Digestive endoscopy drying device

By designing a digestive endoscope drying device with a ring-shaped storage cabinet and a drying sealed door, combined with infrared heating and vacuuming, the problem of low endoscope drying efficiency in the existing technology is solved, and rapid independent drying and sterile storage are achieved.

CN120627601AInactive Publication Date: 2025-09-12SONGYUAN CENT HOSPITAL
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510984587.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing large vacuum drying cabinets are unable to achieve rapid drying of a single digestive endoscope, resulting in low efficiency in endoscope use and easy bacterial growth.

Method used

A digestive endoscope drying device was designed, which adopted a ring-shaped storage cabinet and a drying sealed door, combined with an infrared heater and a vacuum pumping component to achieve independent vacuum drying of the endoscope. The sealed door was automatically adjusted by a rotating support assembly and a linked opening and closing component, simplifying the driving equipment.

Benefits of technology

It realizes the rapid independent drying and storage of endoscopes, improves the drying efficiency, avoids the long waiting time of endoscopes, reduces the risk of bacterial growth, and supports sterile storage.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120627601A_ABST
    Figure CN120627601A_ABST
Patent Text Reader

Abstract

The invention discloses a drying device for digestive endoscopes, relates to the technical field of drying of endoscopes, and aims to provide a drying device for the digestive endoscopes, which can quickly dry a single endoscope after cleaning and has a storage function. A pick-and-place box door is arranged on the front face of the cabinet body, an overhaul box door is arranged on the side face of the cabinet body, a framework is arranged in the center of the cabinet body, a storage component is arranged on the framework and comprises a rotary supporting assembly arranged on the framework, and an annular storage cabinet is arranged on the side face of the rotary supporting assembly. The drying device has the technical effects that the annular storage cabinet and the drying sealing door are arranged, the annular storage cabinet is rotationally arranged in the cabinet body through the rotary supporting assembly, and the multiple independent storage grooves are formed in the outer side face, so that the purpose of independent vacuum drying of the endoscope is achieved, and the problem that the endoscope cleaned firstly needs to wait for the subsequent endoscope for a long time is solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of endoscope drying, in particular to a digestive endoscope drying device. Background Art

[0002] A digestive endoscope refers to a medical device that inserts an endoscope into the human digestive system through natural human orifices such as the mouth and anus, or artificial channels such as incisions and fistulas, to examine, diagnose, and treat related digestive system diseases. It can visually observe the internal conditions of the digestive tract, and can also perform biopsy, polypectomy, and other operations through supporting tools. It is an important means of diagnosing and treating digestive system diseases.

[0003] Due to the high cost of precision manufacturing of the structure of endoscopes, most endoscopes need to be reused. Also, because endoscopes are directly inserted into the human body, disinfection after use is particularly important, requiring structural cleaning, drying and sterilization. The purpose of drying is to remove residual moisture from the endoscope cleaning to prevent bacterial growth. Existing drying equipment is a large vacuum drying cabinet, which can complete batch drying of endoscopes.

[0004] However, in the actual treatment process, doctors diagnose and treat patients one by one, so the endoscopes that need to be cleaned and dried are also produced one by one. The existing large vacuum drying cabinets have a large space and require a long time. The corresponding method is to clean multiple endoscopes and then dry them together. This causes the endoscope used first to wait for a long time, which is not conducive to the recycling of endoscopes on the one hand, and is also prone to bacterial growth on the other hand. Summary of the Invention

[0005] (1) Technical problems solved In view of the deficiencies of the prior art, the present invention provides a digestive endoscope drying device that can quickly dry a single endoscope after cleaning and also has a storage function.

[0006] (2) Technical solution To achieve the above-mentioned object, the present invention provides the following technical solution: a digestive endoscope drying device, comprising a base, a cabinet body provided on the base, a take-and-place box door provided on the front of the cabinet body, and an inspection box door provided on the side of the cabinet body, a frame provided in the center of the cabinet body, and a storage component provided on the frame; The storage component includes a rotating support assembly provided on a frame, a ring-shaped storage cabinet is provided on the side of the rotating support assembly, and a plurality of storage slots with outward openings are provided in the ring-shaped storage cabinet; The skeleton is provided with linkage opening and closing components at the upper and lower parts of the annular locker, and the top and bottom ends of the annular locker are provided with slide rails that cooperate with the linkage opening and closing components. The end surface of the linkage opening and closing component is provided with a dry sealing door that fits with the storage slot on one side of the annular locker. The position of the dry sealing door corresponds to the maintenance box door, and the dry sealing door is provided with a sealing gasket that fits with the outer side of the annular locker. An infrared heater facing the storage tank is provided in the drying and sealing door, a temperature sensor is provided in the infrared heater, a vacuum pumping component is provided on the frame, a first vacuum pumping port connected to the vacuum pumping component is provided on the drying and sealing door, and a first electromagnetic pressure relief valve is provided under the drying and sealing door.

[0007] Preferably, the linkage opening and closing component includes a fixing part connected to the frame, a fixing plate is provided under the fixing part, a sliding rod is provided in the fixing plate, a sliding rack is provided on the sliding rod for horizontal sliding, a connecting part connected to the dry sealing door is provided at the front end of the sliding rack, a pin shaft located in the sliding rail is provided under the sliding rack, and a first spring connected to the sliding rack is sleeved on the sliding rod.

[0008] Preferably, the rotating support assembly includes a support plate and a fixed frame connected to the frame, a roller seat is provided on the support plate, a rotating seat connected to the annular locker is rotatably provided on the roller seat, the inner ring of the rotating seat is provided with an inner gear ring, a first motor is provided on the fixed frame, and the output end of the first motor is provided with a circular gear meshing with the inner gear ring.

[0009] Preferably, a sterilization sealing door is provided on the side of the drying sealing door, which is in contact with the adjacent storage slot. A second vacuum port connected to the vacuum component is provided on the sterilization sealing door. A second electromagnetic pressure relief valve is provided under the sterilization sealing door. A sterilant tank connected to the interior of the sterilization sealing door is provided in the cabinet body, and an auxiliary material box door is provided on the outside of the cabinet body, the position of which corresponds to the sterilization sealing door.

[0010] Preferably, a plurality of ultraviolet disinfection lamps are provided inside the cabinet, and the ultraviolet disinfection lamps are staggered with the drying sealed door and the sterilization sealed door.

[0011] Preferably, the front end of the slide is provided with a slide groove that horizontally slides with the connecting piece, the connecting piece is provided with a movable connecting shaft, the slide is provided with a fixed connecting shaft, and a second spring is provided between the movable connecting shaft and the fixed connecting shaft.

[0012] Preferably, the vacuum pumping component includes a vacuum pump arranged in the frame, and the vacuum pump is provided with a first vacuum pumping tube connected to the first vacuum pumping port, and a second vacuum pumping tube connected to the second vacuum pumping port.

[0013] Preferably, an endoscope placement component is provided in the storage tank, and the endoscope placement component includes a support frame connected to the inner wall of the storage tank, an annular bracket with an opening on one side is provided on the support frame, and a support platform is provided in the annular bracket.

[0014] Preferably, a roller is rotatably provided on the support platform, a through groove is provided on the side of the annular bracket, a friction rotating assembly is provided in the through groove within the support frame, and a contactless driving component for driving the friction rotating assembly is provided on the frame; The friction rotating assembly includes two supporting pulleys and a driving pulley that are rotatably arranged in a supporting frame. A synchronous belt located in a through groove is provided between the two supporting pulleys and the driving pulley. A first bevel gear is provided under the driving pulley. A second bevel gear is engaged with the side surface of the first bevel gear. The other end of the second bevel gear is provided with a driven magnetic coupling disk that cooperates with the contactless driving component.

[0015] Preferably, the contactless driving component includes a connecting frame arranged in the frame, the connecting frame is provided with a second motor, and the output end of the second motor is provided with an active magnetic coupling disk that cooperates with the driven magnetic coupling disk.

[0016] (3) Beneficial effects Compared with the prior art, the present invention provides a digestive endoscope drying device with the following beneficial effects: 1. By setting up an annular storage cabinet and a drying sealed door, the annular storage cabinet is rotated and arranged in the cabinet body through a rotating support assembly, and a plurality of independent storage slots are opened on the outer side. When the endoscope is cleaned, it is placed in the storage slot, and then the annular storage cabinet rotates the storage slot where the endoscope to be dried is placed to the position corresponding to the drying sealed door. The drying sealed door fits with the corresponding storage slot, and the storage slot where the endoscope to be dried is placed is vacuum-dried by using a vacuum pumping component and an infrared heater, thereby achieving the purpose of independent vacuum drying of the endoscope, avoiding the problem that the endoscope cleaned first needs to wait for a long time for the subsequent endoscope, and by using an independent storage slot to dry the endoscope, the space required for vacuuming and heating is reduced, and the efficiency of vacuum drying is greatly improved accordingly; In addition, after the endoscope is dried, it can continue to be stored in the storage slot, and the subsequent endoscopes to be dried can be placed in the remaining empty storage slots, so that the endoscopes can be stored and placed independently, ensuring the safety of the endoscope and the convenience of subsequent use.

[0017] 2. By setting up sliding rails and linked opening and closing components, the sliding rails adopt a special curved structure. When the sliding rails rotate with the annular locker, they will generate an outward thrust on the linked opening and closing components, so that the linked opening and closing components will drive the dry sealed door to move horizontally and separate from the annular locker, and fit with it when the storage slot is aligned with the dry sealed door. In this way, the dry sealed door can be opened when the annular locker rotates, and the dry sealed door can be automatically aligned and fitted with the storage slot. This structure utilizes the original rotational movement of the annular locker, and there is no need to set up additional driving equipment for the dry sealed door.

[0018] 3. By setting a sterilization sealing door and a sterilizer tank, the sterilization sealing door is set on the side of the drying sealing door and can move with the drying sealing door. It is also aligned with the storage slot. When the endoscope is dried, it can be directly stepped and rotated to the sterilization sealing door position, and the endoscope can be sterilized using the sterilizer tank. There is no need to take out the endoscope for sterilization, which is convenient for the subsequent storage of the endoscope. After the endoscope is dried, it does not need to be taken out and can be directly sterilized and stored aseptically, avoiding the risk of contamination when the endoscope is transferred back and forth. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional schematic diagram of the present invention; Figure 2 This is a schematic diagram of the maintenance box door of the present invention; Figure 3 This is a schematic cross-sectional view of the cabinet of the present invention; Figure 4 Schematic cross-sectional view of the storage component of the present invention; Figure 5 This is a schematic diagram of the connection between the skeleton and the rotating support assembly of the present invention; Figure 6 This is a three-dimensional schematic diagram of the linkage opening and closing components of the present invention; Figure 7 It is a three-dimensional schematic diagram of the endoscope placement component of the present invention; Figure 8 This is a three-dimensional schematic diagram of the friction rotating assembly of the present invention; Figure 9 This is a schematic diagram of the rotary support assembly of the present invention; Figure 10 This is a schematic diagram of the contactless drive component of the present invention; Figure 11 This is a schematic diagram of the connection between the sterilization sealing door and the drying sealing door of the present invention.

[0020] In the figure: 1. Base; 2. Cabinet; 3. Access door; 4. Inspection door; 5. Infrared heater; 6. Accessory door; 7. Sterilant tank; 8. Storage components; 801. Ring storage cabinet; 802. Storage slot; 803, rotating support assembly; 8031, supporting plate; 8032, fixing frame; 8033, roller seat; 8034, rotating seat; 8035, inner ring gear; 8036, first motor; 8037, circular gear; 9. Endoscope placement components; 901. Support frame; 902. Ring bracket; 903. Support platform; 904. Roller; 905. Through slot; 906, friction rotating assembly; 9061, supporting pulley; 9062, driving pulley; 9063, synchronous belt; 9064, first bevel gear; 9065, second bevel gear; 9066, driven magnetic coupling disc; 10. Slide rail; 11. Vacuum pumping component; 1101. Vacuum pump; 1102. First vacuum pumping tube; 1103. Second vacuum pumping tube; 12. Skeleton; 13. Ultraviolet disinfection lamp; 14. Linked opening and closing component; 1401. Fixing member; 1402. Fixing plate; 1403. Sliding rod; 1404. Sliding rack; 1405. Pin; 1406. Connecting member; 1407. First spring; 15. Dry and sealed door; 16. Contactless drive component; 1601. Connecting frame; 1602. Second motor; 1603. Active magnetic coupling disk; 17. Slide; 18. Movable connecting shaft; 19. Second spring; 20. Fixed connecting shaft; 21. Sterilization sealing door; 22. Second vacuum port; 23. First vacuum port; 24. Sealing gasket; 25. Temperature sensor; 26. First electromagnetic pressure relief valve; 27. Second electromagnetic pressure relief valve. DETAILED DESCRIPTION

[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-11 A digestive endoscope drying device comprises a base 1, a cabinet 2 is provided on the base 1, a take-in and put-out box door 3 is provided on the front of the cabinet 2, an inspection box door 4 is provided on the side, a frame 12 is provided in the center of the cabinet 2, and a storage component 8 is provided on the frame 12; The storage component 8 includes a rotating support assembly 803 provided on the frame 12. A circular storage cabinet 801 is provided on the side of the rotating support assembly 803. The circular storage cabinet 801 is provided with a plurality of storage slots 802 with outward openings. like Figure 3 and Figure 4 As shown, by providing an annular storage cabinet 801 and a drying and sealing door 15, the annular storage cabinet 801 is rotatably arranged in the cabinet body 2 through a rotating support assembly 803, and a plurality of independent storage slots 802 are opened on the outer side. When the endoscope is cleaned, it is placed in the storage slot 802, and then the annular storage cabinet 801 rotates the storage slot 802 where the endoscope to be dried is placed to the position corresponding to the drying and sealing door 15. The drying and sealing door 15 fits with the corresponding storage slot 802, and the vacuuming component 11 and the infrared heater 5 are used to vacuum dry the storage slot 802 where the endoscope to be dried is placed, thereby achieving the purpose of independent vacuum drying of the endoscope, avoiding the problem that the endoscope cleaned first needs to wait for a long time for the subsequent endoscope, and by using the independent storage slot 802 to dry the endoscope, the space required for vacuuming and heating is smaller, and the efficiency of vacuum drying is greatly improved accordingly; In addition, after the endoscope is dried, it can continue to be stored in the storage slot 802, and the subsequent endoscopes to be dried can be placed in the remaining empty storage slots 802, so that the endoscopes can be stored and placed independently, ensuring the safety of the endoscope and the convenience of subsequent use. In addition, when further explanation is needed, the outer opening of the storage slot 802 is a plane, that is, the plane projection of the annular storage cabinet 801 should be a polygon. This method utilizes the design structure of the plane of the storage slot 802 to make it fit more closely with the drying sealing door 15, and the sealing effect is more significant compared to the curved surface.

[0023] Linked opening and closing components 14 are provided on the frame 12 at the upper and lower parts of the annular locker 801. Slide rails 10 that cooperate with the linked opening and closing components 14 are provided at the top and bottom ends of the annular locker 801. The end surface of the linked opening and closing component 14 is provided with a dry sealing door 15 that fits with the storage slot 802 on one side of the annular locker 801. The position of the dry sealing door 15 corresponds to the maintenance box door 4. The dry sealing door 15 is provided with a sealing gasket 24 that fits with the outer side of the annular locker 801. like Figure 3 and Figure 4 As shown, by setting a slide rail 10 and a linkage opening and closing component 14, the slide rail 10 adopts a special curved structure. When the slide rail 10 rotates with the annular locker 801, it will generate an outward thrust on the linkage opening and closing component 14, so that the linkage opening and closing component 14 will drive the drying and sealing door 15 to move horizontally and separate from the annular locker 801, and fit with the storage groove 802 when it is aligned with the drying and sealing door 15. In this way, the drying and sealing door 15 can be opened when the annular locker 801 rotates, and the drying and sealing door 15 can be automatically aligned and fitted with the storage groove 802. This structure utilizes the original rotational movement of the annular locker 801, and there is no need to set an additional driving device for the drying and sealing door 15, and the drying and sealing door 15 can be automatically aligned with the storage groove 802.

[0024] An infrared heater 5 is provided in the drying and sealing door 15 and faces the storage tank 802. A temperature sensor 25 is provided in the infrared heater 5. A vacuum pumping component 11 is provided on the frame 12. A first vacuum pumping port 23 connected to the vacuum pumping component 11 is provided on the drying and sealing door 15. A first electromagnetic pressure relief valve 26 is provided below the drying and sealing door 15. like Figure 3 and Figure 11 As shown, by setting the infrared heater 5 and the first electromagnetic pressure relief valve 26, when the drying sealing door 15 is attached to the storage tank 802, the storage tank 802 will be in a closed state. At this time, the vacuum component 11 can extract the air therein to create a vacuum environment inside. Under the vacuum state, the boiling point of water is reduced. At this time, the infrared heater 5 can heat the storage tank 802, and the heating temperature is between 35 degrees Celsius and 60 degrees Celsius, depending on the material requirements of the endoscope. At this time, the water stains remaining in the endoscope will evaporate quickly, and the first electromagnetic pressure relief valve 26 can connect the inside and outside of the drying sealing door 15 after completing the drying work, so that the storage tank 802 is released from the vacuum state.

[0025] The linkage opening and closing component 14 includes a fixing member 1401 connected to the frame 12, a fixing plate 1402 is provided below the fixing member 1401, a slide rod 1403 is provided inside the fixing plate 1402, a slide rack 1404 is provided on the slide rod 1403 for horizontal sliding, a connector 1406 connected to the drying and sealing door 15 is provided at the front end of the slide rack 1404, a pin 1405 located in the slide rail 10 is provided below the slide rack 1404, and a first spring 1407 connected to the slide rack 1404 is sleeved on the slide rod 1403; like Figure 6 As shown, by setting a pin 1405 and a slide 1404, the pin 1405 is set in the slide rail 10 and is rotatably connected to the slide 1404. When the slide rail 10 rotates with the annular locker 801, the curved slide rail 10 will push the pin 1405 to move, and the pin 1405 will drive the slide 1404 to move horizontally on the slide rod 1403, and use the connecting piece 1406 to achieve the purpose of driving the drying and sealing door 15 to open and close, thereby achieving the effect of utilizing the original rotational motion of the annular locker 801 for linkage, saving the driving equipment and positioning equipment for the drying and sealing door 15, and the first spring 1407 set on the slide rod 1403 will apply tension to the slide 1404, so that the slide 1404 is always forced inward, compensating for the mechanical error of the slide rail 10, so that the drying and sealing door 15 can fit tightly with the storage slot 802.

[0026] The front end of the slide 1404 is provided with a slide groove 17 that horizontally slides with the connecting member 1406. The connecting member 1406 is provided with a movable connecting shaft 18. The slide 1404 is provided with a fixed connecting shaft 20. A second spring 19 is provided between the movable connecting shaft 18 and the fixed connecting shaft 20. like Figure 6 As shown, by setting a slide groove 17 and a second spring 19, the slide groove 17 can slide with the connecting frame 1601, so that the connecting member 1406 can move horizontally within a certain stroke in the slide groove 17, and the second spring 19 utilizes the connection with the fixed connecting shaft 20 and the movable connecting shaft 18 to apply a pulling force to the connecting member 1406. In this way, the connecting frame 1601 can be allowed to adjust its position to a certain extent, avoiding the problem of interference between the rotation of the annular storage cabinet 801 and the horizontal movement of the dry sealing door 15 due to mechanical mistouch.

[0027] The rotating support assembly 803 includes a support plate 8031 ​​connected to the frame 12 and a fixed frame 8032. The support plate 8031 ​​is provided with a roller seat 8033. The roller seat 8033 is rotatably provided with a rotating seat 8034 connected to the annular storage cabinet 801. The inner ring of the rotating seat 8034 is provided with an inner gear ring 8035. The fixed frame 8032 is provided with a first motor 8036. The output end of the first motor 8036 is provided with a circular gear 8037 that meshes with the inner gear ring 8035. like Figure 9 As shown, by setting a rotating seat 8034 and a roller seat 8033, the roller seat 8033 is fixed on the frame 12 using a support plate 8031, and the rotating seat 8034 is rotatably arranged on the roller seat 8033 and is fixedly connected to the annular locker 801. When the annular locker 801 needs to be rotated, the first motor 8036 drives the inner ring gear 8035 to rotate through the circular gear 8037, and the inner ring gear 8035 drives the annular locker 801 to rotate through the rotating seat 8034 connected thereto, thereby achieving the purpose of automatic position change of the storage slot 802.

[0028] A sterilization sealing door 21 is provided on the side of the drying sealing door 15 and is in contact with the adjacent storage slot 802. A second vacuum port 22 connected to the vacuum component 11 is provided on the sterilization sealing door 21. A second electromagnetic pressure relief valve 27 is provided under the sterilization sealing door 21. A sterilant tank 7 connected to the interior of the sterilization sealing door 21 is provided in the cabinet 2. An auxiliary material box door 6 is provided on the outside of the cabinet 2 at a position corresponding to the sterilization sealing door 21. like Figure 11 As shown, by setting a sterilization sealing door 21 and a sterilizer tank 7, the sterilization sealing door 21 is set on the side of the drying sealing door 15, can move with the drying sealing door 15, and is also aligned with the storage slot 802. When the endoscope is dried, it can be directly stepped and rotated to the position of the sterilization sealing door 21, and the sterilizer tank 7 is used to sterilize the endoscope. There is no need to take out the endoscope and then perform the sterilization operation, which is convenient for the subsequent storage of the endoscope. After the endoscope is dried, there is no need to take it out, and it can be directly sterilized and stored in a sterile manner, avoiding the risk of contamination when the endoscope is transferred back and forth.

[0029] A plurality of ultraviolet disinfection lamps 13 are provided inside the cabinet 2, and the ultraviolet disinfection lamps 13 are staggered with the drying and sealing doors 15 and the sterilization and sealing doors 21; like Figure 3 As shown, by setting up an ultraviolet disinfection lamp 13, the ultraviolet disinfection lamp 13 can irradiate the storage tank 802 that is not covered by the drying sealing door 15 and the sterilization sealing door 21, and regularly sterilize the endoscope inside the storage tank 802, so that the endoscope can be placed in the storage tank 802 stably for a long time, thereby achieving the purpose of sterile storage of the endoscope.

[0030] The vacuum pump 11 includes a vacuum pump 1101 disposed in the frame 12. The vacuum pump 1101 is provided with a first vacuum pipe 1102 communicating with the first vacuum port 23 and a second vacuum pipe 1103 communicating with the second vacuum port 22. like Figure 4 As shown, by setting up a vacuum pump 1101, the vacuum pump 1101 can use the first vacuum tube 1102 and the second vacuum tube 1103 to vacuum the storage tank 802 corresponding to the drying sealing door 15 and the sterilization sealing door 21. The drying efficiency is higher under the vacuum state and the permeability of the sterilizer is better.

[0031] An endoscope placement component 9 is provided in the storage tank 802. The endoscope placement component 9 includes a support frame 901 connected to the inner wall of the storage tank 802. The support frame 901 is provided with an annular bracket 902 with one side open. A support platform 903 is provided in the annular bracket 902. like Figure 3 and Figure 7 As shown, by setting up an endoscope placement component 9, the endoscope placement component 9 is provided with two, an operating end located at the upper part for placing the endoscope, and a connecting end located at the lower part for placing the endoscope, so that the endoscope can be stably fixed in the storage slot 802 and stretched out, avoiding the stacking of endoscopes affecting the drying and sterilization effects.

[0032] A roller 904 is rotatably mounted on the support 903, a through slot 905 is formed on the side of the annular bracket 902, a friction rotating assembly 906 is disposed within the through slot 905, and a contactless driving component 16 for driving the friction rotating assembly 906 is disposed on the frame 12; like Figure 5 and Figure 7As shown, by providing a friction rotating component 906 and a contactless driving component 16, the friction rotating component 906 can contact the endoscope, drive the endoscope to rotate slowly, so that the endoscope can change the direction of the infrared heater 5, ensure that the back of the endoscope can also be evenly heated, and avoid the problem of uneven heating on both sides of the endoscope causing reduced drying efficiency, and the contactless driving component 16 is provided outside the storage tank 802, and uses magnetic coupling to drive the friction rotating component 906, so that there is no need to provide a driving device in the storage tank 802, and there is no need to open a hole or groove in the storage tank 802, which will not affect the airtightness of the storage tank 802, and only needs to provide a contactless driving component 16 at the position corresponding to the drying sealing door 15 to drive the corresponding friction rotating component 906; In addition, a roller 904 is provided on the support platform 903, which can support the endoscope while reducing the friction between the endoscope and the annular bracket 902 by rotating, so that the rotation of the endoscope is smoother.

[0033] The friction rotation assembly 906 includes two support pulleys 9061 and a drive pulley 9062 that are rotatably arranged in the support frame 901, a synchronous belt 9063 located in the through groove 905 is provided between the two support pulleys 9061 and the drive pulley 9062, a first bevel gear 9064 is provided under the drive pulley 9062, a second bevel gear 9065 is engaged with the side of the first bevel gear 9064, and the other end of the second bevel gear 9065 is provided with a driven magnetic coupling disk 9066 that cooperates with the contactless drive component 16, and the contactless drive component 16 includes a connecting frame 1601 provided in the skeleton 12, a second motor 1602 is provided on the connecting frame 1601, and an active magnetic coupling disk 1603 that cooperates with the driven magnetic coupling disk 9066 is provided at the output end of the second motor 1602; like Figure 8 and Figure 10 As shown, by providing an active magnetic coupling disk 1603 and a driven magnetic coupling disk 9066, the active magnetic coupling disk 1603 and the driven magnetic coupling disk 9066 are built with staggered positive and negative magnets, so that the two can be attracted to each other through the air and rotate together. In this way, driving can be performed without contact, avoiding affecting the sealing performance of the storage tank 802. The synchronous belt 9063 can pass through the groove 905 and be placed in the annular bracket 902. When the endoscope is placed, it will fit against the outside of the endoscope and wrap the endoscope at a certain angle, so that it can drive the endoscope that fits against it to rotate when it moves. It should be noted that the rotation angle of the endoscope is less than 360, and it can rotate forward and reverse according to the rotation direction of the second motor 1602 to prevent the wire tube of the endoscope from being entangled. It should also be further noted that the support pulley 9061 supporting the synchronous belt 9063 has a tensioning structure to prevent the synchronous belt 9063 from loosening and falling off.

[0034] Working principle: The endoscope that needs to be dried is placed on the endoscope placement component 9 in the storage slot 802, and then the rotating support assembly 803 drives the annular storage cabinet 801 to rotate so that the corresponding storage slot 802 is aligned and fitted with the drying sealing door 15. Then the vacuum component 11 vacuums the storage slot 802 and uses the infrared heater 5 to heat it so that the water stains on the endoscope are quickly dried. Then the annular storage cabinet 801 is rotated to the position of the sterilization sealing door 21, and the gas sterilizer in the sterilizer tank 7 is used to sterilize the endoscope. Then, it is rotated to the other positions for storage following the annular storage cabinet 801, and disinfected regularly using the ultraviolet disinfection lamp 13.

[0035] The above are only specific embodiments of the present invention, but the technical features of the present invention are not limited thereto. Any simple changes, equivalent substitutions, or modifications based on the present invention to solve substantially the same technical problems and achieve substantially the same technical effects are all included in the scope of protection of the present invention.

Claims

1. A digestive endoscope drying device, comprising a base (1), characterized in that: A cabinet body (2) is provided on the base (1), a door for taking and placing boxes (3) is provided on the front of the cabinet body (2), and an inspection door (4) is provided on the side. A frame (12) is provided at the center of the cabinet body (2), and a storage component (8) is provided on the frame (12); The storage component (8) comprises a rotating support assembly (803) provided on a frame (12); a ring-shaped storage cabinet (801) is provided on a side of the rotating support assembly (803); and a plurality of storage slots (802) with outward openings are provided in the ring-shaped storage cabinet (801); The skeleton (12) is provided with a linkage opening and closing component (14) at the upper and lower parts of the annular locker (801); the top and bottom ends of the annular locker (801) are provided with slide rails (10) that cooperate with the linkage opening and closing component (14); the end surface of the linkage opening and closing component (14) is provided with a drying sealing door (15) that fits with the storage slot (802) on one side of the annular locker (801); the position of the drying sealing door (15) corresponds to the maintenance box door (4); and the drying sealing door (15) is provided with a sealing gasket (24) that fits with the outer side of the annular locker (801); An infrared heater (5) facing the storage tank (802) is provided in the drying and sealing door (15), a temperature sensor (25) is provided in the infrared heater (5), a vacuum pumping component (11) is provided on the frame (12), a first vacuum pumping port (23) connected to the vacuum pumping component (11) is provided on the drying and sealing door (15), and a first electromagnetic pressure relief valve (26) is provided below the drying and sealing door (15).

2. A digestive endoscope drying device according to claim 1, characterized in that: The linked opening and closing component (14) comprises a fixing member (1401) connected to the frame (12); a fixing plate (1402) is provided below the fixing member (1401); a sliding rod (1403) is provided inside the fixing plate (1402); a sliding rack (1404) is provided on the sliding rod (1403) for horizontal sliding; a connecting member (1406) connected to the drying and sealing door (15) is provided at the front end of the sliding rack (1404); a pin (1405) located in the sliding rail (10) is provided below the sliding rack (1404); and a first spring (1407) connected to the sliding rack (1404) is sleeved on the sliding rod (1403).

3. The digestive endoscope drying device according to claim 1, characterized in that: The rotating support assembly (803) comprises a supporting plate (8031) connected to the frame (12) and a fixing frame (8032); a roller seat (8033) is provided on the supporting plate (8031); a rotating seat (8034) connected to the annular storage cabinet (801) is rotatably provided on the roller seat (8033); an inner ring of the rotating seat (8034) is provided with an inner gear ring (8035); a first motor (8036) is provided on the fixing frame (8032); and an output end of the first motor (8036) is provided with a circular gear (8037) meshing with the inner gear ring (8035).

4. A digestive endoscope drying device according to claim 1, characterized in that: A sterilization sealing door (21) is provided on the side of the drying sealing door (15) and is in contact with the adjacent storage tank (802). A second vacuum port (22) connected to the vacuum component (11) is provided on the sterilization sealing door (21). A second electromagnetic pressure relief valve (27) is provided under the sterilization sealing door (21). A sterilant tank (7) communicating with the interior of the sterilization sealing door (21) is provided in the cabinet (2). An auxiliary material box door (6) is provided on the outside of the cabinet (2) at a position corresponding to that of the sterilization sealing door (21).

5. A digestive endoscope drying device according to claim 4, characterized in that: A plurality of ultraviolet disinfection lamps (13) are provided inside the cabinet (2), and the ultraviolet disinfection lamps (13) are staggered with the drying sealed door (15) and the sterilization sealed door (21).

6. The digestive endoscope drying device according to claim 2, characterized in that: The front end of the slide (1404) is provided with a slide groove (17) that horizontally slides with the connecting member (1406), the connecting member (1406) is provided with a movable connecting shaft (18), the slide (1404) is provided with a fixed connecting shaft (20), and a second spring (19) is provided between the movable connecting shaft (18) and the fixed connecting shaft (20).

7. The digestive endoscope drying device according to claim 4, characterized in that: The vacuum pump component (11) comprises a vacuum pump (1101) disposed within the frame (12); the vacuum pump (1101) is provided with a first vacuum pipe (1102) connected to the first vacuum port (23), and a second vacuum pipe (1103) connected to the second vacuum port (22).

8. The digestive endoscope drying device according to claim 1, characterized in that: An endoscope placement component (9) is provided in the storage tank (802), and the endoscope placement component (9) comprises a support frame (901) connected to the inner wall of the storage tank (802), an annular bracket (902) with an opening on one side is provided on the support frame (901), and a support platform (903) is provided in the annular bracket (902).

9. The digestive endoscope drying device according to claim 8, characterized in that: A roller (904) is rotatably provided on the support platform (903), a through slot (905) is provided on the side of the annular bracket (902), a friction rotating assembly (906) located in the through slot (905) is provided in the support frame (901), and a contactless driving component (16) for driving the friction rotating assembly (906) is provided on the skeleton (12); The friction rotating assembly (906) comprises two supporting pulleys (9061) and a driving pulley (9062) which are rotatably arranged in a supporting frame (901); a synchronous belt (9063) located in a through groove (905) is provided between the two supporting pulleys (9061) and the driving pulley (9062); a first bevel gear (9064) is provided under the driving pulley (9062); a second bevel gear (9065) is meshed with a side surface of the first bevel gear (9064); and a driven magnetic coupling disk (9066) which cooperates with a contactless driving component (16) is provided at the other end of the second bevel gear (9065).

10. The digestive endoscope drying device according to claim 9, characterized in that: The contactless drive component (16) comprises a connecting frame (1601) arranged in the frame (12), a second motor (1602) being provided on the connecting frame (1601), and an active magnetic coupling disk (1603) cooperating with a driven magnetic coupling disk (9066) being provided at an output end of the second motor (1602).