Spraying disinfecting and killing device for high-pressure micro-mist device
Through the design of the quick material change assembly, the problem of water being poured multiple times after the disinfection water of the high-pressure micro-fog device is exhausted, and the rapid replenishment of the disinfectant water is achieved and the work efficiency is improved.
Patent Information
- Application Number
- CN202422628414.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-10-30
AI Technical Summary
When using high-pressure microfog device to disinfect large areas, the disinfectant water needs to be poured in multiple times after it is exhausted, resulting in a reduced working efficiency.
A quick material change assembly is designed, including a vertical barrel, a buffer block, a buffer spring, a water tank and an electric push rod. The holed hard pipe and a high-pressure pump are used to quickly replenish disinfectant water, avoiding the waiting process of pouring water multiple times.
The rapid replacement and replenishment of disinfectant water has been achieved, and the efficiency of disinfection work has been improved.
Smart Images

Figure CN223054797U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of spraying and disinfection devices, in particular to a spraying and disinfection device for a high-pressure micro-mist device. Background Art
[0002] A spraying and disinfection device for a high-pressure micro-mist device is a disinfected water atomizing spraying device that atomizes disinfected water through high pressure and sprays the atomized disinfected water to a designated area. These tiny droplets can diffuse in the air to achieve uniform disinfection of the environment. This device is usually used in occasions that require large-area and rapid disinfection, such as medical institutions, farms, transportation hubs, etc., to block the spread of germs.
[0003] When using an atomizing spraying device to disinfect a large area, a large amount of disinfected water will be consumed. Therefore, after the disinfected water in the atomizing spraying device is consumed, it is necessary to pour the disinfected water into the atomizing spraying device again. However, the process of repeatedly filling the atomizing spraying device with disinfected water will consume a lot of time, thus reducing the work efficiency.
[0004] Therefore, in view of the problem that when a large amount of disinfected water needs to be consumed, the process of repeatedly filling the atomizing spraying device with disinfected water will consume a lot of time and affect the work efficiency, a spraying and disinfection device for a high-pressure micro-mist device can be designed to solve the above problems. Summary of the Utility Model
[0005] In order to overcome the problem that in the process of using an atomizing spraying device to disinfect a large area, because a large amount of disinfected water will be consumed, after the disinfected water in the atomizing spraying device is consumed, it is necessary to pour the disinfected water into the atomizing spraying device again. However, the process of repeatedly filling the atomizing spraying device with disinfected water will consume a lot of time, thus reducing the work efficiency.
[0006] The technical solution of the utility model is: a spraying and disinfection device for a high-pressure micro-mist device, including a high-pressure pump and a quick material-changing component; the quick material-changing component is arranged at the rear end of the high-pressure pump; the quick material-changing component includes a vertical cylinder; a vertical groove is opened at the front end of the vertical cylinder; four vertical rods are fixedly connected inside the vertical cylinder; buffer blocks are slidably connected to the vertical rods; buffer springs are arranged at the lower ends of the buffer blocks; a water tank is slidably connected in the middle of the vertical cylinder; clamping grooves are opened at the four corners on the outside of the water tank; an inner slider is fixedly connected inside the water tank; two spring guide rods are slidably connected inside the inner slider; a water-blocking sheet is fixedly connected to the front ends of the two spring guide rods together; a drain port is arranged at the front end of the water-blocking sheet.
[0007] Preferably, place the water tank already filled with disinfectant water into the vertical cylinder. During this process, the water tank will press on the four buffer blocks and continue to sink, while the buffer springs will buffer the water tank until it reaches the bottom. Subsequently, the electric push rod pushes the push block and the perforated hard pipe, causing the perforated hard pipe to insert into the drain outlet, and the rear end of the perforated hard pipe to push the water isolation sheet backward, so that the perforated hard pipe inserts into the interior of the water tank. Then, start the high-pressure pump, let the high-pressure pump extract the disinfectant water in the water tank through the perforated hard pipe and the rigid telescopic pipe, and after applying high pressure to the extracted disinfectant water, send the disinfectant water into the hose, so that the disinfectant water sprays out from the atomizing nozzle to form fine water mist.
[0008] Preferably, a perforated hard pipe is slidably connected inside the drain outlet; a push block is fixedly connected to the outer side of the front end of the perforated hard pipe; a rigid telescopic pipe communicating with the perforated hard pipe is arranged at the front end of the push block; electric push rods fixedly connected to the push block are arranged on both sides of the rigid telescopic pipe. After the disinfectant water in the water tank is exhausted, retract the electric push rods to extract the perforated hard pipe from the drain outlet, then take out the empty water tank, and then put a new water tank filled with disinfectant into the vertical cylinder to complete the rapid replacement of the water tank, thereby completing the rapid replenishment of the disinfectant water and further improving the work efficiency.
[0009] Preferably, the front end of the rigid telescopic pipe is communicated with the high-pressure pump; the drain outlet is opened below the front end face of the water tank.
[0010] Preferably, the buffer spring is slidably connected to the vertical rod; a circle of holes for water inlet is provided at the rear end of the perforated hard pipe.
[0011] Preferably, the upper end of the high-pressure pump is communicated with a hose; the first end of the hose is communicated with an atomizing nozzle.
[0012] Preferably, a hanging ring is arranged at the lower end of the atomizing nozzle; a small cart is arranged at the lower end of the high-pressure pump. The small cart is used to facilitate the transfer of the device, and the hanging ring is used to hang the atomizing nozzle.
[0013] Preferably, the front end of the electric push rod is fixedly connected to the small cart through a fixing block; the lower end faces of the high-pressure pump and the vertical cylinder are both fixedly connected to the small cart; the hanging ring is fixedly connected to the front end face of the vertical cylinder.
[0014] The beneficial effects of the present utility model:
[0015] 1. By setting up a quick refueling component, when the disinfectant water in the atomizing spraying device is exhausted, the user can quickly replace the water tank for containing the disinfectant water, so as to realize the rapid replenishment of the disinfectant water in the atomizing spraying device, without having to wait multiple times during the disinfection process for pouring disinfectant water into the atomizing spraying device and filling the atomizing spraying device, thereby improving the work efficiency of the user during disinfection;
[0016] 2. Place the water tank already filled with disinfectant water into the vertical cylinder. During this process, the water tank will press on the four buffer blocks and continue to sink, while the buffer springs will buffer the water tank until it reaches the bottom. Subsequently, the electric push rod pushes the push block and the perforated hard pipe, inserts the perforated hard pipe into the drain outlet, and makes the rear end of the perforated hard pipe push the water isolation sheet backward so that the perforated hard pipe is inserted into the interior of the water tank. Then, start the high-pressure pump, let the high-pressure pump extract the disinfectant water in the water tank through the perforated hard pipe and the rigid telescopic pipe, and after applying high pressure to the extracted disinfectant water, send the disinfectant water into the hose so that the disinfectant water sprays out from the atomizing nozzle to form fine water mist; when the disinfectant water in the water tank is exhausted, retract the electric push rod to extract the perforated hard pipe from the drain outlet, then take out the empty water tank, and directly place a new water tank filled with disinfectant into the vertical cylinder to complete the rapid replacement of the water tank, thereby completing the rapid replenishment of the disinfectant water and further improving work efficiency. Brief Description of the Drawings
[0017] Figure 1 Shows the overall structural schematic diagram of the present utility model;
[0018] Figure 2 Shows the structural schematic diagram of the buffer block of the present utility model;
[0019] Figure 3 Shows the structural schematic diagram of the card slot of the present utility model;
[0020] Figure 4 Shows the structural schematic diagram of the spring guide rod of the present utility model;
[0021] Figure 5 Shows the structural schematic diagram of the perforated hard pipe of the present utility model.
[0022] Explanation of Reference Numerals in the Drawings: 1. High-pressure pump; 201. Vertical cylinder; 202. Vertical groove; 203. Vertical rod; 204. Buffer block; 205. Buffer spring; 206. Water tank; 207. Card slot; 208. Inner slider; 209. Spring guide rod; 210. Water isolation sheet; 211. Drain outlet; 212. Perforated hard pipe; 213. Push block; 214. Rigid telescopic pipe; 215. Electric push rod; 3. Hose; 4. Atomizing nozzle; 5. Hanging ring; 6. Trolley. Detailed Description of the Embodiment
[0023] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0024] Please refer to Figures 1 - 5, the present utility model provides an embodiment: a spraying and disinfection device for a high-pressure micro-mist device, comprising a high-pressure pump 1 and a quick refueling assembly; the upper end of the high-pressure pump 1 is communicated with a hose 3; the head end of the hose 3 is communicated with an atomizing nozzle 4; a hanging ring 5 is arranged at the lower end of the atomizing nozzle 4; a trolley 6 is arranged at the lower end of the high-pressure pump 1; the trolley 6 is used to facilitate the transfer of the device, and the hanging ring 5 is used to hang the atomizing nozzle 4.
[0025] Please refer to Figures 2 - 5, in this embodiment, a quick refueling assembly is provided at the rear end of the high-pressure pump 1; the quick refueling assembly includes a vertical cylinder 201; a vertical groove 202 is provided at the front end of the vertical cylinder 201; four vertical rods 203 are fixedly connected inside the vertical cylinder 201; buffer blocks 204 are slidably connected to the vertical rods 203; buffer springs 205 are provided at the lower ends of the buffer blocks 204; a water tank 206 is slidably connected in the middle of the vertical cylinder 201; card slots 207 are provided at the four corners on the outside of the water tank 206; an inner slider 208 is fixedly connected inside the water tank 206; two spring guide rods 209 are slidably connected inside the inner slider 208; a water isolation sheet 210 is fixedly connected to the front ends of the two spring guide rods 209; a drain port 211 is provided at the front end of the water isolation sheet 210; the water tank 206 filled with disinfectant water is placed into the vertical cylinder 201. During this process, the water tank 206 will press on the four buffer blocks 204 and continue to sink, and the buffer springs 205 will buffer the water tank 206 until the water tank 206 reaches the bottom. Subsequently, the electric push rod 215 pushes the push block 213 and the perforated hard tube 212, so that the perforated hard tube 212 is inserted into the drain port 211, and the rear end of the perforated hard tube 212 is used to push the water isolation sheet 210 backward, so that the perforated hard tube 212 is inserted into the interior of the water tank 206. Then, the high-pressure pump 1 is started, and the high-pressure pump 1 pumps out the disinfectant water in the water tank 206 through the perforated hard tube 212 and the rigid telescopic tube 214, and after applying high pressure to the pumped-out disinfectant water, the disinfectant water is sent into the hose 3, so that the disinfectant water is sprayed out from the atomizing nozzle 4 to form fine water mist; the perforated hard tube 212 is slidably connected in the drain port 211; a push block 213 is fixedly connected to the outside of the front end of the perforated hard tube 212; a rigid telescopic tube 214 communicating with the perforated hard tube 212 is provided at the front end of the push block 213; electric push rods 215 are provided on both sides of the rigid telescopic tube 214 and are fixedly connected to the push block 213; after the disinfectant water in the water tank 206 is exhausted, the electric push rod 215 retracts to withdraw the perforated hard tube 212 from the drain port 211. Subsequently, the empty water tank 206 is taken out, and a new water tank 206 filled with disinfectant is placed into the vertical cylinder 201 to complete the quick replacement of the water tank 206, thereby completing the quick replenishment of the disinfectant water and further improving the work efficiency; the front end of the rigid telescopic tube 214 is communicated with the high-pressure pump 1; the drain port 211 is provided below the front end face of the water tank 206; the buffer spring 205 is slidably connected to the vertical rod 203; a circle of holes for water inlet is provided at the rear end of the perforated hard tube 212; the front end of the electric push rod 215 is fixedly connected to the trolley 6 through a fixing block; the lower end faces of the high-pressure pump 1 and the vertical cylinder 201 are both fixedly connected to the trolley 6; the hanging ring 5 is fixedly connected to the front end face of the vertical cylinder 201.
[0026] In use, the water tank 206 filled with disinfectant water is placed into the vertical cylinder 201. During this process, the water tank 206 presses on the four buffer blocks 204 and continues to sink, while the buffer springs 205 buffer the water tank 206 until the water tank 206 reaches the bottom. Subsequently, the electric push rod 215 pushes the push block 213 and the perforated hard tube 212, causing the perforated hard tube 212 to insert into the drain port 211, and the rear end of the perforated hard tube 212 to push the water isolation sheet 210 backward, so that the perforated hard tube 212 inserts into the interior of the water tank 206. Then, the high-pressure pump 1 is started, and the high-pressure pump 1 pumps out the disinfectant water in the water tank 206 through the perforated hard tube 212 and the rigid telescopic tube 214, and after applying high pressure to the pumped-out disinfectant water, sends the disinfectant water into the hose 3, causing the disinfectant water to spray out from the atomizing nozzle 4 to form fine water mist;
[0027] When the disinfectant water in the water tank 206 is exhausted, the electric push rod 215 retracts to withdraw the perforated hard tube 212 from the drain port 211. Subsequently, the empty water tank 206 is taken out, and a new water tank 206 filled with disinfectant is directly placed into the vertical cylinder 201 to complete the rapid replacement of the water tank 206, thereby completing the rapid replenishment of the disinfectant water and further improving the work efficiency.
[0028] Through the above steps, by setting up the rapid refueling assembly, when the disinfectant water in the atomizing spraying device is exhausted, the user can quickly replace the water tank 206 for containing the disinfectant water, so as to achieve the rapid replenishment of the disinfectant water in the atomizing spraying device, without having to wait multiple times during the disinfection process for pouring disinfectant water into the atomizing spraying device and filling the atomizing spraying device, thereby improving the work efficiency of the user during disinfection.
Claims
1. A spraying and disinfection device for a high-pressure micro-mist device, comprising a high-pressure pump (1); characterized in that: It also includes a quick refueling component; a quick refueling component is provided at the rear end of the high-pressure pump (1); the quick refueling component includes a vertical cylinder (201); a vertical groove (202) is provided at the front end of the vertical cylinder (201); four vertical rods (203) are fixedly connected inside the vertical cylinder (201); buffer blocks (204) are slidably connected to the vertical rods (203); buffer springs (205) are provided at the lower ends of the buffer blocks (204); a water tank (206) is slidably connected to the middle of the vertical cylinder (201); card slots (207) are provided at the four corners on the outside of the water tank (206); an inner slider (208) is fixedly connected inside the water tank (206); two spring guide rods (209) are slidably connected inside the inner slider (208); a water isolation sheet (210) is fixedly connected to the front ends of the two spring guide rods (209) together; a drain port (211) is provided at the front end of the water isolation sheet (210).
2. The spraying and disinfection device for a high-pressure micro-mist device according to claim 1, characterized in that: A perforated hard pipe (212) is slidably connected inside the drain port (211); a push block (213) is fixedly connected to the outside of the front end of the perforated hard pipe (212); a rigid telescopic pipe (214) communicating with the perforated hard pipe (212) is provided at the front end of the push block (213); electric push rods (215) fixedly connected to the push block (213) are provided on both sides of the rigid telescopic pipe (214).
3. The spraying and disinfection device for a high-pressure micro-mist device according to claim 2, characterized in that: The front end of the rigid telescopic pipe (214) communicates with the high-pressure pump (1); the drain port (211) is provided below the front end face of the water tank (206).
4. The spraying and disinfection device for a high-pressure micro-mist device according to claim 2, characterized in that: The buffer spring (205) is slidably connected to the vertical rod (203); a circle of holes for water inlet is provided at the rear end of the perforated hard pipe (212).
5. The spraying and disinfection device for a high-pressure micro-mist device according to claim 1, characterized in that: A hose (3) is connected to the upper end of the high-pressure pump (1); the first end of the hose (3) is connected to an atomizing nozzle (4).
6. The spraying and disinfection device for a high-pressure micro-mist device according to claim 5, characterized in that: A hanging ring (5) is provided at the lower end of the atomizing nozzle (4); a trolley (6) is provided at the lower end of the high-pressure pump (1).
7. The spraying and disinfection device for a high-pressure micro-mist device according to claim 6, characterized in that: The front end of the electric push rod (215) is fixedly connected to the trolley (6) through a fixing block; the lower end faces of the high-pressure pump (1) and the vertical cylinder (201) are both fixedly connected to the trolley (6); the hanging ring (5) is fixedly connected to the front end face of the vertical cylinder (201).