Digital sputum suction pipeline cleaning device and control method thereof
Through the automated control of the digital suction pipe cleaning device, the cleaning parameters are adjusted according to the degree of contamination, which solves the problems of high suction pipe costs and infection risks, and achieves efficient and safe cleaning effects.
Patent Information
- Application Number
- CN202511088338.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-09-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing technology, disposable suction tubes are expensive and using sterile water to rinse them can easily increase the risk of infection, and the reuse of treatment bowls poses a safety hazard.
A digital suction pipe cleaning device was designed, which included a shell, a water tank, a liquid storage barrel, a telescopic slide, an ultraviolet disinfection lamp, and a control module. The device assessed the degree of contamination through image acquisition and processing, and automatically adjusted the water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp, and the operating time of the motor to achieve automated control of the cleaning process.
It improves the efficiency and safety of suction pipe cleaning, reduces the risk of cross infection, reduces the operating intensity of medical staff, and improves the hygiene standards of the medical environment.
Smart Images

Figure CN120679789A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical device cleaning, and in particular to a digital sputum suction pipe cleaning device and a control method thereof. Background Art
[0002] The existing wall-mounted negative pressure device is connected to a negative pressure gauge, which is then connected to a disposable negative pressure suction box. The negative pressure box is then connected to a disposable connecting tube, which is then connected to a disposable suction tube. During suction, the suction tube is directly inserted into the patient's airway or mouth to suction the sputum. When the sputum is thick, sputum will be stuck to the suction tube. If the tube is thrown away after suctioning once, the cost of the suction tube will be very high. If it is not thrown away, a whole bottle of sterile water will be used to rinse the suction tube in clinical practice, resulting in the contamination of the entire bottle of sterile water. To save costs, the contaminated sterile water will have to be used again for the next suction, and this cycle will increase the risk of respiratory infections. Some people pour the sterile water into a treatment bowl and use the sterile water in the treatment bowl to rinse the suction tube during suction. The whole bottle of water is clean, but the treatment bowl cannot be replaced every time and needs to be reused for 4 or 24 hours, which also increases the risk of infection.
[0003] Therefore, it is necessary to provide a digital suction pipe cleaning device and its control method to solve the problems in the existing technology that disposable suction tubes are expensive and the use of sterile water for flushing easily increases the risk of infection, and the reuse of treatment bowls also poses a safety hazard. Summary of the Invention
[0004] In view of this, the present invention proposes a digital suction pipe cleaning device and a control method thereof, aiming to solve the problems in the prior art that disposable suction tubes are expensive, the use of sterile water for flushing easily increases the risk of infection, and the reuse of treatment bowls also poses a safety hazard.
[0005] On the one hand, the present invention provides a digital sputum suction pipe cleaning device, comprising:
[0006] A shell having an open bottom and a transport opening formed on a side wall of the shell;
[0007] A water storage tank is fixed inside the shell, a water outlet pipe is provided at the bottom of the water storage tank, and a water control valve is provided on the water outlet pipe;
[0008] A liquid storage barrel is provided on the top of the housing and is in communication with the top of the water storage tank, and is used to store sterile water;
[0009] a telescopic slide, one end of which is fixed to the bottom of the shell, and the other end of which is telescopic and extends out of the transport port, the telescopic slide being used to place a rinse cup;
[0010] an ultraviolet disinfection lamp, disposed on the inner side wall of the housing, and used for disinfecting the rinse cup;
[0011] A control module is arranged on the outer wall of the shell, and the control module is electrically connected to the water control valve, telescopic slide, ultraviolet disinfection lamp and telescopic slide. The control module is used to control the water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp and the extension and retraction of the telescopic slide according to the degree of dirtiness of the suction pipe to be cleaned.
[0012] Furthermore, the rinsing cup includes:
[0013] cup body;
[0014] an isolation plate, horizontally arranged at the lower part of the cup body;
[0015] a motor, disposed at the lower portion of the isolation plate, with an output end of the motor extending out of the isolation plate;
[0016] A stirring blade is provided on the upper portion of the isolation plate and is also connected to the output end of the motor;
[0017] An isolation cover is provided on the stirring blade, the bottom of the isolation cover is fixed to the isolation plate, and a plurality of holes are opened on the isolation cover;
[0018] A control board is arranged at the bottom of the cup body, the control board is connected to the motor, and the control board is also wirelessly connected to the control module.
[0019] Furthermore, the control module includes:
[0020] An acquisition unit, used for acquiring multi-angle images of the suction pipe to be cleaned;
[0021] a data processing unit, configured to process the multi-angle images to obtain contamination data, and evaluate the contamination degree of the sputum suction pipe to be cleaned based on the contamination data to obtain a contamination evaluation value;
[0022] A control unit is used to control the water output of the water control valve and the irradiation time of the ultraviolet disinfection lamp, as well as the working time and output power of the motor according to the pollution assessment value.
[0023] Furthermore, the data processing unit is used to process the multi-angle images to obtain the contamination data, including:
[0024] The pollution data includes the area of the suction pipe to be cleaned and the area of sputum;
[0025] Perform image recognition and segmentation on each image to obtain an image of the suction pipe to be cleaned in each image, and obtain the area of the suction pipe to be cleaned;
[0026] Obtain the sputum area in the image of the suction pipe to be cleaned.
[0027] Furthermore, the data processing unit is used to evaluate the contamination degree of the suction pipe to be cleaned according to the contamination data, and obtain the contamination evaluation value, including:
[0028] Calculate the proportion of sputum area to the area of the suction pipe to be cleaned in each image;
[0029] Calculating a mean of the pollution percentages of the pollution percentages;
[0030] The average of the pollution ratios is used as the pollution assessment value.
[0031] Furthermore, the control unit is used to control the water output of the water control valve and the irradiation time of the ultraviolet disinfection lamp according to the pollution assessment value, including:
[0032] The water output of the water control valve is proportional to the pollution assessment value; wherein the water output of the water control valve is less than or equal to a preset water output threshold;
[0033] The irradiation time of the ultraviolet disinfection lamp is proportional to the pollution assessment value.
[0034] Furthermore, when the control unit is used to control the working time and output power of the motor according to the pollution assessment value, it includes:
[0035] The working time and output power of the motor are proportional to the pollution assessment value;
[0036] The operating time of the motor is less than or equal to a preset time threshold, and the output power of the motor is less than or equal to a power threshold.
[0037] Furthermore, the telescopic slide includes:
[0038] a fixing plate, fixed on the inner side wall of the shell;
[0039] a telescopic assembly fixed to a side of the fixing plate away from the housing, the telescopic assembly being electrically connected to the control module;
[0040] The movable plate is fixed to one end of the telescopic assembly away from the fixed plate, and the movable plate is used for supporting the flushing cup.
[0041] Furthermore, the digital sputum suction pipe cleaning device also includes:
[0042] A heating component is provided on the water storage tank, the heating component is electrically connected to the control module, and the heating component is used to heat the sterile water in the water storage tank.
[0043] Compared with the prior art, the beneficial effects of the present invention are that the present invention improves the efficiency and safety of suction pipe cleaning in medical environments. The present invention includes a shell with an opening at the bottom, and a transport port on the side wall facilitates the placement and removal of the rinse cup. The provision of a water tank and a liquid storage barrel ensures an adequate supply of sterile sterilized water during the cleaning process, ensuring the thoroughness and safety of the cleaning. The design of the water outlet pipe and the water control valve at the bottom of the water tank allows the amount of water in the cleaning process to be precisely controlled, thereby allowing for appropriate cleaning according to the degree of contamination of the suction pipe. The provision of an ultraviolet disinfection lamp provides an effective means of disinfection for the rinse cup, ensuring the hygiene of the cleaning tools and reducing the risk of cross infection. In addition, the design of the telescopic slide not only facilitates the placement and removal of the rinse cup, but can also be extended and retracted as needed, increasing the flexibility and applicability of the device. The control module works in coordination with the water control valve, ultraviolet disinfection lamp and telescopic slide through an electrical connection to achieve automated control of the entire cleaning process. This digital control method can automatically adjust the water output, UV exposure duration, and telescopic slide extension according to the degree of contamination in the suction pipe, thereby improving cleaning efficiency, reducing the workload of medical staff, and ensuring the consistency and reliability of the cleaning process. In summary, the present invention not only improves cleaning efficiency and safety, but also reduces the operating intensity of medical staff through automated control, improves the sanitation standards of the medical environment, and has significant practical value and application prospects.
[0044] On the other hand, the present application also provides a control method for a digital sputum suction pipe cleaning device, comprising:
[0045] Collect multi-angle images of the suction pipe to be cleaned;
[0046] Processing the multi-angle images to obtain contamination data, and evaluating the contamination degree of the sputum suction pipe to be cleaned according to the contamination data to obtain a contamination evaluation value;
[0047] The water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp, and the working time and output power of the motor are controlled according to the pollution assessment value.
[0048] It is understandable that the digital suction pipe cleaning device and control method provided in this application have the same beneficial effects and will not be described in detail here. BRIEF DESCRIPTION OF THE DRAWINGS
[0049] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiment below. The accompanying drawings are for illustration purposes only and are not to be considered as limiting the present invention. The same reference symbols are used throughout the drawings to represent the same components. In the drawings:
[0050] Figure 1 A cross-sectional view of a digital sputum suction pipe cleaning device provided in an embodiment of the present invention;
[0051] Figure 2 A schematic structural diagram of a digital sputum suction pipe cleaning device provided in an embodiment of the present invention;
[0052] Figure 3 This is a flow chart of a control method for a digital sputum suction pipe cleaning device provided in an embodiment of the present invention.
[0053] In the figure, 100, shell; 200, water tank; 210, water outlet pipe; 220, water control valve; 300, liquid storage barrel; 400, telescopic slide; 410, fixed plate; 420, telescopic assembly; 430, movable plate; 500, rinse cup; 510, cup body; 520, isolation plate; 530, motor; 540, stirring blade; 550, isolation cover; 560, control panel; 600, ultraviolet disinfection lamp; 700, control module; 800, heating assembly. DETAILED DESCRIPTION
[0054] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that, unless there is a conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0055] In some embodiments of this application, see Figure 1-2 As shown, this embodiment provides a digital sputum suction pipe cleaning device, comprising:
[0056] The shell 100 has an open bottom and a transport port is provided on a side wall of the shell 100;
[0057] The water tank 200 is fixed inside the housing 100. A water outlet pipe 210 is provided at the bottom of the water tank 200. A water control valve 220 is provided on the water outlet pipe 210.
[0058] A liquid storage barrel 300 is provided on the top of the housing 100 and is in communication with the top of the water storage tank 200. The liquid storage barrel 300 is used to store sterile sterilized water.
[0059] A telescopic slide 400, one end of which is fixed to the bottom of the housing 100, and the other end of which is telescopic and extends out of the transport port, and the telescopic slide 400 is used to place the rinse cup 500;
[0060] An ultraviolet disinfection lamp 600 is provided on the inner wall of the housing 100 and is used to disinfect the rinse cup 500;
[0061] The control module 700 is arranged on the outer wall of the shell 100. The control module 700 is electrically connected to the water control valve 220, the telescopic slide 400, the ultraviolet disinfection lamp 600 and the telescopic slide 400. The control module 700 is used to control the water output of the water control valve 220, the irradiation time of the ultraviolet disinfection lamp 600 and the extension and retraction of the telescopic slide 400 according to the degree of dirtiness of the suction pipe to be cleaned.
[0062] As can be appreciated, the present invention improves the efficiency and safety of suction pipe cleaning in medical settings. The present invention comprises a housing 100 with an open bottom and a transport port on the sidewall that facilitates the placement and removal of a rinse cup 500. The provision of a water tank 200 and a liquid storage barrel 300 ensures an ample supply of sterile, sterilized water during the cleaning process, ensuring thoroughness and safety. The design of the water outlet pipe 210 and water control valve 220 at the bottom of the water tank 200 allows for precise control of the amount of water used during the cleaning process, enabling appropriate cleaning based on the degree of contamination in the suction pipe. Ultraviolet disinfection lamps 600 are positioned on the inner sidewalls of the housing 100, i.e., located on the top and sides of the rinse cup 500, to provide comprehensive irradiation and disinfection of the rinse cup 500. This provision of the ultraviolet disinfection lamps 600 provides an effective disinfection method for the rinse cup 500, ensuring the hygiene of cleaning tools and reducing the risk of cross-infection. Furthermore, the design of the telescopic slide 400 not only facilitates the placement and removal of the rinse cup 500 but also allows for expansion and contraction as needed, increasing the flexibility and adaptability of the device. The control module 700 works in conjunction with the water control valve 220, the ultraviolet disinfection lamp 600 and the telescopic slide 400 through electrical connection to achieve automated control of the entire cleaning process. This digital control method can automatically adjust the water output, ultraviolet irradiation duration and the extension of the telescopic slide 400 according to the degree of contamination of the sputum suction pipe, thereby improving the cleaning efficiency, reducing the workload of medical staff, and ensuring the consistency and reliability of the cleaning process. In summary, the present invention not only improves cleaning efficiency and safety, but also reduces the operating intensity of medical staff through automated control, improves the hygiene standards of the medical environment, and has significant practical value and application prospects.
[0063] In some embodiments of the present application, the rinse cup 500 includes:
[0064] Cup body 510;
[0065] An isolation plate 520 is horizontally disposed at the lower portion of the cup body 510;
[0066] The motor 530 is disposed below the isolation plate 520 , and the output end of the motor 530 extends out of the isolation plate 520 ;
[0067] A stirring blade 540 is provided on the upper portion of the isolation plate 520 and is also connected to the output end of the motor 530;
[0068] An isolation cover 550 is provided on the stirring blade 540 , the bottom of the isolation cover 550 is fixed to the isolation plate 520 , and a plurality of holes are formed on the isolation cover 550 ;
[0069] The control board 560 is disposed at the bottom of the cup body 510 . The control board 560 is connected to the motor 530 . The control board 560 is also wirelessly connected to the control module 700 .
[0070] It is understandable that the isolation plate 520 is set at the lower part of the cup body 510, which helps to effectively isolate the liquid from the motor 530 part, thereby protecting the motor 530 from liquid erosion and extending the service life of the equipment. Secondly, the motor 530 is located below the isolation plate 520, and its output end extends out of the isolation plate 520 and is connected to the stirring blade 540, ensuring that the stirring blade 540 can operate efficiently, while the motor 530 itself is also protected. The stirring blade 540 is located above the isolation plate 520 and can fully stir the liquid in the cup to achieve uniform disinfection. The setting of the isolation cover 550 further ensures the safe use of the stirring blade 540. Its bottom is fixed to the isolation plate 520, and the hole design allows liquid to pass through while preventing foreign matter from entering the stirring area. Finally, the control panel 560 is located at the bottom of the cup body 510 and is wirelessly connected to the motor 530 and the control module 700, which not only saves space but also improves the convenience and safety of operation.
[0071] In some embodiments of the present application, the control module 700 includes:
[0072] An acquisition unit, used for acquiring multi-angle images of the suction pipe to be cleaned;
[0073] a data processing unit, configured to process the multi-angle images to obtain contamination data, and evaluate the contamination degree of the sputum suction pipe to be cleaned based on the contamination data to obtain a contamination evaluation value;
[0074] The control unit is used to control the water output of the water control valve 220 and the irradiation time of the ultraviolet disinfection lamp 600, as well as the working time and output power of the motor 530 according to the pollution assessment value.
[0075] It is understandable that the control module 700 obtains multi-angle images of the suction pipe to be cleaned through the acquisition unit, and the data processing unit processes these images to obtain contamination data and evaluate the degree of contamination of the suction pipe to obtain a contamination assessment value. Based on this assessment value, the control unit intelligently adjusts the water output of the water control valve 220, the irradiation time of the ultraviolet disinfection lamp 600, the working time and output power of the motor 530, which can ensure that the suction pipe is properly cleaned and disinfected, while avoiding excessive use of resources, improving efficiency and saving energy. In addition, intelligent control can also reduce manual intervention, reduce operational complexity, and improve the overall user experience and equipment reliability.
[0076] In some embodiments of the present application, the data processing unit is configured to process the multi-angle images to obtain contamination data, including:
[0077] The pollution data includes the area of the suction pipe to be cleaned and the area of sputum;
[0078] Perform image recognition and segmentation on each image to obtain an image of the suction pipe to be cleaned in each image, and obtain the area of the suction pipe to be cleaned;
[0079] Obtain the sputum area in the image of the suction pipe to be cleaned.
[0080] In some embodiments of the present application, the data processing unit is configured to evaluate the contamination level of the suction pipe to be cleaned based on the contamination data, and obtain a contamination evaluation value, including:
[0081] Calculate the proportion of sputum area to the area of the suction pipe to be cleaned in each image;
[0082] Calculating a mean of the pollution percentages of the pollution percentages;
[0083] The average of the pollution ratios is used as the pollution assessment value.
[0084] As will be appreciated, the data processing unit processes the multi-angle images to obtain contamination data, which involves identifying and segmenting the images to determine the area of the suction duct to be cleaned and the area of sputum therein. This allows for an accurate assessment of the degree of contamination within the suction duct. Specifically, the ratio of the sputum area to the area of the suction duct to be cleaned in each image is calculated, and then the average of these ratios is calculated. This average serves as the contamination assessment value, helping to maintain the hygiene standards of medical equipment, ensure patient safety, and improve the cleaning efficiency and quality of the medical environment.
[0085] In some embodiments of the present application, the control unit is configured to control the water output of the water control valve 220 and the irradiation time of the ultraviolet disinfection lamp 600 according to the pollution assessment value, including:
[0086] The water output of the water control valve 220 is proportional to the pollution assessment value; wherein the water output of the water control valve 220 is less than or equal to a preset water output threshold;
[0087] The irradiation time of the ultraviolet disinfection lamp 600 is proportional to the pollution assessment value.
[0088] In some embodiments of the present application, the control unit is configured to control the operating time and output power of the motor 530 according to the pollution assessment value, including:
[0089] The working time and output power of the motor 530 are proportional to the pollution assessment value;
[0090] The operating time of the motor 530 is less than or equal to a preset time threshold, and the output power of the motor 530 is less than or equal to a power threshold.
[0091] It will be appreciated that in some embodiments of the present application, by adjusting the water output of the water control valve 220 and the exposure time of the ultraviolet disinfection lamp 600 based on the contamination assessment value, a control unit can optimize the management of water resources and disinfection efficiency. Specifically, the water output of the water control valve 220 is directly proportional to the contamination assessment value, meaning that water usage is adjusted according to the actual contamination level, thereby ensuring cleaning effectiveness while avoiding unnecessary water waste. Furthermore, the water output is limited to a pre-set water output threshold, ensuring stable system operation. Furthermore, the exposure time of the ultraviolet disinfection lamp 600 is also directly proportional to the contamination assessment value, ensuring that the intensity of the disinfection process matches the level of contamination in the water body. This adaptive control strategy can effectively improve disinfection efficiency, reduce energy consumption, and extend the lifespan of the ultraviolet lamps by only operating them for extended periods when necessary. The operating time and output power of the motor 530 are also controlled in direct proportion to the contamination assessment value, ensuring that the motor 530 provides sufficient cleaning power without excessive energy consumption. Both the operating hours and output power of motor 530 are limited to pre-set thresholds, which helps prevent excessive wear and extend the service life of the equipment while ensuring the safety and reliability of the system under high loads. In summary, the present invention achieves dynamic adjustment of the water treatment system through the intelligent control unit, which not only improves the efficiency of water and energy utilization, but also ensures the efficient, stable, and safe operation of the system.
[0092] In some embodiments of the present application, the telescopic slide 400 includes:
[0093] A fixing plate 410 is fixed to the inner wall of the housing 100;
[0094] a telescopic assembly 420 fixed to a side of the fixing plate 410 away from the housing 100 , the telescopic assembly 420 being electrically connected to the control module 700 ;
[0095] The movable plate 430 is fixed to one end of the telescopic assembly 420 away from the fixed plate 410 . The movable plate 430 is used to support the rinsing cup 500 .
[0096] In some embodiments of the present application, the digital suction pipe cleaning device further includes:
[0097] The heating component 800 is provided on the water storage tank 200 . The heating component 800 is electrically connected to the control module 700 . The heating component 800 is used to heat the sterile water in the water storage tank 200 .
[0098] It is understandable that the design of the telescopic slide 400 has significant benefits. First, through the provision of the fixed plate 410, it can be firmly mounted on the inner wall of the housing 100, ensuring the stability of the structure. The addition of the telescopic assembly 420 not only increases the flexibility of the device, but also realizes automated control through electrical connection with the control module 700, improving the convenience and efficiency of operation. The provision of the movable plate 430 provides a reliable support for the rinse cup 500, ensuring the stability and safety of the rinse cup 500 during use. In addition, the digital suction pipe cleaning device also includes a heating assembly 800, which is provided on the water tank 200 and electrically connected to the control module 700. It can heat the sterile sterilized water in the water tank 200, ensuring temperature control during the cleaning process, thereby improving the cleaning effect and safety. Overall, the combination of these components not only improves the performance of the device, but also optimizes the user experience, making the entire disinfection and cleaning process more efficient, safe and convenient.
[0099] On the other hand, see Figure 3 As shown, the present application also provides a control method for a digital sputum suction pipe cleaning device, which is applied to the above-mentioned digital sputum suction pipe cleaning device, comprising the following steps:
[0100] S100, collecting multi-angle images of the suction pipe to be cleaned;
[0101] S200, processing the multi-angle images to obtain contamination data, and evaluating the contamination level of the suction pipe to be cleaned based on the contamination data to obtain a contamination evaluation value;
[0102] S300: Control the water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp, and the working time and output power of the motor according to the pollution assessment value.
[0103] It's understandable that by capturing multi-angle images of the suction pipe to be cleaned, a comprehensive understanding of the pipe's internal contamination is achieved, which is more accurate and intuitive than traditional cleaning methods. Secondly, by processing these images to obtain contamination data and assessing the degree of contamination, a quantitative analysis of the suction pipe's cleanliness can be achieved, providing a scientific basis for subsequent cleaning work, helping to improve cleaning efficiency and ensure that the suction pipe meets the expected cleanliness standards.
[0104] Furthermore, by controlling the water flow rate of the water control valve, the duration of the UV disinfection lamp, and the operating hours and output power of the motor based on the contamination assessment value, an automated and intelligent cleaning process can be achieved. This control method not only conserves resources but also ensures optimal cleaning results every time, reducing medical risks associated with incomplete cleaning. Furthermore, automated control reduces manual intervention, reduces operational complexity, and improves safety and convenience.
[0105] In summary, the present invention not only improves cleaning efficiency and quality, but also saves resources and reduces operational risks through precise image acquisition and processing, intelligent evaluation, and automated control.
[0106] Those skilled in the art will appreciate that the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may take the form of a complete hardware embodiment, a complete software embodiment, or a combination of software and hardware embodiments. Furthermore, the present application may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0107] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems) and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.
[0108] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.
[0109] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.
[0110] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit it. Although the present invention has been described in detail with reference to the above embodiments, ordinary technicians in the field should understand that the specific implementation methods of the present invention can still be modified or replaced by equivalents. Any modification or equivalent replacement that does not depart from the spirit and scope of the present invention should be covered by the scope of protection of the claims of the present invention.
Claims
1. A digital suction pipe cleaning device, characterized in that: include: A shell having an open bottom and a transport opening formed on a side wall of the shell; A water storage tank is fixed inside the shell, a water outlet pipe is provided at the bottom of the water storage tank, and a water control valve is provided on the water outlet pipe; A liquid storage barrel is provided on the top of the housing and is in communication with the top of the water storage tank, and is used to store sterile water; a telescopic slide, one end of which is fixed to the bottom of the shell, and the other end of which is telescopic and extends out of the transport port, the telescopic slide being used to place a rinse cup; an ultraviolet disinfection lamp, disposed on the inner side wall of the housing, and used for disinfecting the rinse cup; A control module is arranged on the outer wall of the shell, and the control module is electrically connected to the water control valve, telescopic slide, ultraviolet disinfection lamp and telescopic slide. The control module is used to control the water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp and the extension and retraction of the telescopic slide according to the degree of dirtiness of the suction pipe to be cleaned.
2. The digital suction pipe cleaning device according to claim 1 is characterized in that: The rinse cup comprises: cup body; an isolation plate, horizontally arranged at the lower part of the cup body; a motor, disposed at the lower portion of the isolation plate, with an output end of the motor extending out of the isolation plate; A stirring blade is provided on the upper portion of the isolation plate and is also connected to the output end of the motor; An isolation cover is provided on the stirring blade, the bottom of the isolation cover is fixed to the isolation plate, and a plurality of holes are opened on the isolation cover; A control board is arranged at the bottom of the cup body, the control board is connected to the motor, and the control board is also wirelessly connected to the control module.
3. The digital suction pipe cleaning device according to claim 2 is characterized in that: The control module includes: An acquisition unit, used for acquiring multi-angle images of the suction pipe to be cleaned; a data processing unit, configured to process the multi-angle images to obtain contamination data, and evaluate the contamination degree of the sputum suction pipe to be cleaned based on the contamination data to obtain a contamination evaluation value; A control unit is used to control the water output of the water control valve and the irradiation time of the ultraviolet disinfection lamp, as well as the working time and output power of the motor according to the pollution assessment value.
4. The digital suction pipe cleaning device according to claim 3 is characterized in that: The data processing unit is used to process the multi-angle images to obtain contamination data, including: The pollution data includes the area of the suction pipe to be cleaned and the area of sputum; Perform image recognition and segmentation on each image to obtain an image of the suction pipe to be cleaned in each image, and obtain the area of the suction pipe to be cleaned; Obtain the sputum area in the image of the suction pipe to be cleaned.
5. The digital sputum suction pipe cleaning device according to claim 4 is characterized in that: The data processing unit is used to evaluate the contamination degree of the sputum suction pipe to be cleaned according to the contamination data, and obtain a contamination evaluation value, including: Calculate the proportion of sputum area to the area of the suction pipe to be cleaned in each image; Calculating a mean of the pollution percentages of the pollution percentages; The average of the pollution ratios is used as the pollution assessment value.
6. The digital sputum suction pipe cleaning device according to claim 5, characterized in that: The control unit is used to control the water output of the water control valve and the irradiation time of the ultraviolet disinfection lamp according to the pollution assessment value, including: The water output of the water control valve is proportional to the pollution assessment value; wherein the water output of the water control valve is less than or equal to a preset water output threshold; The irradiation time of the ultraviolet disinfection lamp is proportional to the pollution assessment value.
7. The digital sputum suction pipe cleaning device according to claim 5, characterized in that: When the control unit is used to control the working time and output power of the motor according to the pollution assessment value, it includes: The working time and output power of the motor are proportional to the pollution assessment value; The operating time of the motor is less than or equal to a preset time threshold, and the output power of the motor is less than or equal to a power threshold.
8. The digital sputum suction pipe cleaning device according to claim 1, characterized in that: The telescopic slide comprises: a fixing plate, fixed on the inner side wall of the shell; a telescopic assembly fixed to a side of the fixing plate away from the housing, the telescopic assembly being electrically connected to the control module; The movable plate is fixed to one end of the telescopic assembly away from the fixed plate, and the movable plate is used for supporting the flushing cup.
9. The digital sputum suction pipe cleaning device according to claim 1, characterized in that: The digital sputum suction pipe cleaning device also includes: A heating component is provided on the water storage tank, the heating component is electrically connected to the control module, and the heating component is used to heat the sterile water in the water storage tank.
10. A control method for a digital sputum suction pipe cleaning device, applied to the digital sputum suction pipe cleaning device according to any one of claims 1 to 9, characterized in that: include: Collect multi-angle images of the suction pipe to be cleaned; Processing the multi-angle images to obtain contamination data, and evaluating the contamination degree of the sputum suction pipe to be cleaned according to the contamination data to obtain a contamination evaluation value; The water output of the water control valve, the irradiation time of the ultraviolet disinfection lamp, and the working time and output power of the motor are controlled according to the pollution assessment value.