A wet wipe weight detection device for wet wipe production
By introducing a cleaning mechanism and a clamping mechanism into the wet wipe weight detection device used in wet wipe production, the problems of residual impurities after wet wipe detection and difficulty in cleaning after long-term use are solved, and high accuracy of wet wipe weight detection is achieved.
Patent Information
- Application Number
- CN202520992305.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-05-20
AI Technical Summary
Existing wet wipe production testing equipment suffers from residual impurities after a single test, affecting accuracy. Furthermore, the testing platform is difficult to clean thoroughly after prolonged use, leading to inaccurate measurements.
A wet wipe weight detection device for wet wipe production was designed, which includes a cleaning mechanism and a clamping mechanism. The piston is driven by the sliding of the dial plate to spray high-pressure gas to clean impurities and water droplets. After long-term use, the limit can be released by the displacement of the pull plate, which facilitates disassembly for deep cleaning.
It effectively prevents impurities from affecting the accuracy of testing, and ensures the accuracy of testing over a long period of use through disassembly and cleaning, thereby improving the precision of wet wipe weight detection.
Smart Images

Figure CN224673373U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wet wipe production, and in particular to a wet wipe weight detection device for wet wipe production. Background Technology
[0002] Wet wipes are moist tissues used to wipe the skin. Wet wipes on the market can be roughly divided into two categories. One type is disinfected itself but cannot disinfect other items. It contains skin care ingredients and can only be used for moisturizing and maintaining the skin. The other type is disinfecting wet wipes, which are not only disinfected themselves but can also disinfect other items. They can be used to disinfect or sterilize skin abrasions, scratches, etc. The disinfecting or sterilizing ingredients are usually indicated on the packaging.
[0003] In the existing technology, during the production and testing of wet wipes, the traditional testing device leaves impurities and water droplets on the surface of the testing table after each wet wipe test. The weight of these residues affects the accuracy of the test. Furthermore, after prolonged use, dirt and impurities will accumulate on the testing table. If the device is not disassembled and thoroughly cleaned, the measurements will be inaccurate. Utility Model Content
[0004] The purpose of this invention is to solve the problems of residual impurities affecting accuracy after a single test in existing wet wipe weight detection devices, and the inability to disassemble and deeply clean the detection platform after long-term use. The proposed wet wipe weight detection device for wet wipe production features a cleaning mechanism and a clamping mechanism. The operator can use a sliding plate to drive a piston, which sprays gas through a high-pressure nozzle to clean impurities and water droplets on the detection platform, preventing residual impurities from affecting detection accuracy. Simultaneously, the addition of a clamping device inside the device allows the operator to displace the clamping block by moving the pulling plate after prolonged use, thereby releasing the detection platform's limitations and enabling disassembly for deep cleaning, thus ensuring detection accuracy.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A wet wipe weight detection device for wet wipe production includes a base and a detection device. The front sidewall of the detection device has a display screen. A mounting block is fixedly installed on the top of the detection device. A slot is formed on the sidewall of the mounting block. A connecting frame is fitted onto the top of the mounting block. A coating detection platform is fixedly installed on the top of the connecting frame. A second connecting cavity and a first connecting cavity are formed within the connecting frame. A clamping mechanism is provided in the first connecting cavity, with its end extending into the slot and abutting against its inner sidewall. A pulling mechanism is provided in the second connecting cavity, with its end extending into the first connecting cavity and fixedly connected to the sidewall of the clamping mechanism. An mounting plate is fixedly installed on the top of the base. The mounting plate has a sliding groove, a sealing cavity, and a mounting slot. A cleaning mechanism is provided in the mounting slot. A compression mechanism is provided in the sealing cavity, with its end extending into the mounting slot and communicating with the air inlet of the cleaning mechanism. A toggle mechanism is provided in the sliding groove, with its end extending into the sealing cavity and abutting against the bottom of the compression mechanism.
[0006] Preferably, the clamping mechanism includes a compression block slidably connected in the first communicating cavity, one end of the compression block extending into the slot and abutting against the inner wall of the slot, and the other end of the compression block being fixedly connected to the inner wall of the first communicating cavity by a third spring.
[0007] Preferably, the pulling mechanism includes a pull plate slidably connected in the second communicating cavity, a fourth spring fixedly connected between the side wall of the pull plate and the inner side wall of the second communicating cavity, a thin rope fixedly connected to the side of the pull plate, and the end of the thin rope extending into the first communicating cavity and fixedly connected to the side wall of the squeezing block.
[0008] Preferably, the cleaning mechanism includes a high-pressure nozzle fixedly installed on the inner sidewall of the mounting groove, with the air outlet of the high-pressure nozzle extending outside the mounting groove.
[0009] Preferably, the compression mechanism includes a piston slidably connected in the sealed cavity, a second spring fixedly connected between the bottom of the piston and the inner bottom of the sealed cavity, and a connecting pipe penetrating the air outlet end of the sealed cavity, the end of the connecting pipe extending into the mounting groove and communicating with the high-pressure nozzle.
[0010] Preferably, the actuating mechanism includes a lever plate slidably connected in a groove, a first spring fixedly connected between the bottom of the lever plate and the inner bottom of the groove, a push rod fixedly connected to the top of the lever plate, and the end of the push rod extending into the sealing cavity and abutting against the bottom of the piston.
[0011] Preferably, the first spring is a tension spring, which exerts a pulling force when the lever is reset.
[0012] Compared with the prior art, the advantages of this utility model are as follows: 1. The cleaning mechanism allows the operator to slide a lever to drive a piston, which then sprays gas through a high-pressure nozzle to clean impurities and water droplets on the testing platform, preventing residual impurities from affecting the accuracy of the test.
[0013] 2. The clamping mechanism allows staff to move the clamping block by pulling the plate after prolonged use, thereby releasing the limit of the testing table and enabling disassembly for thorough cleaning, thus ensuring the accuracy of the test.
[0014] In summary, this utility model has a reasonable structural design. By incorporating a cleaning mechanism and a clamping mechanism, it allows the operator to use the sliding of the lever to drive the piston, which then sprays gas through the high-pressure nozzle to clean impurities and water droplets on the testing platform, preventing residual impurities from affecting the accuracy of the test. Simultaneously, the clamping device allows the operator to disassemble the testing platform after prolonged use by moving the lever to move the clamping block, thereby releasing the platform's limitations and enabling thorough cleaning, thus ensuring the accuracy of the test. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a wet wipe weight detection device for wet wipe production proposed in this utility model; Figure 2 for Figure 1 Enlarged view of point A in the image; Figure 3 This is a schematic diagram of the high-pressure nozzle.
[0016] In the diagram: 1. Base, 2. Detection device, 3. Display screen, 4. Connecting frame, 5. Coating detection table, 6. Mounting plate, 7. Slide groove, 8. Paddle plate, 9. First spring, 10. Top rod, 11. Sealing cavity, 12. Piston, 13. Second spring, 14. Mounting groove, 15. High-pressure nozzle, 16. Connecting pipe, 17. Insertion block, 18. Slot, 19. Compression block, 20. Third spring, 21. First connecting cavity, 22. Thin rope, 23. Second connecting cavity, 24. Pull plate, 25. Fourth spring. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0018] Reference Figure 1-3A wet wipe weight detection device for wet wipe production includes a base 1 and a detection device 2. The front side wall of the detection device 2 is provided with a display screen 3. An insert block 17 is fixedly installed on the top of the detection device 2. A slot 18 is opened on the side wall of the insert block 17. A connecting frame 4 is sleeved on the top of the insert block 17. A coating detection table 5 is fixedly installed on the top of the connecting frame 4. A second connecting cavity 23 and a first connecting cavity 21 are opened in the connecting frame 4. A clamping mechanism is provided in the first connecting cavity 21. The end of the clamping mechanism extends into the slot 18 and abuts against its inner side wall. The clamping mechanism includes a squeezing block 19 slidably connected in the first connecting cavity 21. One end of the squeezing block 19 extends into the slot 18 and abuts against the inner side wall of the slot 18. A third spring 20 is fixedly connected between the other end of the squeezing block 19 and the inner side wall of the first connecting cavity 21. By setting the clamping mechanism, the coating detection table 5 can be limited and fixed by the limiting clamping of the squeezing block 19 and the slot 18. A pulling mechanism is provided in the second connecting cavity 23. The end of the pulling mechanism extends into the first connecting cavity 21 and is fixedly connected to the side wall of the clamping mechanism. The pulling mechanism includes a pull plate 24 slidably connected in the second connecting cavity 23. A fourth spring 25 is fixedly connected between the side wall of the pull plate 24 and the inner side wall of the second connecting cavity 23. A thin rope 22 is fixedly connected to the side of the pull plate 24. The end of the thin rope 22 extends into the first connecting cavity 21 and is fixedly connected to the side wall of the squeezing block 19. With the setting of the pulling mechanism, the thin rope 22 can be moved by pulling the pull plate 24. The movement of the squeezing block 19 by the thin rope 22 can quickly release the limiting installation on the coating inspection table 5, which is convenient for the staff to perform deep cleaning on the surface of the coating inspection table 5 and ensure its inspection accuracy. A mounting plate 6 is fixedly installed on the top of the base 1. The mounting plate 6 has a sliding groove 7, a sealing cavity 11 and a mounting groove 14. A cleaning mechanism is provided in the mounting groove 14. The cleaning mechanism includes a high-pressure nozzle 15 fixedly installed on the inner side wall of the mounting groove 14. The air outlet of the high-pressure nozzle 15 extends to the outside of the mounting groove 14. With the setting of the cleaning mechanism, water droplets and impurities on the surface of the coating inspection station 5 can be cleaned after a single inspection, ensuring the inspection effect of the wet wipe each time. A compression mechanism is provided inside the sealing cavity 11. The end of the compression mechanism extends into the mounting groove 14 and communicates with the air inlet of the cleaning mechanism. The compression mechanism includes a piston 12 slidably connected in the sealing cavity 11. A second spring 13 is fixedly connected between the bottom of the piston 12 and the bottom of the inner side of the sealing cavity 11. A connecting pipe 16 is connected through the air outlet of the sealing cavity 11. The end of the connecting pipe 16 extends into the mounting groove 14 and communicates with the high-pressure nozzle 15. By setting up the compression mechanism, the air in the sealing cavity 11 can be squeezed into the high-pressure nozzle 15 through the displacement of the piston 12. The slide 7 is equipped with a toggle mechanism. The end of the toggle mechanism extends into the sealing cavity 11 and abuts against the bottom of the compression mechanism. The toggle mechanism includes a toggle plate 8 slidably connected in the slide 7. A first spring 9 is fixedly connected between the bottom of the toggle plate 8 and the inner bottom of the slide 7. A push rod 10 is fixedly connected to the top of the toggle plate 8. The end of the push rod 10 extends into the sealing cavity 11 and abuts against the bottom of the piston 12. With the toggle mechanism, the push rod 10 and the piston 12 can be displaced by the toggle of the toggle plate 8, thereby driving the high-pressure nozzle 15 to operate and clean the surface of the coating inspection station 5.
[0019] The functional principle of this utility model can be explained through the following operation methods: In this invention, when the operator uses the device, they place the wet wipe to be tested on top of the coating testing platform 5. The weight of the wipe is then read on the display screen 3 to determine if it falls within the planned range. The operator can then remove the wipe for the next test. After the wipe is removed, impurities and water droplets remain on the surface of the coating testing platform 5, adding weight. The operator can then move the lever 8, which moves the push rod 10 upwards. The push rod 10 compresses the piston 12, forcing air from the sealed cavity 11 through the connecting pipe 16 into the high-pressure nozzle 15. The high-pressure nozzle 15 then sprays the gas at high pressure. Because the coating testing platform 5 is coated, water droplets and impurities do not adhere to it quickly and can slide off to the right through the gas sprayed from the high-pressure nozzle 15, ensuring... The cleanliness of the surface of the coating inspection station 5 improves the accuracy of the next inspection. After the staff uses the inspection device for a long time, the surface of the coating inspection station 5 will inevitably have dirt and impurities that are difficult to clean when it is not in use. The staff can pull the pull plate 24 to disassemble and clean it deeply. Pulling the pull plate 24 causes the thin rope 22 to move, and the thin rope 22 pulls the squeezing block 19 to move to the left, so that the slot 18 is away from the limit of the squeezing block 19. The staff can then disassemble the connecting frame 4 and the coating inspection station 5 as a whole for deep cleaning. After cleaning, the staff can reset the connecting frame 4. The squeezing block 19 is squeezed into the first connecting cavity 21 by the insertion block 17. After being locked, it is reset into the slot 18 by the elastic force of the third spring 20, thus completing the installation and use of the coating inspection station 5.
[0020] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A wet wipe weight detection device for wet wipe production, comprising a base (1) and a detection device (2), characterized in that, The front side wall of the detection device (2) is provided with a display screen (3). A mounting block (17) is fixedly installed on the top of the detection device (2). A slot (18) is opened on the side wall of the mounting block (17). A connecting frame (4) is sleeved on the top of the mounting block (17). A coating detection stage (5) is fixedly installed on the top of the connecting frame (4). A second connecting cavity (23) and a first connecting cavity (21) are opened in the connecting frame (4). A clamping mechanism is provided in the first connecting cavity (21). The end of the clamping mechanism extends into the slot (18) and abuts against its inner side wall. A pull mechanism is provided in the second connecting cavity (23). The pulling mechanism has an end that extends into the first connecting cavity (21) and is fixedly connected to the side wall of the clamping mechanism. The top of the base (1) is fixedly installed with an mounting plate (6). The mounting plate (6) has a sliding groove (7), a sealing cavity (11) and a mounting groove (14). The mounting groove (14) has a cleaning mechanism. The sealing cavity (11) has a compression mechanism. The end of the compression mechanism extends into the mounting groove (14) and is connected to the air inlet of the cleaning mechanism. The sliding groove (7) has a toggle mechanism. The end of the toggle mechanism extends into the sealing cavity (11) and abuts against the bottom of the compression mechanism.
2. The wet wipe weight detection device for wet wipe production according to claim 1, characterized in that, The clamping mechanism includes a compression block (19) slidably connected in the first communicating cavity (21). One end of the compression block (19) extends into the groove (18) and abuts against the inner wall of the groove (18). The other end of the compression block (19) is fixedly connected to the inner wall of the first communicating cavity (21) with a third spring (20).
3. The wet wipe weight detection device for wet wipe production according to claim 2, characterized in that, The pulling mechanism includes a pull plate (24) slidably connected in the second connecting cavity (23), a fourth spring (25) fixedly connected between the side wall of the pull plate (24) and the inner side wall of the second connecting cavity (23), a thin rope (22) fixedly connected to the side of the pull plate (24), and the end of the thin rope (22) extends into the first connecting cavity (21) and is fixedly connected to the side wall of the squeezing block (19).
4. The wet wipe weight detection device for wet wipe production according to claim 1, characterized in that, The cleaning mechanism includes a high-pressure nozzle (15) fixedly installed on the inner wall of the mounting groove (14), with the outlet end of the high-pressure nozzle (15) extending outside the mounting groove (14).
5. The wet wipe weight detection device for wet wipe production according to claim 4, characterized in that, The compression mechanism includes a piston (12) slidably connected in the sealed cavity (11), a second spring (13) fixedly connected between the bottom of the piston (12) and the inner bottom of the sealed cavity (11), and a connecting pipe (16) penetratingly connected to the air outlet end of the sealed cavity (11), the end of the connecting pipe (16) extending into the mounting groove (14) and communicating with the high-pressure nozzle (15).
6. The wet wipe weight detection device for wet wipe production according to claim 5, characterized in that, The actuating mechanism includes a lever (8) slidably connected in a groove (7), a first spring (9) fixedly connected between the bottom of the lever (8) and the inner bottom of the groove (7), and a push rod (10) fixedly connected to the top of the lever (8), the end of the push rod (10) extending into the sealing cavity (11) and abutting against the bottom of the piston (12).
7. The wet wipe weight detection device for wet wipe production according to claim 6, characterized in that, The first spring (9) is a tension spring, and the first spring (9) exerts a tension force when the dial plate (8) is reset.