Disinfection device for floating needle inserting device

By designing a disinfection device for the floating needle inlet, the disinfection, cleaning, drying and dehumidification of the needle inlet is achieved, and the problems of cumbersome operation and poor disinfection effect in the existing technology are solved, and disinfection efficiency and hygiene safety are improved.

CN120285248APending Publication Date: 2025-07-11PINGXIANG MATERNAL & CHILD HEALTH HOSPITAL
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Patent Information

Application Number
CN202510508196.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing disinfection method of floating needle inlet device is complicated to operate, and the disinfection effect is difficult to guarantee, there is a risk of cross-infection and is inefficient, making it difficult to meet the efficient and convenient disinfection needs.

Method used

A floating needle inlet needle disinfection device is designed, including positioning components, cleaning components, lifting components, drying components, dehumidification components and storage components. The needle inlet device is moved to the cleaning chamber for cleaning and disinfection. The drying components are used to dry the surface moisture, and the dehumidification components absorb the moisture in the hot air. The storage components are used to store the dry needle inlet device to achieve integrated disinfection, cleaning, drying and dehumidification.

Benefits of technology

The comprehensive and efficient disinfection of the needle inlet device has been achieved, which reduces secondary pollution, improves the convenience and hygiene of disinfection work, and avoids pollution caused by transfer and handling.

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Abstract

The invention discloses a floating needle inserting device disinfection device which comprises a box body and a base which are connected with each other, and further comprises a positioning assembly, a cleaning assembly, a partition bin, a lifting assembly, a waste liquid collecting assembly, a drying assembly, a dehumidification assembly and a storage assembly. The positioning assembly is used for fixing the needle inserting device; the cleaning assembly is arranged at the inner bottom of the box body, the cleaning assembly is provided with a cleaning bin, and the cleaning bin is provided with a first opening used for containing the positioning assembly and the needle inserting device so as to clean and disinfect the needle inserting device; the partition bin is arranged at the inner top of the box body, and a second opening is formed in the bottom of the partition bin; the lifting assembly is arranged in the box body and connected with the positioning assembly so that the positioning assembly can move between the interior of the partition bin and the interior of the cleaning bin in the vertical direction. The waste liquid collecting assembly is arranged in the base, connected and communicated with the cleaning assembly and used for collecting waste liquid generated by the cleaning assembly; the drying assembly is arranged in the box body, connected and communicated with the partition bin and used for conveying hot air into the partition bin so as to dry moisture on the surface of the needle inserting device.
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Description

Technical Field

[0001] This application relates to the technical field of medical device disinfection, and particularly to a disinfection device for a floating needle injector. Background Art

[0002] In the medical field, the floating needle therapy is widely used due to its unique advantages. However, the floating needle injector directly contacts the human skin during use, posing a risk of cross-infection. Traditional disinfection methods are often cumbersome to operate, difficult to ensure the disinfection effect, and cannot meet the efficient and convenient clinical needs. For example, some existing disinfection methods may simply wipe or soak, making it difficult to thoroughly kill various germs attached to the injector and disinfect the injector. Moreover, there are unreasonable aspects in the disinfection process. The disinfection process of the injector usually goes through processes such as disinfection, wiping, storage, and treatment of disinfection waste. During the entire process, there are many transfers and repeated picking and placing actions, which greatly increase the probability of secondary contamination and are inefficient and highly dependent on manual labor. Manual disinfection also has a high risk of negligence. The structure of the injector itself is relatively complex, and some parts are difficult to clean thoroughly. Summary of the Invention

[0003] This application provides a disinfection device for a floating needle injector, which can integrate disinfection, cleaning, drying, dehumidification, storage, and access of the injector, and can comprehensively and efficiently clean and disinfect the injector.

[0004] In a first aspect, this application provides a disinfection device for a floating needle injector, including a box body and a base connected to each other, and further including a positioning component, a cleaning component, a partition chamber, a lifting component, a waste liquid collection component, a drying component, a dehumidification component, and a storage component; the positioning component is used to fix the injector; the cleaning component is arranged at the inner bottom of the box body, and the cleaning component has a cleaning chamber with a first opening for accommodating the positioning component and the injector to clean and disinfect the injector; the partition chamber is arranged at the inner top of the box body, and the bottom of the partition chamber has a second opening; the lifting component is arranged inside the box body and is connected to the positioning component to move the positioning component vertically between the inside of the partition chamber and the inside of the cleaning chamber; the waste liquid collection component is arranged inside the base and is connected to communicate with the cleaning component to collect the waste liquid generated by the cleaning component; the drying component is arranged inside the box body and is connected to communicate with the partition chamber to convey hot air into the inside of the partition chamber to dry the moisture on the surface of the injector; the dehumidification component is connected to communicate with the partition chamber and the drying component to absorb the moisture in the hot air discharged from the inside of the partition chamber, so that the dry hot air enters the partition chamber through the drying component; the storage component is arranged on the box body to store the dried injector.

[0005] In some embodiments, the positioning assembly includes a first sealing plate and a plurality of limit frames, the first sealing plate is connected to the lifting assembly, and is used to move in the vertical direction and seal the second opening; the plurality of limit frames are arranged on the first sealing plate, the cross-section of the limit frames is in a 匚-shaped arrangement, the two opposite inner side walls of the limit frames are provided with elastic clips, the elastic clips are arranged in a semi-cylindrical shape, and limit plates are provided at both ends of the limit frames; the positioning assembly also includes a wind wheel structure, the wind wheel structure includes a mounting plate, a rotating shaft and a plurality of blades, the mounting plate is fixedly connected to the first sealing plate, the rotating shaft is rotatably connected to the mounting plate, the plurality of blades are arranged on the outer peripheral wall of the rotating shaft at intervals along the circumference of the rotating shaft, and the plurality of blades The outer surface of each is connected to a limiting frame; the bottom surface of the limiting frame is provided with a plurality of parallel rectangular vents; the drying component comprises an air pump and an air heater, the air pump is connected to a first connecting pipe, the end of the first connecting pipe away from the air pump is connected to an exhaust hood, the exhaust hood is fixedly penetrated through the partition, and the exhaust hood is provided with a narrow and flat air inlet corresponding to the interior of the partition; the air heater is connected to the air pump, the air heater is connected to a second connecting pipe, the end of the second connecting pipe away from the air heater is connected to a dehumidification component; the dehumidification component comprises a moisture filter bin and a third connecting pipe, the interior of the moisture filter bin is provided with a partition and a circular tube, a dehumidification cavity is formed between the partition and the inner wall of the moisture filter bin, and the inner wall of the circular tube and the moisture filter bin A filter cavity is formed between the wall and the partition, and the interior of the filter cavity is filled with activated carbon particles; one end of the third connecting pipe is connected to the partition, and the other end is connected to the top of the moisture filter bin and corresponds to the filter cavity; wherein, the end of the second connecting pipe away from the air heater is connected to the bottom of the moisture filter bin and corresponds to the filter cavity; a plurality of first air holes are provided on the partition; the circular tube is embedded in the moisture filter bin, and the portion of the circular tube located inside the moisture filter bin is provided with a second air hole extending along the length direction of the circular tube, and the portion of the circular tube located outside the moisture filter bin is provided with a third air hole extending along the length direction of the circular tube, and a sealing plug that can fit with its inner wall is provided for rotation inside the circular tube, and the rotation center of the sealing plug is close to the second air hole; the moisture filter bin rotates A control rod is passed through, one end of the control rod extends into the interior of the circular tube and is fixedly connected to a sealing plug, a first access port corresponding to the control rod is provided on the top of the box body, and a second sealing plate is provided at the first access port of the box body; the third connecting pipe is connected to the fourth connecting pipe, and the end of the fourth connecting pipe away from the third connecting pipe extends into the dehumidification chamber, the fourth connecting pipe is provided with a first control valve, the first connecting pipe is connected to the fifth connecting pipe, the end of the fifth connecting pipe away from the first connecting pipe is connected to the third connecting pipe, the fifth connecting pipe is provided with a second control valve, the part of the third connecting pipe located between the partition chamber and the fifth connecting pipe is provided with a third control valve, and the part of the third connecting pipe close to the moisture filter chamber is provided with a fourth control valve.

[0006] In some of these embodiments, the lifting assembly includes a mounting base, a driving motor, and a connecting member. The mounting base is provided with a placement groove extending along the vertical direction, and a lead screw is rotatably mounted in the placement groove. The driving motor is disposed at the top of the mounting base, and the output shaft end of the driving motor extends into the placement groove and is fixedly connected to the lead screw. The connecting member is arranged in a U-shape, and the connecting member has a driving end and a lifting end. The driving end is threadedly connected to the outer peripheral wall of the lead screw, and the lifting end is fixedly connected to the bottom surface of the first sealing plate.

[0007] In some of these embodiments, the cleaning assembly includes an ultrasonic cleaner, which has a cleaning chamber. The box body is provided with a second access opening corresponding to the ultrasonic cleaner. A third sealing plate is provided at the second access opening of the box body. A drain hole is provided on the first sealing plate. The base is provided with a receiving groove. The waste liquid collection assembly includes a recycling bucket, a hose, and a fourth sealing plate. The recycling bucket is arranged in a cylindrical shape and is disposed in the receiving groove. One end of the recycling bucket is threadedly connected with a sealing cover. One end of the hose is inserted into the recycling bucket, and the other end is connected to the drainage end of the ultrasonic cleaner. A valve is provided on the hose. The fourth sealing plate is movably disposed on one side of the base close to the receiving groove.

[0008] In some of these embodiments, a third access opening corresponding to the partition chamber is provided at the top of the box body. A fifth sealing plate is provided at the third access opening of the box body. The storage assembly includes a storage box and a sixth sealing plate. The storage box is embedded in the box body. A plurality of fixing plates are fixedly connected to the inner wall of the storage box. The plurality of fixing plates are arranged at intervals along the vertical direction and form a plurality of placement cavities between the inner wall of the storage box. Ultraviolet lamps are provided in the plurality of placement cavities. A fourth access opening is provided on the part of the storage box located outside the box body. The sixth sealing plate is disposed at the fourth access opening of the storage box.

[0009] Based on the disinfection device for a floating needle injector of the present application embodiment, multiple injectors are fixed on the positioning component. By operating the lifting component, the lifting component drives the positioning component and multiple injectors to move into the cleaning chamber, and the cleaning chamber disinfects and cleans the multiple injectors. After disinfecting and cleaning the multiple injectors, the waste liquid generated in the cleaning chamber enters the waste liquid collection component, realizing the collection of the waste liquid generated by the cleaning component by the waste liquid collection component. After the lifting component lifts the positioning component and multiple injectors upward into the partition chamber, the drying component conveys hot air into the partition chamber, and the hot air blows on the multiple injectors on the positioning component, thereby being able to dry the moisture on the surfaces of the multiple injectors and realizing the drying of the multiple injectors. When the hot air carries the moisture on the injectors to the dehumidification component, the dehumidification component absorbs the moisture in the hot air, can dry the hot air, and the dried hot air will re-enter the partition chamber from the drying component to blow on the injectors again, forming an internal circulation, ensuring the quality of the dry air, isolating the interference and pollution of the external air, and improving the hygiene level. After the multiple cleaned injectors are dried, they can be stored in the storage component on the box for later use. In this way, the disinfection device for the floating needle injector of the present application can realize the integration of disinfection, cleaning, drying, dehumidification, and storage of the injector, can comprehensively and efficiently disinfect the injector, greatly improves the convenience of the disinfection work, and can avoid secondary pollution caused by repeated transfer and handling during the entire disinfection process. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0011] Figure 1 is a three-dimensional structure schematic diagram of the disinfection device for the floating needle injector of the present application; Figure 2 is an internal three-dimensional structure schematic diagram of the disinfection device for the floating needle injector of the present application; Figure 3 is a three-dimensional structure schematic diagram inside the cleaning chamber of the present application; Figure 4 is a three-dimensional structure schematic diagram of the limit frame of the present application; Figure 5 is a three-dimensional structure schematic diagram of the dehumidification component and the drying component of the present application; Figure 6 is an internal structure schematic diagram of the moisture filtering chamber of the present application; Figure 7 is Figure 6 a top view structure schematic diagram of the circular tube in Figure 8 This is a schematic structural diagram of the base and the waste liquid collection component of this application; Figure 9 This is a schematic structural diagram of the partition chamber, the connecting piece, the third connecting pipe, the first connecting pipe and the fifth connecting pipe of this application; Figure 10 This is a schematic structural diagram of the partition chamber, the third connecting pipe, the first connecting pipe, the fifth connecting pipe and the exhaust hood of this application; Figure 11 This is a schematic side view structural diagram of the storage box of this application; Figure 12 This is a schematic internal structural diagram of the storage box of this application.

[0012] Explanation of the reference numerals: 1. Box body; 11. Partition chamber; 12. Base; 121. Accommodating groove; 122. Fourth sealing plate; 13. Fifth sealing plate; 14. Third sealing plate; 15. Second sealing plate; 2. Needle injector; 3. Positioning component; 31. First sealing plate; 32. Limiting frame; 321. Elastic clamping member; 322. Limiting piece; 323. Ventilation hole; 324. Elastic support bar; 33. Wind wheel component; 331. Mounting plate; 332. Rotating shaft; 333. Blade; 4. Cleaning component; 41. Cleaning chamber; 42. Ultrasonic cleaner; 5. Lifting component; 51. Mounting seat; 511. Placing groove; 512. Lead screw; 52. Driving motor; 53. Connecting piece; 531. Driving end; 532. Lifting end; 6. Waste liquid collection component; 61. Recycling bucket; 611. Sealing cover; 62. Hose; 621. Valve; 7. Drying component; 71. Air pump; 711. First connecting pipe; 7111. Exhaust hood; 7112. Fifth connecting pipe; 71121. Second control valve; 72. Air heater; 721. Second connecting pipe; 8. Dehumidifying component; 81. Humidity filtering chamber; 811. Partition board; 8111. First air hole; 812. Round pipe; 8121. Second air hole; 8122. Third air hole; 8123. Sealing plug; 813. Dehumidifying cavity; 814. Filtering cavity; 82. Third connecting pipe; 821. Fourth connecting pipe; 8211. First control valve; 822. Third control valve; 823. Fourth control valve; 9. Storage component; 91. Storage box; 911. Fixed plate; 912. Placing cavity; 913. Ultraviolet lamp; 92. Sixth sealing plate.

[0013] The realization of the purpose, the functional characteristics and the advantages of this application will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments

[0014] To make the objectives, technical solutions and advantages of the present application more clear and understandable, the present application 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 only for explaining the present application and are not used to limit the present application.

[0015] Please refer to Figures 1 to 12 , a disinfection device for a floating needle injector 2 is proposed in the present application, which includes a box body 1 and a base 12 connected to each other, and further includes a positioning component 3, a cleaning component 4, a partition bin 11, a lifting component 5, a waste liquid collection component 6, a drying component 7, a dehumidifying component 8 and a storage component 9; the positioning component 3 is used to fix the injector 2; the cleaning component 4 is arranged at the inner bottom of the box body 1, the cleaning component 4 has a cleaning bin 41, the cleaning bin 41 is provided with a first opening for accommodating the positioning component 3 and the injector 2 to clean and disinfect the injector 2; the partition bin 11 is arranged at the inner top of the box body 1, and the bottom of the partition bin 11 is provided with a second opening; the lifting component 5 is arranged inside the box body 1 and is connected to the positioning component 3 for moving the positioning component 3 vertically between the inside of the partition bin 11 and the inside of the cleaning bin 41; the waste liquid collection component 6 is arranged inside the base 12 and is connected to the cleaning component 4 for collecting the waste liquid generated by the cleaning component 4; the drying component 7 is arranged inside the box body 1 and is connected to the partition bin 11 for conveying hot air into the inside of the partition bin 11 to dry the moisture on the surface of the injector 2; the dehumidifying component 8 is connected to the partition bin 11 and the drying component 7 for absorbing the moisture in the hot air discharged from the inside of the partition bin 11 so that the dry hot air enters the partition bin 11 through the drying component 7; the storage component 9 is arranged on the box body 1 for storing the dried injector 2.

[0016] In the embodiments provided by the present application, when it is necessary to clean the syringe inserter 2, a plurality of syringe inserters 2 are fixed on the positioning assembly 3, and the lifting assembly 5 is operated. The lifting assembly 5 will drive the positioning assembly 3 and a plurality of syringe inserters 2 to move from the first opening to the cleaning chamber of the cleaning assembly 4. Special disinfectant and cleaning liquid are injected into the cleaning chamber to submerge the plurality of syringe inserters 2, and the cleaning chamber will clean and disinfect the plurality of syringe inserters 2. After the disinfection and cleaning of the plurality of syringe inserters 2 are completed, the waste liquid generated in the cleaning chamber will enter the waste liquid collection assembly 6, realizing the collection of the waste liquid generated by the cleaning assembly 4 by the waste liquid collection assembly 6. The lifting assembly 5 lifts the positioning assembly 3 and a plurality of syringe inserters 2 upward and enters the inside of the partition chamber 11 through the second opening of the partition chamber 11. At this time, the drying assembly 7 conveys hot air into the partition chamber 11, and the hot air will blow on the plurality of syringe inserters 2 on the positioning assembly 3, thereby being able to dry the moisture on the surfaces of the plurality of syringe inserters 2 and realizing the drying of the plurality of syringe inserters 2. When the hot air carries the moisture on the syringe inserter 2 into the dehumidification assembly 8 from the partition chamber 11, the dehumidification assembly 8 absorbs the moisture in the hot air, can dry the hot air, and the dried hot air will re-enter the partition chamber 11 from the drying assembly 7 to blow on the syringe inserter 2 again, forming an internal circulation, ensuring the quality of the dry air, isolating the interference and pollution of the external air, and improving the hygiene level. After the plurality of cleaned syringe inserters 2 are dried, they can be stored in the storage assembly 9 on the box body 1 for later use. In this way, the floating needle syringe inserter 2 disinfection device can realize the integration of disinfection, cleaning, drying, dehumidification, storage and access of the syringe inserter 2, can comprehensively and efficiently disinfect the syringe inserter 2, greatly improves the convenience of the disinfection work, and can avoid secondary pollution caused by repeated transfer, picking and placing during the entire disinfection process.

[0017] In some embodiments of the present application, the positioning assembly 3 includes a first sealing plate 31 and a plurality of limiting frames 32. The first sealing plate 31 is connected to the lifting assembly 5 and is used to move along the vertical direction and can seal the second opening. A plurality of limiting frames 32 are arranged on the first sealing plate 31. The cross-section of the limiting frame 32 is arranged in a U shape. Elastic clamping members 321 are provided on two opposite inner side walls of the limiting frame 32. The elastic clamping members 321 are arranged in a semi-cylindrical shape, and limiting pieces 322 are provided at both ends of the limiting frame 32.

[0018] When fixing the needle inserter 2, push the needle inserter 2 under the two elastic clips 321 of the limiting frame 32, and the two elastic clips 321 will limit the needle inserter 2 in the limiting frame 32 in the vertical direction. The two limiting plates 322 can limit the needle inserter 2 in the horizontal direction, and can achieve all-round limiting of the needle inserter 2, thereby improving the fixing effect. When the needle inserter 2 is fixed, the lifting assembly 5 will lift the first sealing plate 31, thereby driving the multiple limiting frames 32 connected to the first sealing plate 31 to move upward, and the multiple limiting frames 32 and the multiple needle inserters 2 will enter the interior of the compartment 11, and the first sealing plate 31 will then seal the second opening at the bottom of the compartment 11, sealing the multiple needle inserters 2 in the compartment 11.

[0019] Among them, a rubber pad can be arranged around the first sealing plate 31 to achieve sealing. Of course, an air bag can also be arranged around the first sealing plate 31, which can not only achieve sealing of the compartment 11, but also ensure a certain safety distance between the compartment 11 and the first sealing plate 31, forming a buffer between the compartment 11 and the first sealing plate 31, preventing the lifting assembly 5 from lifting too fast and causing the first sealing plate 31 to collide with the second opening end of the compartment 11, and when the first sealing plate 31 gradually moves upward, the air bag can increase the sealing of the compartment 11.

[0020] Furthermore, the positioning assembly 3 also includes a wind wheel structure, which includes a mounting plate 331, a rotating shaft 332 and a plurality of blades 333. The mounting plate 331 is fixedly connected to the first sealing plate 31, the rotating shaft 332 is rotatably connected to the mounting plate 331, and the plurality of blades 333 are arranged on the outer peripheral wall of the rotating shaft 332 at circumferential intervals along the rotating shaft 332. The outer surfaces of the plurality of blades 333 are all connected to the limiting frame 32.

[0021] When the drying component 7 delivers hot air to the compartment 11, the hot air will blow toward the blades 333, drying the needle inserter 2 while driving the blades 333 and the rotating shaft 332 to rotate. The centrifugal force of the rotation of the blades 333 can accelerate the removal of the accumulated liquid inside the needle inserter 2. At the same time, this rotation can make the needle inserters 2 at multiple positions receive uniform hot air blowing, thereby improving the efficiency and effect of drying.

[0022] Furthermore, the bottom surface of the limiting frame 32 is provided with a plurality of rectangular ventilation holes 323 arranged side by side. The presence of the ventilation holes 323 can ensure the permeability of the airflow when the needle inserter 2 is dried, so that the back of the needle inserter 2 can also be blown by hot air, making it easier to take away the moisture on the surface of the needle inserter 2. The width of the ventilation holes 323 is smaller than the size of the needle inserter 2, preventing the needle inserter 2 from passing through the ventilation holes 323. The bottom surface of the limiting frame 32 can also be provided with a plurality of rectangular ventilation grooves arranged side by side.

[0023] In order to enable the syringe 2 after disinfection to be quickly put into the next use and to prevent the spring in the syringe from rusting, it is necessary to accelerate the drying of the syringe. In some embodiments of the present application, the drying assembly 7 includes an air pump 71 and an air heater 72. The air pump 71 is connected with a first connecting pipe 711. One end of the first connecting pipe 711 away from the air pump 71 is connected with an exhaust hood 7111. The exhaust hood 7111 is fixedly penetrated through the partition chamber 11, and the exhaust hood 7111 is provided with a long and narrow flat air inlet corresponding to the inside of the partition chamber 11. The air heater 72 is connected with the air pump 71, and the air heater 72 is connected with a second connecting pipe 721. One end of the second connecting pipe 721 away from the air heater 72 is connected with a dehumidifying assembly 8.

[0024] After starting the air heater 72 and the air pump 71, hot air at a predetermined temperature will be generated. The hot air will enter the exhaust hood 7111 through the first connecting pipe 711. The exhaust hood 7111 can blow the hot air flow in a flat shape into the partition chamber 11 and towards the blowing structure, facilitating the rotation of the blowing structure, and then drying the syringe 2. When the hot air carrying moisture reaches the dehumidifying assembly 8 from the partition chamber 11, it will enter the air heater 72 through the second connecting pipe 721 for reheating, improving the drying effect on the syringe 2.

[0025] In some embodiments of the present application, the dehumidifying assembly 8 includes a moisture filtering chamber 81 and a third connecting pipe 82. Inside the moisture filtering chamber 81, there are a partition plate 811 and a circular pipe 812. A dehumidifying chamber 813 is formed between the partition plate 811 and the inner wall of the moisture filtering chamber 81. A filtering chamber 814 is formed between the circular pipe 812, the inner wall of the moisture filtering chamber 81 and the partition plate 811. Activated carbon particles are filled inside the filtering chamber 814. One end of the third connecting pipe 82 is connected with the partition chamber 11, and the other end is connected with the top of the moisture filtering chamber 81 and corresponds to the filtering chamber 814. Among them, one end of the second connecting pipe 721 away from the air heater 72 is connected with the bottom of the moisture filtering chamber 81 and corresponds to the filtering chamber 814.

[0026] In this way, the hot air carrying moisture enters the filtering chamber 814 from the third connecting pipe 82 and passes through the activated carbon particles from top to bottom inside the filtering chamber 814. The hot air will have its moisture absorbed by the activated carbon particles and then enter the second connecting pipe 721. However, after the activated carbon particles have absorbed moisture for a long time, their moisture absorption performance will decline. The user can drain the moisture absorbed by the activated carbon after a certain period of time, thereby realizing the reuse of the activated carbon, reducing waste and saving costs.

[0027] In order to discharge the moisture absorbed in the activated carbon, in some embodiments of the present application, a plurality of first air holes 8111 are provided on the partition plate 811; the circular tube 812 is embedded in the moisture filtering bin 81, and a second air hole 8121 extending along the length direction of the circular tube 812 is provided on the part of the circular tube 812 located inside the moisture filtering bin 81, and a third air hole 8122 extending along the length direction of the circular tube 812 is provided on the part of the circular tube 812 located outside the moisture filtering bin 81. A sealing plug 8123 capable of fitting with the inner wall thereof is rotatably provided inside the circular tube 812, and the rotation center of the sealing plug 8123 is close to the second air hole 8121; a control rod is rotatably inserted through the moisture filtering bin 81, one end of the control rod extends into the circular tube 812 and is fixedly connected to the sealing plug 8123. A first access opening corresponding to the control rod is provided at the top of the box body 1, and a second sealing plate 15 is provided at the first access opening of the box body 1; the third connecting pipe 82 is connected to a fourth connecting pipe 821, and one end of the fourth connecting pipe 821 away from the third connecting pipe 82 extends into the dehumidification chamber 813. A first control valve 8211 is provided on the fourth connecting pipe 821. The first connecting pipe 711 is connected to a fifth connecting pipe 7112, and one end of the fifth connecting pipe 7112 away from the first connecting pipe 711 is connected to the third connecting pipe 82. A second control valve 71121 is provided on the fifth connecting pipe 7112. A third control valve 822 is provided on the part of the third connecting pipe 82 located between the partition bin 11 and the fifth connecting pipe 7112, and a fourth control valve 823 is provided on the part of the third connecting pipe 82 close to the moisture filtering bin 81.

[0028] Open the first control valve 8211 and the second control valve 71121, close the third control valve 822, and close the fourth control valve 823; open the second sealing plate 15, rotate the control rod to connect the second air hole 8121 and the third air hole 8122. The hot air conveyed by the air pump 71 will enter the fifth connecting pipe 7112 through the first connecting pipe 711, pass through the third connecting pipe 82 from the fifth connecting pipe 7112 and enter the fourth connecting pipe 821, and will enter the dehumidification chamber 813 from the fourth connecting pipe 821, changing the original hot air flow path. The hot air passes horizontally through the filtering chamber 814 through the plurality of first air holes 8111 on the partition plate 811 and dehumidifies the activated carbon particles therein. The air flow absorbing moisture is discharged to the outside of the box body 1 through the second air hole 8121 and the third air hole 8122. A corresponding moisture discharge window is also provided on one side of the box body 1. In this way, the moisture in the activated carbon particles can be discharged during idle time, so as to realize recycling, and the cleaning and drying work of the syringe 2 will not be delayed. Among them, filter meshes are provided in the second air hole 8121 and the third air hole 8122 to prevent foreign objects from entering and blocking.

[0029] When it is necessary to dry the needle inserter 2 in the partition chamber 11, rotate the control rod in the reverse direction to make the sealing plug 8123 block the second air hole 8121, close the first control valve 8211 and the second control valve 71121, and open the third control valve 822 and the fourth control valve 823. In this way, the hot air conveyed by the air pump 71 will enter the partition chamber 11, carry moisture into the third connecting pipe 82 from the partition chamber 11, enter the filter chamber 814 through the third connecting pipe 82, and pass through the activated carbon particles from top to bottom to achieve dehumidification.

[0030] A circuit board assembly is provided on the top of the box body 1. The circuit board assembly is electrically connected to the lifting assembly 5, the cleaning assembly 4, the air pump 71, and the air heater 72. A temperature and humidity detector electrically connected to the circuit board assembly is provided on the second connecting pipe 721. The circuit board assembly can receive the information transmitted by the temperature and humidity detector. When it detects that the humidity has been high, it can replace the filter element of the moisture filter chamber 81 by opening the second sealing plate 15 on the top of the box body 1, and can infer the drying degree of the needle inserter 2 through the changes in humidity and temperature, and set the drying time through the circuit board assembly, thereby realizing intelligent control and improving the convenience of disinfecting the needle inserter 2.

[0031] In some embodiments of the present application, the lifting assembly 5 includes a mounting seat 51, a driving motor 52, and a connecting member 53. The mounting seat 51 is provided with a placement groove 511 extending in the vertical direction, and a lead screw 512 is rotatably installed in the placement groove 511; the driving motor 52 is provided on the top of the mounting seat 51, and the output shaft end of the driving motor 52 extends into the placement groove 511 and is fixedly connected to the lead screw 512; the connecting member 53 is arranged in a shape of a capital "J", and the connecting member 53 has a driving end 531 and a lifting end 532. The driving end 531 is threadedly connected to the outer peripheral wall of the lead screw 512, and the lifting end 532 is fixedly connected to the bottom surface of the first sealing plate 31. After the driving motor 52 is started, the lead screw 512 will rotate, thereby driving the connecting member 53 threadedly connected to the lead screw 512 to move in the vertical direction. Among them, the connecting member 53 can be composed of two L-shaped plates and a cross plate, so that the connecting member 53 is in the shape of a capital "J". The size of the first opening can be larger than the size of the second opening.

[0032] In some embodiments of the present application, the cleaning component 4 includes an ultrasonic cleaner 42. The ultrasonic cleaner 42 has a cleaning chamber 41. The box body 1 is provided with a second access opening corresponding to the ultrasonic cleaner 42. A third sealing plate 14 is provided at the second access opening of the box body 1. A drain hole is provided on the first sealing plate 31. The base 12 is provided with a receiving groove 121. The waste liquid collection component 6 includes a recovery barrel 61, a hose 62, and a fourth sealing plate 122. The recovery barrel 61 is cylindrically arranged and is disposed in the receiving groove 121. One end of the recovery barrel 61 is threadedly connected with a sealing cover 611. One end of the hose 62 is inserted into the recovery barrel 61, and the other end is connected to the drain end of the ultrasonic cleaner 42. A valve 621 is provided on the hose 62. The fourth sealing plate 122 is movably disposed on one side of the base 12 close to the receiving groove 121.

[0033] By starting the lifting component 5, the positioning component 3 can drive the syringe inserter 2 into the cleaning chamber 41, inject a cleaning liquid into the cleaning chamber 41 to submerge the syringe inserter 2. By starting the ultrasonic cleaner 42, ultrasonic cleaning can be performed on the syringe inserter 2. Using the ultrasonic cleaner 42 can comprehensively clean the syringe inserter 2 with a relatively complex structure. Positions inside the syringe inserter that are difficult for manual cleaning can also be cleaned by ultrasonic cleaning. Submerging the syringe inserter 2 with a disinfectant having a disinfection effect can also comprehensively disinfect the syringe inserter 2, improving the disinfection effect. Compared with the methods of manual immersion disinfection and manual wiping disinfection, it is more efficient and has a better effect.

[0034] The disinfected wastewater can enter the recovery barrel 61 through the hose 62. After the recovery barrel 61 is full, the fourth sealing plate 122 is opened. By separating the inserted hose 62 from the recovery barrel 61, and then taking out the recovery barrel 61 from the receiving groove 121. One end of the recovery barrel 61 is installed with a sealing cover 611 by threaded connection. After removing the sealing cover 611, the wastewater is poured out. The cylindrically shaped recovery barrel 61 and the detachable sealing cover 611 can achieve the purpose of facilitating internal and external cleaning. And the setting with the recovery barrel 61 as the main structure can facilitate the collection of cleaning waste liquid, ensure that the waste liquid can be properly disposed of, and avoid pollution and leakage.

[0035] Sliding rails are provided below the interior of the box body 1 and corresponding to the second access opening. A sliding groove slidably connected to the sliding rails is provided at the bottom of the ultrasonic cleaner 42. After the third sealing plate 14 is opened, the ultrasonic cleaner 42 can be pulled by an external force and move along the trajectory of the sliding rails to the outside of the box body 1, facilitating the injection of disinfectant or cleaning liquid into the cleaning chamber 41.

[0036] The bottom surface of the limit frame 32 is fixedly connected with an elastic support strip 324, and the elastic support strip 324 is fixedly connected with the outer surface of the blade 333. The arrangement of the elastic support strip 324 can reduce the influence of the vibration generated during the cleaning of the syringe inserter 2 by the ultrasonic cleaner 42 on the fixing effect of the limit frame 32 and on the rotation of the wind wheel structure.

[0037] In some embodiments of the present application, a third access opening corresponding to the partition bin 11 is provided at the top of the box body 1. A fifth sealing plate 13 is provided at the third access opening of the box body 1. The storage assembly 9 includes a storage box 91 and a sixth sealing plate 92. The storage box 91 is embedded in the box body 1. A plurality of fixing plates 911 are fixedly connected to the inner wall of the storage box 91. The plurality of fixing plates 911 are arranged at intervals in the vertical direction and form a plurality of placement cavities 912 between the inner wall of the storage box 91. A plurality of ultraviolet lamps 913 are provided in the plurality of placement cavities 912. A fourth access opening is provided at the part of the storage box 91 located outside the box body 1. The sixth sealing plate 92 is provided at the fourth access opening of the storage box 91.

[0038] After the drying work is completed, by opening the fifth sealing plate 13, the syringe inserter 2 that has been disinfected and dried is taken out from the partition bin 11 and placed into the placement cavity 912 of the storage box 91. The storage box 91 is externally equipped with a sixth sealing plate 92 for sealing, and the storage box 91 is internally equipped with an ultraviolet lamp 913, which can inhibit and kill bacteria in the storage box 91 and improve the cleanliness during storage. Among them, an ultraviolet lamp 913 is also installed on the surface of the fifth sealing plate 13 close to the inside of the partition bin 11, which can sterilize the inside of the partition bin 11 through ultraviolet rays, inhibit the growth of bacteria, and improve the cleanliness of the drying environment.

[0039] Working principle: During use, after starting the driving motor 52, the lead screw 512 will rotate. The lead screw 512 drives the connecting piece 53 to move upward, thereby causing the first sealing plate 31, the limiting frame 32, the wind wheel structure, and the needle injector 2 after cleaning and disinfection to move upward into the partition chamber 11. Start the air pump 71 and the air heater 72. The air pump 71 conveys hot air through the exhaust hood 7111 and into the partition chamber 11 to make the wind wheel structure rotate, improving the drying effect on the needle injector 2. The airflow discharged from the partition chamber 11 will enter the filtration chamber 814 through the third connecting pipe 82 and pass through the activated carbon particles from top to bottom to remove the moisture carried by the gas from the partition chamber 11. The dried gas enters the air heater 72 again for heating and then enters the partition chamber 11 again, realizing an internal circulation, ensuring the quality of the dry air, and isolating the interference and pollution of the external air. The air pump 71 makes the hot air enter the third connecting pipe 82 from the first connecting pipe 711 and pass through the fourth connecting pipe 821 into the dehumidification chamber 813. The hot air will horizontally pass through the first air holes 8111 into the filtration chamber and pass through the activated carbon, and discharge the moisture in the activated carbon out of the box body 1 through the second air holes 8121 and the third air holes 8122, improving the dehumidification performance of the activated carbon so that the activated carbon can be recycled. After the drying work is completed, open the fifth sealing plate 13, take out the needle injector 2 that has been disinfected and dried from the partition chamber 11 and place it in the storage box 91.

[0040] In the attached drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components; in the description of the present application, it should be understood that if there are terms such as "upper", "lower", "left", "right", etc. indicating the orientation or positional relationship, they are based on the orientation or positional relationship shown in the attached drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the terms describing the positional relationship in the attached drawings are only for illustrative purposes and cannot be understood as a limitation of this patent. For those of ordinary skill in the art, the specific meanings of the above terms can be understood according to specific circumstances.

[0041] The above is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A disinfection device for a floating needle injector (2), comprising a box body (1) and a base (12) connected to each other, characterized in that, Also includes: A positioning component (3) for fixing the needle inserter (2); a cleaning assembly (4) disposed at the inner bottom of the box body (1), the cleaning assembly (4) comprising a cleaning chamber (41), the cleaning chamber (41) being provided with a first opening for accommodating the positioning assembly (3) and the needle inserter (2) so as to clean and disinfect the needle inserter (2); A partition (11) is arranged at the inner top of the box body (1), and a second opening is arranged at the bottom of the partition (11); A lifting assembly (5) is disposed inside the box body (1) and connected to the positioning assembly (3), and is used to move the positioning assembly (3) between the interior of the compartment (11) and the interior of the cleaning compartment (41) in a vertical direction; A waste liquid collection component (6), arranged inside the base (12) and connected to the cleaning component (4), for collecting waste liquid generated by the cleaning component (4); A drying component (7), arranged inside the box (1) and connected to the compartment (11), for conveying hot air to the interior of the compartment (11) to dry the moisture on the surface of the needle inserter (2); a dehumidification component (8) connected to the compartment (11) and the drying component (7) and used for absorbing moisture in the hot air discharged from the interior of the compartment (11), so that the dry hot air enters the compartment (11) through the drying component (7); and A storage component (9) is disposed on the box body (1) and is used to store the needle inserter (2) after drying.

2. The disinfection device for the floating needle injector (2) according to claim 1, wherein, The positioning component (3) comprises: a first sealing plate (31), connected to the lifting assembly (5), and configured to move in a vertical direction and seal the second opening; and A plurality of limit frames (32) are arranged on the first sealing plate (31); the cross-section of the limit frames (32) is in a 匚-shaped configuration; two opposite inner side walls of the limit frames (32) are provided with elastic clamps (321); the elastic clamps (321) are in a semi-cylindrical configuration; and limit plates (322) are provided at both ends of the limit frames (32).

3. The disinfection device for the floating needle injector (2) according to claim 2, characterized in that, The positioning assembly (3) further comprises a wind wheel structure, wherein the wind wheel structure comprises: A mounting plate (331) fixedly connected to the first sealing plate (31); a rotating shaft (332), rotatably connected to the mounting plate (331); and A plurality of blades (333) are arranged on the outer peripheral wall of the rotating shaft (332) at intervals along the circumference of the rotating shaft (332), and the outer surfaces of the plurality of blades (333) are all connected to the limiting frame (32).

4. The disinfection device for the floating needle injector (2) according to claim 3, characterized in that, The bottom surface of the limiting frame (32) is provided with a plurality of rectangular vent holes (323) arranged side by side.

5. The disinfection device for the floating needle injector (2) according to claim 3, characterized in that, The drying component (7) comprises: An air pump (71) is connected to a first connecting pipe (711), one end of the first connecting pipe (711) away from the air pump (71) is connected to an exhaust hood (7111), the exhaust hood (7111) is fixedly arranged in the compartment (11), and the exhaust hood (7111) is provided with a narrow and flat air inlet corresponding to the interior of the compartment (11); and An air heater (72), connected to the air pump (71), the air heater (72) is connected with a second connecting pipe (721), and one end of the second connecting pipe (721) away from the air heater (72) is connected to the dehumidification component (8).

6. The disinfection device for the floating needle injector (2) according to claim 5, characterized in that, The dehumidification component (8) includes: A moisture filtering bin (81), internally provided with a partition board (811) and a circular pipe (812), a dehumidification cavity (813) is formed between the partition board (811) and the inner wall of the moisture filtering bin (81), a filtering cavity (814) is formed between the circular pipe (812), the inner wall of the moisture filtering bin (81) and the partition board (811), and activated carbon particles are filled in the filtering cavity (814); and, A third connecting pipe (82), one end is connected to the partition bin (11), and the other end is connected to the top of the moisture filtering bin (81) and corresponds to the filtering cavity (814); Wherein, one end of the second connecting pipe (721) away from the air heater (72) is connected to the bottom of the moisture filtering bin (81) and corresponds to the filtering cavity (814).

7. The disinfection device for the floating needle injector (2) according to claim 6, characterized in that, A plurality of first air holes (8111) are provided on the partition board (811); The circular pipe (812) is embedded in the moisture filtering bin (81), a second air hole (8121) extending along the length direction of the circular pipe (812) is provided on the part of the circular pipe (812) located inside the moisture filtering bin (81), a third air hole (8122) extending along the length direction of the circular pipe (812) is provided on the part of the circular pipe (812) located outside the moisture filtering bin (81), a sealing plug (8123) capable of fitting with its inner wall is rotatably arranged inside the circular pipe (812), and the rotation center of the sealing plug (8123) is close to the second air hole (8121); A control rod rotatably penetrates through the moisture filtering bin (81), one end of the control rod extends into the circular pipe (812) and is fixedly connected to the sealing plug (8123), a first access port corresponding to the control rod is provided at the top of the box body (1), and a second sealing plate (15) is provided at the first access port of the box body (1); The third connecting pipe (82) is connected with a fourth connecting pipe (821), one end of the fourth connecting pipe (821) away from the third connecting pipe (82) extends into the dehumidification cavity (813), a first control valve (8211) is provided on the fourth connecting pipe (821), the first connecting pipe (711) is connected with a fifth connecting pipe (7112), one end of the fifth connecting pipe (7112) away from the first connecting pipe (711) is connected to the third connecting pipe (82), a second control valve (71121) is provided on the fifth connecting pipe (7112), a third control valve (822) is provided on the part of the third connecting pipe (82) between the partition bin (11) and the fifth connecting pipe (7112), and a fourth control valve (823) is provided on the part of the third connecting pipe (82) close to the moisture filtering bin (81).

8. The disinfection device for the floating needle injector (2) according to claim 1, characterized in that, The lifting component (5) includes: The mounting base (51) is provided with a placement groove (511) extending along the vertical direction, and a lead screw (512) is rotatably mounted in the placement groove (511); The driving motor (52) is arranged at the top of the mounting base (51), and the output shaft end of the driving motor (52) extends into the placement groove (511) and is fixedly connected to the lead screw (512); and, The connecting member (53) is arranged in a shape of "Ji", and the connecting member (53) has a driving end (531) and a lifting end (532). The driving end (531) is threadedly connected to the outer peripheral wall of the lead screw (512), and the lifting end (532) is fixedly connected to the bottom surface of the first sealing plate (31).

9. The disinfection device for the floating needle injector (2) according to claim 1, characterized in that, The cleaning assembly (4) includes an ultrasonic cleaner (42). The ultrasonic cleaner (42) has the cleaning chamber (41). The box body (1) is provided with a second access opening corresponding to the ultrasonic cleaner (42). A third sealing plate (14) is arranged at the second access opening of the box body (1). Drainage holes are arranged on the first sealing plate (31). The base (12) is provided with a receiving groove (121). The waste liquid collection assembly (6) includes: The recovery barrel (61) is arranged in a cylindrical shape. The recovery barrel (61) is arranged in the receiving groove (121). One end of the recovery barrel (61) is threadedly connected with a sealing cover (611); The hose (62), one end of which is inserted into the recovery barrel (61), and the other end is connected to the drainage end of the ultrasonic cleaner (42). A valve (621) is arranged on the hose (62); and, The fourth sealing plate (122) is movably arranged on one side of the base (12) close to the receiving groove (121).

10. The disinfection device for the floating needle injector (2) according to claim 1, characterized in that, The top of the box body (1) is provided with a third access opening corresponding to the partition chamber (11). A fifth sealing plate (13) is arranged at the third access opening of the box body (1). The storage assembly (9) includes: The storage box (91) is embedded in the box body (1). A plurality of fixing plates (911) are fixedly connected to the inner wall of the storage box (91). The plurality of fixing plates (911) are arranged at intervals along the vertical direction and form a plurality of placement cavities (912) between the inner wall of the storage box (91). Ultraviolet lamps (913) are arranged in the plurality of placement cavities (912). A fourth access opening is arranged on the part of the storage box (91) located outside the box body (1); and, The sixth sealing plate (92) is arranged at the fourth access opening of the storage box (91).