Special portable rapid disinfection device for epidemic prevention
Patent Information
- Application Number
- CN202410757046.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-13
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2044-06-13
AI Technical Summary
[0004]在使用上述技术时,发现现有技术中存在以下技术问题:现有的消毒装置瓶内只能存放一种消毒液体,面对不同防疫需求,需要携带多种不同的消毒液体进行消毒,多种消毒液体进行分别携带时,占用的空间较多,且在使用时需要根据消毒需求找到对应的消毒液体,使用效果不佳,使用效率不高,为此,我们设计防疫专用便携式快速消毒装置,用于对上述技术问题提供另一种技术方案
[0021] The portable rapid disinfection device for epidemic prevention provided by this invention features a structural design that combines a compartmentalized connecting column, a fixed circular plate, a cross-shaped compartmentalized partition, and a compartmentalized connecting assembly. This design allows for the easy division of the liquid storage chamber within the multi-functional disinfection bottle into four separate, isolated areas via the fixed circular plate and cross-shaped compartmentalized partition. This facilitates the storage of disinfectants with different functions, reduces the number of disinfection spray bottles required, and makes the device easier for staff to carry and operate. Furthermore, the compartmentalized connecting assembly allows for quick and easy replacement of the spray nozzles with disinfectants in different chambers by rotating the compartmentalized connecting column to meet varying epidemic prevention needs. This facilitates portability, enhances the device's adaptability to different epidemic prevention situations, and further improves its effectiveness.
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Figure CN118697917B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of epidemic prevention and disinfection technology, and in particular to a portable rapid disinfection device specifically designed for epidemic prevention. Background Technology
[0002] Portable rapid disinfection devices are designed for quick and convenient disinfection of various object surfaces. These devices are typically small, lightweight, and easy to carry, making them ideal for use in public places, homes, offices, hospitals, and other similar environments. When using portable rapid disinfection devices, always follow the manufacturer's instructions and safety guidelines. In particular, ultraviolet light and chemical disinfectants may be unsafe for humans and pets; therefore, ensure that no one or pets come into contact with the disinfection area during use. Furthermore, consider whether the material of the object is suitable for a particular disinfection method to avoid damage.
[0003] For example, patent (CN111870782A) discloses a portable disinfectant sprayer. The portable disinfectant sprayer includes a grippable outer shell, a nozzle on the front of the shell, a clip on the back of the shell for attaching to a belt, a reservoir for filling with disinfectant solution inside the shell, and a press part at the front of the shell for easy thumb pressing. When the press part is pressed, the disinfectant solution in the reservoir can be sprayed from the nozzle into the palm of the hand. Its advantages are that it is designed to be grippable, compact in size, and can be clipped to a belt when going out. When in use, it does not need to be removed. Simply bring the palm close and press the button with the thumb to spray the disinfectant liquid into the palm of the hand for disinfection at any time. Therefore, this portable disinfectant sprayer is convenient to carry and can be used at any time.
[0004] When using the above technology, the following technical problems were found in the existing technology: the existing disinfection device can only store one type of disinfectant liquid in the bottle. In order to meet different epidemic prevention needs, it is necessary to carry multiple different disinfectant liquids for disinfection. When carrying multiple disinfectant liquids separately, they occupy a lot of space, and the corresponding disinfectant liquid needs to be found according to the disinfection needs. The effect is not good and the efficiency is not high. To this end, we designed a portable rapid disinfection device for epidemic prevention to provide another technical solution to the above technical problems. Summary of the Invention
[0005] Based on this, it is necessary to provide a portable rapid disinfection device specifically for epidemic prevention to address the aforementioned technical issues. Through the structural design of a compartmentalized connecting column, a fixed circular plate, a cross-shaped compartmentalized partition, and a compartmentalized connecting assembly, the liquid storage chamber inside the multi-functional disinfection bottle can be easily divided into four separate, isolated areas via the fixed circular plate and the cross-shaped compartmentalized partition. This facilitates the storage of disinfectants with different functions, reduces the number of disinfection spray bottles required, and makes it easier for staff to carry and operate. Furthermore, the compartmentalized connecting assembly allows for quick and easy replacement of the spray nozzles with disinfectants in different chambers by rotating the compartmentalized connecting column when facing different epidemic prevention needs. This facilitates the carrying of the device, improves its adaptability to various epidemic prevention situations, and further enhances its effectiveness.
[0006] The design of the injection seat and threaded sealing column allows for quick replenishment of disinfectant in a specific cavity of the multi-functional disinfection bottle after use. This reduces the cumbersome steps of changing the disinfectant and improves the efficiency of replenishing disinfectant in different cavities of the multi-functional disinfection bottle, thereby enhancing the effectiveness of the device.
[0007] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0008] A portable rapid disinfection device for epidemic prevention includes a multi-functional disinfection bottle, with a compartment connecting column rotatably connected to the top of the multi-functional disinfection bottle, a spray head detachably connected to the top of the compartment connecting column, a fixed circular plate fixed to the top of the inner side of the multi-functional disinfection bottle, and the bottom end of the compartment connecting column rotatably connected to the fixed circular plate.
[0009] A cross-shaped compartment partition is fixed at the bottom of the fixed circular plate. The bottom of the cross-shaped compartment partition is fixed to the multi-functional disinfection bottle. A fixed infusion tube is fixed inside the compartment connecting column. The top of the fixed infusion tube is detachably connected to the spray head. Multiple compartment fixing seats are fixed at the top of the fixed circular plate. A compartment outlet tube is fixed at the bottom of the compartment fixing seat. The bottom of the compartment outlet tube extends through the fixed circular plate to the bottom of the inside of the multi-functional disinfection bottle.
[0010] The compartmentalized connecting assembly is located inside the bottom end of the compartmentalized connecting column. The assembly includes a compartmentalized connecting seat, a second sealing rubber gasket, a liquid outlet connection hole, and a liquid outlet connection pipe seat. The compartmentalized connecting seat is located on the inner side of the bottom end of the compartmentalized connecting column. A limiting sliding strip is fixed to the top of the compartmentalized connecting seat. A sliding groove is formed on the inner side of the compartmentalized connecting column and the inner side of the compartmentalized fixing seat, corresponding to the limiting sliding strip. The compartmentalized connecting seat is slidably connected to the compartmentalized connecting column via the limiting sliding strip. A second sealing rubber gasket is fixed to the center of the compartmentalized connecting seat. A liquid outlet connection hole is formed at one end of the bottom end of the compartmentalized connecting seat. A liquid outlet connection pipe seat is fixed on the inner side of the compartmentalized connecting seat, corresponding to the liquid outlet connection hole. The compartmentalized connecting assembly is used in conjunction with the compartmentalized fixing seat.
[0011] In a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, a connecting groove is provided at the top of the compartment fixing base and near the compartment connecting column. A leak-proof reset spring is fixed to the inner side of the connecting groove and at the end away from the compartment connecting column. A leak-proof reset circular plate is fixed to the end of the leak-proof reset spring near the compartment connecting column. A leak-proof rubber ring is fixed to the inner side of the leak-proof reset circular plate. The leak-proof rubber ring fits against the compartment fixing base. A first sealing rubber gasket is fixed to the end of the connecting groove near the compartment connecting column.
[0012] In a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, the compartment connection assembly includes an arc-shaped connecting hose, a spring-loaded connecting hose, a connecting block, and an adjusting screw. A connecting block is fixed to the inner side of the compartment connection seat at the end furthest from the corresponding compartment fixing seat. An arc-shaped connecting hose is fixed to the end of the outlet connecting tube seat near the connecting block. The end of the arc-shaped connecting hose furthest from the outlet connecting tube seat extends through the compartment connection seat and the connecting block into the compartment connection column. A spring-loaded groove is provided inside the compartment connection column at a position corresponding to the arc-shaped connecting hose. A spring-loaded connecting hose is provided inside the spring-loaded groove. The bottom end of the spring-loaded connecting hose is fixed to the arc-shaped connecting hose, and the top end of the spring-loaded connecting hose is fixed to the fixed infusion tube. An adjusting screw is fixed to the end of the connecting block furthest from the compartment connection seat.
[0013] As a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, the compartment connection assembly further includes a threaded sleeve, a first bevel gear, an adjusting transmission column, and a second bevel gear. The threaded sleeve is rotatably connected to the center position inside the bottom end of the compartment connection column and to a position corresponding to the compartment connection seat. The threaded sleeve is threadedly connected to the adjusting screw. The first bevel gear is fixed to the outside of the threaded sleeve. The adjusting transmission column is rotatably connected to the inside of the compartment connection column and to a position corresponding to the first bevel gear. The second bevel gear is fixed to the bottom end of the adjusting transmission column, and the second bevel gear meshes with the first bevel gear.
[0014] As a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, the compartment connection assembly further includes a first transmission gear, an adjusting column, and a second transmission gear. The first transmission gear is fixed at the top of the adjusting column, and an adjusting column is fixed on one side of the top of the compartment connection column and at a position corresponding to the first transmission gear. The second transmission gear is rotatably connected to the outside of the adjusting column, and the second transmission gear meshes with the first transmission gear.
[0015] As a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, the compartment connection assembly further includes an adjusting sleeve, an annular rack, and a toggle groove. The adjusting sleeve is rotatably connected to the top of the multifunctional disinfection bottle and the bottom of the compartment connection column. An annular rack is fixed on the inner side of the adjusting sleeve and meshes with the adjusting column. A toggle groove is provided on the outer side of the adjusting sleeve.
[0016] In a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, an injection seat is fixed at the top of the fixed circular plate and at a position corresponding to the multiple compartment fixing seats. An injection tube is fixed at the bottom of the injection seat, and the bottom of the injection tube extends to the bottom of the inside of the multifunctional disinfection bottle. A sealing circular seat is fixed on the inner side of the top of the injection seat.
[0017] As a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, the inner side of the sealing round seat is threadedly connected to a threaded sealing column, the top of the inner side of the threaded sealing column is fixed with a toggle column, the outer sides of both ends of the toggle column are rotatably connected with connecting rings, and the bottom end of the connecting ring is fixed with a quick-release U-shaped frame.
[0018] In a preferred embodiment of the portable rapid disinfection device for epidemic prevention provided by the present invention, a snap-fit strip is rotatably connected to the bottom end of the inner side of the threaded sealing column, and a snap-fit block is fixed to the end of the snap-fit strip away from the injection tube. The snap-fit block is snap-fit connected to the quick-release U-shaped frame. A limit groove is opened at the bottom end of the inner side of the threaded sealing column away from the injection tube. A limit spring is fixed inside the limit groove, and a limit steel ball is fixed at the top of the limit spring. The limit steel ball is in contact with the snap-fit strip.
[0019] It is clear without a doubt that the technical solution described above in this application can solve the technical problem that this application aims to address.
[0020] Meanwhile, through the above technical solutions, the present invention has at least the following beneficial effects:
[0021] The portable rapid disinfection device for epidemic prevention provided by this invention features a structural design that combines a compartmentalized connecting column, a fixed circular plate, a cross-shaped compartmentalized partition, and a compartmentalized connecting assembly. This design allows for the easy division of the liquid storage chamber within the multi-functional disinfection bottle into four separate, isolated areas via the fixed circular plate and cross-shaped compartmentalized partition. This facilitates the storage of disinfectants with different functions, reduces the number of disinfection spray bottles required, and makes the device easier for staff to carry and operate. Furthermore, the compartmentalized connecting assembly allows for quick and easy replacement of the spray nozzles with disinfectants in different chambers by rotating the compartmentalized connecting column to meet varying epidemic prevention needs. This facilitates portability, enhances the device's adaptability to different epidemic prevention situations, and further improves its effectiveness.
[0022] The design of the injection seat and threaded sealing column allows for quick replenishment of disinfectant in a specific cavity of the multi-functional disinfection bottle after use. This reduces the cumbersome steps of changing the disinfectant and improves the efficiency of replenishing disinfectant in different cavities of the multi-functional disinfection bottle, thereby enhancing the effectiveness of the device. Attached Figure Description
[0023] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0025] Figure 2 This is a schematic diagram of the structure of the fixed circular plate and the cross-shaped compartment partition of the present invention;
[0026] Figure 3 This is a cross-sectional structural schematic diagram of the compartmentalized connecting column of the present invention;
[0027] Figure 4 This is a cross-sectional structural schematic diagram of the compartment fixing seat of the present invention;
[0028] Figure 5 This is a cross-sectional structural schematic diagram of the compartment connecting seat of the present invention;
[0029] Figure 6 This is a schematic diagram of the structure of the first transmission gear and the second transmission gear of the present invention;
[0030] Figure 7 This is a schematic diagram of the structure of the injection seat and injection tube of the present invention;
[0031] Figure 8 This is a schematic diagram of the structure of the sealing round seat and the threaded sealing post of the present invention;
[0032] Figure 9 This is a cross-sectional structural schematic diagram of the threaded sealing column of the present invention.
[0033] The markings in the diagram are explained as follows:
[0034] 1. Multifunctional disinfection bottle; 2. Compartment connecting column; 3. Spray head; 4. Fixing round plate; 5. Cross-shaped compartment partition; 6. Fixing infusion tube; 7. Compartment fixing seat; 8. Compartment outlet tube; 9. Leak-proof reset spring; 10. Leak-proof reset round plate; 11. Leak-proof rubber ring; 12. First sealing rubber gasket; 13. Compartment connecting seat; 14. Second sealing rubber gasket; 15. Outlet connection hole; 16. Outlet connection tube seat; 17. Arc-shaped connecting hose; 18. Rebound connecting hose; 19. Connecting block; 20. Adjusting screw; 21. 21. Threaded sleeve; 22. First bevel gear; 23. Adjusting transmission column; 24. Second bevel gear; 25. First transmission gear; 26. Adjusting column; 27. Second transmission gear; 28. Adjusting sleeve; 29. Annular rack; 30. Actuating groove; 31. Injection seat; 32. Injection pipe; 33. Sealing round seat; 34. Threaded sealing column; 35. Actuating column; 36. Connecting ring; 37. Quick-release U-shaped frame; 38. Snap-fit strip; 39. Snap-fit block; 40. Limiting spring; 41. Limiting steel ball; 42. Limiting moving strip. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0036] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0037] It should be noted that, unless otherwise specified, the embodiments and features and technical solutions in the present invention can be combined with each other.
[0038] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0039] Example 1
[0040] Reference Figures 1-6 A portable rapid disinfection device for epidemic prevention, consisting of a multi-functional disinfection bottle 1, a compartment connecting column 2 rotatably connected to the top of the multi-functional disinfection bottle 1, a spray head 3 detachably connected to the top of the compartment connecting column 2, a fixed circular plate 4 fixed to the top of the inner side of the multi-functional disinfection bottle 1, and a rotatably connected bottom end of the compartment connecting column 2 to the fixed circular plate 4.
[0041] A cross-shaped compartment partition 5 is fixed at the bottom of a fixed circular plate 4. The bottom of the cross-shaped compartment partition 5 is fixed to a multi-functional disinfection bottle 1. A fixed infusion tube 6 is fixed inside the compartment connecting column 2. The top of the fixed infusion tube 6 is detachably connected to a spray head 3. Multiple compartment fixing seats 7 are fixed at the top of the fixed circular plate 4. A compartment outlet tube 8 is fixed at the bottom of the compartment fixing seat 7. The bottom of the compartment outlet tube 8 extends through the fixed circular plate 4 to the bottom of the inside of the multi-functional disinfection bottle 1.
[0042] The compartmentalized connection assembly is located inside the bottom end of the compartmentalized connection column 2. The compartmentalized connection assembly includes a compartmentalized connection seat 13, a second sealing rubber gasket 14, a liquid outlet connection hole 15, and a liquid outlet connection pipe seat 16. The compartmentalized connection seat 13 is located on the inner side of the bottom end of the compartmentalized connection column 2. A limiting sliding strip 42 is fixed at the top of the compartmentalized connection seat 13. A sliding groove is opened on the inner side of the compartmentalized connection column 2 and the inner side of the compartmentalized fixing seat 7, corresponding to the limiting sliding strip 42. The compartmentalized connection seat 13 is slidably connected to the compartmentalized connection column 2 through the limiting sliding strip 42. The second sealing rubber gasket 14 is fixed at the center of the compartmentalized connection seat 13. A liquid outlet connection hole 15 is opened at one end of the bottom end of the compartmentalized connection seat 13. A liquid outlet connection pipe seat 16 is fixed on the inner side of the compartmentalized connection seat 13, corresponding to the liquid outlet connection hole 15. The compartmentalized connection assembly is used in conjunction with the compartmentalized fixing seat 7.
[0043] Specifically, the functional sterilization bottle 1 has positioning marks corresponding to multiple compartment fixing seats 7. The connection position between the compartment connecting seat 13 and the corresponding compartment fixing seat 7 can be located through the positioning marks.
[0044] During operation, after the compartment connecting seat 13 is disengaged from the compartment fixing seat 7, the compartment connecting seat 13 and the compartment connecting column 2 are rotated to the desired position on the disinfectant cavity according to the positioning mark on the multi-functional disinfection bottle 1. Then, by rotating the adjusting sleeve 28 in the opposite direction, the compartment connecting seat 13 is driven into the compartment fixing seat 7 on the desired cavity. When the compartment connecting seat 13 moves into the compartment fixing seat 7, it lifts the anti-leakage reset round plate 10 and moves it away from the compartment connecting column 2, so that it retracts into the compartment fixing seat 7 through the anti-leakage reset spring 9. This causes the liquid outlet connection hole 15 and the liquid outlet connection tube seat 16 on it to fit with the compartment liquid outlet tube 8 in the compartment fixing seat 7. The second sealing rubber gasket 14 on the compartment connecting seat 13 fits with the first sealing rubber gasket 12 on the compartment fixing seat 7 to form a sealed state, which facilitates the spraying of the required disinfectant from the spray head 3 through the fixed infusion tube 6, the arc-shaped connecting hose 17 and the spring-loaded connecting hose 18.
[0045] Specifically, a connecting groove is provided at the top of the compartment fixing seat 7 and near the compartment connecting column 2. A leak-proof reset spring 9 is fixed to the inner side of the connecting groove and the end away from the compartment connecting column 2. A leak-proof reset circular plate 10 is fixed to the end of the leak-proof reset spring 9 near the compartment connecting column 2. A leak-proof rubber ring 11 is fixed to the inner side of the leak-proof reset circular plate 10. The leak-proof rubber ring 11 fits against the compartment fixing seat 7. A first sealing rubber gasket 12 is fixed to the end of the connecting groove near the compartment connecting column 2. The compartment connection assembly includes an arc-shaped connecting hose 17, a spring-loaded connecting hose 18, a connecting block 19, and an adjusting screw 20. The connecting block 19 is fixed to the inner side of the compartment connection seat 13 and at the end away from the corresponding compartment fixing seat 7. The arc-shaped connecting hose 17 is fixed to the end of the outlet connecting tube seat 16 near the connecting block 19. The end of the arc-shaped connecting hose 17 away from the outlet connecting tube seat 16 extends through the compartment connection seat 13 and the connecting block 19 into the compartment connection column 2. A spring-loaded groove is provided inside the compartment connection column 2 at a position corresponding to the arc-shaped connecting hose 17. The spring-loaded connecting hose 18 is provided inside the spring-loaded groove. The bottom end of the spring-loaded connecting hose 18 is fixed to the arc-shaped connecting hose 17, and the top end of the spring-loaded connecting hose 18 is fixed to the fixed infusion tube 6. The adjusting screw 20 is fixed to the end of the connecting block 19 away from the compartment connection seat 13.
[0046] The compartment connection assembly also includes a threaded sleeve 21, a first bevel gear 22, an adjusting transmission column 23, and a second bevel gear 24. The threaded sleeve 21 is rotatably connected to the center of the bottom end of the compartment connection column 2, corresponding to the position of the compartment connection seat 13. The threaded sleeve 21 is threadedly connected to the adjusting screw 20. The first bevel gear 22 is fixed to the outside of the threaded sleeve 21. The adjusting transmission column 23 is rotatably connected to the inside of the compartment connection column 2, corresponding to the position of the first bevel gear 22. The second bevel gear 24 is fixed to the bottom end of the adjusting transmission column 23, and the second bevel gear 24 meshes with the first bevel gear 22.
[0047] Specifically, the compartment connection assembly also includes a first transmission gear 25, an adjusting column 26, and a second transmission gear 27. The first transmission gear 25 is fixed to the top of the adjusting transmission column 23. The adjusting column 26 is fixed to one side of the top of the compartment connection column 2 and at a position corresponding to the first transmission gear 25. The second transmission gear 27 is rotatably connected to the outside of the adjusting column 26. The second transmission gear 27 meshes with the first transmission gear 25. The compartment connection assembly also includes an adjusting sleeve 28, an annular rack 29, and a moving groove 30. The adjusting sleeve 28 is rotatably connected to the top of the multi-functional disinfection bottle 1 and to the bottom of the compartment connection column 2. The annular rack 29 is fixed to the inside of the adjusting sleeve 28 and meshes with the adjusting column 26. The moving groove 30 is provided on the outside of the adjusting sleeve 28.
[0048] During operation, when the device is in use and after spraying disinfectant on one area, it is necessary to change to another disinfectant. The adjusting sleeve 28 is rotated by turning the adjusting groove 30. This causes the annular rack 29 inside the adjusting sleeve 28 to drive the adjusting column 26 and the second transmission gear 27 to rotate. The second transmission gear 27 then drives the first transmission gear 25 and the adjusting transmission column 23 to rotate. The adjusting transmission column 23 then drives the second bevel gear 24 to rotate. The second bevel gear 24 then drives the first bevel gear 22 and the threaded sleeve 21 to rotate. This causes the threaded sleeve 21 to move the adjusting screw 20 and the compartment connecting seat 13 away from the corresponding compartment fixing seat 7. When the compartment connecting seat 13 moves via the adjusting screw 20, it is limited by the moving limit bar 42 at the compartment connecting column 26 and the... The compartment fixing seat 7 maintains linear movement, and the adjusting screw 20 drives the compartment connecting seat 13 to move away from the corresponding compartment fixing seat 7 through the connecting block 19. This causes the liquid outlet connection hole 15 on the compartment connecting seat 13 to no longer fit with the compartment liquid outlet pipe 8 in the compartment fixing seat 7. As the compartment connecting seat 13 moves, the arc-shaped connecting hose 17 inside it retracts into the compartment connecting column 2 along with the spring-loaded connecting hose 18, thereby causing the compartment connecting seat 13 to detach from the compartment fixing seat 7. After the compartment connecting seat 13 detaches from the compartment fixing seat 7, the leak-proof reset round plate 10 and the leak-proof rubber ring 11 move from the compartment fixing seat 7 to a position across the compartment liquid outlet pipe 8 due to the elasticity of the leak-proof reset spring 9, thereby preventing the disinfectant in the disused cavity from leaking.
[0049] The portable rapid disinfection device for epidemic prevention provided in this embodiment achieves a semi-automated operation process for using multiple different disinfectants in one device through simple rotational and linear motion. The storage chamber inside the multi-functional disinfection bottle 1 is conveniently divided into four separate areas by the fixed circular plate 4 and the cross-shaped compartment partition 5, facilitating the storage of disinfectants with different functions and reducing the number of disinfection spray bottles required. This makes it easier for staff to carry and operate the device. Furthermore, the structural design of the compartment connection assembly allows for quick and easy replacement of the spray head 3 with the disinfectant in different chambers by rotating the compartment connection column 2 when facing different epidemic prevention needs. This facilitates the carrying of the device, improves its adaptability to various epidemic prevention situations, and further enhances its effectiveness.
[0050] Example 2
[0051] Reference Figures 7-9 A portable rapid disinfection device for epidemic prevention, with a liquid injection seat 31 fixed at the top of the fixed circular plate 4 and at the corresponding positions of multiple compartment fixed seats 7. A liquid injection tube 32 is fixed at the bottom of the liquid injection seat 31, and the bottom of the liquid injection tube 32 extends to the bottom of the inner side of the multi-functional disinfection bottle 1. A sealing circular seat 33 is fixed on the inner side of the top of the liquid injection seat 31.
[0052] A threaded sealing post 34 is threadedly connected to the inner side of the sealing round seat 33. A toggle post 35 is fixed to the top of the inner side of the threaded sealing post 34. A connecting ring 36 is rotatably connected to the outer sides of both ends of the toggle post 35. A quick-release U-shaped frame 37 is fixed to the bottom end of the connecting ring 36. A snap-fit strip 38 is rotatably connected to the bottom of the inner side of the threaded sealing post 34. A snap-fit block 39 is fixed to the end of the snap-fit strip 38 away from the injection tube 32. The snap-fit block 39 is snap-fit connected to the quick-release U-shaped frame 37. A limit groove is opened at the bottom of the inner side of the threaded sealing post 34 away from the injection tube 32. A limit spring 40 is fixed to the inner side of the limit groove. A limit steel ball 41 is fixed to the top of the limit spring 40. The limit steel ball 41 is in contact with the snap-fit strip 38.
[0053] During operation, when the disinfectant in one of the chambers of the multi-functional disinfection bottle 1 is used up, the limiting steel ball 41 is pressed down to press it into the threaded sealing column 34 through the leak-proof reset round plate 10. Then, the quick-release U-shaped bracket 37 is pulled around the actuating column 35 to pull it out from the snap-fit strip 38. Then, the threaded sealing column 34 is rotated by the quick-release U-shaped bracket 37 to turn it out from the sealing round seat 33, thereby opening the injection port on the corresponding chamber to facilitate the addition of the corresponding disinfectant.
[0054] The portable rapid disinfection device for epidemic prevention provided in this embodiment allows for quick replenishment of disinfectant in a certain cavity of the multi-functional disinfection bottle 1 after it has been used up. This reduces the cumbersome steps of changing the disinfectant in the device, improves the efficiency of replenishing disinfectant in different cavities of the multi-functional disinfection bottle 1, and further enhances the effectiveness of the device.
[0055] The portable rapid disinfection device for epidemic prevention provided by this invention is used as follows: When the device is in use, after spraying and disinfecting a virus in one area, and it is necessary to change to another disinfectant, the adjusting sleeve 28 is rotated by turning the toggle groove 30. This causes the annular rack 29 inside the adjusting sleeve 28 to drive the adjusting column 26 and the second transmission gear 27 to rotate. In turn, the second transmission gear 27 drives the first transmission gear 25 and the adjusting transmission column 23 to rotate. This causes the adjusting transmission column 23 to drive the second bevel gear 24 to rotate. In turn, the second bevel gear 24 drives the first bevel gear 22 and the threaded sleeve 21 to rotate. This causes the threaded sleeve 21 to drive the adjusting screw 20 and the compartment connecting seat 13 to move away from the corresponding compartment fixing seat 7. Then, the adjusting screw 20 drives the compartment connecting seat 13 to move away from the corresponding compartment fixed seat 7 through the connecting block 19, so that the liquid outlet connection hole 15 on the compartment connecting seat 13 is no longer in contact with the compartment liquid outlet pipe 8 in the compartment fixed seat 7. As the compartment connecting seat 13 moves, the arc-shaped connecting hose 17 inside it retracts into the compartment connecting column 2 with the rebound connecting hose 18, thereby causing the compartment connecting seat 13 to separate from the compartment fixed seat 7. After the compartment connecting seat 13 separates from the compartment fixed seat 7, the leak-proof reset round plate 10 and the leak-proof rubber ring 11 move from the compartment fixed seat 7 to a position that crosses the compartment liquid outlet pipe 8 with the elasticity of the leak-proof reset spring 9, thereby preventing the disinfectant in the unused cavity from leaking.
[0056] After the compartment connecting seat 13 is disengaged from the compartment fixing seat 7, the compartment connecting seat 13 and the compartment connecting column 2 are rotated to the desired position on the disinfectant cavity according to the positioning mark on the multi-functional disinfection bottle 1. Then, by rotating the adjusting sleeve 28 in the opposite direction, the compartment connecting seat 13 is driven into the compartment fixing seat 7 on the desired cavity. When the compartment connecting seat 13 moves into the compartment fixing seat 7, it lifts the anti-leakage reset round plate 10 and moves it away from the compartment connecting column 2, so that it retracts into the compartment fixing seat 7 through the anti-leakage reset spring 9. This causes the liquid outlet connection hole 15 and the liquid outlet connection tube seat 16 on it to fit with the compartment liquid outlet tube 8 in the compartment fixing seat 7. The second sealing rubber gasket 14 on the compartment connecting seat 13 fits with the first sealing rubber gasket 12 on the compartment fixing seat 7 to form a sealed state, which facilitates the spraying of the required disinfectant from the spray head 3 through the fixed infusion tube 6, the arc-shaped connecting hose 17 and the spring-loaded connecting hose 18.
[0057] When the disinfectant in one of the chambers of the multi-functional disinfection bottle 1 is used up, the limiting steel ball 41 is pressed down, and it is pressed into the threaded sealing column 34 by the limiting spring 40. Then, the quick-release U-shaped bracket 37 is pulled around the actuating column 35, and the quick-release U-shaped bracket 37 is pulled out from the snap-fit strip 38. Then, the threaded sealing column 34 is rotated by the quick-release U-shaped bracket 37, and it is turned out from the sealing round seat 33, thereby opening the liquid injection port on the corresponding chamber, so that the corresponding disinfectant can be added into it.
[0058] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to specific implementations. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. A portable rapid disinfection device specifically for epidemic prevention, characterized in that: include: A multi-functional disinfection bottle, wherein a compartment connecting column is rotatably connected to the top of the multi-functional disinfection bottle, a spray head is detachably connected to the top of the compartment connecting column, a fixed circular plate is fixed to the top of the inner side of the multi-functional disinfection bottle, and the bottom end of the compartment connecting column is rotatably connected to the fixed circular plate. A cross-shaped compartment partition is fixed at the bottom of the fixed circular plate. The bottom of the cross-shaped compartment partition is fixed to the multi-functional disinfection bottle. A fixed infusion tube is fixed inside the compartment connecting column. The top of the fixed infusion tube is detachably connected to the spray head. Multiple compartment fixing seats are fixed at the top of the fixed circular plate. A compartment outlet tube is fixed at the bottom of the compartment fixing seat. The bottom of the compartment outlet tube extends through the fixed circular plate to the bottom of the inside of the multi-functional disinfection bottle. The compartmentalized connecting assembly is located inside the bottom end of the compartmentalized connecting column. The assembly includes a compartmentalized connecting seat, a second sealing rubber gasket, a liquid outlet connection hole, and a liquid outlet connection pipe seat. The compartmentalized connecting seat is located on the inner side of the bottom end of the compartmentalized connecting column. A limiting sliding strip is fixed to the top of the compartmentalized connecting seat. A sliding groove is formed on the inner side of the compartmentalized connecting column and the inner side of the compartmentalized fixing seat, corresponding to the limiting sliding strip. The compartmentalized connecting seat is slidably connected to the compartmentalized connecting column via the limiting sliding strip. A second sealing rubber gasket is fixed to the center of the compartmentalized connecting seat. A liquid outlet connection hole is formed at one end of the bottom end of the compartmentalized connecting seat. A liquid outlet connection pipe seat is fixed on the inner side of the compartmentalized connecting seat, corresponding to the liquid outlet connection hole. The compartmentalized connecting assembly is used in conjunction with the compartmentalized fixing seat. The compartment connection assembly includes an arc-shaped connecting hose, a spring-loaded connecting hose, a connecting block, and an adjusting screw. A connecting block is fixed to the inner side of the compartment connection seat and at the end away from the corresponding compartment fixing seat. An arc-shaped connecting hose is fixed to the end of the outlet connecting pipe seat near the connecting block. The end of the arc-shaped connecting hose away from the outlet connecting pipe seat extends through the compartment connection seat and the connecting block into the interior of the compartment connection column. A spring-loaded groove is provided inside the compartment connection column at a position corresponding to the arc-shaped connecting hose. A spring-loaded connecting hose is provided inside the spring-loaded groove. The bottom end of the spring-loaded connecting hose is fixed to the arc-shaped connecting hose, and the top end of the spring-loaded connecting hose is fixed to the fixed infusion tube. An adjusting screw is fixed to the end of the connecting block away from the compartment connection seat. The compartment connection assembly further includes a threaded sleeve, a first bevel gear, an adjusting transmission column, and a second bevel gear. The threaded sleeve is rotatably connected to the center of the bottom end of the compartment connection column, corresponding to the compartment connection seat. The threaded sleeve is threadedly connected to the adjusting screw. The first bevel gear is fixed to the outside of the threaded sleeve. The adjusting transmission column is rotatably connected to the inside of the compartment connection column, corresponding to the first bevel gear. The bottom end of the adjusting transmission column is fixed to the second bevel gear, which meshes with the first bevel gear.
2. The portable rapid disinfection device for epidemic prevention as described in claim 1, characterized in that, A connecting groove is provided at the top of the compartment fixing seat and near the compartment connecting column. A leak-proof reset spring is fixed to the inner side of the connecting groove and the end away from the compartment connecting column. A leak-proof reset circular plate is fixed to the end of the leak-proof reset spring near the compartment connecting column. A leak-proof rubber ring is fixed to the inner side of the leak-proof reset circular plate. The leak-proof rubber ring fits into the compartment fixing seat. A first sealing rubber gasket is fixed to the end of the connecting groove near the compartment connecting column.
3. The portable rapid disinfection device for epidemic prevention as described in claim 2, characterized in that, The compartment connection assembly further includes a first transmission gear, an adjusting column, and a second transmission gear. The first transmission gear is fixed to the top of the adjusting transmission column. An adjusting column is fixed to one side of the top of the compartment connection column and at a position corresponding to the first transmission gear. The second transmission gear is rotatably connected to the outside of the adjusting column, and the second transmission gear meshes with the first transmission gear.
4. The portable rapid disinfection device for epidemic prevention as described in claim 3, characterized in that, The compartment connection assembly further includes an adjusting sleeve, an annular rack, and a toggle groove. The adjusting sleeve is rotatably connected to the top of the multifunctional disinfection bottle and the bottom of the compartment connection column. An annular rack is fixed on the inner side of the adjusting sleeve and meshes with the adjusting column. A toggle groove is provided on the outer side of the adjusting sleeve.
5. The portable rapid disinfection device for epidemic prevention as described in claim 1, characterized in that, An injection seat is fixed at the top of the fixed circular plate and at a position corresponding to the multiple compartment fixing seats. An injection tube is fixed at the bottom of the injection seat, and the bottom end of the injection tube extends to the bottom of the inside of the multi-functional disinfection bottle. A sealing circular seat is fixed on the inner side of the top of the injection seat.
6. The portable rapid disinfection device for epidemic prevention as described in claim 5, characterized in that, The inner side of the sealing round seat is threadedly connected to a threaded sealing column. The top of the inner side of the threaded sealing column is fixed with a toggle column. Both ends of the toggle column are rotatably connected to connecting rings. The bottom of the connecting ring is fixed with a quick-release U-shaped frame.
7. The portable rapid disinfection device for epidemic prevention as described in claim 6, characterized in that, A snap-fit strip is rotatably connected to the bottom of the inner side of the threaded sealing column. A snap-fit block is fixed to the end of the snap-fit strip away from the injection tube. The snap-fit block is snap-fit connected to the quick-release U-shaped bracket. A limit groove is opened at the bottom of the inner side of the threaded sealing column away from the injection tube. A limit spring is fixed inside the limit groove. A limit steel ball is fixed at the top of the limit spring. The limit steel ball is in contact with the snap-fit strip.
Citation Information
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