Multifunctional anti-virus helmet
By designing antivirus mechanisms, disinfection solution aggregation unit and concentration monitoring unit in a multi-functional antivirus helmet, the problem of difficulty in real-time disinfection and monitoring of disinfection solutions in the prior art is solved, and more efficient air disinfection and antivirus effects are achieved.
Patent Information
- Application Number
- CN202510255423.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2025-05-09
AI Technical Summary
The existing multi-function antivirus helmets are difficult to disinfect and sterilize the external air in real time, and it is difficult to know the concentration and liquid level of the disinfection solution in a timely manner, resulting in insufficiency of disinfection and antivirus efficiency.
A multi-functional antivirus helmet was designed, including an antivirus mechanism, a disinfection solution accumulation unit and a concentration monitoring unit. The antivirus mechanism pumps the outside air into and disinfects it through a micro-air pump. The disinfection solution aggregation unit promptly monitors and adjusts the liquid level of the disinfection solution, and the concentration monitoring unit monitors the concentration of the disinfection solution in real time.
Timely disinfection and sterilization of external air has been achieved, the disinfection effect of air and anti-virus efficiency have been improved, and the effective use of disinfection solution and the sustainability of disinfection effect have been ensured.
Smart Images

Figure CN119949589A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of multifunctional anti-virus helmets, in particular to a multifunctional anti-virus helmet. Background Art
[0002] The multifunctional antivirus helmet is specially designed to respond to the epidemic and virus protection needs. It combines artificial intelligence algorithms, VR, AR technology, advanced external protection functions, and a high level of comfort. It integrates multiple functions and highly integrated design. It aims to provide users with comprehensive health protection, life convenience and intelligent interactive experience, and can provide excellent functional support in a variety of daily and special scenarios. Usually when performing antivirus, it is generally only through the helmet and the mask to isolate the outside air, which is not convenient for real-time disinfection and sterilization of the air entering the helmet from the outside, and it is difficult to know the concentration and liquid level of the disinfection solution in time, thereby reducing the disinfection effect and reducing the efficiency of antivirus.
[0003] Combining the above problems, we will find that it is difficult to avoid the above problems at the same time when using the existing multifunctional antivirus helmets on the market, and even if they can be solved, they need to be solved through external tools, which cannot achieve the desired effect. Therefore, we propose a multifunctional antivirus helmet. Summary of the invention
[0004] The object of the present invention is to provide a multifunctional anti-virus helmet to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a multifunctional anti-virus helmet, comprising a main body mechanism, the main body mechanism comprising a helmet body, two sides of the helmet body are respectively fixedly connected with an air intake block and an air outlet block, the air intake block and the air outlet block are connected through the inner cavity of the helmet body, a controller is fixedly connected to the surface of the helmet body, a battery pack is fixedly connected to the surface of the helmet body, the controller and the battery pack are electrically connected, and an anti-virus mechanism is arranged on the surface of the helmet body, and the anti-virus mechanism is used to disinfect and sterilize the air entering the inner cavity of the helmet body from the outside;
[0006] The inner cavity of the air intake block is provided with an auxiliary mechanism, and the auxiliary mechanism includes a disinfection solution gathering unit, and the disinfection solution gathering unit is provided in the inner cavity of the air intake block, and the disinfection solution gathering unit is used to gather the disinfection solution together;
[0007] The auxiliary mechanism further comprises a concentration monitoring unit, which is disposed in the inner cavity of the air intake block and is used to monitor the concentration of the disinfection solution.
[0008] Preferably, the antivirus mechanism includes a partition fixedly connected to the inner cavity of the air inlet block, an L-shaped plate is fixedly connected to the inner bottom of the air inlet block, a cavity is provided between the top of the L-shaped plate and the partition, an air inlet pipe is fixedly connected to the top of the L-shaped plate, one end of the air inlet pipe passes through the bottom of the L-shaped plate, one side of the air inlet block and the air outlet block are rotatably connected to a cover via a rotating shaft, an inner wall of one of the covers is provided with an air inlet hole connected to the other end of the air inlet pipe, and an inner wall of the other cover is provided with an air outlet hole connected to the air outlet block, and one of the A micro air pump is fixedly connected to the surface of the cover, and an output end of the micro air pump is fixedly connected to an air supply pipe, and the air supply pipe is fixedly connected to an air inlet hole, and an inner wall of the partition is fixedly connected to a first air outlet pipe, one end of the first air outlet pipe passes through the bottom of the partition and is fixedly connected to a conical air inlet head, and the other end of the first air outlet pipe is fixedly connected to a limiting assembly, and a second air outlet pipe is fixedly connected to the top of the limiting assembly, and one end of the second air outlet pipe is fixedly connected to a deodorizing assembly, and a hole communicating with the inner cavity of the helmet body is provided on one side of the deodorizing assembly.
[0009] Preferably, the inner cavities of the air inlet pipe and the air outlet are both fixedly connected with a one-way valve, and the one-way valve is used to control the one-way flow of air.
[0010] Preferably, the limit assembly includes a limit box, the bottom of the limit box is fixedly connected to one end of the first air outlet pipe, the top of the limit box is fixedly connected to one end of the second air outlet pipe, the inner wall of the limit box is rotatably connected to the limit plate, and one end of the limit plate is fitted with the inner wall of the limit box.
[0011] Preferably, a torsion spring is provided between the limit plate and the limit box, the torsion spring is sleeved on the surface of the limit plate, one end of the torsion spring is fixedly connected to the inner wall of the limit plate, and the other end of the torsion spring is fixedly connected to the inner wall of the limit box.
[0012] Preferably, a limiting block is fixedly connected to the inner top of the limit box, and the limit block corresponds to the position of the air inlet end of the second air outlet pipe. A conical hole is provided in the inner cavity of the limit block, and two connecting rods are fixedly connected to the bottom of the limit block. The surfaces of the two connecting rods are slidably connected with connecting blocks, and the two connecting blocks are commonly and fixedly connected with a conical counterweight block, and the surface of the conical counterweight block is in contact with the inner cavity of the conical hole.
[0013] Preferably, the odor purification component includes an odor purification box fixedly connected to the inner wall of the air inlet block, one end of the second air outlet pipe penetrates into the inner cavity of the odor purification box, the inner wall of the odor purification box is slidably connected with a odor purification core, the air transported by the second air outlet pipe passes through the odor purification core for odor purification, the odor purification core uses activated carbon components for odor purification, and the odor purification core and the odor purification box are magnetically positioned by a magnet.
[0014] Preferably, the disinfection solution aggregation unit includes a telescopic plate, one end of the telescopic plate is slidably connected to the inner wall of the L-shaped plate, the inner wall of the air inlet block is fixedly connected with an electric push rod, the telescopic end of the electric push rod is fixedly connected with a push plate, the top of the telescopic end of the telescopic plate is fixedly connected with an air outlet plate, one side of the air outlet plate is tightly fitted with one side of the push plate, the inner wall of the air outlet plate is fixedly connected with a one-way valve, one side of the L-shaped plate is fixedly connected with a transparent plate, one side of the transparent plate is provided with an injection nozzle, the inner cavity of the injection nozzle is tightly fitted with a sealing plug, one side of the telescopic plate is slidably connected with one side of the transparent plate, both sides of the telescopic plate and one side of the air outlet plate are fixedly connected with silicone sealing pads, one side of the push plate is fixedly connected with a liquid level sensor, and the liquid level sensor is electrically connected to the electric push rod.
[0015] Preferably, the bottom of the telescopic end of the telescopic plate is fixedly connected with an anti-sway plate, and the anti-sway plate is used to weaken the shaking amplitude of the disinfectant solution. A sliding groove is opened on one side of the L-shaped plate, and the telescopic plate is slidably connected to the inner cavity of the sliding groove. A plurality of springs are fixedly connected to the inner wall of the sliding groove, and one end of the plurality of springs is fixedly connected to one side of the telescopic plate.
[0016] Preferably, the concentration monitoring unit includes a toothed plate fixedly connected to the top of the telescopic end of the telescopic plate, the inner wall of the L-shaped plate is rotatably connected to a rotating rod through a sealed bearing, the bottom end of the rotating rod passes through the bottom of the L-shaped plate and is fixedly connected to a stirring rod, the top end of the rotating rod passes through the top of the L-shaped plate and is fixedly connected to a gear, the teeth of the toothed plate are meshed with the teeth of the gear, and the inner bottom of the air intake block is fixedly connected to an electrochemical sensor, and the electrochemical sensor is located on one side of the stirring rod.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The present invention is provided with an anti-virus mechanism, and external air is drawn into the inner cavity of the air intake block by a micro air pump, and introduced into a disinfectant solution, and the introduced air is disinfected and sterilized by the disinfectant solution. The disinfected air will float above the disinfectant solution, and enter the inner cavity of the helmet body through the first air outlet pipe and the second air outlet pipe for the user to breathe, thereby achieving timely disinfection and sterilization of external air, preventing virus air from entering the inner cavity of the helmet body, thereby improving the air disinfection effect and improving the anti-virus efficiency.
[0019] 2. The present invention can timely know the liquid level status of the disinfectant solution by setting a disinfectant solution gathering unit, and gather the disinfectant solution to the air outlet end of the air inlet pipe through a push block to increase the liquid level of the disinfectant solution, thereby ensuring the disinfection and sterilization effect of the incoming air and improving the anti-virus efficiency.
[0020] 3. The present invention can realize timely monitoring of the concentration of the disinfectant solution by setting a concentration monitoring unit, so that the user can know the concentration of the disinfectant solution in real time, effectively ensure the disinfection and sterilization effect, and thus improve the anti-virus efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0022] Figure 2 It is a three-dimensional schematic diagram of the inner cavity of the air intake block of the present invention;
[0023] Figure 3 It is a partial three-dimensional schematic diagram of the auxiliary mechanism of the present invention;
[0024] Figure 4 It is a cross-sectional perspective schematic diagram of the limit box of the present invention;
[0025] Figure 5 It is a three-dimensional schematic diagram of the torsion spring of the present invention;
[0026] Figure 6 It is a cross-sectional stereoscopic schematic diagram of the limit block, the tapered hole, the connecting rod, the connecting block and the tapered counterweight block of the present invention;
[0027] Figure 7 It is a disassembled three-dimensional schematic diagram of the odor-purifying box and the odor-purifying core of the present invention;
[0028] Figure 8 It is a disassembled three-dimensional schematic diagram of the air outlet and the one-way valve of the present invention;
[0029] Fig. 9 It is a three-dimensional schematic diagram of the silicone sealing pad of the present invention.
[0030] In the figure: 1. main body; 11. helmet body; 12. air intake block; 13. air outlet block; 14. controller; 15. battery pack; 2. anti-virus mechanism; 201. partition; 202. L-shaped plate; 203. air intake pipe; 204. cover; 205. air intake hole; 206. air outlet hole; 207. micro air pump; 208. air delivery pipe; 209. first air outlet pipe; 210. conical air intake head; 211. second air outlet pipe; 212. one-way valve; 213. limit box; 214. limit plate; 215. torsion spring; 216. limit block; 217. conical hole; 218. connecting rod; 219. connecting block; 220. Conical counterweight; 221. Deodorizing box; 222. Deodorizing core; 3. Auxiliary mechanism; 31. Disinfection solution gathering unit; 3101. Telescopic plate; 3102. Electric push rod; 3103. Push plate; 3104. Air outlet plate; 3105. Transparent plate; 3106. Injection nozzle; 3107. Sealing plug; 3108. Silicone sealing pad; 3109. Liquid level sensor; 3110. Anti-sway plate; 3111. Sliding groove; 3112. Spring; 32. Concentration monitoring unit; 3201. Tooth plate; 3202. Rotating rod; 3203. Stirring rod; 3204. Gear; 3205. Electrochemical sensor. DETAILED DESCRIPTION
[0031] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0032] Example 1: Please refer to Figure 1-Figure 9 The present invention provides a technical solution: a multifunctional anti-virus helmet, comprising a main body mechanism 1, the main body mechanism 1 comprises a helmet body 11, both sides of the helmet body 11 are respectively fixedly connected with an air intake block 12 and an air outlet block 13, the air intake block 12 and the air outlet block 13 are connected through the inner cavity of the helmet body 11, the gaps of the helmet body 11 are sealed by sealing strips, and the uniqueness of the air flow path is ensured, a controller 14 is fixedly connected to the surface of the helmet body 11, a battery pack 15 is fixedly connected to the surface of the helmet body 11, the controller 14 and the battery pack 15 are electrically connected, the controller 14 cooperates with the battery pack 15 to control electrical equipment related to the helmet body 11, and an anti-virus mechanism 2 is arranged on the surface of the helmet body 11, and the anti-virus mechanism 2 is used to disinfect and sterilize the air entering the inner cavity of the helmet body 11 from the outside;
[0033] The inner cavity of the air intake block 12 is provided with an auxiliary mechanism 3, and the auxiliary mechanism 3 includes a disinfection solution gathering unit 31, and the disinfection solution gathering unit 31 is provided in the inner cavity of the air intake block 12, and the disinfection solution gathering unit 31 is used to gather the disinfection solution together;
[0034] The auxiliary mechanism 3 further includes a concentration monitoring unit 32 . The concentration monitoring unit 32 is disposed in the inner cavity of the air intake block 12 . The concentration monitoring unit 32 is used to monitor the concentration of the disinfection solution.
[0035] As a further limitation of the antivirus mechanism 2 of the present invention, the antivirus mechanism 2 includes a partition 201 fixedly connected to the inner cavity of the air intake block 12, an L-shaped plate 202 is fixedly connected to the inner bottom of the air intake block 12, a cavity exists between the top of the L-shaped plate 202 and the partition 201, an air intake pipe 203 is fixedly connected to the top of the L-shaped plate 202, one end of the air intake pipe 203 passes through the bottom of the L-shaped plate 202, and the air intake block 12 and one side of the air outlet block 13 are both rotatably connected by a rotating shaft. There are covers 204, one of which has an air inlet hole 205 connected to the other end of the air inlet pipe 203 on its inner wall, and another of which has an air outlet hole 206 connected to the air outlet block 13 on its inner wall. A micro air pump 207 is fixedly connected to the surface of one of the covers 204, and an air delivery pipe 208 is fixedly connected to the output end of the micro air pump 207, and the air delivery pipe 208 is fixedly connected to the air inlet hole 205. The inner wall of the partition 201 is fixedly connected to the first outlet. The air pipe 209, one end of the first air outlet pipe 209 passes through the bottom of the partition 201 and is fixedly connected to a conical air inlet head 210, the other end of the first air outlet pipe 209 is fixedly connected to a limiting component, the top of the limiting component is fixedly connected to a second air outlet pipe 211, one end of the second air outlet pipe 211 is fixedly connected to a deodorizing component, and a hole connected to the inner cavity of the helmet body 11 is provided on one side of the deodorizing component; by setting an anti-virus mechanism 2, the outside air is drawn into the inner cavity of the air intake block 12 through a micro air pump 207, and introduced into a disinfectant solution, and the introduced air is disinfected and sterilized by the disinfectant solution, and the disinfected air will float above the disinfectant solution, and enter the inner cavity of the helmet body 11 through the first air outlet pipe 209 and the second air outlet pipe 211 for the user to breathe, thereby realizing timely disinfection and sterilization of the outside air, avoiding virus air from entering the inner cavity of the helmet body 11, thereby improving the air disinfection effect and improving the anti-virus efficiency.
[0036] The inner cavities of the air inlet pipe 203 and the air outlet hole 206 are fixedly connected with a one-way valve 212, which is used to control the one-way flow of air. By setting the one-way valve 212, the air flowing in the air inlet pipe 203 can enter the disinfectant solution from the outside, and the air at the air outlet hole 206 can flow from the inner cavity of the helmet body 11 to the outside.
[0037] The limiting assembly includes a limiting box 213, the bottom of which is fixedly connected to one end of the first air outlet pipe 209, the top of which is fixedly connected to one end of the second air outlet pipe 211, the inner wall of the limiting box 213 is rotatably connected to the limiting plate 214, and one end of the limiting plate 214 is in contact with the inner wall of the limiting box 213; by setting the limiting box 213 and the limiting plate 214, under the air pressure generated during normal operation, the limiting plate 214 will be pushed by the air pressure to flip upward at a certain angle to allow the air after disinfection to circulate, and when disinfection is not performed, the limiting plate 214 is in close contact with the inner wall of the limiting box 213 to avoid leakage of the disinfectant solution.
[0038] A torsion spring 215 is arranged between the limit plate 214 and the limit box 213. The torsion spring 215 is sleeved on the surface of the limit plate 214. One end of the torsion spring 215 is fixedly connected to the inner wall of the limit plate 214, and the other end of the torsion spring 215 is fixedly connected to the inner wall of the limit box 213. By arranging the torsion spring 215, the elastic limitation of the rotation angle of the limit plate 214 can be achieved. The elastic coefficient of the torsion spring 215 is less than the air pressure during normal operation. When the disinfection work is not performed and the air pressure is not generated, the reaction force of the torsion spring 215 makes one side of the limit plate 214 close to the inner wall of the limit box 213 to avoid leakage of the disinfection solution.
[0039] The inner top of the limit box 213 is fixedly connected to a limit block 216, and the limit block 216 corresponds to the position of the air inlet end of the second air outlet pipe 211. The inner cavity of the limit block 216 is provided with a tapered hole 217, and the bottom of the limit block 216 is fixedly connected to two connecting rods 218, and the surfaces of the two connecting rods 218 are slidably connected to connecting blocks 219, and the two connecting blocks 219 are jointly fixedly connected to a tapered counterweight block 220, and the surface of the tapered counterweight block 220 is in contact with the inner cavity of the tapered hole 217; by setting the limit block 216, the tapered hole 217, the connecting rod 218 ... The rod 218, the connecting block 219 and the conical counterweight 220 are used in combination. When the helmet body 11 is placed upright, the conical counterweight 220 cooperates with the connecting rod 218 and the connecting block 219 and is not in complete contact with the conical hole 217, that is, there is a gap for air to pass through. When the helmet body 11 is inverted, the conical counterweight 220 cooperates with the connecting block 219 to slide on the surface of the connecting rod 218 and embed into the inner cavity of the conical hole 217, thereby achieving complete fit and filling of the conical hole 217, thereby avoiding leakage of the disinfectant solution due to the inversion of the helmet body 11.
[0040] The odor purification component includes an odor purification box 221 fixedly connected to the inner wall of the air intake block 12, one end of the second air outlet pipe 211 passes through the inner cavity of the odor purification box 221, and the inner wall of the odor purification box 221 is slidably connected with a odor purification core 222. The air transported by the second air outlet pipe 211 passes through the odor purification core 222 for odor purification. The odor purification core 222 uses activated carbon components for odor purification, and the odor purification core 222 and the odor purification box 221 are magnetically positioned by a magnet; by setting the odor purification box 221 and the odor purification core 222, the air can be purified after disinfection and sterilization, and the smell of the disinfectant solution is prevented from entering the inner cavity of the helmet body 11, thereby ensuring the comfort of the user during use. The odor purification core 222 and the odor purification box 221 are detachably arranged to facilitate the replacement of the odor purification core 222.
[0041] The specific implementation of this embodiment is as follows: when the user uses the multifunctional anti-virus helmet, the controller 14 cooperates with the battery pack 15 to start the micro air pump 207, and the micro air pump 207 conveys the outside air into the air inlet 205 through the air supply pipe 208, and transfers the air to the air inlet pipe 203 through the air inlet hole 205. The air pressure opens the one-way valve 212, and the air is input into the cavity formed by the L-shaped plate 202 and the inner cavity of the air inlet block 12 through the air inlet pipe 203. There is a disinfection solution injected in advance in the cavity, and the outside air is introduced into the disinfection solution through the air inlet pipe 203. The air disinfected by the disinfection solution escapes upward and enters the first air outlet pipe 209 through the conical air inlet head 210. The setting of the conical air inlet head 210 can effectively reduce the leakage probability of the disinfection solution. The air entering the first air outlet pipe 209 enters the inner cavity of the limit box 213, and pushes the limit plate 214 upward to rotate the limit plate 214. The positioning plate 214 is elastically limited by the torsion spring 215 for the rotation angle. The positioning plate 214 rotates upward by a certain angle so that one end of the positioning plate 214 is no longer in contact with the inner wall of the positioning box 213, so that the air entering the inner cavity of the positioning box 213 can smoothly pass through the tapered hole 217 and enter the second air outlet pipe 211. By setting the limiting block 216, the tapered hole 217, the connecting rod 218, the connecting block 219 and the tapered counterweight block 220, it is possible to prevent the disinfectant solution from leaking due to the inversion of the helmet body 11. The air entering the second air outlet pipe 211 enters the deodorizing box 221, and the deodorizing core 222 in the deodorizing box 221 adsorbs and removes the odor of the disinfectant solution in the air. The deodorized air follows the flow direction of the air pressure and enters the inner cavity of the helmet body 11 for inhalation by the user. The gas exhaled by the user follows the flow path of the air from the air outlet 206, then opens the one-way valve 212 and enters the air outlet block 13, and then is discharged to the outside.
[0042] Example 2: Please refer to Figure 1-Figure 9 The present invention provides a technical solution: a multifunctional anti-virus helmet. The present invention makes corresponding improvements to the technical problems mentioned in the background technology.
[0043] As a further limitation of the auxiliary mechanism 3 of the present invention, the disinfection solution aggregation unit 31 includes a telescopic plate 3101, one end of the telescopic plate 3101 is slidably connected to the inner wall of the L-shaped plate 202, the inner wall of the air inlet block 12 is fixedly connected with an electric push rod 3102, the telescopic end of the electric push rod 3102 is fixedly connected with a push plate 3103, the top of the telescopic end of the telescopic plate 3101 is fixedly connected with an air outlet plate 3104, one side of the air outlet plate 3104 is tightly fitted with one side of the push plate 3103, the inner wall of the air outlet plate 3104 is fixedly connected with a one-way valve 212, one side of the L-shaped plate 202 is fixedly connected with a transparent plate 3105, one side of the transparent plate 3105 is provided with an injection nozzle 3106, the inner cavity of the injection nozzle 3106 is tightly fitted with a sealing plug 3107, and the telescopic plate 3101 is fixedly connected to the inner wall of the air outlet plate 3104. One side of the retractable plate 3101 is slidably connected to one side of the transparent plate 3105, both sides of the retractable plate 3101 and one side of the air outlet plate 3104 are fixedly connected with a silicone sealing pad 3108, one side of the push plate 3103 is fixedly connected with a liquid level sensor 3109, and the liquid level sensor 3109 is electrically connected to the electric push rod 3102; by setting up the disinfection solution gathering unit 31, the liquid level status of the disinfection solution can be known in time, and the disinfection solution is gathered to the air outlet end of the air inlet pipe 203 through the push block to increase the liquid level of the disinfection solution. When the disinfection solution is less, the liquid level of the disinfection solution can be ensured to rise, so that the air stays in the disinfection solution for a longer time, thereby ensuring the disinfection and sterilization effect of the incoming air and improving the anti-virus efficiency.
[0044] The bottom of the telescopic end of the telescopic plate 3101 is fixedly connected with an anti-sway plate 3110, and the anti-sway plate 3110 is used to weaken the shaking amplitude of the disinfectant solution. A sliding groove 3111 is opened on one side of the L-shaped plate 202, and the telescopic plate 3101 is slidably connected to the inner cavity of the sliding groove 3111, and the inner wall of the sliding groove 3111 is fixedly connected with a plurality of springs 3112, and one end of the plurality of springs 3112 is fixedly connected to one side of the telescopic plate 3101; by setting the anti-sway plate 3110, the shaking amplitude of the disinfectant solution can be weakened, and the probability of leakage caused by excessive shaking amplitude is reduced. The sliding groove 3111 can be used to guide the telescopic plate 3101, and the spring 3112 can be used to elastically limit the moving distance of the telescopic plate 3101, and the reaction force of the spring 3112 can achieve reverse reset of the telescopic plate 3101.
[0045] The specific implementation of this embodiment is as follows: when the disinfectant solution is used and consumed for a period of time, the liquid level of the disinfectant solution decreases, and the liquid level sensor 3109 monitors the decrease of the disinfectant solution. The liquid level sensor 3109 is an existing mature technology, so it is not elaborated in detail. Under normal conditions, a closed cavity for storing the disinfectant solution is formed in the inner cavity of the air inlet block 12 by the push plate 3103, the air outlet plate 3104, the transparent plate 3105 and the L-shaped plate 202. At this time, by starting the electric push rod 3102, the extension of the telescopic end of the electric push rod 3102 pushes the push plate 3103 to move, and the movement of the push plate 3103 pushes the air outlet plate 3104 to move. The movement of the air outlet plate 3104 drives the telescopic end of the telescopic plate 3101 to be compressed. The telescopic plate 3101 is composed of an outer plate, an inner plate and an elastic member. After the telescopic plate 3101 is contracted, it can be extended by the reaction force of the elastic member. Fig. 9 , which is an existing mature technology, so it is not elaborated in detail. The elastic coefficient of the elastic member in the telescopic plate 3101 is smaller than the elastic coefficient of the spring 3112 in the sliding groove 3111. When a lateral push occurs, the telescopic end of the telescopic plate 3101 will be compressed first. When the telescopic end of the telescopic plate 3101 is compressed to the limit position, the entire telescopic plate 3101 begins to be pushed, and the spring 3112 in the sliding groove 3111 is compressed. As the push plate 3103 moves, the disinfectant solution is pushed toward the outlet end of the air inlet pipe 203. As the cavity for storing the disinfectant solution becomes smaller and smaller, the liquid level of the disinfectant solution gradually rises until it rises to the position of the liquid level sensor 3109, triggering the liquid level sensor 3109, and closing the door. The electric push rod 3102 is closed, thereby ensuring that the outlet end of the air inlet pipe 203 remains in the disinfectant solution of the set liquid level, effectively increasing the disinfection and sterilization effect, and the disinfected air passes through the one-way valve 212 in the air outlet plate 3104, enters the cavity above the partition 201, and finally enters the inner cavity of the helmet body 11. By setting the injection nozzle 3106 and the sealing plug 3107, when new disinfectant solution needs to be added, the screw is unscrewed, and the cover 204 is rotated by the rotating shaft to cancel the contact with the air inlet block 12, the sealing plug 3107 is removed, and new disinfectant solution is poured through the injection nozzle 3106, so as to facilitate the user to add new disinfectant solution, and the sealing plug 3107 can achieve sealing of the injection nozzle 3106.
[0046] Example 3: Please refer to Figure 1-Figure 9 The present invention provides a technical solution: a multifunctional anti-virus helmet. The present invention makes corresponding improvements to the technical problems mentioned in the background technology.
[0047] As a further limitation of the auxiliary mechanism 3 of the present invention, the concentration monitoring unit 32 includes a tooth plate 3201 fixedly connected to the top of the telescopic end of the telescopic plate 3101, the inner wall of the L-shaped plate 202 is rotatably connected to a rotating rod 3202 through a sealed bearing, the bottom end of the rotating rod 3202 penetrates to the bottom of the L-shaped plate 202 and is fixedly connected to a stirring rod 3203, the top of the rotating rod 3202 penetrates to the top of the L-shaped plate 202 and is fixedly connected to a gear 3204, the teeth of the tooth plate 3201 are meshed with the teeth of the gear 3204, and the inner bottom of the air intake block 12 is fixedly connected to an electrochemical sensor 3205, and the electrochemical sensor 3205 is located on one side of the stirring rod 3203; by setting the concentration monitoring unit 32, timely monitoring of the concentration of the disinfectant solution can be achieved, which is convenient for the user to know the concentration of the disinfectant solution in real time, effectively ensuring the disinfection and sterilization effect, thereby improving the anti-virus efficiency.
[0048] The specific implementation of this embodiment is as follows: the concentration of the disinfectant solution is monitored in real time by the electrochemical sensor 3205. The working principle of the electrochemical sensor 3205 for monitoring the concentration of the disinfectant solution is based on the principle of electrochemical reaction. The concentration of the disinfectant solution is accurately measured by measuring the current signal generated during the reaction. When the liquid level of the disinfectant solution drops, the telescopic end of the telescopic plate 3101 is compressed by the push plate 3103, and the tooth plate 3201 is displaced at this time. The movement of the tooth plate 3201 causes the gear 3204 to rotate. The rotation of the gear 3204 drives the rotating rod 3202 and the stirring rod 3203 to rotate. The rotation of the stirring rod 3203 stirs the disinfectant solution, ensuring the balance of the concentration of the disinfectant solution, thereby improving the accuracy of the monitoring results of the concentration of the disinfectant solution, so that the user can accurately know the concentration of the disinfectant solution.
[0049] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0050] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multifunctional anti-virus helmet, comprising a main body (1), the main body (1) comprising a helmet body (11), an air intake block (12) and an air outlet block (13) being fixedly connected to each other on both sides of the helmet body (11), the air intake block (12) and the air outlet block (13) being connected to each other through an inner cavity of the helmet body (11), a controller (14) being fixedly connected to the surface of the helmet body (11), a battery pack (15) being fixedly connected to the surface of the helmet body (11), the controller (14) and the battery pack (15) being electrically connected, characterized in that: The surface of the helmet body (11) is provided with an anti-virus mechanism (2), and the anti-virus mechanism (2) is used to disinfect and sterilize the air entering the inner cavity of the helmet body (11) from the outside; The inner cavity of the air intake block (12) is provided with an auxiliary mechanism (3), the auxiliary mechanism (3) comprising a disinfection solution gathering unit (31), the disinfection solution gathering unit (31) is arranged in the inner cavity of the air intake block (12), and the disinfection solution gathering unit (31) is used to gather the disinfection solution together; The auxiliary mechanism (3) further comprises a concentration monitoring unit (32), wherein the concentration monitoring unit (32) is arranged in the inner cavity of the air intake block (12), and the concentration monitoring unit (32) is used to monitor the concentration of the disinfection solution.
2. A multifunctional anti-virus helmet according to claim 1, characterized in that: The anti-virus mechanism (2) comprises a partition (201) fixedly connected to the inner cavity of the air intake block (12); an L-shaped plate (202) is fixedly connected to the inner bottom of the air intake block (12); a cavity exists between the top of the L-shaped plate (202) and the partition (201); an air intake pipe (203) is fixedly connected to the top of the L-shaped plate (202); one end of the air intake pipe (203) passes through the bottom of the L-shaped plate (202); one side of the air intake block (12) and the air outlet block (13) are rotatably connected to a cover (204) via a rotating shaft; an inner wall of one of the covers (204) is provided with an air intake hole (205) connected to the other end of the air intake pipe (203); and an inner wall of the other cover (204) is provided with an air outlet hole (206) connected to the air outlet block (13). ), a micro air pump (207) is fixedly connected to the surface of one of the covers (204), an output end of the micro air pump (207) is fixedly connected to an air supply pipe (208), the air supply pipe (208) is fixedly connected to the air inlet hole (205), an inner wall of the partition (201) is fixedly connected to a first air outlet pipe (209), one end of the first air outlet pipe (209) passes through the bottom of the partition (201) and is fixedly connected to a conical air inlet head (210), the other end of the first air outlet pipe (209) is fixedly connected to a limiting component, the top of the limiting component is fixedly connected to a second air outlet pipe (211), one end of the second air outlet pipe (211) is fixedly connected to a deodorizing component, and one side of the deodorizing component is provided with a hole connected to the inner cavity of the helmet body (11).
3. A multifunctional anti-virus helmet according to claim 2, characterized in that: The inner cavities of the air inlet pipe (203) and the air outlet hole (206) are both fixedly connected with a one-way valve (212), and the one-way valve (212) is used to control the one-way flow of air.
4. A multifunctional anti-virus helmet according to claim 2, characterized in that: The limit assembly comprises a limit box (213), the bottom of the limit box (213) is fixedly connected to one end of the first air outlet pipe (209), the top of the limit box (213) is fixedly connected to one end of the second air outlet pipe (211), the inner wall of the limit box (213) is rotatably connected to a limit plate (214), and one end of the limit plate (214) is in contact with the inner wall of the limit box (213).
5. A multifunctional anti-virus helmet according to claim 4, characterized in that: A torsion spring (215) is provided between the limiting plate (214) and the limiting box (213); the torsion spring (215) is sleeved on the surface of the limiting plate (214); one end of the torsion spring (215) is fixedly connected to the inner wall of the limiting plate (214); and the other end of the torsion spring (215) is fixedly connected to the inner wall of the limiting box (213).
6. A multifunctional anti-virus helmet according to claim 4, characterized in that: The inner top of the limit box (213) is fixedly connected to a limit block (216), the limit block (216) corresponds to the position of the air inlet end of the second air outlet pipe (211), the inner cavity of the limit block (216) is provided with a conical hole (217), the bottom of the limit block (216) is fixedly connected to two connecting rods (218), the surfaces of the two connecting rods (218) are slidably connected to connecting blocks (219), the two connecting blocks (219) are commonly fixedly connected to a conical counterweight block (220), and the surface of the conical counterweight block (220) is in contact with the inner cavity of the conical hole (217).
7. A multifunctional anti-virus helmet according to claim 2, characterized in that: The odor removal component comprises an odor removal box (221) fixedly connected to the inner wall of the air intake block (12); one end of the second air outlet pipe (211) penetrates into the inner cavity of the odor removal box (221); the inner wall of the odor removal box (221) is slidably connected with an odor removal core (222); the air transported by the second air outlet pipe (211) passes through the odor removal core (222) for odor removal; the odor removal core (222) uses activated carbon components for odor removal; and the odor removal core (222) and the odor removal box (221) are magnetically positioned by a magnet.
8. The multifunctional anti-virus helmet according to claim 2, characterized in that: The disinfection solution gathering unit (31) comprises a telescopic plate (3101), one end of the telescopic plate (3101) is slidably connected to the inner wall of the L-shaped plate (202), the inner wall of the air inlet block (12) is fixedly connected to an electric push rod (3102), the telescopic end of the electric push rod (3102) is fixedly connected to a push plate (3103), the top of the telescopic end of the telescopic plate (3101) is fixedly connected to an air outlet plate (3104), one side of the air outlet plate (3104) is tightly fitted with one side of the push plate (3103), the inner wall of the air outlet plate (3104) is fixedly connected to a one-way valve (212), and the L-shaped plate (20 2) is fixedly connected to one side of a transparent plate (3105), an injection nozzle (3106) is opened on one side of the transparent plate (3105), and a sealing plug (3107) is tightly fitted in the inner cavity of the injection nozzle (3106), one side of the telescopic plate (3101) is slidably connected to one side of the transparent plate (3105), both sides of the telescopic plate (3101) and one side of the air outlet plate (3104) are fixedly connected with a silicone sealing pad (3108), one side of the push plate (3103) is fixedly connected to a liquid level sensor (3109), and the liquid level sensor (3109) is electrically connected to the electric push rod (3102).
9. A multifunctional anti-virus helmet according to claim 8, characterized in that: The bottom of the telescopic end of the telescopic plate (3101) is fixedly connected to an anti-sway plate (3110), and the anti-sway plate (3110) is used to reduce the shaking amplitude of the disinfectant solution. A sliding groove (3111) is opened on one side of the L-shaped plate (202), and the telescopic plate (3101) is slidably connected to the inner cavity of the sliding groove (3111). The inner wall of the sliding groove (3111) is fixedly connected to a plurality of springs (3112), and one end of the plurality of springs (3112) is fixedly connected to one side of the telescopic plate (3101).
10. The multifunctional anti-virus helmet according to claim 8, characterized in that: The concentration monitoring unit (32) comprises a toothed plate (3201) fixedly connected to the top of the telescopic end of the telescopic plate (3101); the inner wall of the L-shaped plate (202) is rotatably connected to a rotating rod (3202) via a sealed bearing; the bottom end of the rotating rod (3202) penetrates the bottom of the L-shaped plate (202) and is fixedly connected to a stirring rod (3203); the top end of the rotating rod (3202) penetrates the top of the L-shaped plate (202) and is fixedly connected to a gear (3204); the teeth of the toothed plate (3201) mesh with the teeth of the gear (3204); the inner bottom of the air intake block (12) is fixedly connected to an electrochemical sensor (3205); and the electrochemical sensor (3205) is located on one side of the stirring rod (3203).