Disinfection and sterilization device for artery stitching instrument

By designing an arterial suture disinfection and sterilization device containing a disinfection cabinet, an ultrasonic vibrator and a limiting mechanism, the problem of difficult to clean the blood adhesion of the holding part is solved, and the stable cleaning and comprehensive disinfection and sterilization effect of the arterial suture is achieved.

CN120242104AInactive Publication Date: 2025-07-04FENGCHENG HOSPITAL FENGXIAN DISTRICT SHANGHAI
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Patent Information

Application Number
CN202510616442.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-07-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the disinfection and sterilization process of existing arterial suture devices, blood is easily adhered to the through holes of the holding part and is difficult to clean, resulting in the risk of cross-infection, and it is easy to damage during the cleaning process or affect the suture accuracy.

Method used

A disinfection and sterilization device including a disinfection cabinet, an ultrasonic vibrator and a cleaning tank was designed. By vibrating the water in the cleaning tank through ultrasonic vibration, combining the stabilization component and the limiting mechanism, the stability and thoroughness of the arterial stapler during cleaning and disinfection process is ensured.

Benefits of technology

It realizes thorough cleaning and comprehensive disinfection and sterilization of arterial staplers, prevents cross infection and equipment damage, and ensures the precision and safety of the staplers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of stitching instruments, in particular to an artery stitching instrument disinfection and sterilization device which comprises a disinfection cabinet, and an ultrasonic vibrator and a cleaning tank are arranged on the disinfection cabinet; an ultrasonic vibrator is arranged below the cleaning tank and is used for driving water in the cleaning tank to vibrate; a stabilizing assembly is arranged in the disinfection cabinet, a cleaning mechanism is arranged in the disinfection cabinet, the cleaning mechanism moves up and down in the disinfection cabinet, and the stabilizing assembly is matched with the cleaning mechanism to fix the artery stitching instrument; a limiting mechanism is arranged on the disinfection cabinet and is used for limiting the cleaning mechanism after the cleaning mechanism ascends; after the limiting mechanism is separated from the cleaning mechanism, the artery stitching instrument moves from the interior of the cleaning mechanism.
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Description

Technical Field

[0001] The present invention relates to the field of staplers, and more specifically to a disinfection and sterilization device for arterial staplers. Background Art

[0002] Before the advent of arterial staplers, for some aortic diseases, thoracotomy and laparotomy were usually required. The surgery would have a large incision, and sometimes a combined thoracic incision was also needed. Moreover, the patient needed a long period of recuperation after the surgery. Currently, with arterial staplers, blood vessels can be sutured with simple operation, small wounds, and easy recovery.

[0003] Since arterial staplers are not disposable medical supplies and are expensive, they need to be disinfected and sterilized for repeated use after use. Since an arterial stapler consists of a holding part and a suturing part, during the disinfection and sterilization process, blood will adhere to the through holes inside the holding part that are used to install the suturing part. The blood adhering to the inside of the through holes is not easy to clean, and cross-infection is likely to occur during use. During disinfection, it is necessary to position the holding part and the suturing part. Otherwise, the arterial stapler is likely to be damaged during the cleaning process. Severe collision may cause damage to the arterial stapler. Shaking during the cleaning process will affect the precision of the stapler, resulting in poor threading during suturing and affecting the surgical effect. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides a disinfection and sterilization device for arterial staplers.

[0005] The technical solution adopted by the present invention to solve its technical problems is: a disinfection and sterilization device for arterial staplers, including a disinfection cabinet, on which an ultrasonic vibrator and a cleaning tank are provided; below the cleaning tank is an ultrasonic vibrator for driving the water inside the cleaning tank to vibrate; inside the disinfection cabinet is a stabilizing component, and inside the disinfection cabinet is a cleaning mechanism that moves up and down inside the disinfection cabinet. The stabilizing component cooperates with the cleaning mechanism to fix the arterial stapler; on the disinfection cabinet is a limiting mechanism that limits the cleaning mechanism after the cleaning mechanism rises; when the limiting mechanism is separated from the cleaning mechanism, the arterial stapler can move out of the inside of the cleaning mechanism.

[0006] The cleaning mechanism includes a cleaning component and a floating component. The cleaning component is used to clean the arterial stapler, and the floating component is used to drive the cleaning component to move up and down; The cleaning assembly comprises a cleaning net arranged inside the disinfection cabinet, a guide groove is arranged on the inner wall of the disinfection cabinet, a partition plate is arranged in the middle of the cleaning net, a first water tank and a second water tank are arranged on both sides of the partition plate, a first placement tank is arranged inside the first water tank, and a second placement tank is arranged inside the second water tank; and a stitcher is placed inside the first placement tank and the second placement tank respectively; The first placement slot and the second placement slot are provided with limiting slots inside, and a push rod is movably provided inside the limiting slot, and the push rod is used to lift the stapler upward; a lifting block is provided under the cleaning net, and an inner cavity is provided on the inner wall of the cleaning net, and a movable rod is provided inside the inner cavity, and the end of the movable rod is connected to the lifting block, and a push rod is provided on the movable rod, and a first elastic member is provided inside the inner cavity, and the first elastic member is used to push the movable rod to reset, and the floating assembly is in contact with the lifting block; when the floating plate rotates to the vertical direction, the lifting block is squeezed and moved upward, driving the push rod to move upward so that the stapler is lifted.

[0007] The floating assembly includes a floating plate, a support block is arranged on the side wall of the floating plate, a rotating rod is connected to the support block, the rotating rod is arranged below the cleaning tank, a rotating block is arranged on the rotating rod, a positioning groove is arranged on the rotating block, a positioning block is arranged at the bottom of the cleaning tank, and the positioning block rotates inside the positioning groove.

[0008] The cleaning mechanism also includes a clearance groove and an extrusion groove arranged at both ends of the floating plate, the clearance groove is located on one side of the extrusion groove, and the bottom surface of the extrusion groove is a gradient surface; the extrusion groove is extruded with the limiting mechanism, and a guide block is arranged on the cleaning net, and the guide block slides inside the guide groove. A blocking groove is opened on the side wall of the guide block, and the blocking groove is used to block the limiting mechanism from moving downward.

[0009] The limiting mechanism includes a barrier rod arranged on the inner wall of the disinfection cabinet, the barrier rod is engaged with the blocking groove, a first rod groove is arranged on the inner wall of the disinfection cabinet, a barrier rod is arranged inside the first rod groove, a second elastic member is arranged at the end of the barrier rod, the second elastic member is arranged inside the first rod groove, and the second elastic member is used to push the barrier rod to reset; a first connecting rope is arranged below the barrier rod, a first rope groove is arranged on the inner wall of the disinfection cabinet, the first connecting rope slides inside the first rope groove, a connecting rod is arranged at the bottom of the first connecting rope, a second connecting rope is arranged below the connecting rod, a second rope groove is arranged on the inner wall of the disinfection cabinet, and the second connecting rope slides inside the second rope groove.

[0010] The limiting mechanism also includes a second rod groove arranged in the inner wall of the disinfection cabinet, a push rod is arranged inside the second rod groove, a third elastic member is arranged at one end of the push rod, the third elastic member is located inside the second rod groove, the third elastic member is used to push the push rod to reset, and a guide rod is arranged at the end of the push rod, and the guide rod cooperates with the give way groove and the extrusion groove; when the floating plate rotates to a horizontal position and moves upward, the guide rod passes through the inside of the give way groove; when the floating plate rotates to a vertical position, the guide rod slides along the inside of the extrusion groove until the guide rod is disengaged from the inside of the extrusion groove.

[0011] The stabilizing assembly comprises two groups of stabilizing rods arranged on the disinfection cabinet, one group of stabilizing rods has a first slot at its end, and the other group of stabilizing rods has a second slot at its end, and the first slot and the second slot are used to engage the artery suture device.

[0012] The disinfection cabinet is provided with a sealing plate, and the sealing plate is used to seal the disinfection cabinet. A rotating pin is provided between the disinfection cabinet and the sealing plate, and the sealing plate rotates around the rotating pin.

[0013] Beneficial effects: The disinfection cabinet provided can facilitate the placement of the artery suture device, the cleaning tank provided can provide a cleaning space for the cleaning mechanism, and the cleaning mechanism vibrates the clean water through an ultrasonic vibrator, so that the artery suture device stored inside the cleaning mechanism will be cleaned, so that the blood contaminated inside the pipe of the artery suture device is cleaned. After the artery suture device is cleaned, the cleaning mechanism can lift the artery suture device so that a gap is formed between the artery suture device and the cleaning mechanism, so that when the disinfection gas is introduced, the disinfection gas can disinfect and sterilize the artery suture device. The limiting mechanism provided can continuously rise upward with the clean water in the cleaning mechanism until the cleaning mechanism and the limiting mechanism are engaged, so that the cleaning mechanism will not shake up and down under the rapid vibration of the water during the cleaning process, thereby ensuring the stability of the artery suture device in the cleaning mechanism. The cleaning mechanism provided can limit the artery suture device to prevent the artery suture device from moving quickly and being scratched during the cleaning process; when the cleaning mechanism moves downward, it is convenient to release the artery suture device so that the clamped part of the artery suture device is exposed to the outside and can contact with the disinfectant; the discharge mechanism provided can facilitate the disinfectant to be discharged from the interior of the cabinet. When the cleaning water rises, it pushes the cleaning mechanism to rise, and the rising cleaning mechanism can just fix the artery suture device; when the cleaning is completed, it needs to be drained. When draining, the cleaning mechanism descends, and the upper surface of the artery suture device is just exposed after the cleaning mechanism descends. When the disinfectant is disinfected, the outer surface of the artery suture device can be fully disinfected without any obstructed parts, so that the cleaned artery suture device can be completely disinfected. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0015] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is one of the sectional views of the present invention; Figure 3 It is another sectional view of the present invention; Figure 4 It is a schematic diagram of the connection structure of the floating component of the present invention; Figure 5 It is a third sectional view of the present invention; Figure 6 It is Figure 5 The enlarged schematic diagram of part A in Figure 7 It is a fourth sectional view of the present invention; Figure 8 It is Figure 7 The enlarged schematic diagram of part B in Figure 9 It is a fifth sectional view of the present invention; Figure 10 It is Figure 9 The enlarged schematic diagram of part C in

[0016] In the figure: 1, disinfection cabinet; 11, sealing plate; 12, ultrasonic vibrator; 13, cleaning tank; 14, rotating pin; 2, stabilizing component; 21, stabilizing rod; 22, first card slot; 23, second card slot; 3, cleaning mechanism; 31, cleaning net; 32, partition plate; 33, first water tank; 34, second water tank; 35, first placement groove; 36, second placement groove; 37, limiting groove; 38, ejector rod; 39, guiding groove; 310, guiding block; 311, floating plate; 312, rotating rod; 313, supporting block; 314, rotating block; 315, positioning groove; 316, jacking block; 317, blocking groove; 318, relief groove; 319, extrusion groove; 320, first elastic member; 321, inner cavity; 322, movable rod; 3111, positioning block; 4, limiting mechanism; 41, blocking rod; 42, first rod groove; 43, second elastic member; 44, first rope groove; 45, first connecting rope; 46, connecting rod; 47, second connecting rope; 48, resisting rod; 49, second rope groove; 410, guiding rod; 411, third elastic member; 412, second rod groove. Detailed implementation manners

[0017] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0018] In one embodiment, please refer to the accompanying drawings of the specification Figure 1-10As shown in the figure, a disinfection and sterilization device for an arterial suture device according to the present invention includes a disinfection cabinet 1, and an ultrasonic vibrator 12 and a cleaning tank 13 are arranged on the disinfection cabinet 1; the ultrasonic vibrator 12 is arranged below the cleaning tank 13, and the ultrasonic vibrator 12 is used to drive the water inside the cleaning tank 13 to vibrate; a stabilizing component 2 is arranged inside the disinfection cabinet 1, a cleaning mechanism 3 is arranged inside the disinfection cabinet 1, the cleaning mechanism 3 moves up and down inside the disinfection cabinet 1, and the stabilizing component 2 cooperates with the cleaning mechanism 3 to fix the arterial suture device; a limiting mechanism 4 is arranged on the disinfection cabinet 1, and the limiting mechanism 4 limits the cleaning mechanism 3 after the cleaning mechanism 3 rises; when the limiting mechanism 4 is separated from the cleaning mechanism 3, the arterial suture device moves out of the inside of the cleaning mechanism 3.

[0019] The disinfection cabinet 1 provided can facilitate the placement of the arterial suture device. The cleaning tank 13 provided can provide a cleaning space for the cleaning mechanism 3. And the cleaning mechanism 3 vibrates the clear water through the ultrasonic vibrator 12, and the arterial suture device stored inside the cleaning mechanism 3 will be cleaned, so that the blood contaminated inside the pipeline of the arterial suture device is cleaned. After the arterial suture device is cleaned, the cleaning mechanism 3 can lift the arterial suture device, creating a gap between the arterial suture device and the cleaning mechanism 3, which is convenient for the disinfection gas to disinfect and sterilize the arterial suture device when the disinfection gas is introduced. The limiting mechanism 4 provided can make the cleaning mechanism 3 rise continuously with the clear water until the cleaning mechanism 3 engages with the limiting mechanism 4, so that the cleaning mechanism 3 will not shake up and down under the rapid vibration of the water during the cleaning process, thus ensuring the stability of the arterial suture device in the cleaning mechanism 3. The cleaning mechanism 3 provided is used to limit the arterial suture device to prevent the arterial suture device from moving rapidly and being scratched during the cleaning process; when the cleaning mechanism 3 moves down, it is convenient to release the arterial suture device, so that the clamped part of the arterial suture device is exposed and can contact the disinfectant; the discharge mechanism provided can facilitate the discharge of the disinfectant from the inside of the cabinet body. When the cleaning water rises, it pushes the cleaning mechanism 3 to rise, and the cleaning mechanism 3 rising can just fix the arterial suture device; when the cleaning is completed and drainage is required, during drainage, the cleaning mechanism 3 descends, and after the cleaning mechanism 3 descends, the upper surface of the arterial suture device is just exposed. When disinfecting with the disinfectant, the outer surface of the arterial suture device can be fully disinfected without any blocked parts, so that the cleaned arterial suture device can be completely disinfected.

[0020] The cleaning mechanism 3 includes a cleaning component and a floating component. The cleaning component is used to clean the arterial suture device, and the floating component is used to drive the cleaning component to move up and down; The cleaning assembly includes a cleaning net 31 arranged inside the disinfection cabinet 1, a guide groove 39 is arranged on the inner wall of the disinfection cabinet 1, a partition plate 32 is arranged in the middle of the cleaning net 31, a first water tank 33 and a second water tank 34 are arranged on both sides of the partition plate 32, a first placement groove 35 is arranged inside the first water tank 33, and a second placement groove 36 is arranged inside the second water tank 34; and a suture device is placed inside the first placement groove 35 and the second placement groove 36 respectively; A limiting groove 37 is arranged inside the first placement groove 35 and the second placement groove 36, and a push rod 38 is movably arranged inside the limiting groove 37, and the push rod 38 is used to lift the suture device upward; a lifting block 316 is arranged below the cleaning net 31, and an inner cavity 321 is arranged on the inner wall of the cleaning net 31, and a movable rod 322 is arranged inside the inner cavity 321, and the end of the movable rod 322 is connected to the lifting block 316, and a push rod 38 is arranged on the movable rod 322, and a first elastic member 320 is arranged inside the inner cavity 321, and the first elastic member 320 is used to push the movable rod 322 to reset, and the floating assembly is in contact with the lifting block 316; when the floating plate 311 rotates to the vertical direction, the lifting block 316 is squeezed and moved upward to drive the push rod 38 to move upward so that the artery suture device is lifted. The cleaning component that is provided can clean the arterial suture device that needs to be cleaned, and can limit the arterial suture device to prevent it from shaking during the cleaning process; the floating component that is provided can drive the arterial suture device to move up and down inside the disinfection cabinet, thereby achieving the goal of lifting the arterial suture device upward from the inside of the cleaning component.

[0021] The floating assembly includes a floating plate 311, a support block 313 is arranged on the side wall of the floating plate 311, a rotating rod 312 is connected to the support block 313, the rotating rod 312 is arranged below the cleaning tank 13, a rotating block 314 is arranged on the rotating rod 312, a positioning groove 315 is arranged on the rotating block 314, and a positioning block 3111 is arranged at the bottom of the cleaning tank 13, and the positioning block 3111 rotates inside the positioning groove 315.

[0022] The cleaning mechanism 3 also includes a yield groove 318 and an extrusion groove 319 arranged at both ends of the floating plate 311, the yield groove 318 is located on one side of the extrusion groove 319, and the bottom surface of the extrusion groove 319 is a gradient surface; the extrusion groove 319 is extruded with the limiting mechanism 4, and a guide block 310 is arranged on the cleaning net 31, and the guide block 310 slides inside the guide groove 39, and a blocking groove 317 is opened on the side wall of the guide block 310, and the blocking groove 317 is used to prevent the limiting mechanism 4 from moving downward.

[0023] By setting the first placement groove 35 and the second placement groove 36 to place the suture part and the holding part of the arterial suture device respectively; in order to ensure that every part of the arterial suture device can be cleaned thoroughly by the cleaning mechanism 3, when the arterial suture device is being cleaned, its bottom contacts the cleaning net 31. Since the arterial suture device needs to be fixed during the cleaning process, the upper part of the arterial suture device contacts the stabilizing mechanism. When the cleaning is completed, the positions where the arterial suture device contacts the cleaning net 31 or the stabilizing mechanism are covered. Therefore, after cleaning, the arterial suture device needs to be lifted upward from inside the cleaning net 31 to facilitate disinfection, and ethylene oxide gas can be used for disinfection and sterilization; in order to be able to drain the clear water inside the cleaning tank 13 after cleaning is completed, the floating plate 311 rotates downward under its own gravity. During the rotation of the floating plate 311, it will squeeze on the jacking blocks 316. There are multiple jacking blocks 316, which is convenient for the jacking blocks 316 to move smoothly when the floating plate 311 squeezes them. The movement of the jacking blocks 316 drives the ejector rod 38 to move upward. During the upward movement of the ejector rod 38, it pushes the suture part and the holding part inside the first placement groove 35 and the second placement groove 36, so that the arterial suture device is lifted upward. When the disinfection gas passes through the arterial suture device, it can disinfect the outer wall and the internal through holes of the arterial suture device; When it is necessary to clean the arterial suture device, water needs to be replenished inside the cleaning tank 13. When the water contacts the bottom of the cleaning net 31, the floating plate 311 below the cleaning net 31 will flip upward. Since the rotation angle of the limiting groove 37 is less than 180°, it is convenient for the floating plate 311 to flip outward after contacting the water. When the floating plate 311 flips, the relief groove 318 provided on the floating plate 311 is in a vertical position, which is convenient for the floating plate 311 not to contact the limiting mechanism 4 during the upward floating process, and the floating plate 311 can drive the cleaning net 31 to move upward synchronously. Until the arterial suture device provided on the cleaning net 31 is engaged with the stabilizing assembly 2. At this time, the blocking groove 317 just snaps into the limiting mechanism 4, so that when the ultrasonic vibrator 12 vibrates the water, it cannot drive the cleaning net 31 to float up and down, thereby ensuring the stable cooperation between the stabilizing assembly 2 and the cleaning assembly. The rotation angle of the positioning groove 315 is less than 180°, making the floating plate 311 in an inclined state. When water infiltrates, the floating plate 311 floats and rotates, and it will not rotate in the reverse direction during rotation. By setting the cleaning mechanism, when cleaning the arterial suture device, it can lift the arterial suture device upward when it is inside, which is convenient for comprehensive disinfection and sterilization of the arterial suture device when passing through ethylene oxide gas.

[0024] The limiting mechanism 4 includes a barrier rod 41 arranged on the inner wall of the disinfection cabinet 1, and the barrier rod 41 is engaged with the blocking groove 317. A first rod groove 42 is arranged on the inner wall of the disinfection cabinet 1, and a barrier rod 41 is arranged inside the first rod groove 42. A second elastic member 43 is arranged at the end of the barrier rod 41, and the second elastic member 43 is arranged inside the first rod groove 42. The second elastic member 43 is used to push the barrier rod 41 to reset; a first connecting rope 45 is arranged below the barrier rod 41, and a first rope groove 44 is arranged on the inner wall of the disinfection cabinet 1. The first connecting rope 45 slides inside the first rope groove 44. A connecting rod 46 is arranged at the bottom of the first connecting rope 45, and a second connecting rope 47 is arranged below the connecting rod 46. A second rope groove 49 is arranged on the inner wall of the disinfection cabinet 1, and the second connecting rope 47 slides inside the second rope groove 49.

[0025] The limiting mechanism 4 also includes a second rod groove 412 arranged in the inner wall of the disinfection cabinet 1, a push rod 48 is arranged inside the second rod groove 412, and a third elastic member 411 is arranged at one end of the push rod 48, and the third elastic member 411 is located inside the second rod groove 412. The third elastic member 411 is used to push the push rod 48 to reset, and a guide rod 410 is arranged at the end of the push rod 48, and the guide rod 410 cooperates with the make way groove 318 and the extrusion groove 319; when the floating plate 311 rotates to a horizontal position and moves upward, the guide rod 410 passes through the inside of the make way groove 318; when the floating plate 311 rotates to a vertical position, the guide rod 410 slides along the inside of the extrusion groove 319 until the guide rod 410 is disengaged from the inside of the extrusion groove 319. The limiting mechanism 4 provided can limit the cleaning mechanism 3 after it moves upward to prevent the cleaning mechanism 3 from moving downward, thereby facilitating the separation of the cleaning mechanism 3 from the cleaning water. When ethylene oxide gas is introduced, the arterial suture device inside the cleaning mechanism 3 can be disinfected and sterilized.

[0026] When the floating plate 311 moves upward, the floating plate 311 drives the guide block 310 to move upward synchronously. When the guide block 310 contacts the blocking rod 41 during the upward movement, since the end face of the blocking rod 41 is inclined and the inclined surface faces downward, when the guide block 310 moves upward, the guide block 310 squeezes the blocking rod 41 to move, and the blocking rod 41 will move until the blocking groove aligns with the blocking rod 41. Then, under the push of the second elastic member 43, the blocking rod 41 directly enters the inside of the blocking groove. At this time, the blocking rod 41 limits the blocking groove, thereby stabilizing the guide block 310, and the guide block 310 cannot move up and down inside the guide groove 39; before disinfection, first drain the clear water inside the water tank, so that the floating plate 311 rotates around the rotating rod 312 until the floating plate 311 rotates to just squeeze the jacking block 316, and then stop draining water. The amount of drained water can be measured according to a measuring instrument (prior art, not described in detail) provided inside the disinfection cabinet 1; after disinfection, continue to drain water until all the water is drained. At this time, the floating plate 311 continues to rotate, and the guide rod 410 slides inside the extrusion groove 319. At this time, the guide rod 410 pulls the second pull rope through the abutting rod 48, and then drives the blocking rod 41 to separate from the inside of the blocking groove through the first pull rope. When the blocking rod 41 separates from the inside of the blocking groove, under the action of gravity, the cleaning net 31 drives the guide block 310 to slide downward along the inside of the guide groove 39. Then, by controlling the amount of water inside the disinfection cabinet 1, the inside of the disinfection cabinet 1 can stably clean, lift, and disinfect the arterial suture instrument, and complete multiple operations when closing the disinfection cabinet 1, so that the gas during the disinfection process will not overflow.

[0027] The stabilizing assembly 2 includes two groups of stabilizing rods 21 arranged on the disinfection cabinet 1. A first clamping groove 22 is provided at the end of one group of the stabilizing rods 21, and a second clamping groove 23 is provided at the end of the other group of the stabilizing rods 21. The first clamping groove 22 and the second clamping groove 23 are used to clamp the arterial suture instrument.

[0028] A sealing plate 11 is provided on the disinfection cabinet 1. The sealing plate 11 is used to seal the disinfection cabinet 1. A rotating pin 14 is provided between the disinfection cabinet 1 and the sealing plate 11, and the sealing plate 11 rotates around the rotating pin 14.

[0029] When the present invention is in use, the arterial suture device that needs to be disinfected and sterilized is disassembled. The arterial suture device is disassembled into a suture part and a holding part. The suture part is placed inside the first placement groove 35, and the holding part is placed inside the second placement groove 36; the sealing plate 11 is closed so that the inside of the water tank is sealed; water is injected into the inside of the water tank, so that the water drives. When the water contacts the bottom of the cleaning net 31, the floating plate 311 below the cleaning net 31 will turn upwards. Since the rotation angle of the limiting groove 37 is less than 180°, it is convenient for the floating plate 311 to turn outwards after contacting the water. When the floating plate 311 turns, the relief groove 318 provided on the floating plate 311 is in a vertical position, which is convenient for the floating plate 311 not to contact the limiting mechanism 4 during the upward floating process, and the floating plate 311 can drive the cleaning net 31 to move upwards synchronously. Until the arterial suture device provided on the cleaning net 31 is engaged with the stable component 2, at this time, the blocking groove 317 just snaps into the limiting mechanism 4, so that when the ultrasonic vibrator 12 vibrates the water, it cannot drive the cleaning net 31 to float up and down, thereby ensuring the stable cooperation between the stable component 2 and the cleaning component. The rotation angle of the positioning groove 315 is less than 180°, so that the floating plate 311 is in an inclined state. When water infiltrates, the floating plate 311 floats up and rotates, and it will not rotate in the reverse direction during rotation. When disinfection is completed and further drainage is required until the water is completely drained, at this time, the floating plate 311 continues to rotate, and the guide rod 410 slides inside the extrusion groove 319. At this time, the guide rod 410 pulls the second pull rope through the abutting rod 48, and then drives the partition rod 41 to separate from the inside of the partition groove through the first pull rope. When the partition rod 41 separates from the inside of the partition groove, under the action of gravity, the cleaning net 31 will drive the guide block 310 to slide down along the inside of the guide groove 39. Then, by controlling the amount of water inside the disinfection cabinet 1, the inside of the disinfection cabinet 1 can stably clean, lift and disinfect the arterial suture device, and complete multiple operations when the disinfection cabinet 1 is closed, so that the gas during the disinfection process will not overflow.

[0030] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present invention. The scope of protection required by the present invention is defined by the appended claims and their equivalents.

Claims

1. A disinfection and sterilization device for an arterial suture instrument, comprising a disinfection cabinet (1), characterized in that, An ultrasonic vibrator (12) and a cleaning tank (13) are provided on the disinfection cabinet (1); the ultrasonic vibrator (12) is arranged below the cleaning tank (13), and the ultrasonic vibrator (12) is used to drive the water inside the cleaning tank (13) to vibrate; a stabilizing component (2) is arranged inside the disinfection cabinet (1), a cleaning mechanism (3) is arranged inside the disinfection cabinet (1), the cleaning mechanism (3) moves up and down inside the disinfection cabinet (1), and the stabilizing component (2) cooperates with the cleaning mechanism (3) to fix the artery suture device; a limiting mechanism (4) is arranged on the disinfection cabinet (1), and the limiting mechanism (4) limits the cleaning mechanism (3) after the cleaning mechanism (3) rises; when the limiting mechanism (4) is separated from the cleaning mechanism (3), the artery suture device moves out of the cleaning mechanism (3).

2. The disinfection and sterilization device for an arterial suture instrument according to claim 1, wherein The cleaning mechanism (3) includes a cleaning component and a floating component, the cleaning component is used to clean the artery suture device, and the floating component is used to drive the cleaning component to move up and down; The cleaning component includes a cleaning net (31) arranged inside the disinfection cabinet (1), a guiding groove (39) is arranged on the inner wall of the disinfection cabinet (1), a partition plate (32) is arranged in the middle of the cleaning net (31), a first water tank (33) and a second water tank (34) are respectively arranged on both sides of the partition plate (32), a first placement groove (35) is arranged inside the first water tank (33), and a second placement groove (36) is arranged inside the second water tank (34); the artery suture devices are respectively placed inside the first placement groove (35) and the second placement groove (36); Limiting grooves (37) are arranged inside the first placement groove (35) and the second placement groove (36), ejector rods (38) are movably arranged inside the limiting grooves (37), and the ejector rods (38) are used to jack up the artery suture devices; a jacking block (316) is arranged below the cleaning net (31), an inner cavity (321) is arranged on the inner wall of the cleaning net (31), a movable rod (322) is arranged inside the inner cavity (321), the end of the movable rod (322) is connected to the jacking block (316), ejector rods (38) are arranged on the movable rod (322), a first elastic member (320) is arranged inside the inner cavity (321), and the first elastic member (320) is used to push the movable rod (322) to reset, and the floating component abuts against the jacking block (316); when the floating plate (311) rotates to the vertical direction, the jacking block (316) is squeezed and moves upward to drive the ejector rod (38) to move upward, so that the artery suture device is jacked up.

3. The disinfection and sterilization device for an arterial suture instrument according to claim 2, wherein, The floating assembly comprises a floating plate (311), a support block (313) is arranged on the side wall of the floating plate (311), a rotating rod (312) is connected to the support block (313), the rotating rod (312) is arranged below the cleaning tank (13), a rotating block (314) is arranged on the rotating rod (312), a positioning groove (315) is arranged on the rotating block (314), a positioning block (3111) is arranged at the bottom of the cleaning tank (13), and the positioning block (3111) rotates inside the positioning groove (315).

4. The disinfection and sterilization device for an arterial suture instrument according to claim 3, wherein, The cleaning mechanism (3) further comprises a clearance groove (318) and an extrusion groove (319) arranged at both ends of the floating plate (311); the clearance groove (318) is located on one side of the extrusion groove (319); the bottom surface of the extrusion groove (319) is a gradient surface; the extrusion groove (319) is extruded by the limiting mechanism (4); a guide block (310) is arranged on the cleaning net (31); the guide block (310) slides inside the guide groove (39); a blocking groove (317) is provided on the side wall of the guide block (310); the blocking groove (317) is used to block the limiting mechanism (4) from moving downward.

5. The disinfection and sterilization device for an arterial suture instrument according to claim 4, characterized in that, The limiting mechanism (4) comprises a barrier rod (41) arranged on the inner wall of the disinfection cabinet (1), the barrier rod (41) being engaged with the blocking groove (317), a first rod groove (42) being arranged on the inner wall of the disinfection cabinet (1), the barrier rod (41) being arranged inside the first rod groove (42), a second elastic member (43) being arranged at the end of the barrier rod (41), the second elastic member (43) being arranged inside the first rod groove (42), and the second elastic member (43) being used to push the barrier rod (41) to reset A first connecting rope (45) is arranged below the barrier rod (41), a first rope groove (44) is arranged on the inner wall of the disinfection cabinet (1), the first connecting rope (45) slides inside the first rope groove (44), a connecting rod (46) is arranged at the bottom of the first connecting rope (45), a second connecting rope (47) is arranged below the connecting rod (46), a second rope groove (49) is arranged on the inner wall of the disinfection cabinet (1), the second connecting rope (47) slides inside the second rope groove (49).

6. The disinfection and sterilization device for an arterial suture instrument according to claim 5, characterized in that, The limiting mechanism (4) further comprises a second rod groove (412) arranged in the inner wall of the disinfection cabinet (1); a push rod (48) is arranged inside the second rod groove (412); a third elastic member (411) is arranged at one end of the push rod (48); the third elastic member (411) is located inside the second rod groove (412); the third elastic member (411) is used to push the push rod (48) to reset; a guide rod (410) is arranged at the end of the push rod (48); the guide rod (410) cooperates with the clearance groove (318) and the extrusion groove (319); when the floating plate (311) rotates to a horizontal position and moves upward, the guide rod (410) passes through the inside of the clearance groove (318); when the floating plate (311) rotates to a vertical position, the guide rod (410) slides along the inside of the extrusion groove (319) until the guide rod (410) is separated from the inside of the extrusion groove (319).

7. An arterial suture disinfection and sterilization device according to claim 6, characterized in that, The stabilizing assembly (2) comprises two groups of stabilizing rods (21) arranged on the disinfection cabinet (1), one group of stabilizing rods (21) having an end provided with a first clamping groove (22), and the other group of stabilizing rods (21) having an end provided with a second clamping groove (23), the first clamping groove (22) and the second clamping groove (23) being used for clamping an arterial suture device.

8. A disinfection and sterilization device for an arterial suture instrument according to claim 7, characterized in that, The disinfection cabinet (1) is provided with a sealing plate (11), the sealing plate (11) being used to seal the disinfection cabinet (1), a rotating pin (14) being provided between the disinfection cabinet (1) and the sealing plate (11), the sealing plate (11) rotating around the rotating pin (14).