Ultraviolet sterilization equipment for wet wipe production

By designing a combination of rotating and clamping components, uniform sterilization of wet wipes is achieved, solving the problem that existing equipment has difficulty penetrating the inside of fibers, and improving sterilization efficiency and automation.

CN120420476BActive Publication Date: 2025-12-12JINYULONG MEDICAL TECH (HUBEI) CO LTD
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Patent Information

Application Number
CN202510777449.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-12-12
Estimated Expiration
2045-06-11

AI Technical Summary

Technical Problem

Existing ultraviolet sterilization equipment has difficulty penetrating the interior of wet wipe fibers, resulting in microbial residue in deep layers and some areas. This requires multiple adjustments to the sterilization process, leading to low efficiency and poor results.

Method used

The design incorporates a rotating component, a sterilization component, a peeling component, and a clamping component. A driver drives the conveying component to achieve rotational sterilization of the wet wipes, ensuring uniform irradiation. The cooperation between the clamping component and the conveying component reduces rework and wet wipe deformation.

Benefits of technology

It improves the uniformity of sterilization effect and production efficiency, reduces the demand for human resources, and ensures the processing quality and automation level of wet wipes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of ultraviolet sterilization equipment for wet wipe production, it is related to ultraviolet sterilization technical field, to solve the technical problem that current ultraviolet sterilization equipment is in wet wipe transport, when sterilization, it is difficult to penetrate wet wipe fiber and there is shielding, often cause deep layer and partial area microorganism remains, need to adjust sterilization multiple times, low efficiency and poor effect, including machine frame, driver, and the conveying assembly connected with driver.The application is designed by rotating assembly, when the device is used, the wet wipes are evenly treated by the sterilization assembly during movement by rotating the wet wipes, avoiding the sterilization effect being affected by the folding of the wet wipes in the sterilization process, and the sterilization treatment of the wet wipes can be more uniform by rotating, reducing the rework due to uneven sterilization effect in the later stage, and thus the production efficiency and sterilization effect of the device are guaranteed.
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Description

Technical Field

[0001] This invention relates to the field of ultraviolet sterilization technology, and more specifically, to an ultraviolet sterilization device for wet wipe production. Background Technology

[0002] Wet wipes, as a type of moisturizing tissue specifically designed for wiping the skin, play an important role in daily life and personal care. Based on their functional characteristics, wet wipe products on the market can be roughly divided into two categories: one type is pre-sterilized and designed specifically for skin care. Although it does not have the ability to disinfect external objects, it is rich in skin-nourishing ingredients and is an ideal choice for daily skin care and cleaning; the other type is disinfectant wet wipes that combine disinfection and care. Not only are they clean and sterile themselves, but they can also effectively kill or inhibit microorganisms on other items. They are suitable for rapid disinfection or sterilization in emergency situations such as minor abrasions and scratches.

[0003] In the production and processing of wet wipes, sterilization is a crucial step to ensure product safety. Currently, most companies use ultraviolet (UV) sterilization technology to sterilize wet wipes during transportation. However, while UV sterilization is effective at killing microorganisms on object surfaces, it struggles to penetrate the fibers of the wet wipes, leaving potentially hidden microorganisms unremoved. Furthermore, the stacking of wet wipes or the shielding effect of packaging materials can prevent some areas from direct UV exposure, leaving potential microbial residues. Therefore, traditional UV sterilization equipment often requires repeated sterilization operations, adjusting the angle and position of the wet wipes each time to achieve a more comprehensive sterilization effect. This process is not only cumbersome and time-consuming, reducing production efficiency, but the sterilization effect is still unsatisfactory, with bacterial residue problems frequently occurring. Therefore, we propose a UV sterilization device for wet wipe production. Summary of the Invention

[0004] The purpose of this invention is to provide an ultraviolet sterilization device for wet wipe production, in order to solve the technical problem that existing ultraviolet sterilization devices often result in microbial residues in deep layers and some areas during wet wipe transportation due to difficulty in penetrating wet wipe fibers and the presence of obstructions, requiring multiple sterilization adjustments, resulting in low efficiency and poor effectiveness.

[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an ultraviolet sterilization device for wet wipe production, comprising a machine frame, a driver, and an ultraviolet sterilization lamp, and further comprising...

[0006] A sterilization mechanism includes a body frame, a driver, a conveying assembly connected to the driver, a peeling assembly, and a sterilization assembly, wherein the sterilization assembly is located above the body frame, and the peeling assembly is connected to both the conveying assembly and the body frame; and an installation mechanism includes a bracket, a connecting strip connected to the bracket, a support top located above the bracket, a fixing block connected to the support top, a bearing located within the fixing block, a rotating assembly located within the bearing, a clamping assembly, and a wet wipe, wherein the clamping assembly is fixedly connected to the outside of the rotating assembly, and the wet wipe is located within the clamping assembly.

[0007] When in use, this invention rotates the wet wipes, ensuring they are evenly treated by the sterilization components during movement. This prevents the sterilization effect from being affected by folds in parts of the wipes. Furthermore, the rotation method allows for more even sterilization, reducing the need for rework due to uneven sterilization. This, in turn, ensures the production efficiency and sterilization effect of the device.

[0008] Preferably, a plurality of support legs are fixedly connected to the lower part of the body frame, the upper part of the body frame is fixedly connected to the driver, the driver is drivenly connected to the conveying assembly, the conveying assembly is fixedly connected to the body frame, the peeling assembly passes through the conveying assembly and is fixedly connected to the body frame, and the sterilization assembly is fixedly connected to the upper part of the body frame.

[0009] Preferably, there are two brackets, and the tops of the two brackets are fixedly connected to the same support top, the bottoms of the two brackets are fixedly connected to the same connecting strip, a fixing block is fixedly connected above the support top, a bearing is fixedly connected inside the fixing block, the rotating component is sleeved in the bearing, two clamping components are fixedly connected outside the rotating component, the two clamping components are connected to the same wet wipe, and the rotating component is snapped onto the top of the connecting strip;

[0010] The top of the rotating component is located inside the sterilization component, the bottom of the bracket is fixedly connected to the top of the conveying component, and the connecting strip is fixedly connected to the top of the conveying component at the position where it engages with the rotating component.

[0011] Preferably, the conveying assembly includes two drive shafts, and two outer cylinders are fixedly connected to the outside of each of the two drive shafts. The same first transmission belt is wound around the outside of the two outer cylinders. An mounting cylinder is fixedly connected to the outside of each of the two drive shafts. The same second transmission belt is wound around the outside of the mounting cylinder. There is a gap between the second transmission belt and the first transmission belts on both sides. A plurality of transmission wheels are provided inside the first and second transmission belts.

[0012] Preferably, the drive shaft is snapped onto the upper part of the machine frame, one side of one of the drive shafts is connected to the driver, the two brackets are respectively fixedly connected above the two first transmission belts, and the connecting strip is fixedly connected above the second transmission belt.

[0013] Preferably, the peeling assembly includes two material-receiving plates, and each of the two material-receiving plates is fixedly connected to one side of a connecting rod. One end of each connecting rod is fixedly connected to a sleeve, and the other end of each sleeve is fixedly connected to a reinforcing rod. Each of the two connecting rods is fixedly connected to a reinforcing rib, and the other end of each reinforcing rib is fixedly connected to the bottom of the material-receiving plate. A return coil spring is provided outside the pin shaft.

[0014] Preferably, two magnetic blocks are hinged to one side of the material picking plate by a pin, and a peeling plate is fixedly connected to the side of the material picking plate where the magnetic blocks are located;

[0015] The sleeve is fitted onto the outside of the drive shaft, and the reinforcing rod is fixedly connected to the machine frame.

[0016] Preferably, the sterilization component includes two side plates, and each of the two side plates has a plurality of mounting slots on one side, each of the mounting slots is fitted with an ultraviolet germicidal lamp, and a plurality of positioning posts are fixedly connected to the opposite side of the two side plates, the plurality of positioning posts are fixedly connected to the same guide shell, and the inner wall of the guide shell is provided with a plurality of toothed plates in an alternating manner.

[0017] The side plate is fixedly connected to the upper part of the body frame, and the top of the rotating component is located inside the guide shell.

[0018] Preferably, the rotating assembly includes a gear, a rotating shaft is fixedly connected to the lower part of the gear, a mounting post is fixedly connected to the bottom end of the rotating shaft, the bottom end of the mounting post is sleeved in the connecting sleeve, and a coil spring is fixedly connected to the outside of the rotating shaft.

[0019] The other end of the coil spring is fixedly connected to the bearing, the rotating shaft is sleeved inside the bearing, the gear is located inside the guide housing, the gear meshes with the toothed plate inside the guide housing, both clamping assemblies are fixedly connected to the outside of the mounting post, the diameter of the mounting post is smaller than the gap between the two peeling plates, and the connecting sleeve is snapped onto the top of the connecting strip.

[0020] Preferably, the clamping assembly includes a fixed cylinder, four sliding sleeves are fixedly connected to the outside of the fixed cylinder, and a sliding rod is slidably connected inside each of the four sliding sleeves. A spring is fixedly connected inside each sliding sleeve, and the two ends of the spring are respectively fixedly connected to one side of the inner wall of the sliding sleeve and one end of the corresponding sliding rod. The same first clamping plate is fixedly connected to the outside of the four sliding sleeves. The sliding rod passes through the first clamping plate and is fixedly connected to a second clamping plate. An anti-slip plate is fixedly connected to the other side of the first clamping plate, and a magnetic plate is fixedly connected to one side of the second clamping plate. The magnetic plate overlaps with the anti-slip plate.

[0021] The side of the magnetic plate that overlaps with the anti-slip plate repels the top of the magnetic block. The fixing cylinder is fixedly connected to the outside of the mounting column. The wet wipe is located between the first clamping plate and the second clamping plate.

[0022] Compared with the prior art, the beneficial effects of the present invention are:

[0023] 1. This invention designs a rotating component, a sterilization component, a peeling component, and a clamping component. A driver operates, driving a conveying component. The installation mechanism moves along with the conveying component. A corner of the wet wipe needs to be manually secured in the upper clamping component. As the wet wipe hangs naturally, a bottom corner is secured in the lower clamping component, completing the wet wipe's fixation. With the conveying component's operation, the top of the rotating component enters the sterilization component, causing it to rotate. Simultaneously, the wet wipe rotates, and the sterilization component sterilizes the wet wipe. When the device moves to the other side of the conveying component, the clamping component contacts the peeling component, releasing the wet wipe. After the wet wipes are clamped, they remain above the peeling component. The clamping and rotating components move in a cycle along with the conveying component, repeating this process to complete the sterilization of the wet wipes. During use, the device rotates the wet wipes to ensure they are evenly treated by the sterilization components during movement. This prevents the wipes from being folded in some areas, which could affect the sterilization effect. Moreover, the rotation method allows for more even sterilization, reducing the need for rework due to uneven sterilization. This ensures both the production efficiency and the sterilization effect of the device.

[0024] 2. This invention also incorporates a clamping assembly and a conveying assembly. When the driver operates, it drives the drive shaft to rotate, which in turn drives the outer cylinder and the mounting cylinder to rotate, causing the first transmission belt, the second transmission belt, and the transmission wheel to move. At this time, the bracket and connecting strip fixed above the first and second transmission belts will move accordingly. When the bracket moves to the left side of the transmission belt, the second clamping plate needs to be manually pulled to widen the gap between the first and second clamping plates. Then, a corner of the wet wipe is placed between the first and second clamping plates. After releasing the second clamping plate, the spring pulls the sliding rod and the second clamping plate back to their original positions, thus securing the top corner of the wet wipe. Similarly, the bottom corner of the wet wipe is secured by... The first and second clamping plates below are fixed. As the first and second transmission belts move, the gear enters the guide housing. When the gear contacts the toothed plate inside the guide housing, the gear rotates, thereby driving the wet wipe to rotate and unfold. When the gear disengages from the toothed plate, the coil spring drives the rotating shaft to reset, causing the wet wipe to rotate repeatedly as it moves above the transmission belt. This allows it to receive the ultraviolet germicidal lamp irradiation more evenly, ensuring that the wet wipe can be sterilized evenly. Moreover, by fixing one corner of the top and one corner of the wet wipe, damage to the wet wipe can be reduced, and the wet wipe can be prevented from deforming due to excessive adjustment during the sterilization process, thus ensuring the processing quality of the wet wipe.

[0025] 3. This invention also designs a peeling assembly. As the first and second transmission belts operate, when the bracket and connecting strip move to the right, the mounting post passes through the gap between the two peeling plates. Subsequently, the peeling plates come into contact with the wet wipe. Since the wet wipe is in a state of rotation, unfolding, and natural hanging during operation, it is difficult to pass directly through the gap between the two peeling plates. At the same time, the magnetic block contacts the magnetic plate and repels it. At this time, the magnetic plate is affected by the magnetic field, pulling the slide rod to slide in the sliding sleeve, thereby loosening the fixation of the wet wipe. The wet wipe will be retained above the peeling plate, and the magnetic blocks on both sides will flip along the pin shaft. After the first and second clamping plates pass through, they are reset under the elastic force of the return spring outside the pin shaft. In this way, the device can complete the automatic unloading step after processing the wet wipe, improving the automation level of the device and reducing the demand for human resources. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0027] Figure 2 This is a schematic diagram of the sterilization mechanism of the present invention;

[0028] Figure 3 This is a schematic diagram of the conveying component structure of the present invention;

[0029] Figure 4 This is a schematic cross-sectional view of the conveying assembly of the present invention;

[0030] Figure 5 For the present invention Figure 4 Enlarged structural diagram at point A in the middle;

[0031] Figure 6 This is a schematic cross-sectional view of the sterilization component of the present invention;

[0032] Figure 7 This is a schematic diagram of the installation mechanism structure of the present invention;

[0033] Figure 8 This is a schematic diagram of the rotating component structure of the present invention;

[0034] Figure 9 This is an exploded view of the clamping assembly of the present invention.

[0035] Explanation of the labels in the diagram:

[0036] 1. Sterilization mechanism; 2. Installation mechanism;

[0037] 11. Body frame; 12. Support legs; 13. Drive unit; 14. Conveying assembly; 15. Stripping assembly; 16. Sterilization assembly;

[0038] 21. Bracket; 22. Connecting bar; 23. Support top; 24. Fixing block; 25. Bearing; 26. Rotating assembly; 27. Clamping assembly; 28. Wet wipe;

[0039] 141. Drive shaft; 142. Outer cylinder; 143. First transmission belt; 144. Mounting cylinder; 145. Second transmission belt; 146. Transmission wheel;

[0040] 151. Material receiving plate; 152. Connecting rod; 153. Sleeve; 154. Reinforcing rod; 155. Reinforcing rib; 156. Pin; 157. Magnetic block; 158. Peeling plate;

[0041] 161. Side plate; 162. Mounting slot; 163. Ultraviolet germicidal lamp; 164. Positioning post; 165. Guide shell; 166. Toothed plate;

[0042] 261. Gear; 262. Shaft; 263. Mounting post; 264. Connecting sleeve; 265. Coil spring;

[0043] 271. Fixed cylinder; 272. Sliding sleeve; 273. Spring; 274. Sliding rod; 275. First clamping plate; 276. Anti-slip plate; 277. Second clamping plate; 278. Magnetic plate. Detailed Implementation

[0044] like Figures 1 to 9 As shown, the present invention relates to an ultraviolet sterilization device for wet wipe production, comprising a frame 11, a driver 13, and an ultraviolet germicidal lamp 163, and further comprising...

[0045] The sterilization mechanism 1 includes a body frame 11, a driver 13, a conveying assembly 14 connected to the driver 13, a peeling assembly 15, and a sterilization assembly 16, wherein the sterilization assembly 16 is located above the body frame 11, and the peeling assembly 15 is connected to the conveying assembly 14 and the body frame 11 respectively; and the mounting mechanism 2 includes a bracket 21, a connecting strip 22 connected to the bracket 21, a support top 23 located above the bracket 21, a fixing block 24 connected to the support top 23, a bearing 25 located within the fixing block 24, and a mounting bracket 25 located within the bearing 25. The assembly comprises a rotating component 26, a clamping component 27, and a wet wipe 28. The clamping component 27 is fixedly connected to the outside of the rotating component 26, and the wet wipe 28 is located inside the clamping component 27. The rotating component 26, sterilization component 16, peeling component 15, and clamping component 27 are designed such that the driver 13 operates, driving the conveying component 14. The mounting mechanism 2 moves along with the conveying component 14. One corner of the wet wipe 28 needs to be manually fixed inside the clamping component 27. As the wet wipe 28 naturally falls, one corner of the bottom of the wet wipe 28 is fixed inside the clamping component 27. Within the clamping assembly 27 below, the wet wipe 28 is secured. As the conveying assembly 14 operates, the top of the rotating assembly 26 enters the sterilization assembly 16, causing the rotating assembly 26 to rotate. Simultaneously, the wet wipe 28 rotates, and the sterilization assembly 16 sterilizes the wet wipe 28. When it moves to the other side of the conveying assembly 14, the clamping assembly 27 contacts the peeling assembly 15, releasing its grip on the wet wipe 28. The wet wipe 28 remains above the peeling assembly 15, while the clamping assembly 27 and the rotating assembly 26 move with the conveying assembly 14. The device rotates and moves in a cycle to complete the sterilization process of the wet wipes 28. When in use, the device rotates the wet wipes 28 to ensure that the wet wipes 28 are evenly treated by the sterilization component 16 during the movement. This avoids the wet wipes 28 being folded in some places during the sterilization process, which would affect the sterilization effect. Moreover, the rotation method can sterilize the wet wipes 28 more evenly, reducing the need for rework due to uneven sterilization effect in the later stage. This ensures the production efficiency and sterilization effect of the device.

[0046] In an embodiment of the present invention, a plurality of support legs 12 are fixedly connected to the lower part of the body frame 11, a driver 13 is fixedly connected to the upper part of the body frame 11, the driver 13 is drivenly connected to the conveying assembly 14, the conveying assembly 14 is fixedly connected to the body frame 11, a peeling assembly 15 passes through the conveying assembly 14 and is fixedly connected to the body frame 11, a sterilization assembly 16 is fixedly connected to the upper part of the body frame 11, and there are two supports 21, with the top ends of the two supports 21 fixedly connected to the same support top 23. A fixing block 24 is fixedly connected to the top of the support 23 and the same connecting strip 22. A bearing 25 is fixedly connected inside the fixing block 24. The rotating component 26 is sleeved inside the bearing 25. Two clamping components 27 are fixedly connected to the outside of the rotating component 26. The two clamping components 27 are connected to the same wet wipe 28. The rotating component 26 is snapped onto the top of the connecting strip 22. The top of the rotating component 26 is located inside the sterilization component 16. The bottom end of the bracket 21 is fixedly connected to the top of the conveying component 14. The position where the connecting strip 22 and the rotating component 26 snap together. Fixedly connected above the conveying assembly 14, the peeling assembly 15 is designed so that, as the first transmission belt 143 and the second transmission belt 145 move, when the bracket 21 and the connecting strip 22 move to the right, the mounting post 263 will pass through the gap between the two peeling plates 158. Subsequently, the peeling plates 158 will come into contact with the wet wipe 28. Since the wet wipe 28 is in a state of rotating unfolding and naturally hanging during operation, it is difficult for it to pass directly through the gap between the two peeling plates 158. At the same time, the magnetic block 157 contacts the magnetic plate 278 and repels each other. At this time, the magnetic plate 278 is affected by the magnetic field, pulling the slide bar 274 to slide inside the sliding sleeve 272, thereby loosening the fixation on the wet wipe 28. The wet wipe 28 will be retained above the peeling plate 158, while the magnetic blocks 157 on both sides will flip along the pin shaft 156. After the first clamping plate 275 and the second clamping plate 277 pass through, they will be reset under the elastic force of the return coil spring outside the pin shaft 156. In this way, the device can complete the automatic unloading step after processing the wet wipe 28, which improves the automation level of the device and reduces the demand for human resources.

[0047] In an embodiment of the present invention, the conveying assembly 14 includes two drive shafts 141, and two outer cylinders 142 are fixedly connected to each of the two drive shafts 141. A first transmission belt 143 is wound around the two outer cylinders 142. An mounting cylinder 144 is fixedly connected to each of the two drive shafts 141, and a second transmission belt 145 is wound around the mounting cylinder 144. There is a gap between the second transmission belt 145 and the first transmission belts 143 on both sides. A plurality of transmission wheels 146 are disposed inside the first transmission belts 143 and the second transmission belts 145. The drive shafts 141 are snapped onto the upper part of the machine frame 11. One side of one of the drive shafts 141 is connected to the drive shaft. The device 13 is connected by a transmission mechanism. Two brackets 21 are fixedly connected above the two first transmission belts 143, and a connecting bar 22 is fixedly connected above the second transmission belt 145. Through the design of the clamping assembly 27 and the conveying assembly 14, when the driver 13 is running, it drives the drive shaft 141 to rotate. The drive shaft 141 then drives the outer cylinder 142 and the mounting cylinder 144 to rotate, causing the first transmission belt 143, the second transmission belt 145, and the transmission wheel 146 to run. At this time, the brackets 21 and the connecting bar 22 fixed above the first transmission belts 143 and the second transmission belts 145 will move accordingly. When the bracket 21 moves to the left side of the transmission belt... At this time, the second clamping plate 277 needs to be pulled manually to widen the gap between the first clamping plate 275 and the second clamping plate 277. Then, one corner of the wet wipe 28 is placed between the first clamping plate 275 and the second clamping plate 277. After releasing the second clamping plate 277, the spring 273 will pull the slide rod 274 and the second clamping plate 277 to return to their original positions, thus fixing the top corner of the wet wipe 28. Similarly, the bottom corner of the wet wipe 28 is fixed by the first clamping plate 275 and the second clamping plate 277 below. As the first transmission belt 143 and the second transmission belt 145 move, the gear 261 will enter the guide shell 165. When the gear 261 and the guide shell 165 move together, the gear 261 will enter the guide shell 165. When the toothed plate 166 inside 65 contacts, the gear 261 will rotate accordingly, thereby driving the wet wipe 28 to rotate and unfold. When the gear 261 disengages from the toothed plate 166, the coil spring 265 will drive the rotating shaft 262 to reset, causing the wet wipe 28 to rotate repeatedly as it moves above the transmission belt, thereby receiving more even irradiation from the ultraviolet germicidal lamp 163, ensuring that the wet wipe 28 can be sterilized evenly. Moreover, by fixing one corner of the top and one corner of the wet wipe 28, damage to the wet wipe 28 can be reduced, avoiding the situation where the wet wipe 28 is deformed due to excessive adjustment during the sterilization process, thus ensuring the processing quality of the wet wipe 28.

[0048] In another embodiment of the present invention, the peeling assembly 15 includes two picking plates 151, and each of the two picking plates 151 is fixedly connected to one side of a connecting rod 152. One end of the connecting rod 152 is fixedly connected to a sleeve 153, and the other end of each sleeve 153 is fixedly connected to a reinforcing rod 154. A reinforcing rib 155 is fixedly connected to the outside of each connecting rod 152, and the other end of the reinforcing rib 155 is fixedly connected to the bottom of the picking plate 151. A return coil spring is provided outside the pin 156, and two picking plates 151 are hinged to one side of the picking plate 151 via the pin 156. A magnetic block 157 is provided on the feeding plate 151. A peeling plate 158 is fixedly connected to one side of the feeding plate 151. A sleeve 153 is sleeved on the outside of the drive shaft 141. A reinforcing rod 154 is fixedly connected to the machine frame 11. Because of the sleeve 153 and the reinforcing rod 154, the feeding plate 151 can be stably fixed on one side of the drive shaft 141. And because the reinforcing rod 154 is connected to the machine frame 11, it is ensured that the feeding plate 151 can be horizontally held on one side of the drive shaft 141 and will not rotate with the rotation of the drive shaft 141, thus ensuring the feeding effect of the wet wipes 28.

[0049] In another embodiment of the present invention, the sterilization component 16 includes two side plates 161, and each side plate 161 has a plurality of mounting grooves 162. Each mounting groove 162 contains a UV sterilization lamp 163. A plurality of positioning posts 164 are fixedly connected to the opposite side of the two side plates 161. The positioning posts 164 are fixedly connected to the same guide shell 165. A plurality of toothed plates 166 are alternately arranged on the inner wall of the guide shell 165. The side plates 161 are fixedly connected to the top of the body frame 11. The top of the rotating component 26 is located inside the guide shell 165. The rotating component 26 includes a gear 261. A rotating shaft 262 is fixedly connected below the gear 261. A mounting post 263 is fixedly connected to the bottom end of the rotating shaft 262. The bottom end of the mounting post 263 is sleeved inside the connecting sleeve 264. A coil spring 265 is fixedly connected to the outside of the 62. The other end of the coil spring 265 is fixedly connected to the bearing 25. The rotating shaft 262 is sleeved inside the bearing 25. The gear 261 is located inside the guide shell 165 and meshes with the toothed plate 166 inside the guide shell 165. Both clamping components 27 are fixedly connected to the outside of the mounting post 263. The diameter of the mounting post 263 is smaller than the gap between the two peeling plates 158. The connecting sleeve 264 is snapped onto the top of the connecting strip 22. By designing side plates 161 on both sides and connecting them to the ultraviolet germicidal lamp 163 through the mounting groove 162 in the side plates 161, the device can avoid liquid splashing when rotating the wet wipe 28. At the same time, it can facilitate the replacement and maintenance of the ultraviolet germicidal lamp 163, improving the safety and service life of the device.

[0050] The clamping assembly 27 includes a fixed cylinder 271, with four sliding sleeves 272 fixedly connected to the outside of the fixed cylinder 271. Each of the four sliding sleeves 272 has a sliding rod 274 slidably connected inside. A spring 273 is fixedly connected inside each sliding sleeve 272, with both ends of the spring 273 fixedly connected to one side of the inner wall of the sliding sleeve 272 and the corresponding end of the sliding rod 274, respectively. A first clamping plate 275 is fixedly connected to the outside of the four sliding sleeves 272. The sliding rod 274 passes through the first clamping plate 275 and is fixedly connected to a second clamping plate 277. An anti-slip plate 276 is fixedly connected to the other side of the first clamping plate 275. A magnetic plate 278 is fixedly connected to one side of the second clamping plate 277, overlapping the anti-slip plate 276. The side of the anti-slip plate 276 that overlaps with the top of the magnetic block 157 repels each other. The fixing cylinder 271 is fixedly connected to the outside of the mounting post 263. The wet wipe 28 is located between the first clamping plate 275 and the second clamping plate 277. Because a coil spring 265 is provided, the gear 261 can be reset after rotating in contact with the toothed plate 166. On the one hand, this ensures the rotation effect of the device on the wet wipe 28 and ensures that the wet wipe 28 is evenly irradiated by the ultraviolet germicidal lamp 163. On the other hand, it ensures that the mounting post 263 is located on the right side of the wet wipe 28, and prevents the mounting post 263 from pulling the wet wipe 28 through the peeling plate 158 when passing between the two peeling plates 158, thus ensuring the stability of the device operation.

[0051] Working principle: This embodiment provides an ultraviolet sterilization device for wet wipe production. In use, the driver 13 runs, driving the conveying component 14 to run. The installation mechanism 2 moves with the operation of the conveying component 14. One corner of the wet wipe 28 needs to be manually fixed in the clamping component 27 above. As the wet wipe 28 hangs down naturally, one corner of the bottom of the wet wipe 28 is fixed in the clamping component 27 below, thus completing the fixation of the wet wipe 28. As the conveying component 14 runs, the top of the rotating component 26 enters the sterilization component 16, thereby driving the rotating component 26 to rotate. While the wet wipe 28 rotates, the sterilization component 16 sterilizes the wet wipe 28. When it moves to the other side of the conveying component 14, the clamping component 27 contacts the peeling component 15, releasing the clamp on the wet wipe 28. The wet wipe 28 will then be left above the peeling component 15. The clamping component 27 and the rotating component 26 will move cyclically with the operation of the conveying component 14. This process is repeated to complete the sterilization of the wet wipe 28.

[0052] When the driver 13 is running, it drives the drive shaft 141 to rotate. The drive shaft 141 then drives the outer cylinder 142 and the mounting cylinder 144 to rotate, causing the first transmission belt 143, the second transmission belt 145, and the transmission wheel 146 to start running. At this time, the bracket 21 and the connecting strip 22 fixed above the first transmission belt 143 and the second transmission belt 145 will move accordingly. When the bracket 21 moves to the left side of the transmission belt, the second clamping plate 277 needs to be pulled manually to widen the gap between the first clamping plate 275 and the second clamping plate 277. Then, a corner of the wet wipe 28 is placed between the first clamping plate 275 and the second clamping plate 277, and the first clamping plate 28 is released. After the second clamping plate 277 is in place, the spring 273 will pull the slide bar 274 and the second clamping plate 277 to reset, thereby completing the fixation of the top corner of the wet wipe 28. Similarly, the bottom corner of the wet wipe 28 can be fixed by the first clamping plate 275 and the second clamping plate 277 below. As the first transmission belt 143 and the second transmission belt 145 move, the gear 261 will enter the guide shell 165. When the gear 261 contacts the toothed plate 166 in the guide shell 165, the gear 261 will rotate, thereby driving the wet wipe 28 to rotate and unfold. When the gear 261 disengages from the toothed plate 166, the coil spring 265 will drive the rotating shaft 262 to reset.

[0053] As the first transmission belt 143 and the second transmission belt 145 operate, when the bracket 21 and the connecting bar 22 move to the right, the mounting post 263 will pass through the gap between the two peeling plates 158. Subsequently, the peeling plate 158 will come into contact with the wet wipe 28. Since the wet wipe 28 is in a state of rotation, unfolding and hanging naturally during operation, it is difficult to pass directly through the gap between the two peeling plates 158. At the same time, the magnetic block 157 will come into contact with the magnetic plate 278 and repel each other. The magnetic plate 278 will be affected by the magnetic field and pull the slide rod 274 to slide in the sliding sleeve 272, thereby loosening the fixation of the wet wipe 28. The wet wipe 28 will be retained above the peeling plate 158, and the magnetic blocks 157 on both sides will flip along the pin 156. After the first clamping plate 275 and the second clamping plate 277 pass through, they will be reset under the elastic force of the return coil spring outside the pin 156.

[0054] The embodiments disclosed in this invention are preferred embodiments, but are not limited thereto. Those skilled in the art can easily understand the spirit of this invention based on the above embodiments and make different extensions and variations, but as long as they do not depart from the spirit of this invention, they are all within the protection scope of this invention.

Claims

1. A UV sterilization device for wet wipe production, comprising a frame (11), a driver (13), and a UV germicidal lamp (163), characterized in that, It also includes, The sterilization mechanism (1) includes a body frame (11), a driver (13), a conveying assembly (14) connected to the driver (13), a stripping assembly (15), and a sterilization assembly (16), wherein the sterilization assembly (16) is located above the body frame (11), and the stripping assembly (15) is connected to both the conveying assembly (14) and the body frame (11); and, The mounting mechanism (2) includes a bracket (21), a connecting strip (22) connected to the bracket (21), a support top (23) located above the bracket (21), a fixing block (24) connected to the support top (23), a bearing (25) located in the fixing block (24), a rotating component (26) located in the bearing (25), a clamping component (27), and a wet wipe (28), wherein the clamping component (27) is fixedly connected to the outside of the rotating component (26), and the wet wipe (28) is located inside the clamping component (27); The peeling assembly (15) includes two picking plates (151), and each of the two picking plates (151) is fixedly connected to one side of a connecting rod (152). One end of the connecting rod (152) is fixedly connected to a sleeve (153), and the other end of each of the two sleeves (153) is fixedly connected to a reinforcing rod (154). Each of the two connecting rods (152) is fixedly connected to a reinforcing rib (155), and the other end of the reinforcing rib (155) is fixedly connected to the bottom of the picking plate (151). Two magnetic blocks (157) are hinged to one side of the material picking plate (151) via a pin (156). A peeling plate (158) is fixedly connected to the side of the material picking plate (151) where the magnetic blocks (157) are located. A reset coil spring is provided outside the pin (156). The reinforcing rod (154) is fixedly connected to the machine frame (11).

2. The ultraviolet sterilization equipment for wet wipe production according to claim 1, characterized in that, A number of support legs (12) are fixedly connected to the lower part of the body frame (11), and the upper part of the body frame (11) is fixedly connected to the driver (13). The driver (13) is connected to the conveying assembly (14) for transmission. The conveying assembly (14) is fixedly connected to the body frame (11). The peeling assembly (15) passes through the conveying assembly (14) and is fixedly connected to the body frame (11). The sterilization assembly (16) is fixedly connected to the upper part of the body frame (11).

3. The ultraviolet sterilization equipment for wet wipe production according to claim 2, characterized in that, The number of brackets (21) is two, and the top of the two brackets (21) is fixedly connected to the same support top (23). The bottom of the two brackets (21) is fixedly connected to the same connecting strip (22). A fixing block (24) is fixedly connected above the support top (23). A bearing (25) is fixedly connected inside the fixing block (24). The rotating component (26) is sleeved inside the bearing (25). Two clamping components (27) are fixedly connected outside the rotating component (26). The two clamping components (27) are connected to the same wet wipe (28). The rotating component (26) is snapped onto the top of the connecting strip (22). The top of the rotating component (26) is located inside the sterilization component (16), the bottom of the bracket (21) is fixedly connected to the top of the conveying component (14), and the connecting strip (22) is fixedly connected to the top of the conveying component (14) at the position where it engages with the rotating component (26).

4. The ultraviolet sterilization equipment for wet wipe production according to claim 3, characterized in that, The conveying assembly (14) includes two drive shafts (141), and two outer cylinders (142) are fixedly connected to the outside of each of the two drive shafts (141). The same first transmission belt (143) is wound around the outside of the two outer cylinders (142). An installation cylinder (144) is fixedly connected to the outside of each of the two drive shafts (141). The same second transmission belt (145) is wound around the outside of the installation cylinder (144). There is a gap between the second transmission belt (145) and the first transmission belts (143) on both sides. A plurality of transmission wheels (146) are provided inside the first transmission belt (143) and the second transmission belt (145).

5. The ultraviolet sterilization equipment for wet wipe production according to claim 4, characterized in that, The drive shaft (141) is snapped onto the upper part of the body frame (11), one side of one of the drive shafts (141) is connected to the driver (13) for transmission, the two brackets (21) are respectively fixedly connected above the two first transmission belts (143), and the connecting strip (22) is fixedly connected above the second transmission belt (145).

6. The ultraviolet sterilization equipment for wet wipe production according to claim 5, characterized in that, The sleeve (153) is fitted onto the drive shaft (141).

7. The ultraviolet sterilization equipment for wet wipe production according to claim 6, characterized in that, The sterilization component (16) includes two side plates (161), and each of the two side plates (161) has a plurality of mounting slots (162) on one side. Each of the mounting slots (162) is fitted with an ultraviolet germicidal lamp (163). A plurality of positioning posts (164) are fixedly connected to the opposite side of the two side plates (161). The plurality of positioning posts (164) are fixedly connected to the same guide shell (165). The inner wall of the guide shell (165) is provided with a plurality of toothed plates (166) in an alternating manner. The side plate (161) is fixedly connected to the upper part of the body frame (11), and the top of the rotating assembly (26) is located inside the guide shell (165).

8. The ultraviolet sterilization equipment for wet wipe production according to claim 7, characterized in that, The rotating assembly (26) includes a gear (261), a rotating shaft (262) is fixedly connected to the lower part of the gear (261), a mounting post (263) is fixedly connected to the bottom end of the rotating shaft (262), the bottom end of the mounting post (263) is sleeved in the connecting sleeve (264), and a coil spring (265) is fixedly connected to the outside of the rotating shaft (262). The other end of the coil spring (265) is fixedly connected to the bearing (25), the rotating shaft (262) is sleeved inside the bearing (25), the gear (261) is located inside the guide shell (165), the gear (261) meshes with the toothed plate (166) inside the guide shell (165), both clamping assemblies (27) are fixedly connected to the outside of the mounting post (263), the diameter of the mounting post (263) is smaller than the gap between the two peeling plates (158), and the connecting sleeve (264) is snapped above the connecting strip (22).

9. The ultraviolet sterilization equipment for wet wipe production according to claim 8, characterized in that, The clamping assembly (27) includes a fixed cylinder (271), four sliding sleeves (272) are fixedly connected to the outside of the fixed cylinder (271), and a sliding rod (274) is slidably connected inside each of the four sliding sleeves (272). A spring (273) is fixedly connected inside the sliding sleeve (272), and the two ends of the spring (273) are fixedly connected to one side of the inner wall of the sliding sleeve (272) and the corresponding end of the sliding rod (274), respectively. The same first clamping plate (275) is fixedly connected to the outside of the four sliding sleeves (272). The sliding rod (274) passes through the first clamping plate (275) and is fixedly connected to the second clamping plate (277). An anti-slip plate (276) is fixedly connected to the other side of the first clamping plate (275). A magnetic plate (278) is fixedly connected to one side of the second clamping plate (277). The magnetic plate (278) overlaps with the anti-slip plate (276). The magnetic plate (278) and the anti-slip plate (276) overlap each other with the top of the magnetic block (157), the fixing cylinder (271) is fixedly connected to the outside of the mounting column (263), and the wet wipe (28) is located between the first clamping plate (275) and the second clamping plate (277).

Citation Information

Patent Citations

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    CN101062424A

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    CN108356889A