A disinfection and drying integrated device of a rotary blow type diagnostic treatment apparatus
By designing a turntable drive lever and switching unit, the disinfectant is sprayed evenly and the hot air is dried evenly in the diagnostic and treatment equipment. This solves the problems of uneven disinfection and incomplete drying in existing equipment, simplifies the structure, and reduces energy consumption.
Patent Information
- Application Number
- CN202510859680.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2045-06-25
AI Technical Summary
Existing disinfection and drying equipment for diagnostic and treatment devices suffers from uneven disinfection and incomplete drying. Furthermore, the equipment is complex in structure, consumes a lot of energy, and relies on multiple independent power sources, making operation inconvenient.
The device employs a turntable drive lever and switching unit to achieve double-sided processing of the mirror frame. The meshing of the internal gear and the external ring gear drives the placement plate to rotate. Combined with the air guiding mechanism and heating chamber, it achieves uniform spraying of disinfectant and uniform drying of hot air. The device utilizes its own rotational power to generate airflow and automatically switches between disinfection pressurization and drying functions.
It significantly improves the thoroughness of disinfection and the uniformity of drying, simplifies the equipment structure, reduces energy consumption, and improves ease of operation.
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Figure CN120617575B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical device cleaning technology, and more specifically, to a rotary blower-type integrated disinfection and drying device for diagnostic and treatment equipment. Background Technology
[0002] Disinfection and drying equipment for treatment devices is used to perform efficient and thorough terminal disinfection and drying of diagnostic and treatment instruments that come into contact with patient body fluids or wounds, such as endoscopes, surgical instruments, and probes. Its core lies in combining disinfection procedures, commonly using high-temperature steam, low-temperature plasma, or chemical immersion to kill pathogens, with a subsequent powerful drying process to ensure that the instruments are sterile, dry, and safe for use.
[0003] Patent application number CN201711098839.3 discloses a medical device sterilization and drying equipment, including a working chamber. A rotary motor box is fixedly connected to the middle position of the bottom of the inner wall of the working chamber. A rotary motor is fixedly connected to one side of the bottom of the inner wall of the rotary motor box. The output shaft of the rotary motor is fixedly connected to a reduction connector via a flat key. The reduction connector is rotatably connected to a first pulley via the output shaft. The first pulley is rotatably connected to a second pulley via a belt. This medical device sterilization and drying equipment achieves the purpose of sterilizing and drying medical devices, solves the problem of more comprehensive drying of sterilized medical devices, and can reduce drying time and improve drying efficiency.
[0004] However, existing equipment suffers from uneven coverage during the disinfection and drying stages. Its instrument placement structure lacks effective compound rotation, resulting in insufficient exposure of instrument surfaces to the disinfectant liquid and hot air flow. This easily leads to cleaning dead spots and uneven drying, affecting the thoroughness and efficiency of disinfection. In addition, existing equipment relies on multiple independent power sources, such as additional air pumps to provide spray pressure and drying air flow respectively, and requires complex valves or control systems to achieve function switching, resulting in complex equipment structure, high energy consumption, and inconvenient operation.
[0005] In view of this, we propose a rotary blowing type integrated sterilization and drying device for diagnostic and treatment equipment. Summary of the Invention
[0006] The purpose of this invention is to provide a rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment. By using a turntable to drive a lever and in conjunction with a switching unit, the double-sided processing of the eyeglass frame can be switched to solve the problems mentioned in the background art.
[0007] To achieve the above objectives, the present invention provides the following technical solution:
[0008] A rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment includes a disinfection chamber, a rotating disk inside it, an air guiding mechanism, and a pair of heating chambers located outside the disinfection chamber.
[0009] The disinfection chamber includes an outer ring tooth, a liquid storage chamber located outside the outer ring tooth, and a spray nozzle located above it.
[0010] The rotating disk includes a turntable, several placement disks rotatably connected to the top surface of the turntable, and internal gears sleeved on the placement disks;
[0011] This setting allows the turntable to rotate, causing the placement disk to rotate; the internal gear meshes with the outer ring gear, driving the placement disk to rotate.
[0012] The air guiding mechanism includes a lever, a sliding frame sleeved on its outer side, piston plates disposed on both sides of the sliding frame, a sealing cover sleeved on the piston plates, an exhaust pipe disposed on the outer side of the sealing cover, and a switching part disposed on the outer side of the exhaust pipe.
[0013] This setting lever rotates with the turntable, driving the slide frame to move horizontally left and right, so that the piston plate moves synchronously inside the sealing cover, sending airflow into the exhaust pipe;
[0014] The switching unit includes a movable pipe sleeved outside the exhaust pipe, a fixed sleeve sleeved outside the movable pipe, a lower through pipe and an upper through pipe connected to the fixed sleeve, and the movable pipe has a vent hole.
[0015] This configuration involves the airflow from the exhaust pipe entering the lower pipe through the vent hole, pressurizing the liquid storage tank, causing the disinfectant to be sprayed out from the nozzle. After the moving pipe moves upward, the vent hole connects with the upper pipe, sending the gas into the heating chamber and then into the disinfection chamber.
[0016] In the technical solution of the present invention, the disinfection chamber further includes a fixed chamber body, a guide platform fixed to the inner wall of the fixed chamber body, a drain pipe fixed to the outer wall of the fixed chamber body, and a detachable cover plate placed on the top surface of the fixed chamber body.
[0017] In the technical solution of the present invention, a number of regularly distributed and vertically connected liquid passage holes are provided on the top surface of the guide platform near the outer side. The outer ring tooth is snapped and fixed to the inner wall of the guide platform. The liquid storage tank is welded and fixed to the outer wall of the fixed tank body. The spray nozzle is snapped and fixed to the outer wall of the fixed tank body and its outer wall pipe extends into the interior of the liquid storage tank.
[0018] The above configuration, by setting spray nozzles on the outside of the rotating disk, allows the disinfectant to be evenly sprayed onto the outside of the medical device when the internal structure of the rotating disk rotates.
[0019] In the technical solution of the present invention, the rotating disk also includes a motor and a round rod welded and fixed to the top surface of the rotating disk. The motor is fixedly connected to the top surface of the disassembly cover plate by bolts, and an insert rod extending to the bottom of the disassembly cover plate is coaxially connected to the output shaft of the motor.
[0020] In the technical solution of the present invention, the turntable is rotatably connected to the top of the inner wall of the guide platform, the placement plate is rotatably connected to the top surface of the turntable, the top of the round rod is provided with a slot that matches the size of the end rod of the motor output shaft, and the internal gear is snapped and fixed to the bottom of the outer wall of the placement plate and meshes with the outer ring gear.
[0021] The above setup allows the medical devices placed in the placement tray to rotate at high speed while the turntable rotates, thereby improving the thoroughness of disinfection and the uniformity of drying.
[0022] In the technical solution of the present invention, the air guiding mechanism further includes a connecting rod that is snapped into the center of the lever and the bottom surface of the turntable. The protruding rod at the bottom outer end of the lever is adapted to the internal dimensions of the sliding frame, and the sliding frame is slidably connected to the inner bottom surface of the fixed chamber.
[0023] In the technical solution of the present invention, a fixing rod is snapped between the sliding frame and the piston plate, an air inlet valve and an air outlet valve are snapped at both ends of the outer wall of the sealing cover, and the exhaust pipe is snapped and fixed to the outside of the air outlet valve.
[0024] The above setup utilizes the power generated by the rotation of the turntable, and through the cooperation of the lever and the sliding frame, provides gas for pressurizing the liquid storage tank.
[0025] In the technical solution of the present invention, the switching part further includes an electric push rod fixedly connected to the outer wall of the fixed chamber by screws and a telescopic plate snapped into the output end of the electric push rod. The moving tube is snapped into the inside of the telescopic plate, and the internal dimensions of the moving tube are adapted to the external dimensions of the exhaust pipe.
[0026] In the technical solution of the present invention, the fixed sleeve is snapped and fixed to the outer wall of the fixed chamber, the lower tube and the upper tube are integrally formed with the fixed sleeve, and the size of the lower tube and the upper tube is adapted to the vent hole, and the end of the lower tube extends into the interior of the liquid storage chamber.
[0027] The aforementioned mechanical switching mechanism enables automatic conversion between disinfection and pressurization and drying and air supply functions, simplifying the structure.
[0028] In the technical solution of the present invention, the heating chamber includes an annular chamber body snapped and fixed to the outer wall of the fixed chamber body, a plurality of heating wires fixed to the inner wall of the annular chamber body by screws, and an annular tube snapped and fixed to the inner wall of the end of the annular chamber body. The lower opening of the annular tube is snapped and fixed to the upper through pipe, and the upper opening of the annular tube extends into the interior of the fixed chamber body and is snapped and fixed with an air nozzle.
[0029] This setting activates the heating wires in the heating chamber, preheating the fixed chamber through the annular chamber body, thus preparing for the subsequent drying of the medical equipment.
[0030] Compared with the prior art, the beneficial effects of the present invention are:
[0031] 1. This is a rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment. The rotating turntable drives the placement tray to rotate, and at the same time, the internal gear and the outer ring gear mesh to drive the placement tray to rotate. Through the compound rotational motion, the medical devices placed in it can be fully exposed to the disinfectant sprayed by the nozzle during the disinfection stage, ensuring no dead corners are rinsed. During the drying stage, they can be evenly received by the hot air blown out by the nozzle, which significantly improves the thoroughness of disinfection and the uniformity of drying.
[0032] 2. This rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment uses a rotating turntable that drives a lever and sliding frame via a connecting rod. This drives a piston plate to reciprocate within a sealed cover, generating compressed airflow. This airflow is delivered to a switching unit via an exhaust pipe. Initially, it sprays disinfectant; when drying is required, the switching unit switches the operation. Utilizing the device's own rotational power to generate airflow and automatically switching between disinfection / pressurization and drying / air delivery functions via mechanical switching simplifies the structure and reduces energy consumption. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0034] Figure 2 This is a cross-sectional view of the overall structure of the present invention;
[0035] Figure 3 This is a cross-sectional schematic diagram of the disinfection chamber in this invention;
[0036] Figure 4 This is a cross-sectional schematic diagram of the rotating disk structure in this invention;
[0037] Figure 5 This is a schematic diagram of the air guiding mechanism in this invention;
[0038] Figure 6 This is a partial structural schematic diagram of the air guiding mechanism in this invention;
[0039] Figure 7 This is a cross-sectional schematic diagram of the switching section in this invention;
[0040] Figure 8 For the present invention Figure 7 An enlarged schematic diagram of part A in the middle;
[0041] Figure 9 This is a cross-sectional schematic diagram of the heating chamber of the present invention;
[0042] Explanation of reference numerals in the attached figures:
[0043] 100. Disinfection chamber; 110. Fixed chamber body; 120. Flow guide platform; 130. Outer ring teeth; 140. Drain pipe; 150. Removable cover plate; 160. Liquid storage chamber; 170. Spray nozzle;
[0044] 200, Rotary disk; 210, Motor; 220, Turntable; 230, Round rod; 240, Placement plate; 250, Internal gear;
[0045] 300. Air guiding mechanism; 310. Connecting rod; 320. Paddle lever; 330. Slide frame; 340. Fixing rod; 350. Piston plate; 360. Sealing cover; 370. Exhaust pipe;
[0046] 380. Switching unit; 381. Electric actuator; 382. Telescopic plate; 383. Moving pipe; 3830. Vent hole; 384. Fixed sleeve; 385. Lower through pipe; 386. Upper through pipe;
[0047] 400. Heating chamber; 410. Annular chamber body; 420. Heating wire; 430. Annular tube; 440. Air nozzle. Detailed Implementation
[0048] The technical solutions of this invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this invention, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0049] Please see Figures 1-3 As shown, this embodiment provides the following technical solution:
[0050] A rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment includes a disinfection chamber 100, a rotating disk 200 disposed inside it, an air guiding mechanism 300, and a pair of heating chambers 400 disposed outside the disinfection chamber 100.
[0051] Specifically, the disinfection chamber 100 includes an outer ring tooth 130, a liquid storage chamber 160 disposed outside the outer ring tooth 130, and a spray nozzle 170 disposed above it.
[0052] Furthermore, the disinfection chamber 100 also includes a fixed chamber body 110, a flow guide platform 120 snapped onto the inner wall of the fixed chamber body 110, a drain pipe 140 snapped onto the outer wall of the fixed chamber body 110, and a detachable cover plate 150 placed on the top surface of the fixed chamber body 110.
[0053] Furthermore, the top surface of the guide platform 120 is provided with several regularly distributed and vertically connected liquid passages near the outer side. The outer ring teeth 130 are snapped and fixed to the inner wall of the guide platform 120. The liquid storage tank 160 is welded and fixed to the outer wall of the fixed tank body 110. The spray nozzle 170 is snapped and fixed to the outer wall of the fixed tank body 110, and its outer wall pipe extends into the interior of the liquid storage tank 160.
[0054] Furthermore, the fixed chamber 110, in conjunction with the removable cover 150, is used to ensure the airtightness of the internal environment during cleaning of the medical device. The guide platform 120 is used to provide a rotation range for the internal structure of the rotating disk 200. After the disinfectant falls through the liquid passage hole of the guide platform 120, it is discharged through the drain pipe 140. The storage tank 160 is used to store the disinfectant liquid. This setting, by setting the spray nozzle 170 on the outside of the rotating disk 200, allows the disinfectant liquid to be evenly sprayed onto the outside of the medical device when the internal structure of the rotating disk 200 rotates.
[0055] Please see Figure 4 As shown, in this embodiment, the rotating disk 200 includes a turntable 220, a plurality of placement disks 240 rotatably connected to the top surface of the turntable 220, and an internal gear 250 sleeved on the outside of the placement disks 240. The rotation of the turntable 220 drives the placement disks 240 to rotate, and the internal gear 250 meshes with the outer ring gear 130 to drive the placement disks 240 to rotate.
[0056] Specifically, the rotating disk 200 also includes a motor 210 and a round rod 230 welded and fixed to the top surface of the rotating disk 220. The motor 210 is fixedly connected to the top surface of the disassembly cover plate 150 by bolts, and a plug extending to the bottom of the disassembly cover plate 150 is coaxially connected to the output shaft of the motor 210.
[0057] Furthermore, the turntable 220 is rotatably connected to the top of the inner wall of the guide platform 120, the placement plate 240 is rotatably connected to the top surface of the turntable 220, the top of the round rod 230 is provided with a slot that matches the size of the insertion rod at the end of the output shaft of the motor 210, and the internal gear 250 is snapped and fixed to the bottom of the outer wall of the placement plate 240 and meshes with the outer ring gear 130.
[0058] Furthermore, the motor 210 is started, which drives the turntable 220 to rotate via the round rod 230. This causes several placement trays 240 containing medical devices to rotate within the fixed chamber 110. The internal gear 250 meshes with the outer ring gear 130, driving the placement trays 240 to rotate themselves. This design allows the medical devices placed in the placement trays 240 to rotate at high speed while rotating with the turntable 220, thereby improving the thoroughness of disinfection and the uniformity of drying.
[0059] Please see Figures 5-6As shown, in this embodiment, the air guiding mechanism 300 includes a lever 320, a slide frame 330 sleeved on its outer side, piston plates 350 disposed on both sides of the slide frame 330, a sealing cover 360 sleeved on the piston plate 350, an exhaust pipe 370 disposed on the outer side of the sealing cover 360, and a switching part 380 disposed on the outer side of the exhaust pipe 370. The lever 320 rotates with the turntable 220, driving the slide frame 330 to move laterally left and right, so that the piston plate 350 moves synchronously within the sealing cover 360, and sends the airflow into the exhaust pipe 370.
[0060] Specifically, the air guiding mechanism 300 also includes a connecting rod 310 that is snapped into the center of the lever 320 and the bottom surface of the turntable 220. The protruding rod at the bottom outer side of the lever 320 is adapted to the internal dimensions of the slide frame 330, and the slide frame 330 is slidably connected to the inner bottom surface of the fixed chamber 110.
[0061] Furthermore, a fixing rod 340 is snapped between the slide frame 330 and the piston plate 350, an intake valve and an exhaust valve are snapped at both ends of the outer wall of the sealing cover 360, and an exhaust pipe 370 is snapped and fixed to the outside of the exhaust valve.
[0062] Furthermore, the rotation of the turntable 220 drives the lever 320 to rotate via the connecting rod 310, which in turn causes the sliding frame 330 to move laterally inside the fixed chamber 110. The fixed rod 340 drives the piston plates 350 at both ends to move inside the sealing cover 360, respectively. External gas is then introduced into the sealing cover 360 through the inlet valve and then into the exhaust pipe 370 through the outlet valve. The airflow from the exhaust pipe 370 enters the lower pipe 385 through the vent 3830 and pressurizes the liquid storage chamber 160. The disinfectant in the liquid storage chamber 160 is then sprayed out through the spray nozzle 170 to rinse the medical devices in the placement tray 240. This setup utilizes the power generated by the rotation of the turntable 220, and through the cooperation of the lever 320 and the sliding frame 330, provides pressurized gas to the liquid storage chamber 160.
[0063] Please see Figures 5-8 As shown, in this embodiment, the switching unit 380 includes a movable pipe 383 sleeved outside the exhaust pipe 370, a fixed sleeve 384 sleeved outside the movable pipe 383, a lower through pipe 385 and an upper through pipe 386 connected to the fixed sleeve 384. The movable pipe 383 has a vent hole 3830. After the airflow from the exhaust pipe 370 enters the lower through pipe 385 through the vent hole 3830, it pressurizes the liquid storage tank 160, causing the disinfectant to be sprayed out from the spray nozzle 170. After the movable pipe 383 moves upward, the vent hole 3830 connects with the upper through pipe 386, sending the gas into the heating chamber 400 and then into the disinfection chamber 100.
[0064] Specifically, the switching unit 380 also includes an electric push rod 381 that is fixedly connected to the outer wall of the fixed chamber 110 by screws and a telescopic plate 382 that is snapped into the output end of the electric push rod 381. The moving tube 383 is snapped into the inside of the telescopic plate 382, and the internal dimensions of the moving tube 383 are adapted to the external dimensions of the exhaust pipe 370.
[0065] Furthermore, the fixed sleeve 384 is snapped and fixed to the outer wall of the fixed chamber 110. The lower pipe 385 and the upper pipe 386 are integrally formed with the fixed sleeve 384, and the dimensions of the lower pipe 385 and the upper pipe 386 are adapted to the vent hole 3830. The end of the lower pipe 385 extends into the interior of the liquid storage chamber 160.
[0066] Furthermore, the electric actuator 381 is controlled to drive the telescopic plate 382 to move the moving tube 383 upward within the fixed sleeve 384, thereby moving the vent 3830 away from the lower tube 385 and connecting it with the upper tube 386. The airflow in the exhaust pipe 370 enters the interior of the heating chamber 400 through the upper tube 386. This mechanical switching feature enables automatic conversion between the functions of disinfection and pressurization and drying and air delivery, simplifying the structure.
[0067] Please see Figures 6-9 As shown, in this embodiment, the heating chamber 400 includes an annular chamber 410 snapped onto the outer wall of the fixed chamber body 110, a plurality of heating wires 420 fixed to the inner wall of the annular chamber 410 by screws, and an annular tube 430 snapped onto the inner wall of the end of the annular chamber 410. The lower opening of the annular tube 430 is snapped onto the upper through tube 386, and the upper opening of the annular tube 430 extends into the interior of the fixed chamber body 110 and is snapped onto an air nozzle 440.
[0068] Furthermore, the annular chamber 410 provides a placement area for several heating wires 420, while the annular tube 430 increases the airflow distance through the annular chamber 410, and the air nozzle 440 is used to accelerate the airflow speed. This setting turns on the heating wires 420 of the heating chamber 400 and preheats the fixed chamber 110 through the annular chamber 410, providing conditions for subsequent drying of the medical equipment.
[0069] Finally, it should be noted that the motors 210 involved in this invention are all general standard parts or components known to those skilled in the art. Their structures and principles can be known to those skilled in the art through technical manuals or conventional experimental methods. In the idle part of this device, the motors 210 are connected to an external power source through wires. The specific connection method should refer to the working principle in this invention. The electrical components are electrically connected in the order of operation. The detailed connection methods are all technologies known in the art.
[0070] When using the rotary air-blowing integrated disinfection and drying device for diagnostic and treatment equipment of the present invention, the operator first places the medical equipment to be cleaned into the placement tray 240 of the rotating disk 200, and fastens the disassembly cover 150 above the fixed chamber 110, ensuring that the plug at the output end of the motor 210 is inserted into the top of the round rod 230.
[0071] Next, the motor 210 is started, which drives the turntable 220 to rotate through the round rod 230, thereby causing several placement trays 240 for placing medical equipment to rotate within the fixed chamber 110. The internal gear 250 meshes with the outer ring gear 130, driving the placement trays 240 to rotate themselves.
[0072] Meanwhile, the rotation of the turntable 220 drives the lever 320 to rotate via the connecting rod 310, which in turn causes the slide frame 330 to move left and right inside the fixed chamber 110. The fixed rod 340 drives the piston plates 350 at both ends to move inside the sealing cover 360, and the external gas is sent into the sealing cover 360 through the intake valve and then introduced into the exhaust pipe 370 through the exhaust valve.
[0073] After the airflow from the exhaust pipe 370 enters the lower pipe 385 through the vent 3830, it pressurizes the liquid storage tank 160, and the disinfectant in the liquid storage tank 160 is sprayed out through the spray nozzle 170 to rinse the medical devices in the placement tray 240.
[0074] Subsequently, the heating wire 420 of the heating chamber 400 is turned on, the fixed chamber 110 is preheated through the annular chamber 410, and the electric push rod 381 is controlled to drive the telescopic plate 382 to move the moving tube 383 upward in the fixed sleeve 384, so that the vent 3830 leaves the lower tube 385 and connects with the upper tube 386.
[0075] Afterwards, the airflow in the exhaust pipe 370 enters the annular pipe 430 through the upper pipe 386, and is heated in the annular chamber 410. Then, it is blown onto the placement tray 240 through the air nozzle 440 to dry the medical device that has just been rinsed. After the surface of the medical device is dry, the motor 210 is turned off, the disassembly cover 150 is removed, and the medical device can be taken out.
[0076] The foregoing description of specific exemplary embodiments of the invention is for illustrative and explanatory purposes. These descriptions are not intended to limit the invention to the precise forms disclosed, and it will be apparent that many changes and variations can be made in accordance with the foregoing teachings. The exemplary embodiments were chosen and described in order to explain the specific principles of the invention and its practical application, thereby enabling those skilled in the art to implement and utilize various different exemplary embodiments of the invention, as well as various different choices and variations. The scope of the invention is intended to be defined by the specification and its equivalents.
Claims
1. A rotary blowing type integrated disinfection and drying device for diagnostic and treatment equipment, characterized in that: It includes a disinfection chamber, a rotating disc inside it, an air guiding mechanism, and a pair of heating chambers located outside the disinfection chamber; The disinfection chamber includes an outer ring tooth, a liquid storage chamber located outside the outer ring tooth, and a spray nozzle located above it. The rotating disk includes a turntable, several placement disks rotatably connected to the top surface of the turntable, and an internal gear sleeved on the outside of the placement disks. The rotation of the turntable drives the placement disks to rotate, and the internal gear meshes with the outer ring gear to drive the placement disks to rotate. The air guiding mechanism includes a lever, a sliding frame sleeved on its outer side, piston plates disposed on both sides of the sliding frame, a sealing cover sleeved on the piston plates, an exhaust pipe disposed on the outer side of the sealing cover, and a switching part disposed on the outer side of the exhaust pipe. The lever rotates with the turntable, driving the sliding frame to move horizontally left and right, so that the piston plates move synchronously inside the sealing cover, and the airflow is sent into the exhaust pipe. The switching unit includes a movable pipe sleeved outside the exhaust pipe, a fixed sleeve sleeved outside the movable pipe, a lower through pipe and an upper through pipe connected to the fixed sleeve. The movable pipe has a vent hole. The airflow from the exhaust pipe enters the lower through pipe through the vent hole and pressurizes the liquid storage tank, causing the disinfectant to be sprayed out from the spray nozzle. After the movable pipe moves upward, the vent hole connects with the upper through pipe, sending the gas into the heating chamber and then into the disinfection chamber.
2. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: The disinfection chamber also includes a fixed chamber body, a flow guide platform snapped onto the inner wall of the fixed chamber body, a drain pipe snapped onto the outer wall of the fixed chamber body, and a detachable cover plate placed on the top surface of the fixed chamber body.
3. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 2, characterized in that: The top surface of the flow guide platform has several regularly distributed and vertically connected liquid passages near the outer side. The outer ring teeth are snapped and fixed to the inner wall of the flow guide platform. The liquid storage tank is welded and fixed to the outer wall of the fixed tank body. The spray nozzle is snapped and fixed to the outer wall of the fixed tank body, and its outer wall pipe extends into the interior of the liquid storage tank.
4. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 2, characterized in that: The rotating disk also includes a motor and a round rod welded and fixed to the top surface of the rotating disk. The motor is fixedly connected to the top surface of the disassembly cover by bolts, and a plug extending to the bottom of the disassembly cover is coaxially connected to the output shaft of the motor.
5. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 4, characterized in that: The turntable is rotatably connected to the top of the inner wall of the guide platform, the placement plate is rotatably connected to the top surface of the turntable, the top of the round rod has a slot that matches the size of the insertion rod at the end of the motor output shaft, and the internal gear is snapped and fixed to the bottom of the outer wall of the placement plate and meshes with the outer ring gear.
6. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: The air guiding mechanism also includes a connecting rod that is snapped into the center of the lever and the bottom surface of the turntable. The protruding rod at the bottom outer side of the lever is adapted to the internal dimensions of the sliding frame, and the sliding frame is slidably connected to the inner bottom surface of the fixed chamber.
7. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: A fixing rod is snapped between the sliding frame and the piston plate. An air inlet valve and an air outlet valve are snapped at both ends of the outer wall of the sealing cover, and the exhaust pipe is snapped and fixed to the outside of the air outlet valve.
8. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: The switching unit also includes an electric actuator fixed to the outer wall of the fixed chamber by screws and a telescopic plate snapped into the output end of the electric actuator. The moving tube is snapped into the inside of the telescopic plate, and the internal dimensions of the moving tube are adapted to the external dimensions of the exhaust pipe.
9. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: The fixed sleeve is snapped and fixed to the outer wall of the fixed chamber. The lower pipe and the upper pipe are integrally formed with the fixed sleeve, and the size of the lower pipe and the upper pipe is adapted to the vent hole. The end of the lower pipe extends into the interior of the liquid storage chamber.
10. The integrated disinfection and drying device for rotary air-blowing diagnostic and treatment equipment according to claim 1, characterized in that: The heating chamber includes an annular chamber body snapped and fixed to the outer wall of the fixed chamber body, several heating wires fixed to the inner wall of the annular chamber body by screws, and an annular tube snapped and fixed to the inner wall of the end of the annular chamber body. The lower opening of the annular tube is snapped and fixed to the upper through pipe, and the upper opening of the annular tube extends into the interior of the fixed chamber body and is snapped and fixed with an air nozzle.
Citation Information
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