A reliable wet wipe machine

By setting the wetting zone in the wet wipe machine to be lower than the discharge port of the storage cylinder, and by adopting an upward feeding and inclined wetting groove design, the problem of wipe jamming caused by liquid splashing is solved, improving product reliability and service life, and simplifying the maintenance process.

CN122296735APending Publication Date: 2026-06-30FOSHAN NEWCURVE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
FOSHAN NEWCURVE TECH CO LTD
Filing Date
2026-04-03
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing wet wipe machines are prone to malfunctions during use due to liquid splashing or fluctuations in the wet zone, which can cause the compressed wipes inside the storage cylinder to become damp and expand, leading to wipe jamming and affecting product reliability and service life.

Method used

The position of the wetting zone is set below the discharge port of the storage cylinder, and the upward feeding method is adopted to ensure that the compressed cloth block does not get damp during the humidification process. Combined with the inclined wetting groove design and the openable dust cover, liquid is prevented from splashing into the storage cylinder, and the jacking mechanism simplifies the handling of material blockage.

Benefits of technology

It effectively prevents the compressed towels inside the storage cylinder from getting damp and expanding, improving product reliability and service life, simplifying maintenance operations, and enhancing user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of wet wipe machine technology, and more particularly to a reliable wet wipe machine, comprising a casing, a storage cylinder for storing compressed wipes to be moistened, a liquid storage module for storing the liquid for moistening the compressed wipes, a moistening zone for moistening the compressed wipes, a wipe delivery module for conveying the compressed wipes from the storage cylinder to the moistening zone, and a liquid delivery module for conveying the liquid for moistening from the liquid storage module to the moistening zone. The storage cylinder includes a discharge port. When the compressed wipes in the storage cylinder are in operation, the movement direction from the storage cylinder to the discharge port is vertically upward. The position of the moistening zone in the vertical direction is lower than the position of the discharge port in the vertical direction of the storage cylinder. This invention can better ensure that the compressed wipes to be moistened in the storage cylinder always remain dry, thereby ensuring that the compressed wipes in the storage cylinder will not expand due to moisture and cause wipe jamming, significantly improving the reliability and service life of the product, and improving the user experience.
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Description

Technical Field

[0001] This invention relates to the field of wet wipe machine technology, and more particularly to a reliable wet wipe machine. Background Technology

[0002] To address the issue of wet wipes easily spoiling and not being able to be stored for long periods, some instant wet wipe making devices (wet wipe machines) have emerged on the market. A wet wipe machine typically includes a casing, a storage cylinder for storing compressed wipes to be soaked, a liquid storage module for storing the liquid used to soak the compressed wipes, a soaking zone for soaking the compressed wipes, a delivery module for conveying the compressed wipes from the storage cylinder to the soaking zone, and a delivery module for conveying the liquid from the storage module to the soaking zone. The storage cylinder includes a discharge port. During operation, the delivery module conveys the compressed wipes from the storage cylinder to the soaking zone, and the delivery module conveys the liquid from the storage module to the soaking zone. The compressed wipes absorb water and expand in the soaking zone to form wet wipes for user use.

[0003] However, existing wet wipe machines generally suffer from the problem of wipe jamming at the outlet during actual use. In existing products, the wetting zone is mostly level with the outlet of the storage cylinder. During the humidification process, the liquid in the wetting zone is prone to overflowing or splashing into the storage cylinder due to splashing or liquid surface fluctuations. This causes the compressed wipes to be humidified in the storage cylinder to become damp and expand, which in turn leads to the wipe jamming malfunction. Summary of the Invention

[0004] The purpose of this invention is to provide a reliable wet wipe machine that addresses the shortcomings of existing technologies. It can better ensure that the compressed wipes to be humidified in the storage cylinder remain dry, thereby preventing the compressed wipes in the storage cylinder from swelling due to moisture and causing wipe jamming. This solves the problem of wipe jamming at the outlet that is common in existing wet wipe machines, significantly improves the reliability and service life of the product, and enhances the user experience.

[0005] To achieve the above objectives, the technical solution adopted by the present invention is: a reliable wet wipe machine, comprising a machine casing, a storage cylinder for storing compressed wipes to be soaked, a liquid storage module for storing liquid for soaking the compressed wipes, a soaking zone for soaking the compressed wipes, a wipe delivery module for conveying the compressed wipes in the storage cylinder to the soaking zone, and a liquid delivery module for conveying the liquid for soaking the wipes in the liquid storage module to the soaking zone. The storage cylinder includes a discharge port. When the compressed wipes in the storage cylinder are working, the direction of movement from the storage cylinder to the discharge port is vertically upward. The position of the soaking zone in the vertical direction is lower than the position of the discharge port of the storage cylinder in the vertical direction.

[0006] A further improvement to the above scheme is that the vertical position of the wetted area is higher than the vertical position of the liquid surface of the liquid storage module when it is in operation.

[0007] A further improvement to the above scheme is that the wetting area is an inclined wetting groove.

[0008] A further improvement to the above scheme is that the angle between the inclined wetted bottom surface and the horizontal plane is 25-60°.

[0009] A further improvement to the above solution is that the inclined wetting groove is exposed on the chassis.

[0010] A further improvement to the above solution is that the inclined wetting groove is provided with an openable dust cover.

[0011] A further improvement to the above solution is that the present invention also includes a wet wipe button, which is disposed on an inclined wetting groove.

[0012] A further improvement to the above scheme is that an ultraviolet lamp is provided in the inclined wetting groove area.

[0013] A further improvement to the above solution is that the inclined wetting groove is provided with an openable dust cover; when the wet wipe is finished and the dust cover is closed, the ultraviolet lamp automatically lights up for a period of time and disinfects the inclined wetting groove; when the dust cover is not closed or is open, the ultraviolet lamp is in an off state.

[0014] A further improvement to the above scheme is that the storage cylinder is installed inside the machine housing with the discharge port facing upwards, and the storage cylinder is equipped with a lifting mechanism for lifting the compressed towel block upwards.

[0015] A further improvement to the above scheme is that the lifting mechanism includes a lifting spring disposed at the bottom of the storage cylinder and a limiting block disposed above the discharge port of the storage cylinder.

[0016] A further improvement to the above solution is that the lifting mechanism further includes a telescopic adjustment component, and the limiting block is telescopically positioned above the discharge port of the storage cylinder via the telescopic adjustment component; when the limiting block is in the extended state, the limiting block protrudes above the discharge port of the storage cylinder, and the limiting block prevents the compressed cloth block from being ejected vertically upward from the storage cylinder; when the limiting block is in the retracted state, the limiting block does not protrude above the discharge port of the storage cylinder, the limiting block stops blocking the compressed cloth block, and the compressed cloth block is ejected from the storage cylinder under the action of the lifting spring.

[0017] A further improvement to the above scheme is that the telescopic adjustment assembly includes a telescopic seat disposed on one side above the discharge port of the storage cylinder, a reset compression spring, a limiting block slidably disposed in the telescopic seat in the horizontal direction, one end of the reset compression spring abutting against the limiting block in the horizontal direction, and the other end of the reset compression spring abutting against the telescopic seat in the horizontal direction.

[0018] A further improvement to the above scheme is that the end of the limiting block protruding above the discharge port of the storage cylinder is a loading inclined surface with its top far away from the center of the discharge port of the storage cylinder and its bottom close to the center of the discharge port of the storage cylinder.

[0019] A further improvement to the above scheme is that the limiting block is provided with a lever.

[0020] The beneficial effects of this invention are as follows: This invention provides a reliable wet wipe machine, including a machine casing, a storage cylinder for storing compressed wipes to be soaked, a liquid storage module for storing liquid for soaking the compressed wipes, a soaking zone for soaking the compressed wipes, a wipe delivery module for conveying the compressed wipes in the storage cylinder to the soaking zone, and a liquid delivery module for conveying the liquid for soaking to the soaking zone. The storage cylinder includes a discharge port. When the compressed wipes in the storage cylinder are working, the direction of movement from the storage cylinder to the discharge port is vertically upward. The position of the soaking zone in the vertical direction is lower than the position of the discharge port of the storage cylinder in the vertical direction. Compared to existing wet wipe machines, this invention sets the vertical position of the wetting zone lower than the vertical position of the discharge port of the storage cylinder. This prevents liquid from overflowing or splashing into the storage cylinder during humidification, ensuring that the compressed wipes in the storage cylinder remain dry and preventing them from swelling due to moisture and causing jamming. Furthermore, this invention uses an upward feeding method, bringing the blockage point (the discharge port of the storage cylinder) closer to the top of the machine for easier operation and removal. Clearing the blockage only requires removing the blocked wipe from the discharge port, eliminating the need to operate on other wipes or the storage cylinder itself, thus simplifying maintenance. This invention solves the common problem of wipe jamming at the discharge port in existing wet wipe machines, significantly improving product reliability and lifespan, and enhancing the user experience. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of the present invention.

[0022] Figure 2 This is a schematic diagram of the internal structure of the present invention.

[0023] Figure 3 This is a schematic diagram of the structure of the limiting block and telescopic adjustment component of the present invention.

[0024] Figure 4 This is a cross-sectional structural diagram of the present invention.

[0025] Figure 5 This is an exploded structural diagram of the wet wipe button and the inclined wetting groove of the present invention.

[0026] Figure 6 This is a schematic diagram of the structure of the wet wipe button for this invention.

[0027] Explanation of reference numerals in the attached drawings: 1. Chassis; 2. Storage cylinder; 21. Discharge port; 3. Liquid storage module; 4. Wetting area; 41. Inclined wetting groove; 41. Inclined wetting bottom surface; 411. Wetting side surface; 412. Liquid inlet groove; 413. Liquid inlet hole; 414. Towel feeding module; 5. Push plate; 51. Pushing power mechanism; 52. Liquid feeding module; 6. Liquid pump; 61. Liquid inlet pipe; 62. Liquid outlet pipe; 63. Dust cover; 7. Towel making button; 8. Pressing part; 81. PCB button switch; 82. Lifting mechanism; 9. Lifting spring; 91. Limiting block; 92. Loading inclined surface; 921. Telescopic adjustment component; 93. Telescopic seat; 931. Reset compression spring; 932. Lever; 94. Ultraviolet lamp; 10. Detailed Implementation

[0028] The invention will now be further described with reference to the accompanying drawings, such as... Figure 1-6As shown, the present invention includes a chassis 1, a storage cylinder 2 for storing compressed towels to be soaked, a liquid storage module 3 for storing the liquid for soaking the compressed towels, a soaking zone 4 for soaking the compressed towels, a towel delivery module 5 for conveying the compressed towels in the storage cylinder 2 to the soaking zone 4, and a liquid delivery module 6 for conveying the liquid for soaking in the liquid storage module 3 to the soaking zone 4. The storage cylinder 2 includes a discharge port 21. The towel delivery module 5 includes a pusher plate 51 slidably connected to one side of the discharge port 21 of the storage cylinder 2 in a horizontal direction, and a pusher power mechanism 52 for driving the pusher plate 51 to slide. The pusher power mechanism 52 is mounted on the chassis 1, and the output end of the pusher power mechanism 52 drives the pusher plate 51. The liquid delivery module 6 includes a liquid pump 61 and a liquid inlet. Pipe 62 and outlet pipe 63 are connected. One end of the inlet pipe 62 is connected to the liquid storage module 3, and the other end of the inlet pipe 62 is connected to the input end of the liquid pump 61. One end of the outlet pipe 63 is connected to the output end of the liquid pump 61, and the other end of the outlet pipe 63 is connected to the wetting area 4. Specifically, in this embodiment, the inclined wetting groove 41 is provided with an inlet groove 413 and an inlet hole 414 below the wet wipe button 8. The outlet pipe 63 is connected to the inlet hole 414. The wetting liquid delivered by the liquid pump 61 flows into the inlet hole 414 and flows through the inlet groove 413 before contacting the compressed towel block located in the inclined wetting groove 41. The wet wipe button 8 includes a pressing part 81 and a PCB button switch 82 located below the pressing part 81. By pressing the pressing part 81... The PCB button switch 82 below it is triggered, thereby triggering the circuit signal for making wet wipes. The pressing part 81 covers and seals the PCB button switch 82, preventing the wetting liquid from contacting it. When the compressed wipes in the storage cylinder 2 are working, the movement direction from inside the storage cylinder 2 to the outlet 21 is vertically upward. The position of the wetting zone 4 in the vertical direction is lower than the position of the outlet 21 of the storage cylinder 2 in the vertical direction. Compared to existing wet wipe machines, this invention sets the position of the wetting zone 4 in the vertical direction lower than the position of the outlet 21 of the storage cylinder 2, ensuring that during the humidification process, neither liquid splashing nor surface fluctuations can cause the wetting zone 4 to overflow or splash into the storage cylinder. Inside cylinder 2, the compressed wipes to be humidified are kept dry, preventing them from swelling due to moisture and causing jamming. Furthermore, the upward feeding method of this invention not only brings the blockage point (outlet 21 of cylinder 2) closer to the top of the machine casing 1, making it easier to operate and remove, but also only requires removing the blocked compressed wipe at outlet 21 of cylinder 2 to clear the blockage, without needing to operate other compressed wipes or cylinder 2, thus simplifying maintenance. This invention solves the common problem of wipe jamming at outlet 21 in existing wet wipe machines, significantly improving product reliability and lifespan, and enhancing the user experience.

[0029] In existing products, the position of the wetting zone 4 is usually lower than the liquid level in the liquid storage module 3. Under this structure, the liquid in the liquid storage module 3 will continuously seep into the wetting zone 4 under the action of water pressure (potential energy), even when the equipment is not in operation. To solve this problem, a valve body is usually added to the liquid path between the liquid storage module 3 and the wetting zone 4 to prevent liquid leakage. However, the valve body also faces the risk of failure (liquid often contains impurities such as tiny lint and scale particles, which easily adhere to the sealing surface of the valve body, causing the valve to not close tightly), thus causing liquid leakage. Leakage; The vertical position of the wetted area 4 of the present invention is higher than the vertical position of the liquid surface of the liquid storage module 3 when it is in working state; By setting the vertical position of the wetted area 4 to be higher than the vertical position of the liquid surface of the liquid storage module 3 when it is in working state, the liquid in the liquid storage module 3 cannot automatically flow into the wetted area 4 by water pressure potential energy when it is not in working state. Under this structure, no valve body needs to be set in the liquid path between the liquid storage module 3 and the wetted area 4, which not only makes the overall structure simpler, but also can eliminate the problem of leakage caused by valve failure.

[0030] Compared to existing wet wipe dispensers where the bottom of the soaking area 4 is horizontal (meaning the compressed wipes are soaked horizontally and can only absorb liquid in one direction, the side that absorbs liquid first hinders the diffusion of liquid to the unabsorbed areas, resulting in a slower and uneven overall absorption speed), the present invention features an inclined soaking groove 41 for the soaking area 4. This groove includes an inclined soaking bottom surface 411 and a soaking side surface 412. When the compressed wipe falls into the inclined soaking groove 41, the bottom surface of the wipe contacts the inclined soaking bottom surface 411, while one side surface contacts the soaking side surface 412. This allows the wipe to absorb liquid from both the bottom and side surfaces simultaneously, a significant improvement over existing technologies. The horizontal wetting zone 4 during surgery can only absorb liquid in one direction. The bidirectional liquid absorption structure of this invention significantly shortens the liquid absorption path, making the wetting time of the compressed towel shorter and the liquid absorption more uniform. In addition, the inclined design of the inclined wetting groove 41 allows the compressed towel to slide into the bottom of the inclined wetting groove 41 under the action of gravity after it is pushed out of the outlet 21 of the storage cylinder 2. This allows the wet towel to be further away from the storage cylinder 2, thereby better ensuring that the compressed towel in the storage cylinder 2 does not become damp due to liquid or vapor. Moreover, the inclined design of the inclined wetting groove 41 makes it easier for users to perform operations such as towel removal, which is more ergonomic.

[0031] The angle between the inclined wetted bottom surface 411 and the horizontal plane is preferably 25-60°.

[0032] The inclined wetting groove 41 is exposed on the chassis 1, which not only makes it convenient for users to directly take out the wet wipes without the need for an additional structure to deliver them, but also makes it convenient for users to clean and maintain the inclined wetting groove 41.

[0033] The inclined wetting groove 41 is provided with an openable and closable dust cover 7. When not in use, the dust cover 7 can be closed to effectively prevent dust and foreign objects from falling into the inclined wetting groove 41 and ensure the cleanliness of the inclined wetting groove 41. When the user needs to make wet wipes, he / she can open the dust cover 7 to take out the wipes. The structure is simple and easy to use. In this embodiment, the dust cover 7 is a flip-up structure. Of course, in other embodiments, the dust cover 7 can also be a pull-out or other structure.

[0034] The present invention also includes a wet wipe making button 8, which is disposed on an inclined wetting groove 41. By setting the wet wipe making button 8 on the inclined wetting groove 41, the user must remove the wet wipe made in the previous operation before pressing the wet wipe making button 8 to start the next operation. Logically, this completely eliminates the problem of wet wipes piling up and clogging due to repeated pressing of the button without removing the wet wipe, and achieves foolproof operation.

[0035] An ultraviolet lamp 10 is installed in the inclined wetting groove 41 area. The light emitted by the ultraviolet lamp 10 can illuminate the inclined wetting groove 41, and disinfection and sterilization can be performed by the ultraviolet lamp 10. The inclined wetting groove 41 is equipped with an openable and closable dust cover 7. When the wet wipe is made and the dust cover 7 is closed, the ultraviolet lamp 10 will automatically turn on for a period of time, such as 5-60 seconds, and disinfect the inclined wetting groove 41. When the dust cover 7 is not closed or is open, the ultraviolet lamp 10 is in the off state.

[0036] The storage cylinder 2 is installed inside the housing 1 with the discharge port 21 facing upwards. The storage cylinder 2 is equipped with a lifting mechanism 9 for lifting the compressed wipes upwards. Compared with the existing wet wipe machine where the discharge port 21 of the storage cylinder 2 faces downwards and is located inside the wet wipe machine, making it more troublesome to clear and maintain when blockage occurs, the present invention uses an upward feeding method to feed the compressed wipes. Not only is the location of the blockage, i.e., the discharge port 21 of the storage cylinder 2, closer to the top of the housing 1, making it easier to operate and remove, but also, only the compressed wipes blocking the discharge port 21 of the storage cylinder 2 need to be removed to clear the blockage. There is no need to operate other compressed wipes or the storage cylinder 2, making the whole process easier to maintain.

[0037] The lifting mechanism 9 includes a lifting spring 91 located at the bottom of the storage cylinder 2 and a limiting block 92 located above the discharge port 21 of the storage cylinder 2. Compared to lifting mechanisms 9 using motors or other means, this invention uses the lifting spring 91 to lift the compressed towel block, resulting in a simpler overall structure, easier maintenance, and lower cost. Compared to using only the lifting spring 91, this invention combines the elastic force of the lifting spring 91 with the gravity of the compressed towel block, ensuring that the compressed towel block at the top of the storage cylinder 2 is always at the feeding height. By using the lifting spring 91 in conjunction with the limiting block 92, the lifting spring 91 can be configured to have a large elastic force. Even when there is some friction between the compressed towel block and the storage cylinder 2, the lifting spring 91 can overcome this and prevent the compressed towel block from becoming clogged, making it more practical.

[0038] The lifting mechanism 9 also includes a telescopic adjustment component 93. The limiting block 92 is telescopically mounted above the discharge port 21 of the storage cylinder 2 via the telescopic adjustment component 93. When the limiting block 92 is in the extended state, it protrudes above the discharge port 21 of the storage cylinder 2, preventing the compressed towel block from being ejected vertically upward from the storage cylinder 2. When the limiting block 92 is in the retracted state, it does not protrude above the discharge port 21 of the storage cylinder 2, and stops blocking the compressed towel block. The compressed towel block is ejected from the storage cylinder 2 under the action of the lifting spring 91. Compared to the limiting block 92, which cannot move and can only be loaded and unloaded from the side above the discharge port 21 of the storage cylinder 2, the limiting block 92 of the present invention can telescopically move. By setting the limiting block 92 as a telescopic structure, it is not only easier to load the compressed towel block, but also easier to remove the compressed towel block that has become blocked.

[0039] The telescopic adjustment assembly 93 includes a telescopic seat 931 disposed on one side above the discharge port 21 of the storage cylinder 2, a reset compression spring 932, and a limiting block 92 slidably disposed in the telescopic seat 931 in the horizontal direction. One end of the reset compression spring 932 abuts against the limiting block 92 in the horizontal direction, and the other end of the reset compression spring 932 abuts against the telescopic seat 931 in the horizontal direction. The telescopic adjustment assembly 93 of the present invention only includes a telescopic seat 931 and a reset compression spring 932, which not only makes the limiting block 92 a telescopic structure, but also has a simple overall structure, is easy to assemble, is not prone to failure, and is more practical.

[0040] The limiting block 92 protrudes above the discharge port 21 of the storage cylinder 2. One end of the block is a loading inclined surface 921 with the top far away from the center of the discharge port 21 of the storage cylinder 2 and the bottom close to the center of the discharge port 21 of the storage cylinder 2. With this structural design, the compressed cloth can be directly pressed down and filled into the storage cylinder 2, making it easier to load the compressed cloth.

[0041] The limit block 92 is equipped with a lever 94. The lever 94 is designed to provide a point of force for the user to move the limit block 92, making it easier for the user to move the limit block 92 to slide and achieve extension and retraction by moving the lever 94.

[0042] Working principle: First, the compressed wipes to be moistened are pre-loaded into the storage cylinder 2, and the moistening liquid is pre-loaded into the liquid storage module 3. Then, the "Make Wipes" button 8 is pressed to start making wipes. The wipe delivery module 5 transports the compressed wipes from the storage cylinder 2 to the moistening zone 4, and the liquid delivery module 6 transports the moistening liquid from the liquid storage module 3 to the moistening zone 4. The compressed wipes absorb the liquid and are moistened in the moistening zone 4. After the user removes the wipes, pressing the "Make Wipes" button 8 again will repeat the process for making the next wipe. This invention can better ensure that the compressed wipes to be moistened in the storage cylinder 2 remain dry, thus preventing the compressed wipes in the storage cylinder 2 from swelling due to moisture and causing wipe jamming. It solves the wipe jamming problem at the discharge port 21 that is common in existing wipe machines, significantly improving the reliability and service life of the product and enhancing the user experience.

[0043] Of course, the above description is only a preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of this patent application are included in the scope of this patent application.

Claims

1. A reliable wet wipe machine, comprising a housing (1), a storage cylinder (2) for storing compressed wipes to be soaked, a liquid storage module (3) for storing liquid for soaking the compressed wipes, a soaking zone (4) for soaking the compressed wipes, a wipe delivery module (5) for conveying the compressed wipes in the storage cylinder (2) to the soaking zone (4), and a liquid delivery module (6) for conveying the liquid for soaking the compressed wipes in the liquid storage module (3) to the soaking zone (4), wherein the storage cylinder (2) includes a discharge port (21), characterized in that: When the compressed cloth block in the storage cylinder (2) is working, the direction of movement from the storage cylinder (2) to the outlet (21) is vertically upward. The position of the wetted area (4) in the vertical direction is lower than the position of the outlet (21) of the storage cylinder (2) in the vertical direction.

2. A reliable wet wipe dispenser according to claim 1, characterized in that: The vertical position of the wetted area (4) is higher than the vertical position of the liquid surface of the liquid storage module (3) when it is in operation.

3. A reliable wet wipe dispenser according to claim 1, characterized in that: The wetted area (4) is an inclined wetted groove (41).

4. A reliable wet wipe dispenser according to claim 3, characterized in that: The angle between the inclined wetted bottom surface (411) and the horizontal plane is 25-60°.

5. A reliable wet wipe dispenser according to claim 3, characterized in that: The inclined wetting groove (41) is exposed on the chassis (1).

6. A reliable wet wipe dispenser according to claim 5, characterized in that: The inclined wetting groove (41) is provided with an openable dust cover (7).

7. A reliable wet wipe dispenser according to claim 3, characterized in that: It also includes a wet wipe button (8) which is disposed on an inclined wetting groove (41).

8. A reliable wet wipe dispenser according to claim 3, characterized in that: The inclined wetting groove (41) area is equipped with an ultraviolet lamp (10).

9. A reliable wet wipe dispenser according to claim 8, characterized in that: The inclined wetting groove (41) is provided with an openable dust cover (7); when the wet wipe is made and the dust cover (7) is put on, the ultraviolet lamp (10) will automatically light up for a period of time and disinfect the inclined wetting groove (41); when the dust cover (7) is not closed or open, the ultraviolet lamp (10) is in the off state.

10. A reliable wet wipe dispenser according to any one of claims 1-9, characterized in that: The storage cylinder (2) is installed inside the machine box (1) with the outlet (21) facing upward. The storage cylinder (2) is equipped with a lifting mechanism (9) for lifting the compressed cloth block upward.

11. A reliable wet wipe dispenser according to claim 10, characterized in that: The lifting mechanism (9) includes a lifting spring (91) located at the bottom of the storage cylinder (2) and a limiting block (92) located above the discharge port (21) of the storage cylinder (2).

12. A reliable wet wipe dispenser according to claim 10, characterized in that: The lifting mechanism (9) also includes a telescopic adjustment component (93). The limiting block (92) is telescopically positioned above the outlet (21) of the storage cylinder (2) via the telescopic adjustment component (93). When the limiting block (92) is in the extended state, it protrudes above the outlet (21) of the storage cylinder (2) and prevents the compressed cloth block from being ejected vertically upward from the storage cylinder (2). When the limiting block (92) is in the retracted state, it does not protrude above the outlet (21) of the storage cylinder (2) and stops blocking the compressed cloth block. The compressed cloth block is ejected from the storage cylinder (2) under the action of the lifting spring (91).

13. A reliable wet wipe dispenser according to claim 12, characterized in that: The telescopic adjustment assembly (93) includes a telescopic seat (931) located on one side above the discharge port (21) of the storage cylinder (2) and a reset compression spring (932). A limiting block (92) is slidably disposed in the telescopic seat (931) in the horizontal direction. One end of the reset compression spring (932) abuts against the limiting block (92) in the horizontal direction, and the other end of the reset compression spring (932) abuts against the telescopic seat (931) in the horizontal direction.

14. A reliable wet wipe dispenser according to claim 12, characterized in that: The limiting block (92) protrudes above the outlet (21) of the storage cylinder (2) at one end, which is a loading inclined surface (921) with its top far away from the center of the outlet (21) of the storage cylinder (2) and its bottom close to the center of the outlet (21) of the storage cylinder (2).

15. A reliable wet wipe dispenser according to claim 12, characterized in that: The limiting block (92) is provided with a lever (94).