A cleaning device for processing a knitted cap

By designing the spot brush component and the wet cleaning component of the cleaning device for knitted hat processing, the problems of low efficiency in cleaning local dirt and large damp area of ​​knitted hats in the existing technology are solved, achieving efficient cleaning and rapid drying.

CN224299611UActive Publication Date: 2026-05-29ZHEJIANG SHUNPU ARTS & CRAFTS PROD CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG SHUNPU ARTS & CRAFTS PROD CO LTD
Filing Date
2025-07-17
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing cleaning devices are inefficient at cleaning localized dirty areas of knitted hats and can easily lead to excessively damp areas and prolonged drying time.

Method used

A cleaning device including a dot brush component and a wet cleaning component was designed. By sealing and clamping the dirty area of ​​the knitted hat, the high-frequency brushing of the brush head and the wetting of the cleaning liquid are combined to achieve efficient cleaning of the dirty area of ​​the knitted hat, and the drying is accelerated by the drying airflow pipe.

Benefits of technology

It achieves efficient cleaning of dirty areas on knitted hats, reduces the damp area, and shortens drying time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of knitted cap cleaning, specifically a cleaning device for knitted cap processing, including point brush subassembly, the cap surface energy supply subassembly of setting in point brush subassembly and the wet cleaning subassembly of installing on point brush subassembly, the point brush subassembly includes top cover, the top gasket of fixed mounting at top cover bottom end and the first slide and second slide of activity installation in top cover inside and stacking, the cap surface energy supply subassembly includes the stability pad of activity installation in top cover inside, through setting point brush subassembly and wet cleaning subassembly, utilize point brush subassembly and wet cleaning subassembly to extend into the area of hat dirt and carry out sealed clamping to the dirty part, after the cleaning fluid of wet cleaning subassembly injection combines the high frequency of brush head and brushes, can realize the efficient cleaning of knitted cap dirty area, and simultaneously, the efficient cleaning mode of small area will reduce the area of hat moisture, and accelerate the quick drying of the area after cleaning.
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Description

Technical Field

[0001] This utility model relates to the field of knitted hat cleaning technology, specifically a cleaning device for knitted hat processing. Background Technology

[0002] Knitted hats are made from wool or animal hair. Due to the knitting method, knitted hats will get dirty after they are made, so cleaning them is essential.

[0003] Currently, knitted hats need to be cleaned after they are made, but existing cleaning devices are unable to effectively clean the dirty areas of the knitted hats and cannot control the area of ​​moisture on the knitted hats. Once the area of ​​moisture on the knitted hat is too large, the drying time of the hat will also increase accordingly.

[0004] In view of this, a cleaning 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:

[0007] A cleaning device for knitted hat processing includes a dot brush assembly, a hat surface power supply assembly disposed within the dot brush assembly, and a wetting cleaning assembly mounted on the dot brush assembly. The dot brush assembly includes a top cover, a top sealing pad fixedly mounted at the bottom of the top cover, and a first and second sliding plates movably mounted inside the top cover and stacked thereon. The hat surface power supply assembly includes a stabilizing pad movably mounted inside the top cover and a brush head fixedly mounted at the bottom of the stabilizing pad. The wetting cleaning assembly includes a bottom cover disposed directly below the top cover, a separator pad fixedly mounted inside the bottom cover, a bottom sealing pad fixedly mounted at the top of the bottom cover, a third and fourth sliding plates movably mounted inside the bottom cover and stacked thereon, and a cover plate fixedly mounted at the bottom of the bottom cover. The top of the cover plate has two grooves, one groove containing a liquid injection pipe and the other groove containing a drying airflow pipe.

[0008] In a preferred embodiment, the present invention may be further configured as follows: the dot brush assembly further includes a crossbar movably installed inside the first and second slide plates, two traction members movably installed outside the crossbar, a shaft movably installed at the bottom of the two traction members, two clamping plates installed in the middle of the shaft, an anti-slip pad movably installed inside the two clamping plates, and a first spring disposed on the anti-slip pad and pressed against the inner wall of the two clamping plates.

[0009] The interior of both the third and fourth sliding plates is provided with transverse grooves, and the bottom of the fourth sliding plate is provided with evenly distributed insertion holes.

[0010] The anti-slip pad has plugs that fit the sockets fixedly installed at both ends of its top.

[0011] In a preferred embodiment, the present invention can be further configured such that the dot brush assembly further includes a main positioning bolt, which is movably installed inside the first and second slide plates, and the threaded section of the main positioning bolt extends through to the outside of the top cover.

[0012] In a preferred embodiment, the present invention may be further configured such that the wet cleaning assembly further includes a secondary positioning bolt, which is movably installed inside the third and fourth slide plates, and the threaded section of the secondary positioning bolt extends through to the outside of the bottom cover.

[0013] In a preferred embodiment, the present invention may be further configured such that: the wet cleaning assembly further includes two rivets installed in the third and fourth slide plates, two vertical rods fixedly installed in the third and fourth slide plates, and two second springs disposed outside the two vertical rods, and the top of the vertical rods is adapted to penetrate into the first and second slide plates.

[0014] In a preferred embodiment, the present invention may be further configured as follows: the power supply component for the cap surface may also include a motor installed in the first and second slide plates, a linkage shaft movably installed in the first and second slide plates, a slide column fixedly installed on the linkage shaft, a slide sleeve movably installed outside the slide column, a column inserted into the slide sleeve and movably installed in the slide column, a main pull plate movably installed on the column, and a secondary pull plate movably installed at the other end of the main pull plate.

[0015] The other end of the auxiliary pull plate is mounted on the stabilizing pad.

[0016] In a preferred embodiment, the present invention can be further configured such that the brush head is made of thickened sponge, and a mesh is fixedly installed on the outside of the sponge.

[0017] In a preferred embodiment, the present invention can be further configured such that both the top sealing gasket and the bottom sealing gasket are made of rubber material.

[0018] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:

[0019] 1. This utility model, by setting up a dot brush component and a wet cleaning component, uses the dot brush component and the wet cleaning component to extend into the dirty area of ​​the hat and seal and clamp the dirty part. After the cleaning liquid injected by the wet cleaning component is combined with the high-frequency brushing of the brush head, the dirty area of ​​the knitted hat can be cleaned efficiently. At the same time, the efficient cleaning method of small areas will reduce the area of ​​the hat that gets wet and accelerate the rapid drying of the cleaned area. Attached Figure Description

[0020] Figure 1 This is a schematic diagram illustrating the use of this utility model;

[0021] Figure 2 This is an exploded view of the dot brush assembly and the cap power supply assembly of this utility model;

[0022] Figure 3 This utility model Figure 2 Enlarged view of point A in the middle;

[0023] Figure 4 This is an exploded view of the wet cleaning component of this utility model.

[0024] Figure label:

[0025] 100. Dot brush assembly; 110. Top cover; 1101. Top sealing gasket; 120. First sliding plate; 1201. Second sliding plate; 1202. Crossbar; 130. Main positioning bolt; 140. Traction component; 1401. Shaft; 1402. Clamping plate; 1403. Anti-slip pad; 1404. First spring;

[0026] 200. Cap power supply assembly; 210. Motor; 220. Linkage shaft; 230. Sliding column; 240. Sliding sleeve; 250. Column; 260. Main pull plate; 2601. Secondary pull plate; 2602. Stabilizing pad; 270. Brush head;

[0027] 300. Wet cleaning assembly; 310. Base cover; 3101. Bottom sealing gasket; 3102. Separator gasket; 320. Cover plate; 3201. Liquid injection pipe; 3202. Drying airflow pipe; 330. Third slide plate; 3301. Fourth slide plate; 3302. Rivet; 340. Secondary positioning bolt; 350. Vertical rod; 3501. Second spring. Detailed Implementation

[0028] 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.

[0029] It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this invention.

[0030] The following describes, with reference to the accompanying drawings, some embodiments of a cleaning device for knitted hat processing provided by this utility model. Example

[0031] Combination Figures 1 to 4As shown, the present invention provides a cleaning device for processing knitted hats, including a brush assembly 100, a hat surface power supply assembly 200 disposed in the brush assembly 100, and a wet cleaning assembly 300 installed on the brush assembly 100. The brush assembly 100 and the wet cleaning assembly 300 are used to seal and clamp the outer and inner walls of the knitted hat, and the hat surface power supply assembly 200 is used to perform high-frequency brushing on the dirty areas of the outer wall of the knitted hat.

[0032] The dot brush assembly 100 includes a top cover 110, a top sealing pad 1101 fixedly installed at the bottom of the top cover 110, and a first slide plate 120 and a second slide plate 1201 movably installed inside the top cover 110 and stacked thereon.

[0033] The power supply assembly 200 includes a stabilizing pad 2602 movably installed inside the top cover 110, a brush head 270 fixedly installed at the bottom of the stabilizing pad 2602, a motor 210 installed in the first slide plate 120 and the second slide plate 1201, a linkage shaft 220 movably installed in the first slide plate 120 and the second slide plate 1201, a sliding column 230 fixedly installed on the linkage shaft 220, a sliding sleeve 240 movably installed outside the sliding column 230, a column 250 inserted into the sliding sleeve 240 and movably installed in the sliding column 230, a main pull plate 260 movably installed on the column 250, and a secondary pull plate 2601 movably installed at the other end of the main pull plate 260.

[0034] The other end of the auxiliary pull plate 2601 is installed on the stabilizing pad 2602;

[0035] The wet cleaning assembly 300 includes a bottom cover 310 disposed directly below the top cover 110, a partition pad 3102 fixedly installed inside the bottom cover 310, a bottom sealing pad 3101 fixedly installed at the top of the bottom cover 310, a third slide plate 330 and a fourth slide plate 3301 movably installed inside the bottom cover 310 and stacked, and a cover plate 320 fixedly installed at the bottom of the bottom cover 310.

[0036] The top of the cover plate 320 has two grooves, one of which is where the liquid injection pipe 3201 is installed, and the other groove is where the drying airflow pipe 3202 is installed.

[0037] The brush head 270 is made of thickened sponge, and a mesh is fixedly installed on the outside of the sponge;

[0038] Both the top gasket 1101 and the bottom gasket 3101 are made of rubber.

[0039] After the dot brush assembly 100 and the wet cleaning assembly 300 are extended to their maximum extent, insert the knitted cap through the gap between the dot brush assembly 100 and the wet cleaning assembly 300 until the top cover 110 and the bottom cover 310 are fitted to the selected dirty area of ​​the knitted cap.

[0040] Next, the dot brush assembly 100 and the wet cleaning assembly 300 are retracted until the dirty area of ​​the knitted cap is sealed and clamped. The dirty area of ​​the knitted cap will be located in a sealed environment. As the cleaning solution rises along one of the cavities in the bottom cover 310 and the separator 3102 and wets the dirty part of the knitted cap, the high-frequency brushing of the brush head 270 will effectively clean the tight and dirty area of ​​the knitted cap. When the other cavity of the bottom cover 310 and the separator 3102 is working to exhaust air, the dirt brushed off by the brush head 270 will be effectively emptied.

[0041] After the cleaning operation is completed, the cleaning solution is removed, and the continuous exhaust air from the drying airflow pipe 3202 will quickly dry the damp areas of the knitted cap. Example

[0042] Combination Figure 2 As shown, based on Embodiment 1, the dot brush assembly 100 further includes a main positioning bolt 130, a crossbar 1202 movably installed in the first slide plate 120 and the second slide plate 1201, two traction members 140 movably installed outside the crossbar 1202, a shaft 1401 movably installed at the bottom of the two traction members 140, two clamping plates 1402 installed in the middle of the shaft 1401, an anti-slip pad 1403 movably installed in the two clamping plates 1402, and a first spring 1404 disposed on the anti-slip pad 1403 and pressed against the inner wall of the two clamping plates 1402;

[0043] The interior of both the third slide plate 330 and the fourth slide plate 3301 is provided with transverse grooves, and the bottom of the fourth slide plate 3301 is provided with evenly distributed insertion holes.

[0044] The top two ends of the anti-slip pad 1403 are fixedly installed with plugs that are adapted to the sockets;

[0045] The main positioning bolt 130 is movably installed inside the first slide plate 120 and the second slide plate 1201, while the threaded section of the main positioning bolt 130 is adapted to extend to the outside of the top cover 110.

[0046] Preferably, both the top cover 110 and the bottom cover 310 are made of plastic, and the top cover 110 has a limiting groove inside the top cover, which is used to limit the reciprocating extension of the auxiliary pull plate 2601 and enhance the stability of the vibration of the stabilizing pad 2602 and the brush head 270.

[0047] Both the first slide plate 120 and the second slide plate 1201 have heat dissipation windows to enhance the safety of the motor 210 during operation. Example

[0048] Combination Figure 3 and Figure 4As shown, based on Embodiment 1, the wet cleaning assembly 300 further includes a secondary positioning bolt 340, two rivets 3302 installed in the third slide plate 330 and the fourth slide plate 3301, two vertical rods 350 fixedly installed in the third slide plate 330 and the fourth slide plate 3301, and two second springs 3501 disposed outside the two vertical rods 350, and the top of the vertical rods 350 is adapted to penetrate into the first slide plate 120 and the second slide plate 1201;

[0049] The secondary positioning bolt 340 is movably installed inside the third slide plate 330 and the fourth slide plate 3301, while the threaded section of the secondary positioning bolt 340 is adapted to extend to the outside of the bottom cover 310.

[0050] Preferably, the grooves inside the third slide plate 330 and the fourth slide plate 3301 provide an effective sliding path for the extension of the two traction members 140, and cooperate with the two vertical rods 350 and the two second springs 3501 to adapt and bear pressure on the second slide plate 1201. Ultimately, this allows the spot brush assembly 100 to close and open stably due to the wetting of the cleaning assembly 300, while also enhancing the safety of the top cover 110 and the bottom cover 310 in cleaning the dirty areas of the knitted hat.

[0051] The working principle and usage process of this utility model are as follows: First, stretch the anti-slip mat 1403 outward until it detaches from the bottom of the fourth slide plate 3301. Then, push the anti-slip mat 1403 inward until the gap between the brush assembly 100 and the wet cleaning assembly 300 is widened to the maximum. Then, insert the top cover 110 and the separator pad 3102 along the outer and inner sides of the knitted hat until the top cover 110 and the separator pad 3102 move to the dirty part of the knitted hat. Then, control the anti-slip mat 1403 to stretch outward.

[0052] As the traction component 140 continues to extend outward, the dot brush assembly 100 and the wet cleaning assembly 300 will quickly clamp the knitted cap, while the top cover 110 and the bottom cover 310 will seal and hold the dirty parts of the knitted cap.

[0053] At this time, the bottom cover 310 needs to be located directly below the top cover 110. Then, the cleaning solution is injected into the cavity separated by the bottom cover 310 and the partition pad 3102 using the injection pipe 3201. As the cleaning solution continues to rise, it will eventually soak the dirty parts of the knitted hat until the dirty parts of the knitted hat are completely damp. The running motor 210, in conjunction with the linkage shaft 220, drives the slide column 230 to rotate. At this time, the sliding sleeve 240 and the column 250 will drive the main pull plate 260 and the auxiliary pull plate 2601 to reciprocate. The high-frequency extended stabilizing pad 2602 and the brush head 270 will pressurize and brush the dirty parts of the knitted hat after it has become damp. The drying airflow pipe 3202 will exhaust air out of the other cavity separated by the bottom cover 310 and the partition pad 3102. The continuous air exhaust operation, combined with the outflow of the cleaning solution, can accelerate the efficient cleaning of the dirty parts of the knitted hat.

[0054] After the injection tube 3201 draws out the cleaning solution, the drying airflow tube 3202, which continuously expels air, can quickly dry the cleaned parts of the knitted hat.

[0055] 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 cleaning device for knitted hat processing, comprising a dot brush assembly (100), characterized in that, It also includes a cap power supply component (200) disposed within the dot brush assembly (100) and a wet cleaning component (300) mounted on the dot brush assembly (100). The dot brush assembly (100) includes a top cover (110), a top sealing pad (1101) fixedly installed at the bottom of the top cover (110), and a first sliding plate (120) and a second sliding plate (1201) movably installed inside the top cover (110) and stacked. The cap power supply assembly (200) includes a stabilizing pad (2602) movably installed inside the top cover (110) and a brush head (270) fixedly installed at the bottom of the stabilizing pad (2602). The wet cleaning assembly (300) includes a bottom cover (310) disposed directly below the top cover (110), a partition pad (3102) fixedly installed inside the bottom cover (310), a bottom sealing pad (3101) fixedly installed at the top of the bottom cover (310), a third sliding plate (330) and a fourth sliding plate (3301) movably installed inside the bottom cover (310) and stacked, and a cover plate (320) fixedly installed at the bottom of the bottom cover (310). The top of the cover plate (320) has two grooves, one of which is equipped with a liquid injection pipe (3201), and the other is equipped with a drying airflow pipe (3202).

2. The cleaning device for knitted hat processing according to claim 1, characterized in that, The dot brush assembly (100) further includes a crossbar (1202) movably installed in the first slide plate (120) and the second slide plate (1201), two traction members (140) movably installed outside the crossbar (1202), a shaft (1401) movably installed at the bottom of the two traction members (140), two clamping plates (1402) installed in the middle of the shaft (1401), an anti-slip pad (1403) movably installed in the two clamping plates (1402), and a first spring (1404) disposed on the anti-slip pad (1403) and pressed against the inner wall of the two clamping plates (1402). The interior of both the third slide plate (330) and the fourth slide plate (3301) is provided with transverse grooves, and the bottom of the fourth slide plate (3301) is provided with evenly distributed insertion holes. The anti-slip pad (1403) has plugs that are adapted to the sockets fixedly installed at both ends of its top.

3. The cleaning device for knitted hat processing according to claim 1, characterized in that, The dot brush assembly (100) also includes a main positioning bolt (130), which is movably installed inside the first slide plate (120) and the second slide plate (1201), and the threaded section of the main positioning bolt (130) extends through to the outside of the top cover (110).

4. The cleaning device for knitted hat processing according to claim 1, characterized in that, The wet cleaning assembly (300) also includes a secondary positioning bolt (340), which is movably mounted inside the third slide plate (330) and the fourth slide plate (3301), and the threaded section of the secondary positioning bolt (340) is adapted to extend to the outside of the bottom cover (310).

5. A cleaning device for knitted hat processing according to claim 1, characterized in that, The wet cleaning assembly (300) also includes two rivets (3302) installed in the third slide plate (330) and the fourth slide plate (3301), two vertical rods (350) fixedly installed in the third slide plate (330) and the fourth slide plate (3301), and two second springs (3501) disposed outside the two vertical rods (350), and the top of the vertical rods (350) is adapted to penetrate into the first slide plate (120) and the second slide plate (1201).

6. The cleaning device for knitted hat processing according to claim 1, characterized in that, The cap power supply assembly (200) also includes a motor (210) installed in the first slide plate (120) and the second slide plate (1201), a linkage shaft (220) movably installed in the first slide plate (120) and the second slide plate (1201), a slide column (230) fixedly installed on the linkage shaft (220), a slide sleeve (240) movably installed outside the slide column (230), a column (250) inserted into the slide sleeve (240) and movably installed in the slide column (230), a main pull plate (260) movably installed on the column (250), and a secondary pull plate (2601) movably installed at the other end of the main pull plate (260). The other end of the auxiliary pull plate (2601) is mounted on the stabilizing pad (2602).

7. A cleaning device for knitted hat processing according to claim 1, characterized in that, The brush head (270) is made of thickened sponge, and a mesh is fixedly installed on the outside of the sponge.

8. A cleaning device for knitted hat processing according to claim 1, characterized in that, Both the top sealing gasket (1101) and the bottom sealing gasket (3101) are made of rubber material.