Artificial intelligence interaction device
By installing disinfection and temperature measurement mechanisms on the registration machine, and using ultrasonic atomizers and ultraviolet lamps to automatically disinfect the display screen and keyboard, the problem of cross-infection during the flu season has been solved, achieving a safe and convenient user experience for patients.
Patent Information
- Application Number
- CN202511582966.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-01-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
AI-powered registration machines in hospital lobbies can easily lead to cross-infection during flu season, and temperature screening devices are not convenient to use repeatedly, wasting time.
Disinfection mechanisms one and two are installed on the registration machine. They use ultrasonic atomizers and ultraviolet lamps for automatic disinfection, and infrared sensors control the disinfection of the display screen and keyboard. A temperature measuring mechanism is also installed to take multiple body temperature measurements.
It effectively prevents cross-infection, improves patient safety, reduces bacterial growth, saves time, and enhances the user experience.
Smart Images

Figure CN121287971A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of artificial intelligence interaction technology, specifically to an artificial intelligence interaction device. Background Technology
[0002] Artificial intelligence (AI) interaction refers to the two-way information exchange and behavioral collaboration between humans and AI systems in a natural or structured manner. Its core goal is to enable machines to understand human intentions, provide intelligent responses, and achieve an efficient and natural interactive experience. Self-service registration machines used in some hospital lobbies are AI-powered interactive devices in the medical field. These machines integrate AI triage algorithms, allowing them to inquire about patient symptoms, analyze the condition using a medical knowledge base, and recommend suitable departments. They can also inquire about the location of the patient's pain and recommend appropriate departments.
[0003] Currently, the AI-powered registration machines in hospital lobbies allow patients to choose the appropriate department for diagnosis based on machine prompts and their symptoms, and also print test reports. However, due to the large flow of people in hospitals, many patients use the registration machines daily, usually operating on the display screen. This means that bacteria, viruses, or fungi may remain after patients with influenza or skin diseases use the machines. Since the machines lack disinfection facilities, and during flu season when patients have lower immunity, the lack of regular screen disinfection can easily lead to cross-infection. Furthermore, patients using cards may use the exposed keyboards, which also lack disinfection mechanisms, posing another risk of cross-infection. During flu season, patients typically have their temperature checked at security gates. Temperature is usually measured only once upon entering the gate, and the data is only displayed afterward. The registration machines lack mechanisms for multiple temperature checks and recording on the registration slip, requiring patients to go to a designated department's nurse station for further measurement, wasting time. Summary of the Invention
[0004] To address the problems in the prior art, the present invention provides an artificial intelligence interactive device.
[0005] The technical solution adopted by this invention to solve its technical problem is as follows: an artificial intelligence interactive device, including a registration machine, a display mechanism installed on the registration machine, and a first disinfection mechanism. The first disinfection mechanism is equipped with a wiping mechanism, and the registration machine is equipped with a second disinfection mechanism. The first disinfection mechanism includes a storage tank, which is installed on one side of the registration machine. An ultrasonic atomizer is installed on the storage tank, and a spring tube is connected to the ultrasonic atomizer. Two slide rails are mounted opposite each other on the registration machine via screws. One slide rail has a screw rotatably connected inside, and the other slide rail has a slide rod fixedly connected inside. Both slide rails have sliders slidably connected inside. One of the sliders is threadedly connected to the screw, and the other slider is slidably connected to the slide rod. A fixed housing located above the display mechanism is fixedly connected to the opposite surfaces of both sliders. A nozzle is held between the two fixed housings. One end of the spring tube is connected to the nozzle, and a nozzle head is installed at the bottom of the nozzle. A drive component is installed at the end of one of the slide rails. The output end of the drive component is fixedly connected to the screw via a coupling. An infrared sensor is installed on the registration machine, and a controller is installed on the side of the registration machine. The controller is electrically connected to the infrared sensor and to the ultrasonic atomizer.
[0006] Specifically, the nozzle is provided in multiple parts, and the multiple nozzles are installed at equal intervals at the bottom of the nozzle pipe.
[0007] Specifically, the two sliders have an L-shaped cross-section, and the sides of the two sliders are flush with the sides of the slide rail.
[0008] Specifically, the display mechanism includes two fixed frames. Inside the registration machine, two L-shaped fixed frames are installed opposite each other by screws. A base frame is fixedly connected to the two fixed frames by screws. A display screen is installed on the base frame. The surface of the display screen is flush with the surface of the registration machine. The display screen is located at the bottom of the nozzle.
[0009] Specifically, a wiping mechanism is provided between the two slide rails. The wiping mechanism includes two connecting blocks, which are located between the slider and the slide rail. Bolts are slidably connected inside each of the two connecting blocks, and the two bolts are threadedly connected to the two sliders respectively. Insertion holes are opened on the opposite sides of the two connecting blocks. A fixing strip is clamped between the two connecting blocks. A silicone brush is adhered to the bottom of the fixing strip. Two movable grooves are opened opposite each other on the fixing strip. Two limiting blocks are slidably connected to the two movable grooves in opposite directions. The opposite ends of the two limiting blocks are respectively inserted into the insertion holes on the sides of the two connecting blocks.
[0010] Specifically, the wiping mechanism also includes a moving rod and a spring. The moving rod is fixedly connected to the opposite ends of the two limiting blocks. A spring is held between the limiting block and the fixing strip. The limiting block has an L-shaped cross-section and a serrated top.
[0011] Specifically, the second disinfection mechanism includes an outer shell, a rectangular outer shell is installed on the side of the registration machine, an inner shell is fixedly connected to the back of the outer shell, a keyboard is installed on the inner shell, a sealing plate is rotatably connected to the outer shell, a lamp holder is installed on the side of the sealing plate, and multiple ultraviolet lamps are equidistantly installed on the lamp holder.
[0012] Specifically, the second disinfection mechanism also includes a second controller, which is mounted on the outer casing. An infrared sensor is also mounted on the outer casing and is electrically connected to the second controller. A second drive component is mounted on the outer casing, and the output end of the second drive component is fixedly connected to the rotation point of the sealing plate via a coupling. The second controller and the second drive component are electrically connected. Contact plates are mounted on opposite sides of the sealing plate and the outer casing, and the two contact plates abut against each other. The contact plate on the sealing plate is electrically connected to the lamp holder.
[0013] Specifically, the registration machine is equipped with a temperature measuring mechanism, which includes a column. The column is fixedly connected to the registration machine by screws. A turntable is provided on the column. A mounting shell is fixedly connected to the turntable. A temperature measuring gun is held inside the mounting shell. The cross-section of the mounting shell is U-shaped, and the side of the mounting shell is threaded with screws that abut against the temperature measuring gun.
[0014] Specifically, the temperature measuring mechanism also includes a fourth driving component, which is installed inside the column and is keyed to the turntable. A third driving component is installed on the side of the mounting shell, and a clamp is rotatably connected to the telescopic end of the third driving component. The two ends of the clamp are L-shaped. A switch is installed on the temperature measuring gun, and the two ends of the clamp are inserted into the holes on both sides of the switch.
[0015] The beneficial effects of this invention are: 1. The artificial intelligence interactive device of the present invention includes a disinfection mechanism installed on the registration machine, which is equipped with a wiping mechanism. When the infrared sensor does not detect a human signal, the controller activates the ultrasonic atomizer. After the ultrasonic atomizer is activated, the disinfectant inside the storage tank is atomized, passed through the spring tube and the nozzle, and sprayed out from the nozzle. The controller activates the drive component to make the screw drive the slider to rotate, further enabling the nozzle to move back and forth above the display screen, so as to spray the disinfectant onto the display screen comprehensively, disinfecting the display screen and avoiding cross-infection of patients during the flu season. After the slider moves a certain distance, the bolt drives the connecting block to move, thereby scraping off the disinfectant on the display screen, avoiding affecting the patient's use and protecting the display screen.
[0016] 2. The artificial intelligence interactive device of the present invention includes a disinfection mechanism two installed on the registration machine. When the infrared sensor detects a human signal, the controller two controls the drive component two to rotate and open the sealing plate, exposing the keyboard. Patients who need to use the keyboard can use it. After the keyboard is used, the infrared sensor no longer detects a human signal. At this time, the controller two controls the drive component two to reverse and reset the sealing plate, closing the outer shell. At this time, the two contact plates are in contact and energized, and the ultraviolet lamp on the lamp holder works to disinfect the keys, avoiding cross-infection. Ultraviolet disinfection can also avoid damage to the keys by liquid disinfection.
[0017] 3. The artificial intelligence interactive device described in this invention has a temperature measuring mechanism installed on the registration machine. Patients can activate the temperature measuring function on the registration machine. At this time, the driving component four can adjust the angle of the temperature measuring gun. When the patient's head is aligned with the temperature measuring gun, the driving component three retracts to pull the switch, and the temperature measuring gun measures the patient's body temperature. The temperature can be repeatedly measured and recorded on the ticket. There is no need to observe the measurement data at the hospital security checkpoint, which avoids congestion and facilitates the observation of body temperature data by medical staff. In addition, the temperature measuring gun can be removed from the mounting shell for easy battery replacement. Attached Figure Description
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the connection structure of the registration machine, display screen and base frame of the present invention; Figure 3 This is a schematic diagram of the connection structure of the nozzle, spring tube and liquid storage tank of the present invention. Figure 4 This is a schematic diagram of the connection structure of the slide rail, slider, and connecting block of the present invention; Figure 5 This is a schematic diagram of the connection structure of the connecting block, fixing strip, and silicone brush of the present invention; Figure 6This is a schematic diagram of the connection structure of the limiting block, the insertion hole, and the spring of the present invention; Figure 7 This is a schematic diagram of the connection structure of the outer shell, controller 2, and infrared sensor 2 of the present invention; Figure 8 This is a schematic diagram of the connection structure of the inner shell, keyboard and sealing plate of the present invention; Figure 9 for Figure 8 The diagram shown is an enlarged view of the structure of part A. Figure 10 This is a schematic diagram of the connection structure of the sealing plate, lamp holder, and ultraviolet lamp tube of the present invention. Figure 11 This is a schematic diagram of the connection structure of the mounting shell, temperature measuring gun, and driving component three of the present invention. Figure 12 This is a schematic diagram of the connection structure of the temperature measuring gun, switch and clamp of the present invention.
[0020] In the diagram: 1. Registration machine; 2. Display mechanism; 201. Display screen; 202. Base frame; 203. Fixing frame; 3. Disinfection mechanism one; 301. Liquid storage tank; 302. Ultrasonic atomizer; 303. Slide rail; 304. Drive component one; 305. Controller one; 306. Infrared sensor one; 307. Bourdon tube; 308. Nozzle; 309. Slider; 310. Screw; 311. Slide rod; 312. Fixing shell; 313. Nozzle; 4. Disinfection mechanism two; 401. Sealing plate; 402. Outer shell; 403. Inner shell; 404. Keyboard; 405. Controller II; 406, Drive Component II; 407, Infrared Sensor II; 408, Lamp Holder; 409, Ultraviolet Lamp; 410, Contact Plate; 5, Temperature Measuring Mechanism; 501, Column; 502, Turntable; 503, Temperature Gun; 504, Mounting Housing; 505, Drive Component III; 506, Clamp; 507, Switch; 508, Drive Component IV; 6, Wiping Mechanism; 601, Connecting Block; 602, Fixing Strip; 603, Silicone Brush; 604, Limit Block; 605, Bolt; 606, Socket; 607, Movable Slot; 608, Moving Rod; 609, Spring. Detailed Implementation
[0021] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0022] like Figures 1-12As shown, the artificial intelligence interactive device of the present invention includes a registration machine 1, a display mechanism 2 mounted on the registration machine 1, and a first disinfection mechanism 3. The first disinfection mechanism 3 is equipped with a wiping mechanism 6, and the registration machine 1 is equipped with a second disinfection mechanism 4. The first disinfection mechanism 3 includes a storage tank 301, which is mounted on one side of the registration machine 1. An ultrasonic atomizer 302 is mounted on the storage tank 301, and a spring tube 307 is connected to the ultrasonic atomizer 302. Two slide rails 303 are mounted opposite each other on the registration machine 1 by screws. One slide rail 303 has a screw 310 rotatably connected inside, and the other slide rail 303 has a slide rod 311 fixedly connected inside. Both slide rails 303 have sliders slidably connected inside. 309, one slider 309 is threadedly connected to the screw 310, and the other slider 309 is slidably connected to the slide bar 311. A fixed housing 312 located above the display mechanism 2 is fixedly connected to the opposite surfaces of both sliders 309. A nozzle 308 is held between the two fixed housings 312. One end of a spring tube 307 is connected to the nozzle 308. A nozzle 313 is installed at the bottom of the nozzle 308. A drive component 304 is installed at the end of one of the slide rails 303. The output end of the drive component 304 is fixedly connected to the screw 310 via a coupling. An infrared sensor 306 is installed on the registration machine 1. A controller 305 is installed on the side of the registration machine 1. The controller 305 is connected to the infrared sensor 306. Electrical connections are established between 06 and 308, and between controller 305 and ultrasonic atomizer 302; multiple nozzles 313 are provided, and the multiple nozzles 313 are equidistantly installed at the bottom of nozzle 308; the cross-sections of the two sliders 309 are L-shaped, and the sides of the two sliders 309 are flush with the sides of slide rail 303; the display mechanism 2 includes two fixed frames 203, and two L-shaped fixed frames 203 are installed opposite each other inside the registration machine 1 by screws. A base frame 202 is fixedly connected to the two fixed frames 203 by screws, and a display screen 201 is installed on the base frame 202. The surface of the display screen 201 is flush with the surface of the registration machine 1, and the display screen 201 is located at the bottom of nozzle 308; between the two slide rails 303 A wiping mechanism 6 is provided, which includes two connecting blocks 601. The two connecting blocks 601 are located between the slider 309 and the slide rail 303. Bolts 605 are slidably connected inside the two connecting blocks 601. The two bolts 605 are threadedly connected to the two sliders 309 respectively. Insertion holes 606 are opened on the opposite sides of the two connecting blocks 601. A fixing strip 602 is clamped between the two connecting blocks 601. A silicone brush 603 is glued to the bottom of the fixing strip 602. Two movable grooves 607 are opened opposite each other on the fixing strip 602. Two limiting blocks 604 are slidably connected to the two movable grooves 607 in opposite directions. The opposite ends of the two limiting blocks 604 are respectively inserted into the insertion holes 606 on the sides of the two connecting blocks 601.The wiping mechanism 6 also includes a moving rod 608 and a spring 609. The moving rod 608 is fixedly connected to the opposite ends of the two limiting blocks 604. The spring 609 is clamped between the limiting block 604 and the fixing strip 602. The limiting block 604 has an L-shaped cross-section and a serrated top. The registration machine 1 is installed in the hospital lobby. The registration machine 1 can inquire about the patient's affected area and symptoms and recommend suitable departments to assist the patient in registration. Two slide rails 303 are installed on the registration machine 1 using screws. Pulling the two limiting blocks 604 relative to each other aligns the fixing strip 602 with the socket 606. After releasing the limiting block 604, the spring 609 returns to its original position, and the limiting block 604 is inserted into the socket 606, completing the installation of the fixing strip 602 and the silicone brush 603. The corresponding disinfectant, such as 75% pure medical alcohol, is added into the storage tank 301. When a patient approaches the registration machine 1, the infrared sensor 306 detects the human signal and transmits the information to the controller 305. At this time, the ultrasonic nebulizer 302 will not start to avoid the disinfectant sprayed during registration affecting the patient. When the infrared sensor 306 does not detect the human signal, the controller 305 starts the ultrasonic nebulizer 302. The disinfectant solution in the storage tank 301 is atomized by the ultrasonic atomizer 302 and then transported to the inside of the spray nozzle 308 through the spring tube 307. It is then sprayed onto the display screen 201 by multiple nozzles 313 to disinfect the surface of the display screen 201. The ultrasonic atomization technology atomizes the disinfectant solution into tiny particles, which more evenly cover the surface of the display screen 201, improving the disinfection effect. During spraying, the driving component 304 (which can be a motor that drives the screw 310 inside the slide rail 303 to rotate) moves the slider 309, which is threadedly connected to the screw 310, within the slide rail 303. Another slider 309... Sliding on the slider 311 causes the nozzle 308 to move upward on the display screen 201, achieving comprehensive disinfection. The disinfection is automatically activated by sensing, requiring no manual operation, which is convenient and quick. The reciprocating nozzle 308 ensures that the entire display screen 201 area is effectively disinfected, reducing bacterial growth and ensuring patient safety. It also prevents cross-infection during flu season or for patients with skin diseases. When the infrared sensor 306 detects a human signal, it can transmit the signal to the controller 305. The controller 305 can control the drive component 304 to rotate and reset the nozzle 308, thus avoiding affecting patient registration.Before spraying, two bolts 605 are inserted into the two connecting blocks 601, and one end of the bolts 605 is threadedly connected to the slider 309. Since most of the bolts 605 are inside the connecting blocks 601, the two connecting blocks 601 will only move inside the slide rail 303 after the slider 309 slides out a certain distance. This achieves the effect of disinfection before wiping, ensuring that the disinfectant completely destroys the envelope structure of viruses and bacteria, preventing immediate wiping upon contact. As the slider 309 slides out a certain distance, the bolts 605 drive the connecting blocks 601 to move, thereby allowing the silicone brush 603 at the bottom of the fixing strip 602 to wipe the disinfectant on the display screen 201. This not only effectively kills bacteria on the surface of the display screen 201 but also cleans up residual disinfectant in time, preventing damage to the display screen 201 from prolonged disinfectant residue. It also keeps the surface of the display screen 201 clean, improving the patient's user experience. Furthermore, the fixing strip 602 can be disassembled and installed using the limiting block 604 and spring 609, facilitating the cleaning and replacement of the silicone brush 603.
[0023] Specifically, refer to Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 9 and Figure 10As shown, the second disinfection mechanism 4 includes a housing 402. A rectangular housing 402 is mounted on the side of the registration machine 1. An inner housing 403 is fixedly connected to the back of the housing 402. A keyboard 404 is mounted on the inner housing 403. A sealing plate 401 is rotatably connected to the housing 402. A lamp holder 408 is mounted on the side of the sealing plate 401. Multiple ultraviolet lamps 409 are equidistantly mounted on the lamp holder 408. The second disinfection mechanism 4 also includes a second controller 405, which is mounted on the housing 402. 405. An infrared sensor 407 is mounted on the outer casing 402. The infrared sensor 407 is electrically connected to the controller 405. A drive component 406 is mounted on the outer casing 402. The output end of the drive component 406 is fixedly connected to the rotation point of the sealing plate 401 via a coupling. The controller 405 is electrically connected to the drive component 406. Contact plates 410 are mounted on opposite sides of the sealing plate 401 and the outer casing 402. The two contact plates 410 abut against each other, located in the sealed area. The contact plate 410 on the sealing plate 401 is electrically connected to the lamp holder 408. When a patient is processing a card transaction, the keyboard 404 is used. After the infrared sensor 407 detects a human signal, it notifies the controller 405. The controller 405 activates the drive component 406, which can be a motor. The drive component 406 drives the sealing plate 401 to rotate and open, allowing the keyboard 404 to be used. After the operation is completed, the infrared sensor 407 can no longer detect a human signal. At this time, the controller 405 drives the drive component 406 to close the sealing plate 401. At this time, the two contact plates 410 come into contact. The contact plate 410 located on the outer casing 402 is connected to the internal power supply of the registration machine 1. After the two contact plates 410 are released, the lamp holder 408 is powered on, and the ultraviolet lamp 409 emits light to disinfect the keyboard 404. This prevents viruses and bacteria and fungi left by patients with skin diseases from remaining on the keyboard 404 during the flu season, thus avoiding cross-infection. Ultraviolet disinfection also avoids damage to the keyboard 404 caused by liquid disinfection.
[0024] Specifically, refer to Figure 1 , Figure 2 , Figure 11 and Figure 12As shown, a temperature measuring mechanism 5 is installed on the registration machine 1. The temperature measuring mechanism 5 includes a column 501, which is fixedly connected to the registration machine 1 by screws. A turntable 502 is provided on the column 501, and a mounting shell 504 is fixedly connected to the turntable 502. A temperature measuring gun 503 is held inside the mounting shell 504. The cross-section of the mounting shell 504 is U-shaped, and screws that abut against the temperature measuring gun 503 are threaded to the side of the mounting shell 504. The temperature measuring mechanism 5 also includes a drive component 508 and the column 501. The internal structure includes a drive component 508, which is keyed to the turntable 502. A drive component 505 is mounted on the side of the mounting housing 504. A clamp 506 is rotatably connected to the telescopic end of the drive component 505. The clamp 506 has L-shaped ends. A switch 507 is mounted on the temperature gun 503. The clamp 506's ends are inserted into holes on both sides of the switch 507. The temperature gun 503 can be installed on the registration machine 1. During installation, the column 501 is fixed to the registration machine 1 with screws. A drive unit 508, which can be a motor, is installed inside the column 501. The control component inside the registration machine 1 controls the rotation of the turntable 502, facilitating the adjustment of the angle of the temperature gun 503 and allowing the patient to observe the data displayed on the back of the temperature gun 503. The temperature gun 503 is then snapped into the mounting housing 504 and secured with screws. The temperature gun 503 can connect to the registration machine 1 via Bluetooth. When the patient selects the temperature measurement function on the registration machine 1, the patient... With the head aligned with the temperature gun 503, the control component inside the registration machine 1 can control the extension and retraction of the drive component 3 505. The drive component 3 505 can be a cylinder. When the drive component 3 505 retracts, it drives the clamp 506 to move. Furthermore, the clamp 506 pulls the switch 507, and the temperature gun 503 starts to measure the patient's body temperature. This is beneficial for patients to take their temperature multiple times during flu season, solves the problem of the data being difficult to read at the hospital security checkpoint, and can print the measurement data on the registration slip for easy observation by the patient and medical staff.
[0025] In use, the invention begins by installing a registration machine 1 in the hospital lobby. This machine can inquire about the patient's affected area and symptoms, recommending suitable departments to assist with registration. Two slide rails 303 are then installed onto the registration machine 1 using screws. Two limiting blocks 604 are pulled relative to each other to align the fixing strip 602 with the insertion hole 606. Releasing the limiting blocks 604 resets the spring 609, allowing the limiting blocks 604 to insert into the insertion hole 606, thus completing the installation of the fixing strip 602 and the silicone brush 603. Finally, the corresponding fluid is added to the storage tank 301. Disinfectant, such as 75% pure medical alcohol, is used. When a patient approaches the registration machine 1, infrared sensor 306 detects the human signal and transmits the information to controller 305. At this time, ultrasonic atomizer 302 will not start to avoid the disinfectant spraying during registration affecting the patient. When infrared sensor 306 does not detect the human signal, controller 305 starts ultrasonic atomizer 302. The disinfectant in the storage tank 301 is atomized by ultrasonic atomizer 302 and then transported through spring tube 307 to the inside of nozzle 308, and then... Multiple nozzles 313 spray onto the display screen 201 to disinfect its surface. Using ultrasonic atomization technology, the disinfectant is atomized into tiny particles, providing a more even coverage of the display screen 201 surface and improving disinfection effectiveness. During spraying, a drive component 304 (which can be a motor) rotates the screw 310 inside the slide rail 303. A slider 309, threadedly connected to the screw 310, moves within the slide rail 303. Another slider 309 slides on a slide rod 311, thereby driving the spray nozzle 308 to spray onto the display screen. The screen 201 moves upward to achieve comprehensive disinfection, and the disinfection is automatically activated by sensing, requiring no manual operation, which is convenient and quick. The reciprocating spray nozzle 308 ensures that the entire screen 201 area is effectively disinfected, reducing bacterial growth, ensuring patient safety, and avoiding cross-infection for patients with influenza or skin diseases. When the infrared sensor 306 detects a human signal, it can transmit the signal to the controller 305. The controller 305 can control the drive component 304 to rotate and reset the spray nozzle 308, so as not to affect the patient's registration.Before spraying, insert two bolts 605 into the two connecting blocks 601, and thread one end of the bolts 605 to the slider 309. Since most of the bolts 605 are inside the connecting blocks 601, the two connecting blocks 601 will only move inside the slide rail 303 after the slider 309 slides out a certain distance. This achieves the effect of disinfection before wiping, so that the disinfectant completely destroys the envelope structure of viruses and bacteria, avoiding wiping immediately upon contact. After the slider 309 slides out a certain distance, the bolts 605 drive the connecting blocks 601 to move, thereby enabling the silicone brush 603 at the bottom of the fixing strip 602 to wipe the disinfectant on the display screen 201. This not only effectively kills bacteria on the surface of the display screen 201, but also cleans up residual disinfectant in time, avoiding damage to the display screen 201 caused by long-term disinfectant residue. At the same time, it keeps the surface of the display screen 201 clean, improving the user experience for patients. Moreover, the fixing strip 602 can be disassembled and installed through the limit block 604 and the spring 609, making it easy to clean and replace the silicone brush 603. Then, when the patient is processing the card, the keyboard 404 will be used. After the infrared sensor 407 detects the human signal, it will notify the controller 405. The controller 405 will start the drive component 406 (the drive component 406 can be a motor). The drive component 406 will drive the sealing plate 401 to rotate and open, so that the keyboard 404 can be used. After the operation is completed, the infrared sensor 407 will no longer detect the human signal. At this time, the controller 405 will drive the drive component 406 to close the sealing plate 401. At this time, the two contact plates 410 will be in contact. The contact plate 410 located on the outer shell 402 will be connected to the internal power supply of the registration machine 1. After the two contact plates 410 are released, the lamp holder 408 will be powered on, and the ultraviolet lamp 409 will emit light to disinfect the keyboard 404. This will prevent the keyboard from being left with viruses during the flu season and bacteria and fungi left by patients with skin diseases, which could cause cross-infection. In addition, ultraviolet disinfection can avoid damage to the keyboard 404 by liquid disinfection. Finally, a temperature gun 503 can be installed on the registration machine 1. During installation, the column 501 is fixed to the registration machine 1 with screws. A drive component 508, which can be a motor, is installed inside the column 501. The control component inside the registration machine 1 can control the rotation of the turntable 502, facilitating the adjustment of the angle of the temperature gun 503 and allowing the patient to observe the data displayed on the back of the temperature gun 503. The temperature gun 503 is then snapped into the mounting housing 504 and fixed with screws. The temperature gun 503 can be connected to the registration machine 1 via Bluetooth. When the patient selects the temperature measurement function on the registration machine 1, the patient's head is aligned with the temperature gun 503 for registration. The control components inside the machine 1 can control the extension and retraction of the drive component 505. The drive component 505 can be a cylinder. When the drive component 505 retracts, it drives the clamp 506 to move. The clamp 506 then pulls the switch 507, and the temperature gun 503 starts to measure the patient's body temperature. This is beneficial for patients to take their temperature multiple times during flu season, solving the problem of the data being difficult to read at hospital security checkpoints. The measurement data can also be printed on the registration slip for easy observation by the user and medical staff. The temperature gun 503 can be removed from the mounting shell 504 for easy battery replacement. When removing it, pull the two ends of the clamp 506 back to back. It is elastic and can be pulled out through the hole inside the switch 507.
[0026] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0027] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An artificial intelligence interactive device, characterized in that: It includes a registration machine (1), a display mechanism (2) installed on the registration machine (1) and a first disinfection mechanism (3), wherein a wiping mechanism (6) is installed on the first disinfection mechanism (3) and a second disinfection mechanism (4) is installed on the registration machine (1); The disinfection mechanism (3) includes a storage tank (301). The storage tank (301) is installed on one side of the registration machine (1). An ultrasonic atomizer (302) is installed on the storage tank (301). A spring tube (307) is connected to the ultrasonic atomizer (302). Two slide rails (303) are installed opposite each other on the registration machine (1) by screws. A screw (310) is rotatably connected inside one of the slide rails (303), and a slide rod (311) is fixedly connected inside the other slide rail (303). Sliding blocks (309) are slidably connected inside both slide rails (303). One of the sliding blocks (309) is threadedly connected to the screw (310), and the other sliding block (309) is slidably connected to the slide rod (311). The opposite sides of each device are fixedly connected to a fixed housing (312) located above the display mechanism (2). A nozzle (308) is held between the two fixed housings (312). One end of the spring tube (307) is connected to the nozzle (308). A nozzle (313) is installed at the bottom of the nozzle (308). A drive component (304) is installed at the end of one of the slide rails (303). The output end of the drive component (304) is fixedly connected to the screw (310) through a coupling. An infrared sensor (306) is installed on the registration machine (1). A controller (305) is installed on the side of the registration machine (1). The controller (305) is electrically connected to the infrared sensor (306). The controller (305) is electrically connected to the ultrasonic atomizer (302).
2. The artificial intelligence interactive device according to claim 1, characterized in that: The nozzle (313) is provided in multiple ways, and the multiple nozzles (313) are installed at equal intervals at the bottom of the nozzle (308).
3. The artificial intelligence interactive device according to claim 1, characterized in that: The two sliders (309) have an L-shaped cross-section, and the sides of the two sliders (309) are flush with the sides of the slide rail (303).
4. The artificial intelligence interactive device according to claim 1, characterized in that: The display mechanism (2) includes two fixed frames (203). The registration machine (1) has two L-shaped fixed frames (203) installed inside it by screws. The two fixed frames (203) are fixedly connected to the base frame (202) by screws. The base frame (202) is equipped with a display screen (201). The surface of the display screen (201) is flush with the surface of the registration machine (1). The display screen (201) is located at the bottom of the nozzle (308).
5. The artificial intelligence interactive device according to claim 1, characterized in that: A wiping mechanism (6) is provided between the two slide rails (303). The wiping mechanism (6) includes two connecting blocks (601). The two connecting blocks (601) are located between the slider (309) and the slide rail (303). Bolts (605) are slidably connected inside the two connecting blocks (601). The two bolts (605) are threadedly connected to the two sliders (309) respectively. Insertion holes (606) are opened on the opposite sides of the two connecting blocks (601). A fixing strip (602) is clamped between the two connecting blocks (601). A silicone brush (603) is glued to the bottom of the fixing strip (602). Two movable grooves (607) are opened opposite each other on the fixing strip (602). Two limiting blocks (604) are slidably connected to the two movable grooves (607) in opposite directions. The opposite ends of the two limiting blocks (604) are inserted into the insertion holes (606) on the sides of the two connecting blocks (601) respectively.
6. The artificial intelligence interactive device according to claim 5, characterized in that: The wiping mechanism (6) also includes a moving rod (608) and a spring (609). The moving rod (608) is fixedly connected to the opposite ends of the two limiting blocks (604). The spring (609) is held between the limiting block (604) and the fixing strip (602). The cross section of the limiting block (604) is L-shaped, and the top of the limiting block (604) is serrated.
7. The artificial intelligence interactive device according to claim 1, characterized in that: The second disinfection mechanism (4) includes an outer shell (402). The registration machine (1) has a rectangular outer shell (402) installed on its side. An inner shell (403) is fixedly connected to the back of the outer shell (402). A keyboard (404) is installed on the inner shell (403). A sealing plate (401) is rotatably connected to the outer shell (402). A lamp holder (408) is installed on the side of the sealing plate (401). Multiple ultraviolet lamps (409) are installed at equal intervals on the lamp holder (408).
8. An artificial intelligence interactive device according to claim 7, characterized in that: The second disinfection mechanism (4) also includes a second controller (405). The second controller (405) is installed on the outer shell (402). The second infrared sensor (407) is installed on the outer shell (402). The second infrared sensor (407) is electrically connected to the second controller (405). The second drive component (406) is installed on the outer shell (402). The output end of the second drive component (406) is fixedly connected to the rotation point of the sealing plate (401) through a coupling. The second controller (405) is electrically connected to the second drive component (406). The sealing plate (401) and the outer shell (402) are each equipped with a contact plate (410). The two contact plates (410) abut against each other. The contact plate (410) located on the sealing plate (401) is electrically connected to the lamp holder (408).
9. An artificial intelligence interactive device according to claim 1, characterized in that: The registration machine (1) is equipped with a temperature measuring mechanism (5), which includes a column (501). The column (501) is fixedly connected to the registration machine (1) by screws. A turntable (502) is provided on the column (501). A mounting shell (504) is fixedly connected to the turntable (502). A temperature measuring gun (503) is held inside the mounting shell (504). The cross-section of the mounting shell (504) is U-shaped, and the side of the mounting shell (504) is threaded with screws that abut against the temperature measuring gun (503).
10. An artificial intelligence interactive device according to claim 9, characterized in that: The temperature measuring mechanism (5) also includes a driving component four (508). The driving component four (508) is installed inside the column (501). The driving component four (508) is keyed to the turntable (502). The side of the mounting shell (504) is equipped with a driving component three (505). The telescopic end of the driving component three (505) is rotatably connected to a clamp (506). The two ends of the clamp (506) are L-shaped. The temperature measuring gun (503) is equipped with a switch (507). The two ends of the clamp (506) are inserted into the holes on both sides of the switch (507).