Disinfection device for sterilizing oral surgical instrument consumables and use method of disinfection device

By designing a disinfection device with two disinfection spaces and a rotating mechanism, the problem of oral surgical instruments being unable to turn over during disinfection and left to stand after high-temperature disinfection is solved, achieving more efficient disinfection quality and operation convenience.

CN119971088APending Publication Date: 2025-05-13THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
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Patent Information

Application Number
CN202510335143.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Existing oral surgical instruments cannot be turned over during disinfection, and they need to stand for a long time after high-temperature disinfection, which reduces the disinfection efficiency.

Method used

A disinfection device is designed, including two disinfection spaces and a rotating mechanism, which can irradiate the surgical instruments after high temperature disinfection for a long time, and achieve comprehensive disinfection treatment through a serrated bearing plate and a multi-angle adjustment mechanism.

Benefits of technology

It improves the disinfection quality of surgical instruments, simplifies the operating procedures of staff, and ensures comprehensive disinfection and treatment of surgical instruments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a disinfection device for sterilizing oral cavity surgical instrument consumables and a use method thereof.The disinfection device comprises a disinfection cabinet body, a high-temperature sterilization assembly, a high-pressure sterilization assembly, a high-pressure sterilization assembly and a high-pressure sterilization assembly, the high-temperature sterilization assembly is fixedly connected to the middle position of the side wall of the disinfection cabinet body and is used for converting liquid water into gas water, so that the gas water is discharged into the disinfection cabinet body to perform high-temperature disinfection on a large number of surgical instruments. According to the disinfection cabinet, the two spaced disinfection spaces are arranged, so that surgical instruments disinfected at high temperature can be subjected to long-time irradiation sterilization again, the disinfection quality of the surgical instruments is improved, and a rotating mechanism is arranged in the disinfection cabinet, so that a large number of surgical instruments can be converted between the two spaces, and the disinfection efficiency is improved. And meanwhile, a sawtooth bearing plate and a multi-angle adjusting mechanism which are matched with each other are arranged, so that the surgical instruments can be comprehensively disinfected.
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Description

Technical Field

[0001] The present invention relates to the technical field of surgical instrument applications, and in particular to a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same. Background Art

[0002] As 3D printing has gradually gained widespread development in the medical field, 3D printed customized medical devices can assist surgeons in integrating surgical paths into the surgical field in three dimensions. Especially in the field of oral medicine, various 3D printed guides, brackets, dentures, etc. are widely used in oral treatment. Compared with traditional metal surgical instruments, some 3D printed resin materials will deform or change physical characteristics during conventional high-temperature steam sterilization, which will affect the accuracy of the operation. At present, this type of oral surgical consumables and tools are mostly sterilized by chemical immersion, ultraviolet irradiation, etc., but these methods are not sterilization methods recognized by national standards. Low-temperature irradiation disinfection is still the most reliable sterilization method for 3D printed customized medical devices and consumables at this stage.

[0003] When existing surgical instruments are sterilized, staff are generally required to place them inside a storage rack and then put them into a high-temperature sterilizer. Since a large number of surgical instruments are in a static state, the surgical instruments cannot be turned over during sterilization, and they need to be left to stand for a period of time after high-temperature sterilization before they can be taken out. During the waiting period, the efficiency of the disinfection of the surgical instruments is reduced. Therefore, the present invention proposes a disinfection device for sterilizing consumables of oral surgical instruments and a method of using the same. Summary of the invention

[0004] The technical problem to be solved by the present invention is to provide a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same. By providing two separated disinfection spaces, it is possible to perform long-term irradiation sterilization again on surgical instruments that have been sterilized at high temperature, thereby improving the disinfection quality of surgical instruments. A rotating mechanism is provided inside the disinfection cabinet, so that a large number of surgical instruments can be converted between the two spaces, which is convenient for staff to operate when taking and placing. At the same time, mutually cooperating serrated receiving plates and multi-angle adjustment mechanisms are provided, so that the surgical instruments can be fully disinfected.

[0005] In order to solve the above technical problems, a technical solution adopted by the present invention is: to provide a disinfection device for sterilizing oral surgical instrument consumables, including a disinfection cabinet, which is used to store surgical instruments that need to be disinfected so that they can be disinfected and sterilized in a sealed space; A high-temperature sterilization component, which is fixedly connected to the middle of the side wall of the disinfection cabinet and is used to convert liquid water into gaseous state, so as to be discharged into the interior of the disinfection cabinet to perform high-temperature sterilization on a large number of surgical instruments; A mounting frame, which is bolted to the interior of the disinfection cabinet and is used to fix the position of the surgical instrument to be disinfected, so that the mounting frame and the disinfection cabinet form a closed disinfection space; A rotating mechanism, which is installed inside the mounting frame and is used to rotate a large number of surgical instruments placed therein by 180 degrees, thereby transferring the surgical instruments sterilized at high temperature to the irradiation sterilization space for a long period of re-sterilization operation; A multi-angle adjustment mechanism, which is fixedly connected to the inside of the rotating mechanism and is used to suspend the surgical instruments that need to be sterilized; The radiation sterilization module is fixedly connected to the inner wall of the disinfection cabinet and is used to perform ultraviolet disinfection operations on surgical instruments that have been sterilized at high temperature.

[0006] The present invention is further configured as follows: a sealed cabinet door is symmetrically hingedly connected to the side wall of the disinfection cabinet near the front wall, and an inspection plate is boltedly connected to the front wall of the disinfection cabinet near the bottom; A control panel is installed near the top of the front wall of one of the sealed cabinet doors.

[0007] The above technical solution makes it easy to use a sealed cabinet door to seal the internal space of the disinfection cabinet, thereby improving the internal disinfection quality.

[0008] The present invention is further configured as follows: the high-temperature sterilization component includes a high-temperature evaporator and a dryer that are closely arranged, and an air inlet pipe is arranged at the top center of the high-temperature evaporator and the dryer to penetrate the side wall of the disinfection cabinet, and an exhaust pipe is fixedly connected to the side wall of the disinfection cabinet near the middle.

[0009] Through the above technical solution, the high-temperature sterilization component is started, so that high-temperature gas enters into the interior of the disinfection cabinet through the air inlet pipe. Under the internal sealed state, the surgical instruments inside are sterilized at high temperature. After a certain period of time, the internal high-temperature gas is discharged through the exhaust pipe, and the surgical instrument space is dried using a dryer to prevent water vapor from adhering to the surface of the surgical instrument.

[0010] The present invention is further configured as follows: the mounting frame is configured as an I-shaped frame as a whole, and receiving plates are symmetrically bolted to the top and bottom of the mounting frame near the side walls, and the opposing surfaces of the two receiving plates are both configured in a serrated shape.

[0011] Through the above technical solution, the receiving plate can be used to preventively receive the surgical instrument after internal rotation to prevent the surgical instrument from falling, and the receiving plate can be used to store and retrieve the surgical instrument.

[0012] The present invention is further configured as follows: the rotating mechanism includes a fixing frame installed at the bottom of the mounting frame, the top of the fixing frame is fixedly connected to a rotating motor, the end face of the driving shaft of the rotating motor is fixedly connected to a driving gear, the outer wall of the driving gear is meshingly connected to a driven gear, the inner wall of the driven gear is interference-connected to a rotating shaft, the outer wall of the rotating shaft is sleeved with a rotating plate, and the multi-angle adjustment mechanism is installed on the rotating plate.

[0013] Through the above technical solution, the rotating motor is started, and its output shaft drives the driving gear on the end face to rotate, so that the meshing connected driven gear drives the connected rotating plate to rotate, and then the surgical instrument installed on the rotating plate is rotated 180 degrees, so that the surgical instrument is rotated into the space irradiated by ultraviolet rays.

[0014] The present invention is further configured as follows: the end surface of the rotating shaft passes through the top and bottom of the rotationally connected mounting frame, and the bottom extends to the fixing frame and is rotationally connected thereto.

[0015] Through the above technical solution, when the rotating plate is rotated, it can be stably rotated on the mounting frame through the rotating shaft.

[0016] The present invention is further configured such that the front and rear walls of the rotating plate are respectively arranged in sealing contact with the sealing strips arranged on the inner wall of the mounting frame.

[0017] The above technical solution facilitates the sealing between the rotating plate and the sealing strip, thereby preventing leakage of internal gas during high-temperature sterilization and improving the internal sealing type.

[0018] The present invention is further configured as follows: the multi-angle adjustment mechanism includes an adjusting motor that is bolted and connected to the rotating plate, the end face of the driving shaft of the adjusting motor is fixedly connected to a driving pulley, the outer wall of the driving pulley is meshed and connected with a toothed belt, the inner wall of the toothed belt is symmetrically meshed and connected with a driven pulley away from the outer wall of the driving pulley, the inner walls of the two driven pulleys are interference-connected with a transmission shaft, the two transmission shafts penetrate and are rotatably connected to the rotating plate, and the end faces are fixedly connected with bevel gears A, the outer walls of the two bevel gears A are respectively meshed and connected with bevel gears B, the inner walls of the two bevel gears B are interference-connected with connecting shafts, the two connecting shafts are respectively rotatably connected to positioning blocks installed on the rotating plate, the bottoms of the two connecting shafts are movably connected to a movable connecting frame through a pin shaft, the bottoms of the two movable connecting frames are fixedly connected to a rotating disk, and the bottoms and outer walls of the two rotating disks are fixedly connected with a plurality of hooks.

[0019] Through the above technical solution, the adjustment motor is started, and its output shaft drives the rotation of the driving pulley, which drives the rotation of the driven pulley through the toothed belt meshing with the outer wall, so that the internally connected transmission shaft drives the bevel gear A on the end face to rotate, and the bevel gear B meshing with it drives the connected turntable on the connecting shaft to rotate, so that multiple surgical instruments rotate.

[0020] The present invention is further configured as follows: the irradiation sterilization module comprises a fixing plate bolted to the inner wall of the disinfection cabinet, and the side wall of the fixing plate is evenly fixedly connected with a plurality of cobalt 60 gamma ray sources.

[0021] Through the above technical scheme, it is convenient to use the cobalt 60 gamma ray source to disinfect and sterilize surgical instruments for a long time, and with the cooperation of the fixing plate, the ultraviolet rays can be reflected so that they can irradiate different parts of the surgical instruments.

[0022] On the other hand, a method for using a disinfection device for sterilizing oral surgical instrument consumables is provided, comprising the following steps: S1. First, the surgical instruments to be sterilized are hung on the multiple hooks on the turntable, and then the two turntables are fixed on the connecting shaft using a pin through the movable connecting frame at the top; S2, then start the high temperature sterilization component through the control panel on the sealed cabinet door, so that the high temperature gas enters the interior of the disinfection cabinet through the air inlet pipe, and in the sealed state inside, the surgical instruments inside are sterilized at high temperature, and after a certain period of time, the high temperature gas inside is discharged through the exhaust pipe, and the high temperature generated by the internal dryer is used to quickly dry the moisture adhering to the instruments; S3, then start the rotating motor at the bottom, and its output shaft drives the driving gear on the end surface to rotate, so that the meshing driven gear drives the connected rotating plate to rotate, and then the surgical instrument installed on the rotating plate is rotated 180 degrees, so that the surgical instrument is rotated into the space irradiated by ultraviolet rays; S4, then start the adjustment motor, and its output shaft drives the rotation of the driving pulley, and the toothed belt meshing with the outer wall drives the rotation of the connected driven pulley, so that the internally connected transmission shaft drives the bevel gear A on the end surface to rotate, and the bevel gear B meshing with it drives the connected turntable on the connecting shaft to rotate, so that multiple surgical instruments rotate; S5. Finally, the cobalt 60 gamma ray source is started. The ultraviolet rays irradiated by it can disinfect and sterilize the rotating surgical instruments from multiple sides. Under the action of the two serrated receiving plates and the fixed plate, the irradiated ultraviolet rays are refracted multiple times inside the space, thereby being able to perform comprehensive and long-term disinfection treatment on the rotating surgical instruments.

[0023] The beneficial effects of the present invention are as follows: 1. The disinfection device and the use method thereof for sterilizing oral surgical instrument consumables proposed by the present invention are provided with two separated disinfection spaces, so that the surgical instruments after high-temperature disinfection can be irradiated and sterilized again for a long time, thereby improving the disinfection quality of the surgical instruments; 2. The disinfection device and the method of using the disinfection device for sterilizing oral surgical instruments and consumables proposed by the present invention provide a rotating mechanism inside the disinfection cabinet, so that a large number of surgical instruments can be converted between two spaces, which is convenient for the staff to operate when taking and placing; 3. The disinfection device and use method for sterilizing oral surgical instrument consumables proposed in the present invention are provided with a serrated receiving plate and a multi-angle adjustment mechanism that cooperate with each other, so that the surgical instruments can be fully disinfected. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a structural diagram of a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same according to the present invention; Figure 2 It is a first exploded view of a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same according to the present invention; Figure 3 A second exploded view of a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same according to the present invention; Figure 4 It is a structural diagram of the interior of a disinfection cabinet in a disinfection device for sterilizing oral surgical instrument consumables and a method for using the same according to the present invention; Figure 5 It is a first structural diagram of the installation of a mounting frame and a rotating plate in a disinfection device for sterilizing oral surgical instrument consumables and a method for using the same according to the present invention; Figure 6 It is a second structural diagram of the installation of a mounting frame and a rotating plate in a disinfection device for sterilizing oral surgical instrument consumables and a method for using the same according to the present invention; Figure 7 It is a structural diagram of a mounting frame in a disinfection device for sterilizing oral surgical instrument consumables and a method for using the same according to the present invention; Figure 8 It is a structural diagram of a multi-angle adjustment mechanism in a disinfection device for sterilizing oral surgical instrument consumables and a method for using the same according to the present invention.

[0025] In the figure: 100, disinfection cabinet body; 101, sealed cabinet door; 102, inspection panel; 200, high temperature sterilization component; 201, high temperature evaporator; 202, dryer; 203, air inlet pipe; 204, exhaust pipe; 300, mounting frame; 301, receiving plate; 302, sealing strip; 400, rotating mechanism; 401, fixed frame; 402, rotating motor; 403, driving gear; 404, driven gear; 405, rotating shaft; 406, rotating plate; 500, multi-angle adjustment mechanism; 501, adjustment motor; 502, driving pulley; 503, toothed belt; 504, driven pulley; 505, transmission shaft; 506, bevel gear A; 507, bevel gear B; 508, connecting shaft; 509, movable connecting frame; 510, turntable; 511, hook; 600. Irradiation sterilization module; 601. Fixing plate; 602. Cobalt 60 gamma ray source. DETAILED DESCRIPTION

[0026] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the protection scope of the present invention.

[0027] like Figure 1-Figure 4 As shown, a disinfection device for sterilizing oral surgical instrument consumables and a method of using the same include a disinfection cabinet 100 for storing surgical instruments that need to be disinfected so that they can be disinfected in a sealed space. The side walls of the disinfection cabinet 100 are symmetrically hinged with sealed cabinet doors 101 near the front wall, and the front wall of the disinfection cabinet 100 is bolted with an inspection plate 102 near the bottom. A control panel is installed on the front wall of one of the sealed cabinet doors 101 near the top, so that the sealed cabinet door 101 can be used to seal the internal space of the disinfection cabinet 100 to improve the internal disinfection quality.

[0028] like Figure 4 As shown, the high-temperature sterilization component 200 includes a high-temperature evaporator 201 and a dryer 202 that are closely arranged. The air inlet pipe 203 is arranged at the top center of the high-temperature evaporator 201 and the dryer 202 to penetrate the side wall of the disinfection cabinet 100. The side wall of the disinfection cabinet 100 is penetrated and fixedly connected with an exhaust pipe 204 near the middle. The high-temperature sterilization component 22 is started to allow high-temperature gas to enter the interior of the disinfection cabinet 100 through the air inlet pipe 203. In the sealed internal state, the surgical instruments inside are sterilized at high temperature. After a certain period of time, the internal high-temperature gas is discharged through the exhaust pipe 204, and the dryer 202 is used to dry the surgical instrument space to prevent water vapor from adhering to the surface of the surgical instrument.

[0029] like Figure 5 and Figure 7As shown, the mounting frame 300 is bolted to the inside of the disinfection cabinet 100, and is used to fix the position of the surgical instruments that need to be disinfected, so that the mounting frame 300 cooperates with the disinfection cabinet 100 to form a closed disinfection space. The mounting frame 300 is arranged in an I-shape as a whole, and the top and bottom of the mounting frame 300 are symmetrically bolted with receiving plates 301 near the side walls, and the opposite surfaces of the two receiving plates 301 are serrated. The receiving plates can be used to prevent surgical instruments from rotating inside and prevent them from falling. The receiving plates can be used to store and retrieve them.

[0030] like Figure 6 and Figure 8 As shown, the rotating mechanism 400 is installed inside the mounting frame 300, and is used to rotate a large number of surgical instruments placed therein by 180 degrees, so as to transfer the surgical instruments after high-temperature sterilization to the irradiation sterilization space for a long time of re-sterilization operation. The rotating mechanism 400 includes a fixed frame 401 installed at the bottom of the mounting frame 300, and the top of the fixed frame 401 is fixedly connected with a rotating motor 402, and the end face of the driving shaft of the rotating motor 402 is fixedly connected with a driving gear 403, and the outer wall of the driving gear 403 is meshingly connected with a driven gear 404, and the inner wall of the driven gear 404 is interference-connected with a rotating shaft 405, and the end face of the rotating shaft 405 passes through the top and bottom of the rotating and connecting mounting frame 300, and the bottom extends to the fixed frame 401, and is rotatably connected thereto, so as to facilitate the rotation of the rotating plate 406. When rotating, it can stably rotate on the mounting frame 300 through the rotating shaft 405. The outer wall of the rotating shaft 405 is sleeved with a rotating plate 406. The multi-angle adjustment mechanism 500 is installed on the rotating plate 406. The rotating motor 402 is started, and its output shaft drives the rotation of the driving gear 403 on the end face, so that the meshing connected driven gear 404 drives the connected rotating plate 406 to rotate, and then the surgical instrument installed on the rotating plate 406 is rotated 180 degrees, so that the surgical instrument is rotated to the inside of the space irradiated by ultraviolet rays. The front and rear walls of the rotating plate 406 are respectively sealed and fitted with the sealing strip 302 set on the inner wall of the mounting frame 300, so that the rotating plate 406 and the sealing strip 302 are sealed to prevent leakage of internal gas during high-temperature sterilization and improve the internal sealing type.

[0031] like Figure 5-Figure 8As shown, the multi-angle adjustment mechanism 500 is fixedly connected to the inside of the rotating mechanism 400, and is used for suspending the position of the surgical instrument that needs to be sterilized. The multi-angle adjustment mechanism 500 includes an adjustment motor 501 that is bolted to the rotating plate 406. The end face of the driving shaft of the adjustment motor 501 is fixedly connected to a driving pulley 502. The outer wall of the driving pulley 502 is meshed with a toothed belt 503. The inner wall of the toothed belt 503 is symmetrically meshed with a driven pulley 504 away from the outer wall of the driving pulley 502. The inner walls of the two driven pulleys 504 are both interference-connected with transmission shafts 505. The two transmission shafts 505 are both penetrated and rotatably connected to the rotating plate 406, and the end faces are fixedly connected with bevel gears A506. The outer walls of the two bevel gears A506 are respectively meshed with bevel gears B507. The inner walls of 507 are interference-connected with connecting shafts 508, and the two connecting shafts 508 are rotatably connected to the positioning blocks installed on the rotating plate 406 respectively. The bottoms of the two connecting shafts 508 are movably connected to movable connecting frames 509 through pins, and the bottoms of the two movable connecting frames 509 are fixedly connected to turntables 510. The bottoms and outer walls of the two turntables 510 are fixedly connected with multiple hooks 511. Start the adjusting motor 501, and its output shaft drives the rotation of the active pulley 502, and the toothed belt 503 meshing with the outer wall drives the rotation of the connected driven pulley 504, so that the internally connected transmission shaft 505 drives the end face bevel gear A to rotate, so that the bevel gear B507 meshing with it drives the connected turntable 510 on the connecting shaft 508 to rotate, so that multiple surgical instruments rotate.

[0032] like Figure 4 As shown, the irradiation sterilization module 600 is fixedly connected to the inner wall of the disinfection cabinet 100, and is used for performing ultraviolet disinfection operations on surgical instruments after high-temperature sterilization. The irradiation sterilization module 600 includes a fixing plate 601 bolted to the inner wall of the disinfection cabinet 100, and the side wall of the fixing plate 601 is evenly fixedly connected with multiple cobalt 60γ ray sources 602, which is convenient for using the cobalt 60γ ray source 602 to perform long-term disinfection and sterilization of surgical instruments, and with the cooperation of the fixing plate 601, the ultraviolet rays can be reflected so that they can irradiate different parts of the surgical instruments.

[0033] like Figure 1-Figure 8 As shown, a method for using a disinfection device for sterilizing oral surgical instrument consumables comprises the following steps; S1. First, the surgical instruments to be sterilized are hung on the multiple hooks 511 on the turntable 510, and then the two turntables 510 are fixed on the connecting shaft 508 by using the pins through the movable connecting frame 509 at the top; S2, then start the high temperature sterilization component 200 through the control panel on the sealed cabinet door 101, so that the high temperature gas enters the interior of the disinfection cabinet 100 through the air inlet pipe 203, and in the sealed state inside, the surgical instruments inside are sterilized at high temperature, and after a certain period of time, the high temperature gas inside is discharged through the exhaust pipe 204, and the high temperature generated by the internal dryer 202 is used to quickly dry the moisture adhering to the instruments; S3, then start the rotating motor 402 at the bottom, and its output shaft drives the driving gear 403 at the end surface to rotate, so that the meshing driven gear 404 drives the connected rotating plate 406 to rotate, and then the surgical instrument installed on the rotating plate 406 is rotated 180 degrees, so that the surgical instrument is rotated into the space irradiated by ultraviolet rays; S4, then start the adjustment motor 501, and its output shaft drives the rotation of the driving pulley 502, and the toothed belt 503 meshing with the outer wall drives the rotation of the connected driven pulley 504, so that the internally connected transmission shaft 505 drives the bevel gear A on the end surface to rotate, so that the bevel gear B507 meshing with it drives the connected turntable 510 on the connecting shaft 508 to rotate, so that multiple surgical instruments rotate; S5. Finally, the cobalt 60 gamma ray source 602 is started. The ultraviolet rays irradiated by it can disinfect and sterilize the rotating surgical instruments from multiple sides. Under the action of the two serrated receiving plates 301 and the fixed plate 601, the irradiated ultraviolet rays are refracted multiple times inside the space, thereby being able to perform comprehensive and long-term disinfection treatment on the rotating surgical instruments.

[0034] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A disinfection device for sterilizing oral surgical instrument consumables, characterized in that: include Disinfection cabinet (100); A high-temperature sterilization component (200), the high-temperature sterilization component (200) being fixedly connected to the middle of the side wall of the disinfection cabinet (100) and used for converting liquid water into gas; A mounting frame (300), the mounting frame (300) being bolted to the interior of the disinfection cabinet (100) and used to fix the position of a surgical instrument to be disinfected; A rotating mechanism (400), the rotating mechanism (400) being installed inside the mounting frame (300) and used to rotate a large number of surgical instruments placed therein by 180 degrees; A multi-angle adjustment mechanism (500), the multi-angle adjustment mechanism (500) being fixedly connected to the interior of the rotating mechanism (400) and used for suspending the position of a surgical instrument to be sterilized; A radiation sterilization module (600) is fixedly connected to the inner wall of the disinfection cabinet (100) and is used to perform ultraviolet disinfection operations on surgical instruments that have been sterilized by high temperature.

2. A disinfection device for sterilizing oral surgical instrument consumables according to claim 1, characterized in that: A sealed cabinet door (101) is symmetrically hingedly connected to the side wall of the disinfection cabinet (100) near the front wall, and an inspection plate (102) is boltedly connected to the front wall of the disinfection cabinet (100) near the bottom. A control panel is installed near the top of the front wall of one of the sealed cabinet doors (101).

3. A disinfection device for sterilizing oral surgical instrument consumables according to claim 1, characterized in that: The high-temperature sterilization assembly (200) comprises a high-temperature evaporator (201) and a dryer (202) which are closely arranged. An air inlet pipe (203) is arranged at the top center of the high-temperature evaporator (201) and the dryer (202) to penetrate the side wall of the disinfection cabinet (100). An exhaust pipe (204) is fixedly connected to the side wall of the disinfection cabinet (100) near the middle.

4. A disinfection device for sterilizing oral surgical instrument consumables according to claim 1, characterized in that: The mounting frame (300) is arranged in an I-shape as a whole, and receiving plates (301) are symmetrically bolted to the top and bottom of the mounting frame (300) near the side wall, and the opposing surfaces of the two receiving plates (301) are arranged in a serrated shape.

5. A disinfection device for sterilizing oral surgical instrument consumables according to claim 1, characterized in that: The rotating mechanism (400) comprises a fixed frame (401) mounted on the bottom of the mounting frame (300); a rotating motor (402) is fixedly connected to the top of the fixed frame (401); a driving gear (403) is fixedly connected to the end face of the driving shaft of the rotating motor (402); an outer wall of the driving gear (403) is meshingly connected to a driven gear (404); an inner wall of the driven gear (404) is interference-connected to a rotating shaft (405); a rotating plate (406) is sleeved on the outer wall of the rotating shaft (405); and the multi-angle adjustment mechanism (500) is mounted on the rotating plate (406).

6. A disinfection device for sterilizing oral surgical instrument consumables according to claim 5, characterized in that: The end surface of the rotating shaft (405) passes through the top and bottom of the rotating connection mounting frame (300), and the bottom extends to the fixing frame (401) and is rotationally connected thereto.

7. A disinfection device for sterilizing oral surgical instrument consumables according to claim 5, characterized in that: The front and rear walls of the rotating plate (406) are respectively arranged to seal and fit with the sealing strip (302) provided on the inner wall of the mounting frame (300).

8. A disinfection device for sterilizing oral surgical instrument consumables according to claim 5, characterized in that: The multi-angle adjustment mechanism (500) comprises an adjustment motor (501) bolted to a rotating plate (406); the end face of a drive shaft of the adjustment motor (501) is fixedly connected to a driving pulley (502); the outer wall of the driving pulley (502) is meshedly connected to a toothed belt (503); the inner wall of the toothed belt (503) is symmetrically meshedly connected to a driven pulley (504) away from the outer wall of the driving pulley (502); the inner walls of the two driven pulleys (504) are both interference-connected to transmission shafts (505); the two transmission shafts (505) are both penetrated and rotatably connected to the rotating plate (406), and the end faces are both fixedly connected to the driving pulley (502); A bevel gear A (506) is connected, and the outer walls of the two bevel gears A (506) are respectively meshed and connected with bevel gears B (507), and the inner walls of the two bevel gears B (507) are both interference-connected with connecting shafts (508), and the two connecting shafts (508) are respectively rotatably connected to positioning blocks installed on the rotating plate (406), and the bottoms of the two connecting shafts (508) are movably connected to movable connecting frames (509) through pins, and the bottoms of the two movable connecting frames (509) are both fixedly connected to rotating disks (510), and the bottoms and outer walls of the two rotating disks (510) are both fixedly connected with a plurality of hooks (511).

9. A disinfection device for sterilizing oral surgical instrument consumables according to claim 1, characterized in that: The radiation sterilization module (600) comprises a fixing plate (601) bolted to the inner wall of the disinfection cabinet (100), and a plurality of cobalt-60 gamma-ray sources (602) are evenly fixedly connected to the side wall of the fixing plate (601).

10. A method for using a disinfection device for sterilizing oral surgical instrument consumables according to any one of claims 1 to 9, characterized in that: The steps include: S1. First, the surgical instruments to be sterilized are hung on the multiple hooks (511) on the turntable (510), and then the two turntables (510) are fixed on the connecting shaft (508) by using a pin through the movable connecting frame (509) at the top; S2, then starting the high-temperature sterilization component (200) through the control panel on the sealed cabinet door (101), so that the high-temperature gas enters the interior of the disinfection cabinet (100) through the air inlet pipe (203), and in the sealed state inside, the surgical instruments inside are sterilized at high temperature. After a certain period of time, the high-temperature gas inside is discharged through the exhaust pipe (204), and the high temperature generated by the internal dryer (202) is used to quickly dry the moisture adhering to the instruments; S3, then starting the rotating motor (402) at the bottom, and its output shaft drives the driving gear (403) at the end surface to rotate, so that the meshing driven gear (404) drives the connected rotating plate (406) to rotate, and then the surgical instrument installed on the rotating plate (406) is rotated 180 degrees, so that the surgical instrument is rotated into the space irradiated by ultraviolet rays; S4, then starting the adjustment motor (501), the output shaft of which drives the driving pulley (502) to rotate, and the toothed belt (503) meshing with the outer wall drives the connected driven pulley (504) to rotate, thereby causing the internally connected transmission shaft (505) to drive the bevel gear A on the end surface to rotate, and causing the bevel gear B (507) meshing with it to drive the connected turntable (510) on the connecting shaft (508) to rotate, so that the multiple surgical instruments rotate; S5. Finally, the cobalt 60 gamma ray source (602) is started, and the ultraviolet rays irradiated therefrom can sterilize and disinfect the rotating surgical instruments from multiple sides. Furthermore, under the action of the two serrated receiving plates (301) and the fixed plate (601), the irradiated ultraviolet rays are refracted multiple times inside the space, thereby being able to perform a comprehensive and long-term disinfection treatment on the rotating surgical instruments.