Disinfection device and method for pitaya tank for moxibustion
By designing a fire dragon tank disinfection device that integrates clamping, scrubbing, water spraying and disinfection components, the problem of cumbersome and low efficiency of fire dragon tank cleaning is solved, and automated cleaning, disinfection and drying is achieved, and operating efficiency and effect are improved.
Patent Information
- Application Number
- CN202510299491.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-06-03
AI Technical Summary
When cleaning the Fire Dragon tank, due to the restriction of the opening of the tank, it is difficult for medical personnel to effectively clean the smoke, mugwort ash or other contaminants on the inner surface of the Fire Dragon tank, resulting in cumbersome and inefficient cleaning.
A sterilization device for moxibustion was designed, including clamping components, brushing components, water spraying components and disinfection components. The clamping components and brushing components are driven to rotate through the power components, and the comprehensive cleaning, disinfection and drying of the sterilizing tank is achieved by using brush discs, brush strips, cleaning wires and water spray systems.
The automatic cleaning, disinfection and drying of the fire dragon tank is realized, which reduces the amount of manual labor, improves the cleaning efficiency, ensures the cleaning effect, and supports the simultaneous treatment of multiple fire dragon tanks.
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Figure CN120079660A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fire dragon cup disinfection, and in particular to a fire dragon cup disinfection device and method for moxibustion. Background Art
[0002] The Fire Dragon Cup is a sustainable medical device. To avoid cross infection caused by subsequent use of the Fire Dragon Cup, medical staff need to clean and disinfect the outer surface, mouth and inner surface of the cup after removing the moxa ash with hemostatic forceps. When cleaning the Fire Dragon Cup, due to the limitation of the cup opening, it is difficult for medical staff to use tools (brushes) and clean water to clean the smoke, moxa ash or other contaminants remaining on the inner surface of the cup. After the Fire Dragon Cup is cleaned, it still needs to be soaked in disinfectant for disinfection and then dried. As a result, cleaning the Fire Dragon Cup is not only cumbersome for medical staff, but also has low cleaning efficiency. Summary of the invention
[0003] The purpose of the present invention is to overcome the disadvantage that when cleaning a fire dragon cup, it is difficult for medical personnel to use tools and clean water to clean the smoke, wormwood ash or other pollutants remaining on the inner surface of the fire dragon cup due to the limitation of the cup opening. A disinfection device is provided, which can automatically clean, disinfect and dry the fire dragon cup without manual processing, thus saving a lot of time.
[0004] Another object of the present invention is to provide a device and method for disinfecting a fire dragon cup for moxibustion having the above-mentioned functions.
[0005] The embodiment of the present invention is realized by the following technical scheme: a fire dragon pot disinfection device for moxibustion, comprising a chassis; a shell, a support tube, a cover shell, a manual valve, a power assembly, a clamping assembly, a spring telescopic column, a brush plate, a brush strip, a pushing assembly, a receiving assembly, a scrubbing assembly and a water spraying assembly; the shell is fixedly connected to the upper surface of the chassis; at least six cavities distributed in a circular array are opened on the shell; a support tube is fixedly connected to the center point of the shell; a cover shell is fixedly connected to the support tube; at least six manual valves distributed in a circular array are fixedly connected to the outer surface of the shell, and all the manual valves are connected to the corresponding cavities; the support tube is connected to A power assembly; a clamping assembly for clamping the fire dragon pot is connected to the cover; a plurality of spring telescopic columns are connected to the clamping assembly; each spring telescopic column is fixedly connected to a brush disk; a plurality of brush strips for cleaning the outer surface of the fire dragon pot are connected to the clamping assembly; a pushing assembly for driving the brush strips to and fro is connected to the clamping assembly; a receiving assembly for receiving the fire dragon pot is connected to the shell; a brushing assembly for brushing the inner wall of the fire dragon pot is connected to the receiving assembly; a water spraying assembly for spraying clean water is connected to the shell; the power assembly is used to drive the clamping assembly, the spring telescopic columns, the brush disk, the brush strips and the pushing assembly to rotate together.
[0006] In addition, it is particularly preferred that the clamping assembly includes a ring plate 1, an electric push rod 1, a fixed frame, a mounting plate, a sliding column, a vertical rod, a clamping block, an elastic member and a fixed block; a ring plate 1 is rotatably connected to the inner side of the cover shell, and the ring plate 1 is rotatably connected to the support tube; the ring plate 1 is connected to the power assembly; at least three electric push rods 1 are fixedly connected to the ring plate 1; the telescopic part of each electric push rod 1 is fixedly connected to a fixed frame; each fixed frame is provided with two avoidance grooves; the lower part of each fixed frame is fixedly connected to a mounting plate; each mounting plate is provided with at least four sliding grooves distributed in a rectangular shape; each sliding groove is slidably connected to a sliding column; all the sliding columns are slidably connected to a vertical rod; the two vertical rods closest to each mounting plate are jointly fixed to a clamping block; each clamping block is provided with a number of equidistantly distributed grooves; each sliding groove is provided with an elastic member, and all the elastic members are fixedly connected to adjacent sliding columns; the two vertical rods closest to each mounting plate are jointly fixed to a fixed block; all the fixed blocks are connected to the pushing assembly.
[0007] In addition, it is particularly preferred that the clamping assembly also includes an electric push rod 2 and an arc plate; an electric push rod 2 is fixedly connected to the upper surface of each mounting plate, and the electric push rod 2 is a bidirectional push rod; the two telescopic parts of each electric push rod 2 are fixedly connected to an arc plate; the two arc plates on each mounting plate are located between the corresponding four vertical rods, and all the arc plates are in contact with the corresponding sliding columns.
[0008] In addition, it is particularly preferred that the pushing assembly includes an electric push rod three and a guide block; each fixed frame is connected to at least two electric push rods three; the telescopic part of each electric push rod three is fixedly connected to a guide block; and all the guide blocks are slidably connected to the corresponding fixed blocks.
[0009] In addition, it is particularly preferred that the receiving assembly includes a motor 1, a round rod and a rubber block; at least six motors 1 distributed in a circular array are fixedly connected to the inner wall of the chassis; the output shaft of each motor 1 is fixedly connected to a round rod; all the round rods pass through the chassis and the shell and are located in the center of the cavity; the upper end of each round rod is rotatably connected to a rubber block through a ratchet mechanism.
[0010] In addition, it is particularly preferred that the brushing assembly includes a circular plate, a sponge ring, a fixing ring, cleaning filaments and an electric push rod IV; a circular plate is fixedly connected to the middle of the outer surface of each of the three circular rods, and the three circular rods without the fixedly connected circular plate are distributed in a staggered manner with the three circular rods with the fixedly connected circular plate; the upper surface of the circular plate is frustum-shaped and is provided with a plurality of drain holes; a sponge ring is fixedly connected to the upper surface of each circular plate; a fixing ring is fixedly connected to the upper part of the outer surface of the circular rod with the fixedly connected circular plate; two electric push rods IV are fixedly connected to the upper part of the circular rod with the fixedly connected circular plate through a connecting block, and the electric push rod IV is located below the fixing ring at the upper part of the circular rod; the telescopic parts of the two electric push rods IV on the same circular rod are jointly fixedly connected with another fixing ring; a plurality of cleaning filaments distributed in a circular array are movably connected between the two fixing rings, and the cleaning filaments are made of memory metal.
[0011] In addition, it is particularly preferred that a layer of fiber filaments is covered on the surface of each cleaning filament.
[0012] In addition, it is particularly preferred that the water spraying assembly includes a first annular water pipe, a first thin pipe, a hollow disk, a second annular plate, a second thin pipe and a second annular water pipe; a first annular water pipe is fixedly connected to the inner upper wall of each of the three cavities; an inlet is provided on each first annular water pipe; a plurality of nozzles distributed in a circular array are provided on each first annular water pipe, and the plurality of nozzles are inclined downward; a first thin pipe is connected to the lower part of each first annular water pipe; a hollow disk is fixedly connected to the outer surface of the circular rod with the fixedly connected circular plate; a second annular plate is rotatably connected to each hollow disk; the first thin pipe is connected to the corresponding second annular plate; a second thin pipe is connected to each hollow disk; a second annular water pipe is embedded in the upper surface of each fixing ring, and the second annular water pipe is communicated with the corresponding second thin pipe; a plurality of nozzles distributed in a circular array are provided on each second annular water pipe, and the plurality of nozzles are inclined upward.
[0013] In addition, it is particularly preferred that a disinfection component is further included, and a disinfection component for disinfecting the fire dragon jar is connected to the chassis and the housing; the disinfection component includes an L-shaped pipe, a connecting pipe, an annular air pipe, a hose and an annular air nozzle; the lower part of the support pipe is hollow, and the L-shaped pipe is passed through the chassis and the housing together, and the L-shaped pipe is located in the lower part of the support pipe; at least three connecting pipes distributed in an annular array are connected to the upper part of the L-shaped pipe; an electric valve is arranged in each connecting pipe; all the connecting pipes penetrate through the support pipe and communicate with the other three cavities on the housing where the first annular water pipe is not arranged; an annular air pipe is fixedly connected to the upper part of each of the other three cavities where the first annular water pipe is not arranged; an air inlet is arranged on each annular air pipe; a plurality of air nozzles distributed in an annular array are arranged at the lower part of each annular air pipe, and the plurality of air nozzles are inclined downward; a hose is connected to the lower part of each annular air pipe; an annular air nozzle is rotatably connected to the round rod without the round plate, and a plurality of air holes distributed in an annular array are arranged on each annular air nozzle, and the plurality of air holes are inclined upward, and a one-way valve structure is arranged on each air hole; all the annular air nozzles are communicated with the corresponding hoses.
[0014] A method for disinfecting a fire dragon jar for moxibustion includes the following steps: Step 1: After the fire dragon jar is used, medical staff hold a hemostatic forceps to remove the moxa ash in the fire dragon jar, and then place the fire dragon jar in a state with the jar mouth facing down in two clamping blocks. Step 2: Drive the fire dragon jar to the cavity provided with the brushing component through the power component and the first electric push rod, and fix the fire dragon jar on the rubber block. Step 3: After the fire dragon jar is fixed, control the nozzles of the second annular water pipe to wash the soot, moxa ash or other pollutants attached to the inner surface of the fire dragon jar, and completely clean the inner surface and the jar mouth of the fire dragon jar through a plurality of cleaning wires and a sponge ring. Step 4: After the inner surface and the jar mouth of the fire dragon jar are washed, control the nozzles of the first annular water pipe to wash the sweat, sebum or other secretions on the outer surface of the fire dragon jar, and completely brush the outer surface of the fire dragon jar through a brush disc and a brush strip. Step 5: After the inner and outer surfaces of the fire dragon jar are cleaned, transfer the fire dragon jar to the cavity provided with the disinfection component, soak the washed fire dragon jar with alcohol, and then control the air nozzles of the annular air pipe and the annular air nozzle to blow air on the inner and outer surfaces of the fire dragon jar to dry the soaked fire dragon jar. Beneficial effects
[0015] The moxibustion fire dragon jar disinfection device obtained by the above design of the present invention uses the continuously counterclockwise rotating sponge ring on the scrubbing component to scrub clean the bacteria, viruses or blood (such as when the skin is damaged) at the mouth of the fire dragon jar, and then uses several continuously counterclockwise rotating cleaning filaments on the scrubbing component to scrape and wash clean the soot, moxa ash or other pollutants tightly attached to the inner surface of the fire dragon jar. Then, the sweat, sebum or other secretions on the outer surface of the fire dragon jar are reciprocally scrubbed clean by the brush disk and the brush strip.
[0016] The moxibustion fire dragon jar disinfection device obtained by the above design of the present invention can achieve comprehensive cleaning by using this device to clean the fire dragon jar, distinguish it from manual cleaning, reduce the manual labor amount, improve the cleaning efficiency, and ensure the cleaning effect.
[0017] The moxibustion fire dragon jar disinfection device obtained by the above design of the present invention allows the air flow ejected from the annular air pipe and the annular air nozzle to fully contact the fire dragon jar, which is beneficial to accelerating the drying speed of alcohol. Thus, on the basis of achieving a comprehensive cleaning of the fire dragon jar, this device realizes the disinfection and drying operations of the fire dragon jar, that is, this device integrates cleaning, disinfection and drying.
[0018] The moxibustion fire dragon jar disinfection device obtained by the above design of the present invention can not only perform cleaning, disinfection and drying operations on a single fire dragon jar alone, but also perform cleaning, disinfection and drying operations on multiple fire dragon jars simultaneously, saving the waiting time for cleaning the fire dragon jars and improving the practicality of this device; to realize the simultaneous cleaning, disinfection and drying operations on multiple fire dragon jars, only multiple cavities need to be opened, and the parts required for cleaning or disinfection are set at the corresponding cavities. For the number of cavities opened and the parts required for cleaning or disinfection, they can be specifically designed according to market demands. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The drawings constituting a part of this application are used to provide a further understanding of the present invention. The schematic embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention.
[0020] In the drawings: Figure 1 is a three-dimensional structural schematic diagram of the moxibustion fire dragon jar disinfection device of the present invention; Figure 2 is a three-dimensional structural schematic diagram of the support pipe, the housing, the power component and the clamping component of the moxibustion fire dragon jar disinfection device of the present invention; Figure 3 is a three-dimensional structural schematic diagram of the clamping component, the spring telescopic column, the brush disk, the brush strip and the pushing component of the moxibustion fire dragon jar disinfection device of the present invention; Figure 4It is a three-dimensional structural schematic diagram of the chassis, shell, support pipe, receiving assembly, scrubbing assembly, water spraying assembly and disinfection assembly of the fire dragon cup disinfection device for moxibustion of the present invention; Figure 5 It is a three-dimensional structural schematic diagram of the receiving component and the brushing component of the fire dragon cup disinfection device for moxibustion of the present invention; Figure 6 It is a three-dimensional structural schematic diagram of the receiving component, the scrubbing component and the water spraying component of the fire dragon cup disinfection device for moxibustion of the present invention; Figure 7 It is a schematic diagram of the three-dimensional structure of the fire dragon cup of the fire dragon cup disinfection device for moxibustion of the present invention.
[0021] In the figure: 1- chassis, 2- shell, 3- support tube, 4- cover, 5- manual valve, 6- spring telescopic column, 7- brush plate, 8- brush bar, 9- electric push rod three, 10- guide block, 11- fire dragon tank, 101-L-shaped bracket, 102-motor 2, 103-spur gear, 104-gear ring, 201-ring plate 1, 202-electric push rod 1, 203-fixed frame, 204-mounting plate, 205-sliding column, 206-vertical rod, 207-clamping block, 208-elastic member, 209-fixed block, 210-electric push rod 2, 211-arc plate, 301-motor 1, 302-round rod, 303-rubber block, 304-round plate, 305-sponge ring, 306-fixing ring, 307-cleaning wire, 308-electric push rod 4, 309-annular water pipe 1, 310-thin tube 1, 311-hollow disk, 312-ring plate 2, 313-thin tube 2, 314-annular water pipe 2, 401-L-type pipe, 402-connecting pipe, 403-annular air pipe, 404-hose, 405-annular air nozzle, 2001-cavity, 20301-avoidance groove, 20401-chute, 20701-groove, 30401-drain hole, 30901-water inlet, 40301-air inlet. DETAILED DESCRIPTION
[0022] Hereinafter, various embodiments of the present invention will be described with reference to the accompanying drawings. In addition, in the following figures, in order to make each layer and each component a recognizable size, the scale of each layer and each component is appropriately changed for schematic illustration. It is hereby stated that the directional terms such as up, down, left, right, front, back, inside, outside, etc. that appear or will appear in the text of the present invention are only based on the accompanying drawings of the present invention, and are not specific limitations of the present invention. Example 1
[0023] A fire dragon cup disinfection device for moxibustion, such as Figure 1-7As shown, it includes a chassis 1; It further includes a housing 2, a support pipe 3, a cover shell 4, a manual valve 5, a power assembly, a clamping assembly, a spring telescopic column 6, a brush disk 7, a brush strip 8, a pushing assembly, a receiving assembly, a brushing assembly and a water spraying assembly; the upper surface of the chassis 1 is fixedly connected with the housing 2; six cavities 2001 distributed in an annular array are formed on the housing 2; the center point of the housing 2 is fixedly connected with the support pipe 3; the support pipe 3 is fixedly connected with the cover shell 4; six manual valves 5 distributed in an annular array are fixedly connected to the outer surface of the housing 2, and all the manual valves 5 communicate with the corresponding cavities 2001; a power assembly is connected to the support pipe 3; a clamping assembly is connected to the cover shell 4; three spring telescopic columns 6 are connected to the clamping assembly; a brush disk 7 is fixedly connected to the lower part of each spring telescopic column 6; six brush strips 8 are connected to the clamping assembly; a pushing assembly is connected to the clamping assembly; a receiving assembly is connected to the housing 2; a brushing assembly is connected to the receiving assembly; a water spraying assembly is connected to the housing 2; the power assembly is used to drive the clamping assembly, the spring telescopic column 6, the brush disk 7, the brush strip 8 and the pushing assembly to rotate together.
[0024] The clamping assembly includes an annular plate 1 (201), a first electric push rod 202, a fixed frame 203, a mounting plate 204, a sliding column 205, a vertical rod 206, a clamping block 207, an elastic member 208 and a fixed block 209; the annular plate 1 (201) is rotatably connected to the inner side of the cover shell 4, and the annular plate 1 (201) is rotatably connected to the support pipe 3; the upper surface of the annular plate 1 (201) is connected to the power assembly; three first electric push rods 202 are bolted to the annular plate 1 (201); a fixed frame 203 is fixedly connected to the telescopic part of each first electric push rod 202; two avoidance grooves 20301 are formed on each fixed frame 203; a mounting plate 204 is fixedly connected to the lower part of each fixed frame 203; four chutes 20401 distributed in a rectangular shape are formed on each mounting plate 204; a sliding column 205 is slidably connected to each chute 20401; a vertical rod 206 is slidably connected to all the sliding columns 205; two vertical rods 206 closest to each other on each mounting plate 204 are fixedly connected to a clamping block 207 together; a number of equally spaced grooves 20701 are arranged on each clamping block 207; an elastic member 208 is arranged in each chute 20401, the elastic member 208 can be a spring or a spring telescopic rod, and all the elastic members 208 are fixedly connected to the adjacent sliding columns 205; two vertical rods 206 closest to each other on each mounting plate 204 are fixedly connected to a fixed block 209 together; all the fixed blocks 209 are connected to the pushing assembly.
[0025] The clamping assembly also includes an electric push rod 210 and an arc plate 211; an electric push rod 210 is fixedly connected to the upper surface of each mounting plate 204, and the electric push rod 210 is a bidirectional push rod; the two telescopic parts of each electric push rod 210 are fixedly connected to an arc plate 211; the two arc plates 211 on each mounting plate 204 are located between the corresponding four vertical rods 206, and all the arc plates 211 are in contact with the corresponding sliding column 205.
[0026] The pushing assembly includes an electric push rod 3 9 and a guide block 10; each fixed frame 203 is connected to two electric push rods 3 9; the telescopic part of each electric push rod 3 9 is fixedly connected to a guide block 10; all the guide blocks 10 are slidably connected to the corresponding fixed blocks 209.
[0027] The receiving assembly includes a motor 301, a round rod 302 and a rubber block 303; the inner wall of the chassis 1 is bolted with six motors 301 distributed in a circular array; the output shaft of each motor 301 is fixedly connected with a round rod 302; all the round rods 302 penetrate the chassis 1 and the shell 2 and are located at the center of the cavity 2001; the upper end of each round rod 302 is rotatably connected to a rubber block 303 through a ratchet mechanism, and the ratchet mechanism consists of a ratchet and a pawl.
[0028] The scrubbing assembly includes a circular plate 304, a sponge ring 305, a fixing ring 306, a cleaning wire 307 and an electric push rod 308; a circular plate 304 is fixedly connected to the middle of the outer surface of each of the three round rods 302, and the three round rods 302 not fixed to the circular plate are staggered with the three round rods 302 fixed to the circular plate; the upper surface of the circular plate 304 is in a frustum shape and has a plurality of drainage holes 30401; a sponge ring 305 is fixedly connected to the upper surface of each circular plate 304; the round rods fixed to the circular plate 304 A fixing ring 306 is fixedly connected to the upper part of the outer surface 302; two electric push rods 308 are connected to the upper part of the round rod 302 fixed to the circular plate 304 through connecting block bolts, and the electric push rods 308 are located below the fixing ring 306 on the upper part of the round rod 302; the telescopic parts of the two electric push rods 308 on the same round rod 302 are commonly fixed to another fixing ring 306; a plurality of cleaning wires 307 distributed in a ring array are movably connected between the two fixing rings 306, and the cleaning wires 307 are memory metal.
[0029] In order to facilitate the scraping of smoke, moxa ash or other pollutants on the inner surface of the fire dragon pot 11, the surface of each cleaning wire 307 is covered with a layer of fiber wire.
[0030] The water spraying assembly includes a first annular water pipe 309, a first thin pipe 310, a hollow disc 311, a second annular plate 312, a second thin pipe 313 and a second annular water pipe 314. One first annular water pipe 309 is fixedly connected to the inner upper wall of each of the three cavities 2001. Each first annular water pipe 309 is provided with a water inlet 30901. A plurality of nozzles are arranged on each first annular water pipe 309 in an annular array, and the plurality of nozzles are inclined downward. A first thin pipe 310 is connected to the lower part of each first annular water pipe 309. The outer surface of the round rod 302 of the fixed round plate 304 is fixedly connected with a hollow disc 311. A second annular plate 312 is rotatably connected to each hollow disc 311. The first thin pipe 310 is connected to the corresponding second annular plate 312. A second thin pipe 313 is connected to each hollow disc 311. The upper surface of each fixing ring 306 is embedded with a second annular water pipe 314, and the second annular water pipe 314 is communicated with the corresponding second thin pipe 313. A plurality of nozzles are arranged on each second annular water pipe 314 in an annular array, and the plurality of nozzles are inclined upward.
[0031] To facilitate the discharge of clean water and alcohol, the bottom wall of each cavity 2001 is inclined.
[0032] The power assembly includes an L-shaped bracket 101, a second motor 102, a spur gear 103 and a toothed ring 104. The upper part of the outer surface of the support pipe 3 is fixedly connected with an L-shaped bracket 101. The second motor 102 is bolted to the L-shaped bracket 101. The output shaft of the second motor 102 is fixedly connected with a spur gear 103. The upper surface of the first annular plate 201 is connected with a toothed ring 104, and the toothed ring 104 meshes with the spur gear 103.
[0033] The working steps of this embodiment are as follows: In the following description of rotation, the viewing direction is from front to back, from top to bottom, and from right to left. The first step is that in use, first place this moxibustion fire dragon jar disinfection device in the required position. All components that require electric drive are connected to the power supply built into the chassis 1. The water inlet 30901 is connected to an external water supply structure (faucet or water pump) through a pipeline. The second step is that medical staff hold the fire dragon jar 11 and move it to the lower part of the two clamping blocks 207 with the mouth of the jar facing down, and push the fire dragon jar 11 in the direction of the brush disc 7. When the fire dragon jar 11 moves, it forces the two clamping blocks 207 to drive their corresponding sliding columns 205, vertical rods 206 and fixing blocks 209 to move away from each other. The sliding column 205 moves in the chute 20401, and the elastic member 208 is compressed until the fire dragon jar 11 contacts the brush disc 7. At this time, the two clamping blocks 207 cooperate with the reaction force of the elastic member 208 to clamp the fire dragon jar 11. In the third step, control the output shaft of the second motor 102 to drive the toothed ring 104, the clamping assembly, the spring telescopic column 6, the brush disk 7, the brush strip 8, the pushing assembly and the fire dragon pot 11 to rotate together through the spur gear 103, so that the fire dragon pot 11 rotates above the cavity 2001 of the housing 2 provided with the brushing assembly. Then, control the output shaft of the second motor 102 to stop rotating. Drive the fixed frame 203, the mounting plate 204, the sliding column 205, the vertical rod 206, the clamping block 207, the elastic member 208, the fixed block 209, the second electric push rod 210, the arc-shaped plate 211 and the fire dragon pot 11 to move downward into the cavity 2001 provided with the brushing assembly together by the first electric push rod 202. At this time, the three conical needles inside the fire dragon pot 11 are inserted into the rubber block 303, and the fire dragon pot 11 fixes the rubber block 303. It should be noted that at this time, the mouth of the fire dragon pot 11 contacts the sponge ring 305. Then, control the first electric push rod 202 to stop running, control the telescopic parts of the two fourth electric push rods 308 to contract, drive the lower fixed ring 306 to move upward, force the ends of several cleaning filaments 307 to rotate on the two fixed rings 306, and several cleaning filaments 307 expand outwards at the same time to fit the inner surface of the fire dragon pot 11. When the difficulty of contracting the telescopic parts of the two fourth electric push rods 308 increases, it indicates that the cleaning filaments 307 are tightly attached to the inner surface of the fire dragon pot 11. At this time, control the fourth electric push rod 308 to automatically stop running through the pressure sensor arranged inside the fourth electric push rod 308; Meanwhile, several nozzles on the second annular water pipe 314 are controlled to open. The external water supply structure supplies water to the second annular water pipe 314 through the water inlet 30901, the first thin pipe 310, the hollow disk 311, the second annular plate 312, and the second thin pipe 313. Water continuously sprays out from the nozzles on the second annular water pipe 314 towards the inner surface of the fire dragon pot 11. It should be noted that several nozzles on the first annular water pipe 309 are in a closed state at this time; the clear water flows down along the inner surface of the fire dragon pot 11 and is discharged from the mouth of the fire dragon pot 11. The soot, moxa ash, or other pollutants attached to the inner surface of the fire dragon pot 11 are washed by the clear water, and part of the moxa ash attached to the inner surface of the fire dragon pot 11 is washed clean, while the remaining soot, moxa ash, or other pollutants tightly attached to the inner surface of the fire dragon pot 11 are wetted by the clear water. Therefore, the first motor 301 is synchronously controlled to drive the round rod 302, the rubber block 303, the brushing assembly, the hollow disk 311, the second thin pipe 313, the second annular water pipe 314, and the fire dragon pot 11 to rotate counterclockwise together. It should be noted that the second annular plate 312 is restricted by the first thin pipe 310 and the first annular water pipe 309, and the second annular plate 312 is stationary relative to the hollow disk 311; the sponge ring 305 that continuously rotates counterclockwise on the brushing assembly scrubs the bacteria, viruses, or blood (such as when the skin is broken) at the mouth of the fire dragon pot 11, and several cleaning filaments 307 that continuously rotate counterclockwise on the brushing assembly scrape and wash the soot, moxa ash, or other pollutants tightly attached to the inner surface of the fire dragon pot 11 clean. After the mouth of the fire dragon pot 11 and the inner surface of the fire dragon pot 11 are cleaned (specifically, the medical staff can preset the counterclockwise running time of the first motor 301 in advance, such as minutes or minutes), the telescopic parts of the two fourth electric push rods 308 are controlled to push out, driving the connected components to move, so that several cleaning filaments 307 that fit the inner surface of the fire dragon pot 11 are restored and no longer contact the inner surface of the fire dragon pot 11, while the nozzles of the second annular water pipe 314 continuously spray clear water to continue flushing the inner surface of the fire dragon pot 11.
[0034] It should be noted that since the round rod 302 is rotatably connected to the rubber block 303, and a ratchet mechanism is provided between the round rod 302 and the rubber block 303. The ratchet mechanism is a one-way intermittent motion mechanism composed of a ratchet and a pawl. Therefore, when the round rod 302 rotates clockwise, the pawl inserts into the tooth groove of the ratchet, and will drive the ratchet and the rubber block 303 to rotate clockwise together, and the fire dragon pot 11 also rotates clockwise together. When the round rod 302 rotates counterclockwise, the pawl slides on the tooth back of the ratchet, and will not drive the ratchet, the rubber block 303, and the fire dragon pot 11 to rotate counterclockwise together, but only drives the brushing assembly, the hollow disk 311, the second thin pipe 313, and the second annular water pipe 314 to rotate counterclockwise together, and the two clamping blocks 207 also continuously clamp the fire dragon pot 11 to ensure that the fire dragon pot 11 remains stationary and ensure the cleaning effect of the brushing assembly on the fire dragon pot 11.
[0035] When several cleaning filaments 307 are restored, several nozzles on the first annular water pipe 309 are controlled to open. At this time, most of the water is sprayed onto the outer surface of the fire dragon jar 11 through several nozzles on the first annular water pipe 309, and a small part of the water continues to be sprayed through the nozzles of the second annular water pipe 314. The water sprayed from the first annular water pipe 309 flushes the sweat, sebum or other secretions on the outer surface of the fire dragon jar 11 and wets the outer surface of the fire dragon jar 11. At this time, the output shaft of the first motor 301 is controlled to rotate clockwise. Under the action of the ratchet mechanism, the round rod 302 drives the rubber block 303 and the fire dragon jar 11 to rotate together, and the top of the outer surface of the fire dragon jar 11 is scrubbed by the brush disc 7. Then, the telescopic parts of the two third electric push rods 9 are controlled to reciprocate and push out and contract, driving the brush strips 8, the guide blocks 10, the vertical rods 206, the clamping blocks 207 and the fixed block 209 to move reciprocally together. The fire dragon jar 11 is restricted by the spring telescopic column 6 and the brush disc 7, and then the sweat, sebum or other secretions on the outer surface of the fire dragon jar 11 are reciprocally scrubbed by the two brush strips 8. When the clamping blocks 207 and the brush strips 8 move reciprocally along the surface of the fire dragon jar 11, affected by the shape of the fire dragon jar 11, the sliding columns 205 on the vertical rods 206 will move reciprocally in the sliding grooves 20401, forcing the elastic members 208 to be compressed and stretched in the sliding grooves 20401. By using the elastic force of the elastic members 208, the two clamping blocks 207 are used to restrict the fire dragon jar 11. At the same time, the fixed block 209 moves reciprocally on the guide block 10. After the outer surface of the fire dragon jar 11 is cleaned (specifically, the medical staff can preset the clockwise running time of the first motor 301 in advance, such as minutes or minutes), the output shaft of the first motor 301 is controlled to stop rotating, the nozzles of the first annular water pipe 309 and the second annular water pipe 314 stop spraying water, and the telescopic parts of the two third electric push rods 9 are also in the contracted state. The cleaned fire dragon jar 11 is still clamped by the two clamping blocks 207. Then, the telescopic part of the first electric push rod 202 is controlled to contract, driving the connected components and the cleaned fire dragon jar 11 to move upward together, taking the fire dragon jar 11 away from the rubber block 303 and moving it out of the cavity 2001 of the housing 2 for subsequent disinfection steps; thus, using this device to clean the fire dragon jar 11 can achieve comprehensive cleaning, distinguish from manual cleaning, reduce the manual labor amount, improve the cleaning efficiency, and ensure the cleaning effect.
[0036] It should be noted that when the fire dragon jar 11 is fixed on the rubber block 303, there is a spacing between the fire dragon jar 11 and the first annular water pipe 309.
[0037] It should be noted that before the medical staff prepares to clean the fire dragon jar 11, the manual valve 5 corresponding to the cavity 2001 should be opened in advance to continuously drain the wastewater generated by cleaning the fire dragon jar 11, so as to avoid a large amount of wastewater accumulating in the cavity 2001 and affecting the cleaning work of the fire dragon jar 11. Moreover, during the cleaning process of the fire dragon jar 11, the cleaning water flows into the cavity 2001 through the drain hole 30401, preventing the cleaning water from accumulating on the circular plate 304 and affecting the cleaning of the fire dragon jar 11.
[0038] Fourth step, after the fire dragon jar 11 is removed from the cavity 2001, the medical staff first grabs the fire dragon jar 11, then controls the telescopic part of the electric push rod two 210 to push out, driving the two arc-shaped plates 211 to move towards the opposite sides, pushing the four vertical rods 206 and the sliding columns 205 to move in the chute 20401, so that the two clamping blocks 207 no longer clamp the fire dragon jar 11. Then the medical staff takes away the fire dragon jar 11 from between the two clamping blocks 207 for subsequent disinfection steps.
[0039] When the cleaning of the fire dragon jar 11 is completed, there will be a small amount of stains remaining on the brushing assembly. At this time, control several nozzles of the annular water pipe one 309 to open, continuously spray water on the brushing assembly connected to the round rod 302, and rinse the stains remaining on the brushing assembly. At the same time, control the output shaft of the motor one 301 to drive the connected components to rotate clockwise, driving the connected components to rotate together. Until the stains on the brushing assembly are rinsed clean (specifically judged by the medical staff), control the output shaft of the motor one 301 to stop rotating, and several nozzles of the annular water pipe one 309 also close. Embodiment 2
[0040] Based on Embodiment 1, as Figure 4As shown in the figure, it further includes a disinfection component, and the disinfection component is connected to the chassis 1 and the housing 2; the disinfection component includes an L-shaped pipe 401, a connecting pipe 402, an annular air pipe 403, a hose 404 and an annular air nozzle 405; the lower part of the support pipe 3 is hollow, and the chassis 1 and the housing 2 jointly penetrate through the L-shaped pipe 401, and the L-shaped pipe 401 is located below the support pipe 3; three connecting pipes 402 distributed in an annular array are connected to the upper part of the L-shaped pipe 401; each connecting pipe 402 is provided with an electric valve; all the connecting pipes 402 penetrate through the support pipe 3 and communicate with the other three cavities 2001 on the housing 2 where the first annular water pipe 309 is not provided; an annular air pipe 403 is fixedly connected to the upper part of each of the other three cavities 2001 where the first annular water pipe 309 is not provided; each annular air pipe 403 is provided with an air inlet 40301; a number of air nozzles are arranged in an annular array at the lower part of each annular air pipe 403, and a number of air nozzles are inclined downward; a hose 404 is connected to the lower part of each annular air pipe 403; an annular air nozzle 405 is rotatably connected to each round rod 302 without the round plate 304, each annular air nozzle 405 is provided with a number of air holes distributed in an annular array, and a number of air holes are inclined upward, and each air hole is provided with a one-way valve structure to prevent alcohol from entering the annular air nozzle 405; all the annular air nozzles 405 are communicated with the corresponding hoses 404.
[0041] A method for disinfecting a fire dragon jar used for moxibustion includes the following steps: Step 1: After the fire dragon jar 11 is used, medical staff hold a hemostat to remove the moxa ash in the fire dragon jar 11, and then place the fire dragon jar 11 in a state with the jar mouth facing down in the two clamping blocks 207; Step 2: The power component and the first electric push rod 202 are used to move the fire dragon jar 11 to the cavity 2001 provided with the brushing component, and the fire dragon jar 11 is fixed on the rubber block 303; Step 3: After the fire dragon jar 11 is fixed, control the nozzles of the second annular water pipe 314 to wash the soot, moxa ash or other pollutants attached to the inner surface of the fire dragon jar 11, and completely clean the inner surface and the jar mouth of the fire dragon jar 11 through a number of cleaning wires 307 and the sponge ring 305; Step 4: After the inner surface and the jar mouth of the fire dragon jar 11 are washed, control the nozzles of the first annular water pipe 309 to wash the sweat, sebum or other secretions on the outer surface of the fire dragon jar 11, and completely brush the outer surface of the fire dragon jar 11 through the brush disk 7 and the brush strips 8; Step Five: After the inner and outer surfaces of the fire dragon jar 11 are cleaned, transfer the fire dragon jar 11 to the cavity 2001 equipped with a disinfection component, soak the cleaned fire dragon jar 11 with alcohol, and then control the air nozzles of the annular air pipe 403 and the annular air nozzle 405 to blow air on the inner and outer surfaces of the fire dragon jar 11 to dry the soaked fire dragon jar 11.
[0042] The working principle of this embodiment is as follows: In Step 4 of Embodiment 1: Medical staff pre-connect an alcohol delivery pipe to the port of the L-shaped pipe 401 and connect an air pump to the air inlet 40301. When the fire dragon jar 11 is cleaned and separated from the cavity 2001 equipped with a scrubbing component, then control the output shaft of the second motor 102 to drive the connected components and the cleaned fire dragon jar 11 to rotate counterclockwise together. When the cleaned fire dragon jar 11 rotates above the cavity 2001 equipped with a disinfection component, the output shaft of the second motor 102 stops rotating, and the first electric push rod 202 drives the connected components and the cleaned fire dragon jar 11 to move downward together, fixing the cleaned fire dragon jar 11 on the rubber block 303 in the cavity 2001. Then control the telescopic part of the second electric push rod 210 to push out so that the two clamping blocks 207 no longer clamp the cleaned fire dragon jar 11, and then control the telescopic part of the first electric push rod 202 to drive the connected components to reset, that is, to move the clamping blocks 207 away from the cavity 2001 equipped with a scrubbing component. After the clamping block 207 is moved out of the cavity 2001 provided with the brushing assembly, the electric valve in the connecting pipe 402 is controlled to open, and the external alcohol delivery pipeline delivers alcohol into the cavity 2001 provided with the brushing assembly through the L-shaped pipe 401 and the connecting pipe 402. After the alcohol completely submerges the cleaned fire dragon jar 11 (specifically, a water level sensor can be set to monitor the amount of alcohol), the electric valve in the connecting pipe 402 is controlled to close, and the cleaned fire dragon jar 11 is soaked with alcohol. After soaking for a period of time (specifically, it can be preset by medical staff, such as minutes or minutes), after the completely disinfected cleaned fire dragon jar 11 is achieved, the medical staff opens the manual valve 5 of the cavity 2001, discharges the alcohol in the cavity 2001, and then controls the opening of several air nozzles on the annular air pipe 403 and the annular air nozzle 405. Several air nozzles on the annular air pipe 403 continuously spray gas towards the outer surface of the fire dragon jar 11, and the annular air nozzle 405 continuously sprays gas towards the inner surface of the fire dragon jar 11. At the same time, the output shaft of the first motor 301 is controlled to rotate clockwise, driving the round rod 302, the rubber block 303 and the disinfected fire dragon jar 11 to rotate together. The annular air nozzle 405 rotates on the round rod 302 and remains stationary, enabling the fire dragon jar 11 to be fully in contact with the air flow sprayed by the annular air pipe 403 and the annular air nozzle 405, which is conducive to accelerating the drying speed of the alcohol. After the outer surface and the inner surface of the fire dragon jar 11 are dried (specifically, the drying time can be preset by medical staff, such as minutes or minutes), the output shaft of the first motor 301 is controlled to stop rotating. Then, the telescopic part of the first electric push rod 202 is controlled to drive the connected components to move downward, making the brush disc 7 contact the fire dragon jar 11. Then, the telescopic part of the second electric push rod 210 is controlled to contract so that the two clamping blocks 207 clamp the outer surface of the fire dragon jar 11. Then, the telescopic part of the first electric push rod 202 is controlled to drive the connected components to reset, and the dried fire dragon jar 11 is moved out of the cavity 2001. Then, the medical staff repeats the feeding operation in the embodiment, takes out the dried fire dragon jar 11 and places it in a special storage box or bag for storage to avoid secondary pollution; thus, on the basis of realizing the comprehensive cleaning of the fire dragon jar 11, the present device realizes the disinfection and drying operations of the fire dragon jar 11, that is, the present device integrates cleaning, disinfection and drying.
[0043] It should be noted that the highest liquid level of the alcohol is located below the annular air pipe 403, and there is a spacing between the fire dragon jar 11 and the annular air pipe 403 when the fire dragon jar 11 is fixed on the rubber block 303.
[0044] It should be noted that this device can not only clean, disinfect and dry the fire dragon cans 11 individually, but also clean, disinfect and dry multiple fire dragon cans 11 simultaneously, saving the waiting time for cleaning the fire dragon cans 11 and improving the practicability of this device; to achieve the simultaneous cleaning, disinfection and drying of multiple fire dragon cans 11, only multiple cavities 2001 need to be opened, and the parts required for cleaning or disinfection are set at the corresponding cavities 2001. For the number of cavities 2001 opened and the parts required for cleaning or disinfection, they can be specifically designed according to market demands.
[0045] The above are only examples of the present invention and are not intended to limit the present invention. All equivalent replacements made within the principle of the present invention shall be included within the protection scope of the present invention. The content not elaborated in detail in the present invention belongs to the well-known prior art of those skilled in the art.
Claims
1. A fire dragon pot disinfection device for moxibustion, comprising a chassis (1); wherein: The invention also comprises a shell (2); the shell (2) is fixedly connected to the upper surface of the chassis (1); at least six cavities (2001) distributed in a circular array are formed on the shell (2); a support tube (3) is fixedly connected to the center point of the shell (2); a cover shell (4) is fixedly connected to the support tube (3); at least six manual valves (5) distributed in a circular array are fixedly connected to the outer surface of the shell (2), and all the manual valves (5) are connected to the corresponding cavities (2001); a power assembly is connected to the support tube (3); a clamping assembly for clamping the fire dragon pot (11) is connected to the cover shell (4); and a plurality of spring expansion and contraction springs are connected to the clamping assembly. The invention relates to a fire dragon pot (11) comprising a plurality of brush strips (8) for cleaning the outer surface of the fire dragon pot (11) connected to the clamping assembly; a pushing assembly for driving the brush strips (8) to move back and forth connected to the clamping assembly; a receiving assembly for receiving the fire dragon pot (11) connected to the shell (2); a brushing assembly for brushing the inner wall of the fire dragon pot (11) connected to the receiving assembly; a water spraying assembly for spraying clean water connected to the shell (2); and a power assembly for driving the clamping assembly, the spring telescopic column (6), the brush disc (7), the brush strips (8) and the pushing assembly to rotate together.
2. A moxibustion fire dragon pot disinfection device according to claim 1, characterized in that: The clamping assembly comprises a ring plate (201); the inner side of the cover (4) is rotatably connected to the ring plate (201), and the ring plate (201) is rotatably connected to the support tube (3); the ring plate (201) is connected to the power assembly; at least three electric push rods (202) are fixedly connected to the ring plate (201); the telescopic part of each electric push rod (202) is fixedly connected to a fixed frame (203); each fixed frame (203) is provided with two avoidance grooves (20301); the lower part of each fixed frame (203) is fixedly connected to a mounting plate (204); each mounting plate (204) is provided with at least four slide grooves (20401) distributed in a rectangular shape; each slide groove (20401) ) is slidably connected to a sliding column (205); each sliding column (205) is slidably connected to a vertical rod (206); the two vertical rods (206) closest to each other on each mounting plate (204) are fixedly connected to a clamping block (207); each clamping block (207) is provided with a plurality of grooves (20701) distributed at equal intervals; each sliding groove (20401) is provided with an elastic member (208), and all the elastic members (208) are fixedly connected to adjacent sliding columns (205); the two vertical rods (206) closest to each other on each mounting plate (204) are fixedly connected to a fixed block (209); and all the fixed blocks (209) are connected to the pushing assembly.
3. A moxibustion fire dragon pot disinfection device according to claim 2, characterized in that: The clamping assembly also includes an electric push rod 2 (210); an electric push rod 2 (210) is fixedly connected to the upper surface of each mounting plate (204), and the electric push rod 2 (210) is a bidirectional push rod; the two telescopic parts of each electric push rod 2 (210) are respectively fixedly connected to an arc plate (211); the two arc plates (211) on each mounting plate (204) are located between the corresponding four vertical rods (206), and all the arc plates (211) are in contact with the corresponding sliding column (205).
4. A moxibustion fire dragon pot disinfection device according to claim 2, characterized in that: The pushing assembly comprises an electric push rod three (9); each fixed frame (203) is connected to at least two electric push rods three (9); the telescopic portion of each electric push rod three (9) is fixedly connected to a guide block (10); and all the guide blocks (10) are slidably connected to the corresponding fixed blocks (209).
5. A moxibustion fire dragon pot disinfection device according to claim 1, characterized in that: The receiving assembly comprises a motor one (301); at least six motors one (301) distributed in a ring array are fixedly connected to the inner wall of the chassis (1); the output shaft of each motor one (301) is fixedly connected to a round rod (302); all the round rods (302) penetrate the chassis (1) and the housing (2) and are located at the center of the cavity (2001); the upper end of each round rod (302) is rotatably connected to a rubber block (303) through a ratchet mechanism.
6. A moxibustion fire dragon pot disinfection device according to claim 5, characterized in that: The scrubbing assembly comprises a circular plate (304); wherein a circular plate (304) is fixedly connected to the middle of the outer surface of each of the three circular rods (302); the three circular rods (302) not fixedly connected to the circular plate and the three circular rods (302) fixedly connected to the circular plate are staggered; the upper surface of the circular plate (304) is in a frustum shape and is provided with a plurality of drainage holes (30401); a sponge ring (305) is fixedly connected to the upper surface of each circular plate (304); a fixing ring (306) is fixedly connected to the upper portion of the outer surface of the circular rod (302) fixedly connected to the circular plate (304); 06); the upper part of the round rod (302) fixed to the circular plate (304) is fixedly connected to two electric push rods (308) through a connecting block, and the electric push rods (308) are located below the fixing ring (306) on the upper part of the round rod (302); the telescopic parts of the two electric push rods (308) on the same round rod (302) are fixedly connected to another fixing ring (306); a plurality of cleaning wires (307) distributed in a ring array are movably connected between the two fixing rings (306), and the cleaning wires (307) are memory metal.
7. A moxibustion fire dragon pot disinfection device according to claim 6, characterized in that: The surface of each cleaning wire (307) is covered with a layer of fiber wire.
8. The moxibustion fire dragon pot disinfection device according to claim 5, characterized in that: The water spray assembly comprises an annular water pipe (309); wherein the inner upper wall of each of the three cavities (2001) is fixedly connected to an annular water pipe (309); each annular water pipe (309) is provided with a water inlet (30901); each annular water pipe (309) is provided with a plurality of nozzles distributed in an annular array, and the plurality of nozzles are inclined downward; the lower part of each annular water pipe (309) is connected to a thin tube (310); the outer surface of the round rod (302) fixed to the circular plate (304) is fixedly connected to a hollow disk (311); each hollow disk (311) is rotatably connected to a second ring plate (312); a first capillary tube (310) is connected to the corresponding second ring plate (312); each hollow disk (311) is connected to a second capillary tube (313); a second annular water pipe (314) is embedded on the upper surface of each fixed ring (306), and the second annular water pipe (314) is connected to the corresponding second capillary tube (313); each second annular water pipe (314) is provided with a plurality of nozzles distributed in an annular array, and the plurality of nozzles are inclined upward.
9. A moxibustion fire dragon pot disinfection device according to claim 8, characterized in that: The invention also comprises a disinfection component, wherein the base plate (1) and the shell (2) are connected with the disinfection component for disinfecting the fire dragon pot (11); the disinfection component comprises an L-shaped pipe (401); the lower part of the support pipe (3) is arranged to be hollow, the base plate (1) and the shell (2) are jointly provided with the L-shaped pipe (401), and the L-shaped pipe (401) is located at the lower part of the support pipe (3); the upper part of the L-shaped pipe (401) is connected with at least three connecting pipes (402) distributed in a circular array; each connecting pipe (402) is provided with an electric valve; all the connecting pipes (402) penetrate the support pipe (3) and are connected with the other three cavities (2001) on the shell (2) where the annular water pipe (309) is not provided; the connecting pipes (402) are connected with the other three cavities (2001) on the shell (2) where the annular water pipe (309) is not provided. The other three cavities (2001) are each fixedly connected to an annular air tube (403) at the top; each annular air tube (403) is provided with an air inlet (40301); the lower part of each annular air tube (403) is provided with a plurality of air nozzles distributed in an annular array, and the plurality of air nozzles are inclined downward; the lower part of each annular air tube (403) is connected to a hose (404); each round rod (302) not provided with a circular plate (304) is rotatably connected to an annular air nozzle (405), each annular air nozzle (405) is provided with a plurality of air holes distributed in an annular array, and the plurality of air holes are inclined upward, and each air hole is provided with a one-way valve structure; all the annular air nozzles (405) are connected to the corresponding hose (404).
10. A method for disinfecting a fire dragon cup for moxibustion, the method being according to the fire dragon cup disinfection device for moxibustion according to claim 9, characterized in that: The following steps are included: Step 1: After the fire dragon cup (11) is used, the medical staff uses a hemostatic forceps to remove the moxa ash in the fire dragon cup (11), and then places the fire dragon cup (11) in two clamping blocks (207) with the cup opening facing downward; Step 2: The fire dragon pot (11) is moved into the cavity (2001) provided with the brushing component by means of the power component and the electric push rod 1 (202), and the fire dragon pot (11) is fixed on the rubber block (303); Step 3: After the fire dragon pot (11) is fixed, the plurality of nozzles of the annular water pipe 2 (314) are controlled to flush smoke, moxa ash or other pollutants attached to the inner surface of the fire dragon pot (11), and the inner surface and the pot mouth of the fire dragon pot (11) are completely cleaned by a plurality of cleaning threads (307) and a sponge ring (305); Step 4: After the inner surface and the mouth of the fire dragon pot (11) are cleaned, the plurality of nozzles of the annular water pipe (309) are controlled to flush the sweat, sebum or other secretions on the outer surface of the fire dragon pot (11), and the outer surface of the fire dragon pot (11) is completely cleaned by the brush plate (7) and the brush strip (8); Step 5: After the inner and outer surfaces of the fire dragon pot (11) are cleaned, the fire dragon pot (11) is transferred to a cavity (2001) provided with a disinfection component, and the cleaned fire dragon pot (11) is soaked with alcohol. Then, the air nozzle of the annular air pipe (403) and the annular air nozzle (405) are controlled to blow air to the inner and outer surfaces of the fire dragon pot (11) to dry the soaked fire dragon pot (11).
Citation Information
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