A wet wipe device
By using a design that combines first and second pressing components with a transmission component in the wet wipe machine, the problem of unstable storage and cutting of wet wipes is solved, achieving stable and effective cotton towel cutting and improving the practicality of the wet wipe machine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ORCA (YK) INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2024-08-12
- Publication Date
- 2026-05-15
AI Technical Summary
Traditional wet wipes are prone to evaporation and cannot be stored for long periods of time. Furthermore, existing wet wipe machines are prone to problems such as blade jamming or incomplete cuts when cutting the wipes.
The first and second clamping components clamp the cotton towel, and the second transmission component drives the second clamping component to move and pull the cotton towel to disconnect, replacing the transmission system and the towel cutting structure, thus achieving stable cutting.
It avoids problems such as blade jamming and incomplete cutting, ensuring more stable and effective cutting of cotton towels, conforming to the properties of cotton towels, and is highly practical.
Smart Images

Figure CN119055114B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of wet wipe dispensers, and more particularly to a wet wipe device. Background Technology
[0002] Wet wipes are a type of moistened cotton tissue used to wipe the skin. Traditional wet wipes are mostly pre-packaged in bags. The moisture in wet wipes evaporates easily, so bagged wet wipes need to be used as soon as possible after opening and are not easy to store for a long time, which brings inconvenience to people.
[0003] To address the aforementioned technical issues, wet wipe machines have emerged on the market. For example, an invention patent titled "A Wet Wipe Machine" (Publication No.: CN112690684A) includes a casing containing a roller for rotating a roll of cotton wipes, a transmission system for extracting the wipes, a cutting structure for cutting the wipes, and a humidifying system for moisturizing the wipes. It can store wet wipes in the form of a roll, which is beneficial for long-term preservation. When needed, the cut wipes are sprayed with water to moisten them, creating fresh wet wipes for immediate use, making it more intelligent. The roll is formed by connecting and winding several individual cotton wipes sequentially. The cutting structure uses a scissor-like blade structure to cut individual wipes. However, because cotton wipes have a certain degree of flexibility, they easily deform during the cutting process as the blade moves, leading to problems such as blade jamming or incomplete cutting. Summary of the Invention
[0004] This invention addresses the shortcomings of existing technologies by providing a wet wipe device, comprising a housing mechanism, a wipe cutting mechanism, a water dispensing mechanism, a paper rolling mechanism, and a paper dispensing mechanism. A roller is installed inside the housing mechanism, and a wipe roll is sleeved on the roller. The wipe roll includes a first wipe and a second wipe connected to each other, with the second wipe positioned at the paper dispensing end of the wipe roll. The wipe cutting mechanism is installed within the housing mechanism and includes a first clamping component for clamping the first wipe, a second clamping component for clamping the second wipe, a first transmission component for moving the first clamping component between an open state and a clamped state, and a... A second transmission component is provided to drive the second pressing component to move and pull the cotton towel to move or to pull the second cotton towel to disconnect it from the first cotton towel; the water outlet mechanism includes a water tank structure mounted on the housing mechanism and a drainage structure arranged between the water tank structure and the outlet direction of the cotton towel cutting mechanism, for humidifying the second cotton towel output by the cotton towel cutting mechanism; the paper roll mechanism includes a roll structure mounted in the housing mechanism, a roll paper arranged on the side of the roll structure, and a third transmission component for driving the roll structure to rotate to roll the second cotton towel arranged between the roll paper and the roll structure into a roll; the paper output mechanism is used to discharge the second cotton towel output by the paper roll mechanism to the outside.
[0005] The wet wipe device provided by this invention, by providing a first clamping component and a second clamping component, allows the interconnected first and second cotton wipes to be clamped within the first and second clamping components respectively. When the first clamping component is in the open state, it can drive the second clamping component to move through the second transmission component, thereby pulling the cotton wipes to move. When the first clamping component is in the clamped state, it can drive the second clamping component to move through the second transmission component, thereby pulling the second cotton wipes to disconnect from the first cotton wipes. Thus, the second clamping component replaces the transmission system and cloth cutting structure in the prior art, avoiding problems such as blade jamming or incomplete cutting. It can also cut the interconnected first and second cotton wipes by pulling them apart, which is more in line with the properties of the cotton wipe structure, and the cutting is more stable and effective, making it highly practical.
[0006] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0007] The accompanying drawings, which are included to provide a further understanding of the invention and form part of this application, illustrate exemplary embodiments of the invention and, together with their description, serve to explain the invention and do not constitute an undue limitation thereof. In the drawings:
[0008] Figure 1 This is a schematic diagram of the structure of a wet wipe device according to an embodiment of the present invention.
[0009] Figure 2 This is an exploded view of a wet wipe device according to an embodiment of the present invention. Figure 1 .
[0010] Figure 3-4 This is a partial exploded view of a wet wipe device according to an embodiment of the present invention.
[0011] Figure 5 This is a cross-sectional view of a wet wipe device according to an embodiment of the present invention.
[0012] Figure 6 This is a schematic diagram of the structure of a cotton towel cutting mechanism according to an embodiment of the present invention. Figure 1 .
[0013] Figure 7 This is an exploded structural diagram of a cotton towel cutting mechanism according to an embodiment of the present invention.
[0014] Figure 8 This is a schematic diagram of the structure of a cotton towel cutting mechanism according to an embodiment of the present invention. Figure 2 .
[0015] Figure 9 This is a cross-sectional view of a cotton towel cutting mechanism according to an embodiment of the present invention.
[0016] Figure 10 This is an exploded structural diagram of the water outlet mechanism according to an embodiment of the present invention.
[0017] Figure 11 This is a schematic diagram of a drainage structure according to an embodiment of the present invention.
[0018] Figure 12 This is a cross-sectional view of a drainage structure according to an embodiment of the present invention.
[0019] Figure 13 This is an exploded structural diagram of a water tank structure according to an embodiment of the present invention.
[0020] Figure 14 This is a cross-sectional view of a water tank structure according to an embodiment of the present invention.
[0021] Figure 15 This is an exploded view of a wet wipe device according to an embodiment of the present invention. Figure 2 .
[0022] Figure 16 This is a schematic diagram of the paper output mechanism according to an embodiment of the present invention.
[0023] Figure 17 This is a schematic diagram of the structure of a wet wipe device according to another embodiment of the present invention. Detailed Implementation
[0024] like Figure 1-16As shown, as an embodiment of the present invention, a wet wipe device is provided, including a housing mechanism 10, a cotton towel cutting mechanism 20, a water dispensing mechanism 30, a paper rolling mechanism 40, and a paper dispensing mechanism 50. A roller 14 is installed inside the housing mechanism 10, and a cotton towel roll is sleeved on the roller 14. The cotton towel roll is formed by winding cotton towels 13, which include several single cotton towels connected in sequence. The paper dispensing end of the cotton towel roll has a first cotton towel 131 and a second cotton towel 132 connected to each other, with the second cotton towel 132 arranged at the paper dispensing end of the cotton towel roll. The towel cutting mechanism 20 is installed inside the housing mechanism 10 and includes a first clamping assembly 21 for clamping a first towel 131, a second clamping assembly 22 for clamping a second towel 132, a first transmission assembly 23 for moving the first clamping assembly 21 between an open state and a clamped state, and a second transmission assembly 24 for moving the second clamping assembly 22 to pull the towel or to pull the second towel 132 away from the first towel 131. After disconnection, the original first towel 131 becomes the new second towel 132, and a single towel connected to the new second towel 132 becomes the new first towel 131, thus enabling the sequential cutting of single towels from the towel roll. The water outlet mechanism 30 includes a water tank structure 31 installed on the housing mechanism 10 and a drainage structure 32 arranged between the water tank structure 31 and the outlet direction of the towel cutting mechanism 20, for humidifying the second towel 132 output by the towel cutting mechanism 20. The paper winding mechanism 40 includes a roll structure 41 installed within the housing mechanism 10, a roll sheet 42 disposed on the side of the roll structure 41, and a third transmission assembly 43 for rotating the roll structure 41 to wind a second cotton towel 132 disposed between the roll sheet 42 and the roll structure 41 into a roll. The paper output mechanism 50 is used to discharge the second cotton towel 132 output from the paper winding mechanism 40 to the outside. In this embodiment, the presence of a first pressing component 21 and a second pressing component 22 allows the interconnected first cotton towel 131 and second cotton towel 132 to be clamped within the first pressing component 21 and the second pressing component 22, respectively. When the first pressing component 21 is in the open state, it can drive the second pressing component 22 to move via the second transmission component 24, thereby pulling the cotton towel to move. When the first pressing component 21 is in the clamped state, it can drive the second pressing component 22 to move via the second transmission component 24, thereby pulling the second cotton towel 132 to disconnect from the first cotton towel 131. Thus, the second pressing component 22 replaces the transmission system and cutting structure in the prior art, avoiding problems such as blade jamming or incomplete cutting. It can also cut the interconnected first cotton towel 131 and second cotton towel 132 by pulling, which is more in line with the properties of the cotton towel structure, and the cutting is more stable and effective, making it highly practical.
[0025] In some specific embodiments, the second pressing assembly 22 includes a third pressing member 221 and a fourth pressing member 222 arranged opposite to each other. A second conveying channel for the cotton towel to pass through is formed between the third pressing member 221 and the fourth pressing member 222, and the second cotton towel 132 can be clamped between the third pressing member 221 and the fourth pressing member 222. The second transmission assembly 24 is connected to the third pressing member 221 and can pull the cotton towel to move in the second conveying channel by driving the third pressing member 221 to rotate when the first pressing assembly 21 is in the open state. When the first pressing assembly 21 is in the clamping state, it can pull the second cotton towel 132 to disconnect from the first cotton towel 131 by driving the third pressing member 221 to rotate.
[0026] In some specific embodiments, the third clamping member 221 includes a roller 2211 and a compression ring 2212 sleeved on the roller 2211. The two ends of the roller 2211 are rotatably connected to the housing mechanism 10. The compression ring 2212 can be set as a silicone ring, rubber ring or other structure with a certain elastic deformation effect, with good anti-slip effect. The compression ring 2212 is tightly connected to the roller 2211 and can rotate with the rotation of the roller 2211 and rub against the guide plate 2222 or cotton towel 13. The fourth clamping member 222 includes a third mounting part 2221, a guide plate 2222 connected to the third mounting part 2221, and a reset member 223 for driving the guide plate 2222 closer to the third clamping member 221. The two ends of the third mounting part 2221 are rotatably connected to the housing mechanism 10 via the second connecting shaft 2223. The guide plate 2222 has a guide surface adapted to the roller 2211 on the side near the third clamping member 221, and a second conveying channel is formed between the guide surface and the extrusion ring 2212. The second transmission assembly 24 is drivenly connected to one end of the roller 2211. When the first clamping assembly 21 is in the open state, it can drive the roller 2211 and the extrusion ring 2212 to rotate and pull the cotton towel to move in the first and second conveying channels. When the first clamping assembly 21 is in the clamping state, it can drive the roller 2211 and the extrusion ring 2212 to rotate and pull the second cotton towel 132 to disconnect it from the first cotton towel 131.
[0027] In some specific embodiments, the reset member 223 includes torsion spring structures respectively arranged at both ends of the guide plate 2222. A first base 2225 is provided on the side wall of the guide plate 2222 away from the third clamping member 221. The torsion spring structure includes a torsion spring body 2231 and a first torsion arm 2232 and a second torsion arm 2233 respectively connected to both ends of the torsion spring body 2231. The first torsion arm 2232 is positioned and installed on the first base 2225, and the torsion spring body 2231 and the second torsion arm 2233 are positioned and installed on the external mounting structure. The torsion between the first torsion arm 2232 and the second torsion arm 2233 and the torsion spring body 2231 can drive the guide plate 2222 towards the third clamping member 221. The first torsion arm 2232 or the second torsion arm 2233 is provided with a bending structure to improve the stability of the installation. The torsion spring structure provides a strong reset force, which can provide a large squeezing force to the guide plate 2222 relative to the third clamping member 221, which is beneficial to pull the second cotton towel 132 to disconnect from the first cotton towel 131. In other embodiments, the reset member 223 can also be set as a spring, tension spring or other reset structure with reset capability that can drive the guide plate 2222 to approach the third clamping member 221.
[0028] In some specific embodiments, the fourth clamping member 222 further includes positioning components 224 arranged at both ends on the guide plate 2222 away from the third mounting portion 2221. The positioning components 224 include positioning blocks 2241 positioned on the external mounting structure and ball bearings 2242 movably disposed within the positioning blocks 2241. The positioning blocks 2241 have a recessed movement channel from the side near the guide plate 2222 toward the direction away from the guide plate 2222. The ball bearings 2242 are limited to... Located within the movable channel and partially protruding from the positioning block 2241, a compression spring is provided between the ball 2242 and the inner end of the movable channel. The compression spring provides an elastic force to keep the ball 2242 located at the outer end of the movable channel. The end side of the guide plate 2222 is recessed with an arc surface 2226 corresponding to the ball 2242. The side of the guide plate 2222 away from the third mounting part 2221 can be positioned within the ball 2242 by limiting and cooperating with the arc surfaces 2226 on both ends.
[0029] In some specific embodiments, the housing mechanism 10 includes an outer shell structure 11 and a mounting frame 12 disposed within the outer shell structure 11. The mounting frame 12 includes a first mounting plate 121 and a second mounting plate 122 arranged opposite to each other on both sides. A second base 1212 is disposed on the first mounting plate 121 between the first mounting plate 121 and the second mounting plate 122. A second motor 16 is installed in the second base 1212. The drum structure 41 includes a drum side plate 411 sleeved outside the second base 1212 and a drum end plate 412 connected to the drum side plate 411 near one end of the second mounting plate 122. The second transmission... Component 24 includes a first gear 241 arranged outside the second mounting plate 122 and connected to the third clamping member 221. The third transmission component 43 includes a second gear 431 arranged outside the second mounting plate 122 and connected to the drum end plate 412. The first gear 241 and the second gear 431 are connected by a fourth transmission component 242 arranged outside the second mounting plate 122. The second output shaft 161 of the second motor 16 is engaged with the second gear 431 and can drive the drum structure 41 and the third clamping member 221 to rotate by driving the second gear 431 and the first gear 241 to rotate.
[0030] In some specific embodiments, the fourth transmission assembly 242 includes a third gear 2421 meshing with the second gear 431, and a fourth gear 2422 arranged between the third gear 2421 and the first gear 241. The fourth gear 2422 includes a first gear portion 24221 and a second gear portion 24222 arranged coaxially. The first gear portion 24221 is configured as a circular gear portion and meshes with the third gear 2421. The second gear portion 24222 is configured as a sector gear portion and can mesh with the second gear 431, such that the rotation direction of the second gear 431 is opposite to the rotation direction of the first gear 241, and the number of teeth of the third gear 2421 is less than the number of teeth of the second gear 431, the number of teeth of the first gear portion 24221 is greater than the number of teeth of the second gear 431, and the number of teeth of the second gear portion 24222 is greater than the number of teeth of the first gear 241.
[0031] In some specific embodiments, the first pressing assembly 21 includes a first pressing member 211 and a second pressing member 212 arranged opposite to each other. The first transmission assembly 23 is connected to the first pressing member 211 or the second pressing member 212 in a transmission connection. It can drive the first pressing member 211 and the second pressing member 212 away from each other until the first pressing member 211 is in an open state, and drive the first pressing member 211 and the second pressing member 212 closer to each other until the first pressing assembly 21 is in a clamping state. In the open state, a first conveying channel for the cotton towel to pass through is formed between the first pressing member 211 and the second pressing member 212. In the clamping state, the first cotton towel 131 can be clamped between the first pressing member 211 and the second pressing member 212.
[0032] In some specific embodiments, the first clamping member 211 includes a first mounting portion 2111 and a first clamping portion 2112 connected to the first mounting portion 2111. Both ends of the first mounting portion 2111 are respectively positioned and mounted on the housing mechanism 10, and the first mounting portion 2111 is fixed relative to the external mounting structure. The second clamping member 212 includes a second mounting portion 2121 spaced apart from the first mounting portion 2111 and a second clamping portion connected to the second mounting portion 2121. Both ends of the second mounting portion 2121 are rotatably connected to the housing mechanism 10, and the second mounting portion 2122 is rotatable relative to the external mounting structure. The first transmission assembly 23 is connected to one end of the second mounting part 2121. It can drive the second pressing part away from the first pressing part 2112 to the open state by driving the second mounting part 2121 to rotate in the forward direction. It can drive the second pressing part to move closer to the first pressing part 2112 to the clamping state by driving the second mounting part 2121 to rotate in the reverse direction. In the clamping state, the first cotton towel 131 can be clamped between the first pressing part 2112 and the second pressing part. When the third pressing assembly 221 and the fourth pressing member 222 pull the second cotton towel 132, the first cotton towel 131 can be clamped between the first pressing part 2112 and the second pressing part 2122 and remain stationary, thereby pulling the second cotton towel 132 to disconnect it from the first cotton towel 131.
[0033] In some specific embodiments, the first pressing part 2112 is provided with a first pressing surface 2113 arranged along the length direction of the first mounting part 2111, and the second pressing part 2122 is provided with a second pressing surface 2123 arranged along the length direction of the second mounting part 2122. In the clamping state, the first cotton towel 131 can be clamped between the first pressing surface 2113 and the second pressing surface 2123, and respectively abut against the surfaces of the first pressing surface 2113 and the second pressing surface 2123, improving the stability of the clamping state. The first pressing surface 2113 is provided with an anti-slip structure arranged along its length direction, and the second pressing surface 2123 is provided with an anti-slip structure arranged along its length direction, further improving the stability of the clamping state. In this embodiment, the anti-slip structure is set as several stepped platforms, providing good anti-slip performance. In other embodiments, the anti-slip structure can also be set as raised dots, stripes, etc., all of which have a certain anti-slip effect.
[0034] In some specific embodiments, the first clamping member 211 further includes a first blocking portion disposed on the first clamping part 2112 near one end of the second clamping assembly 22. The first blocking portion includes a connecting part 2114 connected to the first clamping surface 2113 and a blocking part 2115 connected to the connecting part 2114 on the side away from the first clamping surface 2113. The blocking part 2115 protrudes from the surface of the connecting part 2114 and forms a blocking groove with the surface of the connecting part 2114 and the first clamping surface 2113. The second clamping part 2122 includes a connecting part 2124 connected to one side of the second mounting part 2121 and a blocking part 2125 connected to the connecting part 2124 on the side away from the second mounting part 2121. The blocking part 2125 protrudes from the side of the connecting part 2124 and forms a receiving groove with the connecting part 2124. The second clamping surface 2123 is disposed on the side of the blocking part 2125 away from the receiving groove. When clamped, the end of the second blocking part 2125 extends into the blocking groove, and the first cotton towel 131 can be arranged between the end of the second blocking part 2125 and the blocking groove, and abut against the first blocking part 2115. The first blocking part 2115 extends into the receiving groove, so that the first cotton towel 131 is arranged in a zigzag manner in the first pressing assembly 21, which makes it easier for the second pressing assembly 22 to pull the second cotton towel 132 away from the first cotton towel 131 with less effort.
[0035] In some specific embodiments, the first pressing member 211 further includes a second blocking part 2116 disposed on the first blocking part near one end of the second pressing assembly 22. The second blocking part 2116 is disposed on the side of the first blocking part 2115 near the second mounting part, and is used to abut against the cotton towel 13 to keep the cotton towel 13 hanging directly above the second conveying channel, so as to facilitate the second cotton towel 132 to enter the second conveying channel.
[0036] In some specific embodiments, a first motor 15 is mounted on the outer side of the first mounting plate 121. The two ends of the second mounting part 2121 have a first shaft 21211 and a second shaft 21212 that protrude axially from the two ends of the second pressing part 2122. The first transmission assembly 23 includes a transmission channel 21213 recessed from the end face of the first mounting shaft. The first output shaft 151 of the first motor 15 is fitted in the transmission channel 21213. The second shaft 21212 is provided with a rotating shaft 21214 protruding outward along its axial direction. The first mounting plate 121 is provided with a first mounting hole corresponding to the first output shaft 151. The second mounting plate 122 is provided with a second mounting hole corresponding to the rotating shaft. The second mounting part 2121 is rotatably connected by the first output shaft 151 fitting in the first mounting hole and the rotating shaft fitting in the second mounting hole. The second mounting part 2121 can rotate with the rotation of the first output shaft 151 under the drive of the first motor 15.
[0037] In some specific embodiments, the length direction of the drainage structure 32 is arranged along the width direction of the cotton towel inside the wet wipe machine. The drainage structure 32 has a drainage channel 321 along its length direction. The outer wall of the drainage structure 32 has an inlet channel 322 that connects to the drainage channel 321 and several outlet channels 323 that connect to the drainage channel 321. The inlet channel 322 is connected to the outlet of the water intake structure 32. The several outlet channels 323 are arranged at intervals along the length direction of the drainage channel 321 to discharge water and other liquids in the drainage channel 321. This allows for extensive spraying along the width direction of the cotton towel through the several outlet channels 323, expanding the coverage area of the cotton towel spraying and facilitating comprehensive spraying and uniform humidification of the second cotton towel 132.
[0038] In some specific embodiments, the drainage structure 32 includes a baffle 324 arranged along its length and a drainage plate 325 protruding from one side of the baffle 324. A drainage channel 324 is disposed within the drainage plate 325, and a water outlet channel 323 is disposed at the lower part of the drainage plate 325. A first connecting post 3251 for connecting the water intake structure 33 protrudes from the upper part of the drainage plate 325. A water inlet channel 322 is disposed within the first connecting post 3251 and the upper part of the drainage plate 325. The first connecting post 3251 facilitates connection to the water intake structure 33. The drainage channel 324 penetrates the drainage plate 325, and both ends of the drainage channel 324 are respectively connected to the drainage plate 325 via sealing plugs 326 to prevent leakage and facilitate the manufacturing and processing of the drainage channel 324.
[0039] In some specific embodiments, the water intake structure 33 includes a water pump 331, a first water guide 332 connected between the inlet of the water pump 331 and the outlet of the water tank structure 31, and a water guide assembly 333 connected between the outlet of the water pump 331 and the first connecting post 3251. The water pump 331 is used to draw water or other liquids from the water tank structure 31 via the first water guide 332. The water guide assembly 333 includes a heating element 3331 arranged on the side of the water pump 331, a second water guide 3332 connected between the inlet of the heating element 3331 and the outlet of the water pump 331, and a third water guide 3333 connected between the outlet of the heating element 3331 and the first connecting post 3251. The first water guide 332, the second water guide 3332, and the third water guide 3333 are configured as a water pipe structure, capable of supplying water or other liquids to flow within it. The heating element 3331 is provided with a heating element for heating the liquid inside the heating element 3331, so that the liquid sprayed out by the drainage structure 32 has a certain temperature, making the water outlet mechanism 30 suitable for some situations where hot wet wipes are needed. In other embodiments, the heating element 3331 may also be provided with a cooling element for cooling the liquid inside the heating element 3331, making the water outlet mechanism 30 suitable for some situations where ice wet wipes are needed. Alternatively, the water guiding component 333 may be entirely set as a water pipe structure, so that the water outlet mechanism 30 is only suitable for situations where room temperature wet wipes are needed.
[0040] In some specific embodiments, the baffle 324 includes a first baffle portion 3241 arranged on the upper side of the drain plate 325. At both ends of the first baffle portion 3241 along its length are mounting portions 3242 connecting the first baffle portion 3241 and the drain plate 325. The mounting portions 3242 are used to connect with the housing mechanism of the wet wipe machine, thereby positioning the drainage structure 32 on the first mounting plate 121 and the second mounting plate 122. The first baffle portion 3241, the drain plate 325, and each mounting portion 3242 surround each other to form an installation area. The water pump component 331 is supported on the upper side of the drain plate 325 and positioned within the installation area. The structure is compact, reducing space occupation.
[0041] In some specific embodiments, the baffle 324 further includes a second baffle portion 3243 arranged below the drain plate 325. The second baffle portion 3243 can abut against the cotton towel to keep the cotton towel and the water outlet channel 323 spaced apart, preventing the cotton towel from sticking to the water outlet channel 323 due to the adsorption of water or other liquids. A third baffle portion 3244 extends from the side of the second baffle portion 3243 away from the drain plate 325 in a direction away from the drain plate 325. The bottom surface of the second baffle portion 3243 and the bottom surface of the third baffle portion 3244 are connected to form an arc surface 3245 for guiding the cotton towel to move towards the water outlet channel 323. The arc surface 3245 can be arranged to correspond to the output port of the cotton towel cutting mechanism of the wet wipe machine, so that after the second cotton towel 132 is output from the cotton towel cutting mechanism 20, it is guided into the spray humidification area below the water outlet channel 323.
[0042] In some specific embodiments, the towel cutting mechanism 20, the drainage structure 32, and the paper rolling mechanism 40 are installed between the first mounting plate 121 and the second mounting plate 122. The roll structure 41 is arranged below the towel cutting mechanism 20, and a paper rolling channel is formed between the roll structure 41 and the roll paperboard 42. A pressing shaft 17 is provided near the entrance end of the paper rolling channel. The two ends of the pressing shaft 17 are rotatably connected to the first mounting plate 121 and the second mounting plate 122, respectively. A third conveying channel for the towel to pass through is formed between the pressing shaft 17 and the roll structure 41. The drainage structure 32 is arranged on the side of the pressing shaft 17 near the outlet direction of the towel cutting mechanism 20. The second towel 132 output by the towel cutting mechanism 20 can move towards the third conveying channel and the paper rolling channel as the roll structure 41 rotates. The pressing shaft 17 can press the second towel 132 sprayed with water or other liquids, so that the water or other liquids are evenly diffused and distributed within the second towel 132. The rolling shaft 17 is fitted with several rolling rings. The rolling rings can be made of silicone rings, rubber rings, or other structures with a certain elastic deformation effect, which have good anti-slip effect. The rolling rings are tightly connected to the rolling shaft 17 and can rotate with the rotation of the rolling shaft 17 to roll the second cotton towel 132.
[0043] In some specific embodiments, the water tank structure 31 includes a water tank body 311 positioned and connected to the upper side of the housing mechanism 10, and a cover assembly 312 disposed on the water tank body 311. A water storage cavity is formed inside the water tank body 311, and a water inlet 3111 communicating with the water storage cavity is provided through the outer wall of the water tank body 311. The cover assembly 312 includes a cover member 3121 covering the water inlet 3111, and a blocking member 3122 arranged around the cover member 3121. The gripping part 3123 of the cover member 3121 is arranged along its outer peripheral sidewall. The blocking member 3122 is movably connected to the water tank body 311 and can move between the blocking position that blocks the gripping part 3123 and the open position that is away from the gripping part 3123. The blocking member 3122 blocks the gripping part 3123, so the blocking member 3122 needs to be opened first and then the cover member 3121 can be opened, which can prevent the cover member 3121 from being opened accidentally.
[0044] In some specific embodiments, the cover member 3121 includes a cover plug portion interference-fitted into the water inlet 3111 and a cover limiting portion limited to the outer wall of the water tank body 311 surrounding the water inlet 3111. The grip portion 3123 is arranged along the outer peripheral sidewall of the cover limiting portion. The two ends of the blocking member 3122 are rotatably connected to the outer wall of the water tank body 3111 via connecting shafts 3124 arranged in the horizontal direction. The blocking member 3122 moves between a blocking position and an open position by rotating around the axis of the connecting shafts 3124. When the blocking member 3122 is in the blocking position, the outer surface of the blocking member 3122 is flush or substantially flush with the outer surface of the cover limiting portion, further preventing the cover member 3121 from being accidentally opened. The connecting shafts 3124 are formed by protruding outward from both ends of the blocking member 3122, resulting in a simple structure. The outer wall of the water tank body 311 is recessed with a recessed groove 3112. The cover assembly 312 is arranged in the recessed groove 3112. When the blocking member 3122 is in the blocking position, the outer surface of the blocking member 3122 is flush with or substantially flush with the outer surface of the water tank body 311, further preventing the cover assembly 3121 from being accidentally opened. The outer wall of the water tank body 311 is provided with a handle groove 3113 that communicates with the recessed groove 3112. The handle groove 3113 is arranged on the side of the blocking member 3122 and is used for the operator to insert their fingers into the interior to drive the blocking member 3122 to rotate outward. The blocking member 3122 is configured as a semi-circular ring structure surrounding the cover member 3121. The cover assembly 312 also includes a mounting member 3125, which is arranged opposite to the blocking member 3122 and is configured as a semi-circular ring structure surrounding the cover member 3121. The mounting member 3125 is inserted into and connected to the outer wall of the water tank body 311. The blocking member 3122 and the mounting member 3125 can be made of hard materials such as hard silicone or hard rubber, or they can be made of soft materials such as soft silicone or soft rubber. When they are made of soft materials, they also have the function of sealing and preventing dust around the cover member 3121.
[0045] In some specific embodiments, the water tank structure 31 further includes a water conveying assembly 313 disposed on the water tank body 311. A water conveying cylinder 3114 protrudes outward from the bottom wall of the water tank body 311, and a water conveying base 3115 disposed within the water conveying cylinder 3114. In other embodiments, the water conveying cylinder 3114 may also protrude outward from the side wall of the water tank body 311. The water conveying base 3115 and the water conveying cylinder 3114 are arranged at intervals to form a first water conveying channel, and a telescopic channel is provided through the water conveying base 3115. Water conveying assembly 313 includes a water conveying side plate 3131 sleeved around a water conveying cylinder 3114 and capable of telescopic movement relative to the water conveying cylinder 3114, a water conveying bottom plate 3132 connected to the end of the water conveying side plate 3131 away from the water storage chamber, and a telescopic column 3133 telescopically sleeved within a telescopic channel. The water conveying side plate 3131 and the water conveying bottom plate 3132 surround to form a water conveying chamber. The telescopic column 3133 is connected to the water conveying bottom plate 3132, and a sliding connection is made to the telescopic column 3133 to the water conveying cylinder 3114. The inner wall has a sliding limiting part 3134 and a cover plate part 3135 arranged in the water storage cavity and able to cover the outside of the first conveying channel. A second water conveying channel is provided through the sliding limiting part 3134 to connect the first water conveying channel and the water conveying cavity. The outer wall of the water conveying base plate 3132 is provided with a second connecting column 3136 for connecting the first water guide 332 of the water intake structure 33. The water outlet of the water tank structure 31 is arranged on the second connecting column 3136 and the water conveying base plate 3132 and communicates with the water conveying cavity. When spraying is required, the water pump 331 is activated to draw water in. Under the negative pressure in the water delivery chamber, the water delivery assembly 313 extends and retracts relative to the water delivery cylinder 3114, thereby driving the telescopic column and cover plate 3135 of the water delivery assembly 312 to move into the water storage chamber. The cover plate 3135 opens the first delivery channel, and the liquid in the water storage chamber enters the first water guide 332 through the first delivery channel, the second delivery channel, the water delivery chamber, and the outlet of the water tank structure 31. The liquid is then sprayed outward through the water pump 331, the second water guide 3332, the heating element 3331, the third water guide 3333, the inlet channel 323, the drain channel 321, and the outlet channel 323 to wet the cotton towel. The water delivery assembly 313 also includes a flexible sealing ring 3137 that is interference-fitted between the upper end of the water delivery side plate 3131 and the outer peripheral side wall of the water delivery cylinder 3114 to prevent leakage. A mounting plate 314 is connected to the lower side of the water tank body 311, which is used to position the water tank structure 31 on the housing mechanism of the wet wipe machine. The mounting plate 314 can be made of flexible material to give it a certain sealing effect and prevent the liquid in the water storage chamber from leaking into the cotton towel roll in the installation chamber.
[0046] In some specific embodiments, the paper output mechanism 50 is arranged below the paper roll mechanism 40 and is retractably connected to the housing mechanism 10 in the horizontal direction. The paper output mechanism 50 is used to receive the cotton towel roll output by the paper roll mechanism 40. The paper output mechanism 50 has a paper output state in which it retracts and extends relative to the housing mechanism 10 to protrude from the front of the housing mechanism 10, and a stored state in which it retracts and extends relative to the housing mechanism 10 to be stored under the paper roll mechanism 40. In use, the cotton towel roll can be retrieved by retracting and extending the paper output mechanism 50 in the horizontal direction towards the front of the housing mechanism 10, and the paper output mechanism 50 can be stored under the paper roll mechanism 40 by retracting and extending the paper output mechanism 50 in the horizontal direction towards the rear of the housing mechanism 10. Therefore, there is no need to set up a longitudinal extension and retraction space. It is suitable for both wall-mounted and tabletop housing mechanisms, and has a wide range of applications.
[0047] In some embodiments, a telescopic channel for mounting the paper output mechanism 50 is formed between the first mounting plate 121, the second mounting plate 122, and the outer shell structure 11. In other embodiments, the telescopic channel may also be formed on the outer shell structure 11 or between the first mounting plate 121 and the second mounting plate 122. The outer shell structure 11 includes two opposing outer shell structure side plates 111 and an outer shell structure bottom plate 112 connected between the lower parts of the two outer shell structure side plates 111. The bottom surfaces of the first and second mounting plates are spaced apart from the outer shell structure bottom plate 112, and the telescopic channel is formed between the bottom surfaces of the first and second mounting plates, the outer shell structure bottom plate 112, and the two outer shell structure side plates 111. When the paper output mechanism 50 moves telescopically relative to the telescopic channel, it is guided and limited by abutting against the inner wall of the outer shell structure bottom plate 112 and the bottom surfaces of the first and second mounting plates. The paper output mechanism 50 includes a paper output base shell 51 and a paper output side shell 52 extending upward around the periphery of the paper output base shell 51. The paper output base shell 51 and the paper output side shell 52 surround a paper output slot with an upper opening. When the paper output mechanism 50 is in the paper output state, the paper output slot protrudes from the front of the housing mechanism 50, allowing the user to retrieve the cotton towel roll inside the slot. When the paper output mechanism 50 is in the retracted state, the paper output slot is stored under the paper rolling mechanism 40, preventing the paper output slot from being contaminated by the outside environment and ensuring the hygiene of the cotton towel. When the paper output mechanism 50 moves telescopically relative to the telescopic channel, it is guided and limited by the paper output base shell 51 abutting against the inner wall of the outer shell structure base plate 112 and the paper output side shell 52 abutting against the bottom surfaces of the first and second mounting plates.
[0048] In some specific embodiments, the paper output side shell 52 includes a paper output side plate 521 disposed inside the two outer shell structure side plates 111, and a paper output front plate 522 disposed in front of the two paper output side plates 521. The paper output side plate 521 abuts against the bottom surfaces of the first and second mounting plates. A positioning groove 5211 is recessed inward on the outer wall of the paper output side plate 521 at a position away from the paper output front plate 522. A positioning block 1111 is protruding on the inner wall of the outer shell structure side plate 111 and is arranged corresponding to the positioning groove 5211. When the paper output mechanism 50 is in the retracted state, it is positioned by the positioning block 1111 engaging in the positioning groove 5211, so that the paper output mechanism 50 is kept in the retracted state. The paper output side plate 521 abuts against the bottom surface of the first and second mounting plates. The paper output front plate 522 has a positioning edge 5221 that protrudes from the lower side of the paper output bottom shell 51 or from the outer side of the paper output side plate 521. When the paper output mechanism 50 is in the retracted state, it is positioned by abutting against the front side of the outer shell structure bottom plate 112 or the front side of the outer shell structure side plate 111 through the positioning edge 5221, so as to avoid excessive extension and retraction of the paper output mechanism 50.
[0049] In some specific embodiments, the outer casing structure 11 further includes a door panel assembly 53 that covers the front side of the mounting chamber. The door panel assembly 53 includes an upper door panel 531 rotatably connected to the outer casing structure side panel 111 via a first pivot (not shown), and a lower door panel 532 rotatably connected to the paper output mechanism 50 via a second pivot 54. The second pivot 54 is arranged horizontally, allowing the lower door panel 532 to rotate relative to the paper output mechanism 50 about the axis of the second pivot 54. The first pivot is arranged longitudinally. The side of the upper door panel 531 away from the first pivot is detachably connected to another outer casing structure side panel 111 or mounting frame 12 via a magnetic attraction structure, a snap-fit structure, a door lock structure, or other connecting structure. The side of the lower door panel 532 away from the second pivot 54 is detachably connected to the outer casing structure side panel 111 or mounting frame 12 via a magnetic attraction structure, a snap-fit structure, or other connecting structure. The paper output front plate 522 has an operating section 5222 protruding forward, through which the operator can pull out the paper output mechanism 50. The operating section 5222 and the bottom of the paper output front plate 522 are spaced apart to form an operating space for the operator's fingers to insert. The second rotating shafts 54 are respectively provided to protrude outward from both ends of the operating section 5222, simplifying the structure. The bottom of the lower door plate 532 has a connecting ear 5321, and the connecting ear 5321 has a rotating groove 5322 corresponding to the second rotating shaft 54. The lower door plate 532 and the paper output mechanism 50 are rotatably connected by the corresponding second rotating shaft 54 within the rotating groove 5322. The paper rolling mechanism 40 includes a roll structure 41 disposed between a first mounting plate 121 and a second mounting plate 122, and a paper roll 42 arranged along the rear and bottom sides of the roll structure 41. A paper rolling channel for rolling a cotton towel is formed between the roll structure 41 and the paper roll 42. A baffle plate 44 is disposed between the first mounting plate 121 and the second mounting plate 122 near the paper outlet of the paper rolling channel. The baffle plate 44 is disposed on the front side of the roll structure 41. A guide channel for guiding the cotton towel roll into the paper output mechanism 50 is formed between the baffle plate 44 and the paper output of the paper rolling channel, so as to facilitate the cotton towel roll falling into the paper output slot.
[0050] In some specific embodiments, the outer shell structure 11 further includes an outer shell structure rear plate 113 arranged on the rear side of the mounting frame 12, a third mounting plate 123 extending from the rear side of the first mounting plate 121 toward the direction of the second mounting plate 122, and a fourth mounting plate 124 extending from the rear side of the second mounting plate 122 toward the direction of the first mounting plate 121. The third mounting plate 123 and the fourth mounting plate 124 are respectively positioned and installed on the front side of the outer shell structure rear plate 113.
[0051] like Figure 17As shown, as another embodiment of the present invention, a wet wipe device is also provided. The first pressing member 211 includes a first mounting shaft 2117 and a first squeezing part 2118 installed outside the first mounting shaft 2117. The second pressing member 212 includes a second mounting shaft arranged parallel to the first mounting shaft and a second squeezing part installed outside the second mounting shaft. The first squeezing part 2118 and the second squeezing part 2127 are respectively configured as silicone rings, rubber rings, or other structures with a certain elastic deformation function, and have good anti-slip effect. In this embodiment, multiple first squeezing parts 2118 are provided and are respectively fastened to the first mounting shaft 2117, and can rotate with the rotation of the first mounting shaft 2117 and rub against the second squeezing part 2127 or the cotton towel 13. Multiple second squeezing parts 2127 are provided and are respectively fastened to the second mounting shaft 2126, and can rotate with the rotation of the second mounting shaft 2126 and rub against the first squeezing part 2118 or the cotton towel 13. The two ends of the first mounting shaft 2117 are respectively positioned and mounted on the first mounting plate 121 and the second mounting plate 122. One end of the second mounting shaft is rotatably mounted on the first mounting plate 121 via a first connecting shaft (not shown in the figure) arranged longitudinally, and the other end is slidably connected to a sliding channel arranged transversely on the second mounting plate 122. The first transmission assembly 23 includes a fifth gear 233 arranged on the outside of the second mounting plate 122 and movably connected to the end of the second mounting shaft 2126 via a first rocker arm 231 and a second rocker arm 232 that are hinged to each other. The second transmission assembly 24 includes a first gear 241 arranged on the outside of the second mounting plate 122 and connected to the end of the third clamping member 221. The third transmission assembly 43 includes a second gear 431 arranged on the outside of the second mounting plate 122 and connected to the drum end plate 412. The outside of the second mounting plate 122 is also provided with a third gear 2 that meshes with the second gear 431 and a fourth gear that meshes with the third gear. The first gear 241 and the fifth gear can respectively mesh with the fourth gear. The second output shaft 161 of the second motor 16 is coupled to the second gear 431. It can drive the drum structure 41 and the third clamping member 221 to rotate by driving the second gear 431 and the first gear 241 to rotate. It can drive the first rocker arm 231 and the second rocker arm 232 to drive the second mounting shaft 2126 to slide along the sliding channel towards the first mounting shaft 2117 until the second extrusion part 2127 is close to the first extrusion part 2118 in a clamping state. In the clamping state, the first cotton towel 131 can be clamped between the first extrusion part 2118 and the second extrusion part 2127.
[0052] In summary, the above description is only a preferred embodiment of the present invention. All equivalent changes and modifications made within the scope of the claims of the present invention should be covered by the present invention.
Claims
1. A wet wipe device, characterized in that, include: The machine housing has a roller installed inside, and a cotton towel roll is sleeved on the roller. The cotton towel roll includes a first cotton towel and a second cotton towel connected to each other, with the second cotton towel arranged at the paper output end of the cotton towel roll. The cotton towel cutting mechanism is installed inside the housing mechanism and includes a first clamping component for clamping the first cotton towel, a second clamping component for clamping the second cotton towel, a first transmission component for driving the first clamping component to move between an open state and a clamping state, and a second transmission component for driving the second clamping component to move and pull the cotton towel to move or pull the second cotton towel to disconnect from the first cotton towel. The water outlet mechanism includes a water tank structure mounted on the housing mechanism and a drainage structure arranged between the water tank structure and the outlet direction of the cotton towel cutting mechanism for humidifying the second cotton towel output by the cotton towel cutting mechanism. The paper rolling mechanism includes a roll structure installed in the housing mechanism, a roll sheet arranged on the side of the roll structure, and a third transmission assembly for driving the roll structure to rotate to wind a second cotton towel arranged between the roll sheet and the roll structure into a roll. The paper output mechanism is used to discharge the second cotton towel output by the paper roll mechanism to the outside.
2. The wet wipe device according to claim 1, characterized in that: The second clamping assembly includes a third clamping member and a fourth clamping member arranged opposite to each other, forming a second conveying channel for the cotton towel to pass through, and the second cotton towel can be clamped between the third clamping member and the fourth clamping member. The second transmission assembly is drivenly connected to the third clamping member, and can pull the cotton towel to move in the second conveying channel by driving the third clamping member to rotate when the first clamping assembly is in the open state, and can pull the second cotton towel to disconnect relative to the first cotton towel by driving the third clamping member to rotate when the first clamping assembly is in the clamping state.
3. The wet wipe device according to claim 2, characterized in that: The third clamping component includes a roller and an extrusion ring sleeved outside the roller, with both ends of the roller rotatably connected to the housing mechanism. The fourth clamping component includes a third mounting part, a guide plate connected to the third mounting part, and a reset component for driving the guide plate closer to the third clamping component. The two ends of the third mounting part are rotatably connected to the housing mechanism through a second connecting shaft. The guide plate has a guide surface adapted to the roller on the side near the third clamping component. The guide surface and the extrusion ring form the second conveying channel. The second transmission component is connected to one end of the roller, and when the first pressing component is in the open state, it can pull the cotton towel to move in the first and second conveying channels by driving the roller and the squeezing ring to rotate. When the first pressing component is in the clamping state, it can pull the second cotton towel to disconnect from the first cotton towel by driving the roller and the squeezing ring to rotate.
4. The wet wipe device according to claim 2, characterized in that: The housing mechanism includes an outer shell structure and a mounting frame arranged within the outer shell structure. The mounting frame includes a first mounting plate and a second mounting plate arranged opposite each other on both sides. A second base is provided on the first mounting plate between the first mounting plate and the second mounting plate. A second motor is installed in the second base. The drum structure includes a drum side plate sleeved outside the second base and a drum end plate connected to the drum side plate near one end of the second mounting plate. The second transmission assembly includes a first gear arranged outside the second mounting plate and connected to a third clamping member. The third transmission assembly includes a second gear arranged outside the second mounting plate and connected to the drum end plate. The first gear and the second gear are connected by a fourth transmission assembly arranged outside the second mounting plate. The second output shaft of the second motor is engaged with the second gear and can drive the drum structure and the third clamping member to rotate by driving the second gear and the first gear to rotate.
5. The wet wipe device according to claim 4, characterized in that: The fourth transmission assembly includes a third gear meshing with the second gear and a fourth gear arranged between the third gear and the first gear. The fourth gear includes a first gear portion and a second gear portion arranged coaxially. The first gear portion is configured as a circular gear portion and meshes with the third gear, and the second gear portion is configured as a sector gear portion and can mesh with the second gear.
6. The wet wipe device according to any one of claims 1-5, characterized in that: The first pressing assembly includes a first pressing member and a second pressing member arranged opposite to each other. The first transmission assembly is transmittedly connected to the first pressing member or the second pressing member. It can drive the first pressing member and the second pressing member to move away from each other until the first pressing member is in an open state, and drive the first pressing member and the second pressing member to move closer to each other until the first pressing assembly is in a clamping state. In the open state, a first conveying channel for the cotton towel to pass through is formed between the first pressing member and the second pressing member. In the clamping state, the first cotton towel can be clamped between the first pressing member and the second pressing member.
7. The wet wipe device according to claim 6, characterized in that: The first clamping member includes a first mounting part and a first clamping part connected to the first mounting part, wherein the two ends of the first mounting part are respectively positioned and mounted on the housing mechanism; The second clamping member includes a second mounting portion spaced apart from the first mounting portion and a second clamping portion connected to the second mounting portion. Both ends of the second mounting portion are rotatably connected to the housing mechanism. The first transmission assembly is drivenly connected to one end of the second mounting portion. It can drive the second clamping portion away from the first clamping portion to an open state by driving the second mounting portion to rotate in the forward direction, and drive the second clamping portion closer to the first clamping portion to a clamping state by driving the second mounting portion to rotate in the reverse direction. In the clamping state, the first cotton towel can be clamped between the first clamping portion and the second clamping portion.
8. The wet wipe device according to claim 7, characterized in that: The housing mechanism includes an outer shell structure and a mounting frame arranged within the outer shell structure. The mounting frame includes a first mounting plate and a second mounting plate arranged opposite to each other on both sides. A first motor is mounted on the outer side of the first mounting plate. The two ends of the second mounting part have a first mounting shaft and a second mounting shaft that protrude axially from the two ends of the second pressing part, respectively. The first transmission assembly includes a transmission channel formed by recessing from the end face of the first mounting shaft. The first output shaft of the first motor is fitted into the transmission channel. A rotating shaft protrudes axially outward from the second mounting shaft. A first mounting hole corresponding to the first output shaft is provided on the first mounting plate. A second mounting hole corresponding to the rotating shaft is provided on the second mounting plate. The second mounting part is rotatably connected by the first output shaft fitting into the first mounting hole and the rotating shaft fitting into the second mounting hole, respectively. The second mounting part can rotate with the rotation of the first output shaft under the drive of the first motor.
9. The wet wipe device according to any one of claims 1-5, characterized in that: The housing mechanism includes an outer shell structure and a mounting frame arranged within the outer shell structure. The mounting frame includes a first mounting plate and a second mounting plate arranged opposite to each other on both sides. A second base is formed on the first mounting plate and arranged between the first mounting plate and the second mounting plate. A second motor is installed in the second base. The drum structure includes a drum side plate sleeved outside the second base and a drum end plate connected to the drum side plate near the end of the second mounting plate. The first clamping member includes a first mounting shaft and a first pressing part mounted outside the first mounting shaft. The two ends of the first mounting shaft are respectively positioned and mounted on a first mounting plate and a second mounting plate. The second clamping member includes a second mounting shaft arranged parallel to the first mounting shaft and a second pressing part installed outside the second mounting shaft. One end of the second mounting shaft is rotatably mounted on the first mounting plate via a first connecting shaft arranged longitudinally, and the other end is slidably connected to a sliding channel arranged transversely on the second mounting plate. The first transmission assembly includes a fifth gear arranged on the outside of the second mounting plate and movably connected to the end of the second mounting shaft via a first rocker arm and a second rocker arm that are hinged to each other. The second transmission assembly includes a first gear arranged on the outside of the second mounting plate and connected to the end of the third clamping member. The third transmission assembly includes a second gear arranged on the outside of the second mounting plate and connected to the drum end plate. The outside of the second mounting plate is also provided with a third gear that meshes with the second gear and a fourth gear that meshes with the third gear. The first gear and the fifth gear can respectively mesh with the fourth gear. The second output shaft of the second motor is coupled to the second gear, which can drive the drum structure and the third clamping member to rotate by driving the second gear and the first gear to rotate. It can drive the first rocker and the second rocker to drive the second mounting shaft to slide along the sliding channel towards the direction close to the first mounting shaft until the second extrusion part is close to the first extrusion part in the clamping state. In the clamping state, the first cotton towel can be clamped between the first extrusion part and the second extrusion part.
10. The wet wipe device according to any one of claims 1-5, characterized in that: The housing mechanism includes an outer shell structure and a mounting frame arranged within the outer shell structure. The mounting frame includes a first mounting plate and a second mounting plate arranged opposite each other on both sides. The towel cutting mechanism, the drainage structure, and the paper rolling mechanism are installed between the first mounting plate and the second mounting plate. The roll structure is arranged below the towel cutting mechanism. A paper rolling channel is formed between the roll structure and the paper rolling board. A pressing shaft is provided near the entrance end of the paper rolling channel. The two ends of the pressing shaft are rotatably connected to the first mounting plate and the second mounting plate, respectively. A third conveying channel for the towel to pass through is formed between the pressing shaft and the roll structure. The drainage structure is arranged on the side of the pressing shaft near the outlet direction of the towel cutting mechanism. The second towel output by the towel cutting mechanism can move towards the third conveying channel and the paper rolling channel as the roll structure rotates.