. As the atomized disinfectant diffuses into the inner cavity of the expanded cap through the atomized disinfection mechanism, the continuously diffused atomized disinfectant will completely immerse the seam holes. Under the high-frequency vibration of the atomized disinfection mechanism, the cap body enlarging mechanism will be accelerated by the vibration wave, thereby achieving vibration wave disinfection and decontamination. Attached Figure Description
[0015] Figure 1 This is a schematic diagram illustrating the use of this utility model; Figure 2 This is a schematic diagram of the cap body enlarging mechanism of this utility model; Figure 3 This utility model Figure 2Enlarged view of point A in the middle; Figure 4 This is a schematic diagram of the atomizing disinfection mechanism of this utility model; Figure 5 This is an explosion diagram of the atomizing disinfection mechanism of this utility model. Figure 6 This is an exploded view of the sliding sleeve of this utility model.
[0016] Figure label: 100. Knitted hat; 200. Cap body reaming mechanism; 210. Reaming bracket; 220. Inclined frame; 2201. Horizontal hole; 230. First insertion rod; 240. Outer pad; 300. Atomizing disinfection mechanism; 310. Spray nozzle; 3101. Hose; 320. Screw tube; 3201. First base pad; 3202. Slide groove; 330. Vertical rod; 3301. Guide pad; 3302. Impeller; 340. Nut; 3401. Top pad; 3402. Clamp; 3403. Traction frame; 350. Return spring; 360. Second base pad; 3601. Inner pad foot; 3602. Tension spring; 3603. Limiting clamp; 370. Sliding sleeve; 3701. Sliding rod; 3702. Sliding block; 3703. Guide rod; 3704. End plate; 3705. Second insertion rod; 3706. Strike pin. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.
[0018] It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of this invention.
[0019] The following describes, with reference to the accompanying drawings, some embodiments of a disinfection device for knitted hat processing provided by this utility model. Example
[0020] Combination Figures 1 to 6 As shown, the present invention provides a disinfection device for knitted hat processing, including a knitted hat 100, a hat body expansion mechanism 200 for enlarging the knitted hat 100, and an atomizing disinfection mechanism 300 installed in the hat body expansion mechanism 200 for transferring atomized disinfectant. The hat body expansion mechanism 200 is used to expand the knitted hat 100 to its maximum state to facilitate the all-round immersion of the atomized disinfectant. The atomizing disinfection mechanism 300 actively transfers the atomized disinfectant and vibrates the wetted knitted hat 100 to remove dirt and disinfect it.
[0021] The atomizing disinfection mechanism 300 includes a spray pipe 310, a hose 3101 installed at the top of the spray pipe 310, a screw pipe 320 installed at the bottom of the spray pipe 310, a nut 340 movably installed on the threaded section of the screw pipe 320, a second bottom pad 360 installed on the screw pipe 320, a return spring 350 connected to the top of the second bottom pad 360, a top pad 3401 connected to the top of the return spring 350, a plurality of clamps 3402 fixedly installed at the bottom of the top pad 3401, and a traction frame 3403 movably installed on the clamps 3402. A first bottom pad 3201 is installed at the bottom of the screw tube 320; The cap body enlarging mechanism 200 includes an outer pad foot 240, a first insert rod 230 and six evenly distributed enlarging brackets 210, a slanted frame 220 fixedly installed inside the enlarging bracket 210, and a horizontal hole 2201 is opened inside the slanted frame 220. The other end of the traction frame 3403 is movably installed in the transverse hole 2201; The inclined bracket 220 has a slot inside, and the outer pad 240 is adapted to be inserted into the slot; The first insertion rod 230 is inserted into the slot, and the first insertion rod 230 is movably installed in the outer pad 240; The second base pad 360 is fixedly mounted with six evenly distributed inner pad feet 3601, a tension spring 3602 fixedly mounted on the inner pad feet 3601, and a limiting clip 3603 fixedly mounted on the bottom of the second base pad 360. The other end of the tension spring 3602 is fixedly mounted on the outer pad foot 240.
[0022] When in use, the retracted cap body expansion mechanism 200 is fully inserted into the knitted cap 100 beforehand. Then, the adjusting nut 340 is rotated clockwise until the knitted cap 100 is fully expanded. At the same time, the knitted cap 100 is stretched to its longest state along the outside of the multiple expansion brackets 210. Next, the atomized disinfectant is fed into the nozzle 310 and the screw tube 320 through the hose 3101. As the atomized disinfectant is continuously output, the impeller 3302 and the vertical rod 330, which are assisted by the atomized disinfectant, will provide rotational kinetic energy for the slide rod 3701. After passing through the impeller 3302, the atomized disinfectant will diffuse into the inner cavity of the knitted cap 100 through the groove on the outside of the spiral tube 320. The continuously diffused atomized disinfectant will completely wet the enlarged thread holes of the knitted cap 100, and finally disinfect and sterilize the knitted cap 100. Example
[0023] Combination Figures 2 to 6As shown, based on Embodiment 1, the atomizing disinfection mechanism 300 further includes three guide pads 3301 fixedly installed inside the spiral tube 320, a vertical rod 330 movably installed inside the three guide pads 3301, an impeller 3302 fixedly installed at the top of the vertical rod 330, a slide rod 3701 fixedly installed at the bottom of the vertical rod 330, a sliding sleeve 370 movably installed outside the slide rod 3701, a slider 3702 movably installed in the groove on the outer wall of the slide rod 3701, a guide rod 3703 installed inside the slider 3702 and extending through to the outside of the spiral tube 320, an end plate 3704 movably installed at the outer end of the guide rod 3703, a second insertion rod 3705 inserted to the top of the end plate 3704, and a striking pin 3706 installed outside the second insertion rod 3705. The firing pin 3706 is adapted to penetrate into the limiting clamp 3603; The outer wall of the spiral tube 320 is provided with a sliding groove 3202, and a guide tube is installed on the outside of the sliding sleeve 370, and the guide tube is adapted to pass through the sliding groove 3202. The nozzle 310 consists of a vertical tube and a cylindrical air chamber, and the impeller 3302 is located at the bottom of the inner cavity of the cylindrical air chamber; The bottom of the first base pad 3201 is provided with a horizontal groove, and the outer wall of the enlarged hole bracket 210 is provided with a groove, and the horizontal groove is connected to the groove.
[0024] Preferably, the slide bar 3701 driven by the vertical rod 330 will rotate at high speed along the inside of the slide sleeve 370, and the slide sleeve 370 will reciprocate up and down along the slide groove 3202 in conjunction with the slider 3702 and the guide rod 3703. The high-frequency lifting guide rod 3703 will pull the end plate 3704, the second insert rod 3705 and the striker 3706 to perform high-frequency vibration extension. The striker 3706 under high-frequency vibration will extend and retract along the inside of the limiting clamp 3603. Finally, the striker 3706 will strike the second bottom pad 360, and the vibration wave generated by the atomizing disinfection mechanism 300 as a whole will radiate to the cap body expansion mechanism 200. At this time, the high-frequency vibration wave will vibrate the enlarged holes of the knitted cap 100, thereby improving the effective removal of dirt.
[0025] The working principle and usage process of this utility model are as follows: First, control the nut 340 to reverse. At this time, the nut 340 will rise along the threaded section of the screw tube 320, while the top pad 3401 is subjected to the elastic force of the return spring 350. The nut 340 and the multiple clamps 3402 installed at its bottom will pull the multiple traction frames 3403 to retract quickly, while the multiple evenly distributed hole-expanding brackets 210 and inclined brackets 220 will move closer to the screw tube 320. Next, the shrunken cap body expansion mechanism 200 is inserted into the knitted cap 100 to be processed. Then, the control nut 340 rotates forward, and the nut 340 pushes the top pad 3401 down along the screw tube 320. The multiple traction frames 3403, which are squeezed by the top pad 3401 and multiple clamps 3402, will push the evenly distributed multiple expansion brackets 210 and inclined frames 220 outward. Finally, the evenly distributed multiple expansion brackets 210 can expand the knitted cap 100 to the maximum, and the mesh of the knitted cap 100 will also be enlarged. Then, the atomized disinfectant is introduced into the nozzle 310 through the hose 3101. The impeller 3302 and the vertical rod 330, which are assisted by the atomized disinfectant, will drive the slide rod 3701 to rotate. At this time, the slider 3702 and the guide rod 3703 will move up and down at high frequency along the groove on the outer wall of the slide rod 3701. Finally, the end plate 3704 and the impact pin 3706, which are mounted on the guide rod 3703, will impact the second bottom pad 360. The atomized disinfection mechanism 300, which is impacted, will radiate the vibration wave to multiple expansion brackets 210. As the atomized disinfectant diffuses into the knitted cap 100, the atomized disinfectant will be released outward through the enlarged mesh of the knitted cap 100. The high-frequency vibration of the knitted cap 100, combined with the atomized disinfectant, can achieve effective and comprehensive disinfection.
[0026] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A disinfection device for processing knitted hats, comprising a knitted hat (100), characterized in that, It also includes a cap body enlargement mechanism (200) for enlarging the knitted cap (100) and an atomizing disinfection mechanism (300) installed in the cap body enlargement mechanism (200) and transferring atomized disinfectant. The atomizing disinfection mechanism (300) includes a spray pipe (310), a hose (3101) installed at the top of the spray pipe (310), a screw pipe (320) installed at the bottom of the spray pipe (310), a nut (340) movably installed on the threaded section of the screw pipe (320), a second bottom pad (360) installed on the screw pipe (320), a return spring (350) connected to the top of the second bottom pad (360), a top pad (3401) connected to the top of the return spring (350), a plurality of clamps (3402) fixedly installed at the bottom of the top pad (3401), and a traction frame (3403) movably installed on the clamps (3402). The bottom of the solenoid (320) is fitted with a first bottom pad (3201); The cap body enlarging mechanism (200) includes six evenly distributed enlarging brackets (210) and a slanted frame (220) fixedly installed inside the enlarging brackets (210), and a horizontal hole (2201) is opened inside the slanted frame (220). The other end of the traction frame (3403) is movably installed in the transverse hole (2201).
2. The disinfection device for knitted hat processing according to claim 1, characterized in that, The cap body enlarging mechanism (200) also includes an outer pad (240) and a first insert (230); The inclined frame (220) has a slot inside, and the outer pad (240) is adapted to be inserted into the slot; The first insertion rod (230) is inserted into the slot, and the first insertion rod (230) is movably installed in the outer pad (240).
3. The disinfection device for knitted hat processing according to claim 1, characterized in that, The second base pad (360) is fixedly mounted with six evenly distributed inner pad feet (3601), a tension spring (3602) fixedly mounted on the inner pad feet (3601), and a limiting clip (3603) fixedly mounted on the bottom of the second base pad (360), and the other end of the tension spring (3602) is fixedly mounted on the outer pad foot (240).
4. The disinfection device for knitted hat processing according to claim 1, characterized in that, The atomizing disinfection mechanism (300) also includes three guide pads (3301) fixedly installed inside the spiral tube (320), a vertical rod (330) movably installed inside the three guide pads (3301), and an impeller (3302) fixedly installed at the top of the vertical rod (330).
5. The disinfection device for knitted hat processing according to claim 1, characterized in that, The atomizing disinfection mechanism (300) further includes a slide rod (3701) fixedly installed at the bottom of the vertical rod (330), a sliding sleeve (370) movably installed outside the slide rod (3701), a slider (3702) movably installed in the groove on the outer wall of the slide rod (3701), a guide rod (3703) installed inside the slider (3702) and extending through to the outside of the screw tube (320), an end plate (3704) movably installed at the outer end of the guide rod (3703), a second insert rod (3705) inserted into the top of the end plate (3704), and a striking pin (3706) installed outside the second insert rod (3705). The firing pin (3706) is adapted to penetrate into the limiting clamp (3603).
6. The disinfection device for knitted hat processing according to claim 5, characterized in that, The outer wall of the spiral tube (320) is provided with a sliding groove (3202), and a guide tube is installed on the outside of the sliding sleeve (370), and the guide tube is adapted to pass through the sliding groove (3202).
7. The disinfection device for knitted hat processing according to claim 1, characterized in that, The nozzle (310) consists of a vertical pipe and a cylindrical air chamber, and the impeller (3302) is located at the bottom of the inner cavity of the cylindrical air chamber.
8. The disinfection device for knitted hat processing according to claim 1, characterized in that, The bottom of the first base pad (3201) is provided with a horizontal groove, and the outer wall of the expanded hole bracket (210) is provided with a groove, and the horizontal groove is connected to the groove.