Flushing device for clinical tubular appliances in obstetrics and gynecology department

By designing internal and external cleaning mechanisms and a rotating cleaning mechanism, combined with high-pressure water flow and protease-containing cleaning agents, the problems of low cleaning efficiency and difficulty in removing biofilm from tubular instruments in obstetrics and gynecology have been solved, achieving efficient cleaning and rapid drying of the inner and outer walls of the instruments.

CN120885519AInactive Publication Date: 2025-11-04THE FIRST AFFILIATED HOSPITAL OF HEBEI NORTH UNIV
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Patent Information

Application Number
CN202511361781.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-23
Publication Date
2025-11-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing tubular instrument flushing devices in obstetrics and gynecology clinics have difficulty removing biofilms after contact with high-protein substances such as amniotic fluid and vernix caseosa. This results in low cleaning efficiency, difficulty in rapid drying, and easy bacterial growth.

Method used

A rinsing device for tubular instruments in obstetrics and gynecology clinics was designed. It adopts an internal and external cleaning mechanism and a rotating cleaning mechanism, combined with high-pressure water flow, soft brush and protease-containing cleaning agent to achieve dual cleaning of the inner and outer walls of the instruments. The cleaning efficiency is improved by rotating and lifting structure.

Benefits of technology

It effectively removes biofilm, improves cleaning efficiency, reduces cleaning dead spots, ensures the inside of the appliance is dry, and prevents bacterial growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a clinical tubular appliance flushing device for the obstetrics and gynecology department, and relates to the technical field of medical instruments, the clinical tubular appliance flushing device for the obstetrics and gynecology department comprises an internal and external cleaning mechanism and a lifting supporting column installed in the middle of the internal and external cleaning mechanism, a rotary cleaning mechanism is arranged at the bottom of the internal and external cleaning mechanism, and a connecting clamping sleeve is arranged in the rotary cleaning mechanism; the inner and outer cleaning mechanism comprises a cleaning connecting rod, a filter screen is fixedly installed at the bottom of the cleaning connecting rod, an extrusion rod is fixedly installed in the center of the bottom of the filter screen, the outer side of the appliance can be clamped and fixed through a cleaning support, and the inner wall of the appliance can be cleaned through high-pressure water sprayed out of a cleaning net cylinder; and rotation of the cleaning net barrel appliance can be achieved through a rotating bearing in a second rotating worm wheel, the outer surface of the appliance can be cleaned through a banister brush on the inner side of a cleaning support, and the cleaning effect of the appliance is improved by conducting double cleaning on the outer wall and the inner wall of the appliance.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of medical devices, in particular to a gynecological clinical tubular appliance flushing device. BACKGROUND

[0002] Gynecology is a diagnosis and treatment subject of a medical institution, gynecology is a branch of obstetrics and gynecology, is a professional department for diagnosing and treating female gynecological diseases, is divided into western medicine gynecology and traditional Chinese medicine gynecology, gynecological diseases include diseases of the female reproductive system, that is, gynecological diseases, including external genital disease, vaginal disease, uterine disease, fallopian tube disease and ovarian disease, etc., some tubular appliances are used in the operation or medical process of the obstetrics and gynecology department, and the tubular appliances are relatively troublesome to clean.

[0003] The gynecological clinical tubular appliance flushing device can be used for cleaning the inner wall and the outer wall of the tubular appliance, and the water outlet assembly cooperates with the plurality of nozzles on the fixed box to flush the tubular appliance and remove dirt, thereby effectively and perfectly cleaning the tubular appliance and improving the working efficiency of the gynecological clinical tubular appliance flushing device, and then the first electric sliding rail and the second electric sliding rail can drive the cleaning assembly to move, so that the brush sleeve is continuously attached to the inner wall of the tubular appliance, and one or the other brush is attached to the outer wall of the tubular appliance, thereby further improving the cleaning quality, but the patent still has the following problems in the actual use process: The gynecological clinical tubular appliance flushing device can clean the inner wall and the outer wall of the tubular appliance by using the brush sleeve, but for some special tubular appliances, such as contact with amniotic fluid, vernix caseosa and other high-protein substances, if the pretreatment is delayed for more than one hour, the biological membrane formed after the organic matter dries up cannot be removed by ordinary cleaning, and it is necessary to use a proteinase-containing cleaning agent for soaking and cleaning, so that the appliance can be cleaned, and the gynecological clinical tubular appliance flushing device can only clean one tubular appliance at a time, the cleaning efficiency is low, and the cleaned tubular appliance cannot be quickly dried, so that part of the water remains in the tubular appliance, bacteria are bred, and the cleaning effect of the tubular appliance is affected.

[0004] Therefore, a gynecological clinical tubular appliance flushing device is provided to solve the problems in the above. SUMMARY

[0005] The purpose of the present application is to provide a gynecological clinical tubular device flushing device to solve the above background technology for some special tubular devices, such as contact with amniotic fluid, vernix caseus and other high-protein substances. If the pretreatment is delayed for more than one hour, the organic film formed after the organic film is dried, the ordinary cleaning method cannot remove the biological film, and the cleaning agent containing protease needs to be soaked and cleaned to clean the device. At the same time, the gynecological clinical tubular device flushing device can only clean one tubular device at a time, the cleaning efficiency is low, and it is not convenient to quickly dry the cleaned tubular device, so that the inside of the tubular device still contains part of the moisture, which causes bacteria to breed and affects the cleaning effect of the tubular device.

[0006] To achieve the above purpose, the present application provides the following technical scheme: a gynecological clinical tubular device flushing device, comprising an internal and external cleaning mechanism, and a lifting support column installed in the middle of the internal and external cleaning mechanism; The bottom of the internal and external cleaning mechanism is provided with a rotating cleaning mechanism, and the inside of the rotating cleaning mechanism is provided with a connecting clamping sleeve; Further comprising: The internal and external cleaning mechanism comprises a cleaning connecting rod, the bottom of the cleaning connecting rod is fixedly installed with a filter screen, and the bottom center of the filter screen is fixedly installed with an extrusion rod; Wherein, the top of the filter screen is rotatably connected with a plurality of cleaning net cylinders, and the bottom of the dry cleaning net cylinder is fixedly installed with a connecting sleeve; Wherein, the outer side of the cleaning connecting rod is slidably connected with a first lifting sliding plate, and the top of the first lifting sliding plate is fixedly installed with a first worm gear protective cover.

[0007] Preferably, the first lifting sliding plate is symmetrically installed with a first rotating support near the inside of the first worm gear protective cover, the outer side of the first rotating support is fixedly installed with a first rotating motor, the output end of the first rotating motor is fixedly connected with a first rotating worm, one side of the first rotating worm is meshingly connected with a first rotating worm gear, and the first rotating worm gear is rotatably connected with the first lifting sliding plate.

[0008] Preferably, the first rotating worm gear is threadedly connected with the cleaning connecting rod, the bottom outer side of the first lifting sliding plate is symmetrically installed with a second rotating support, the outer side of the second rotating support is fixedly installed with a second rotating motor, the output end of the second rotating motor is fixedly connected with a second rotating worm, and one side of the second rotating worm is meshingly connected with a second rotating worm gear.

[0009] Preferably, the second rotating worm gear is internally fixed around the opening and closing sliding rod, the outer side of the opening and closing sliding rod is slidingly connected with the opening and closing sliding sleeve, the bottom of the opening and closing sliding sleeve is fixedly installed with the opening and closing sliding plate, the top of the second rotating worm gear is rotatably connected with the opening and closing support, the opening and closing support is fixedly installed at the bottom of the first lifting sliding plate, and the bottom of the opening and closing support is internally fixedly installed with the opening and closing spiral slide rail.

[0010] Preferably, the opening and closing spiral slide rail is slidingly connected with the opening and closing sliding sleeve, the bottom of the opening and closing sliding plate is fixedly installed with the cleaning support, the inner side of the cleaning support is fixedly installed with the soft brush, the bottom of the lifting support column is internally fixedly installed with the switching motor, and the output end of the switching motor is fixedly connected with the lifting support.

[0011] Preferably, the bottom of the lifting support is fixedly installed with the lifting motor on one side, the output end of the lifting motor is fixedly connected with the bevel gear transmission assembly, the top of the bevel gear transmission assembly is fixedly installed with the lifting threaded rod, the outer side of the lifting threaded rod is threadedly connected with the lifting threaded sleeve, the outer side of the lifting threaded sleeve is fixedly installed with the second lifting sliding plate, and the cleaning connecting rod is fixedly installed around the bottom of the second lifting sliding plate.

[0012] Preferably, the rotating cleaning mechanism comprises a cleaning cylinder, the bottom of the cleaning cylinder is fixedly installed with the supporting leg around, the bottom of the cleaning cylinder is fixedly installed with the blowdown valve on one side, the bottom of the cleaning cylinder is fixedly installed with the second worm gear protective cover at the center position, the inside of the cleaning cylinder is symmetrically installed with the third rotating support on one side close to the second worm gear protective cover, the outer side of the third rotating support is fixedly installed with the third rotating motor, and the output end of the third rotating motor is fixedly connected with the third rotating worm.

[0013] Preferably, the third rotating worm is meshingly connected with the third rotating worm gear on one side, the bottom of the third rotating worm gear is rotatably connected with the first connecting pipe, the top of the third rotating worm gear is fixedly installed with the flow divider, the outer side of the flow divider is fixedly installed with the second connecting pipe, the top of the second connecting pipe is rotatably connected with the rotating main gear, the connecting clamping sleeve is fixedly installed at the top of the rotating main gear, the connecting clamping sleeve is clampedly connected with the connecting sleeve, and the outer side of the rotating main gear is meshingly connected with the meshing gear ring.

[0014] Preferably, the top of the engagement tooth ring is fixedly installed with a supporting ring, the supporting ring is fixedly installed in the inside of the cleaning cylinder, the inside of the flow divider is fixedly installed with a squeeze valve, the bottom inside of the squeeze valve is fixedly installed with a valve support, the top of the valve support is fixedly installed with a valve telescopic rod, the outside close to the valve telescopic rod of the valve support is fixedly installed with a valve spring, the top of the valve telescopic rod and the valve spring is fixedly installed with a valve piston, the rotating main gear is meshed and connected with a rotating from gear, and the rotating from gear is rotationally connected with the flow divider.

[0015] Compared with the prior art, the gynecological clinical tubular device flushing device has the advantages that the cleaning support can clamp and fix the outside of the device, the high-pressure water sprayed in the cleaning net cylinder can clean the inner wall of the device, the second rotating worm gear inside rotating bearing can rotate the cleaning net cylinder device, the soft hair brush inside the cleaning support can clean the outer surface of the device, the double cleaning of the outer wall and the inner wall of the device can improve the cleaning effect of the device, the rotating mode can improve the soaking effect of the proteinase-containing cleaning agent, the biological membrane can be easily cleaned, the inner wall and the outer wall of the device can be fully cleaned during the cleaning of the device, the cleaning dead angle is reduced, and the cleaning effect is improved, and the specific content is as follows. 1. By setting the internal and external cleaning mechanism can not only be able to put the need to clean the appliance into the cleaning net cylinder outside, start the first rotating motor driven first rotating worm rotation, the use of first rotating worm and first rotating worm wheel meshing connection characteristics, make the first rotating worm wheel in the outside of the cleaning connecting rod screw rotation, at the same time the first rotating worm wheel driven first lifting slide plate lifting movement, start the second rotating motor driven second rotating worm rotation, the use of second rotating worm and second rotating worm wheel meshing connection characteristics, make the second rotating worm wheel rotation, the use of open and close sliding sleeve and open and close spiral slide rail sliding connection characteristics, under the action of open and close spiral slide rail, make open and close sliding sleeve driven open and close sliding plate and cleaning support relative movement, the use of cleaning support can be clamped and fixed on the outside of the appliance, the use of cleaning net cylinder inside the high pressure water, can realize the cleaning of the inner wall of the appliance, when need to clean the outer wall of the appliance, by rotating the first rotating worm wheel make the first lifting slide plate continue to decline, the use of second rotating worm inside rotating bearing, can realize the rotation of the cleaning net cylinder appliance, the use of soft hair brush in the cleaning support can clean the outer surface of the appliance, through the double cleaning of the outer wall and the inner wall of the appliance, so as to improve the cleaning effect of the appliance, by starting the switching motor driven lifting support rotation, can realize the switching of multiple filter screen and cleaning net cylinder, can not only be able to clean the appliance, at the same time can use the proteinase containing cleaning agent to soak the appliance, the use of proteinase containing cleaning agent to clean the biological membrane formed by the organic matter dry on the surface of the appliance, so as to improve the cleaning effect of the appliance, start lifting motor driven bevel gear transmission assembly and lifting screw rod rotation, make the lifting screw sleeve driven second lifting slide plate and cleaning connecting rod lifting movement, can take out and place the need to clean the appliance from the inside of the cleaning cylinder, so as to realize the uninterrupted cleaning of the appliance, improve the cleaning efficiency of the appliance; 2. By setting multiple groups of rotating cleaning mechanisms, the proteinase-containing cleaning agent and cleaning water can be respectively placed in the multiple groups of cleaning barrels, the third rotating worm is driven to rotate by the third rotating motor, the first connecting pipe and the flow divider are driven to rotate by the third rotating worm and the third rotating worm, the cleaning water is pumped into the inner wall of the flow divider by the first connecting pipe contacting the high-pressure water pump, and the cleaning water flows into the cleaning mesh barrel by the second connecting pipe and the rotating main gear, so that the inner wall of the appliance is cleaned, the second connecting pipe, the rotating main gear and the cleaning mesh barrel are driven to revolve by the connection clamping sleeve and the connection sleeve, the rotating main gear is driven to rotate by the rotating main gear and the meshing gear ring, the effect of soaking the proteinase-containing cleaning agent is improved by rotating when soaking the proteinase-containing cleaning agent, the biological membrane is cleaned, the inner wall and the outer wall of the appliance are fully cleaned when the appliance is cleaned, the dead angle of cleaning is reduced, the cleaning effect is improved, the valve piston is lifted and moved by the elastic force of the valve spring and the valve telescopic rod in the valve support, the lifting height of the valve piston is controlled by the extrusion rod at the bottom of the filter screen, so that the flow of the cleaning water is controlled, and the effect of saving water is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole three-dimensional structure schematic diagram of the application; Figure 2 It is a three-dimensional structure schematic diagram of the inner and outer cleaning mechanism in the application; Figure 3 It is a three-dimensional structure schematic diagram of the first worm gear protective cover in the application; Figure 4 It is a three-dimensional structure schematic diagram of the filter screen in the application; Figure 5 It is a three-dimensional structure schematic diagram of the first lifting sliding plate in the application; Figure 6 It is a three-dimensional structure schematic diagram of the second rotating worm in the application; Figure 7 It is a three-dimensional structure schematic diagram of the second lifting sliding plate in the application; Figure 8 It is a three-dimensional structure schematic diagram of the lifting screw rod and the lifting screw sleeve in the application; Figure 9 It is a three-dimensional structure schematic diagram of the rotating cleaning mechanism in the application; Figure 10 It is a three-dimensional structure schematic diagram of the second worm gear protective cover and the flow divider in the application; Figure 11 It is a three-dimensional structure schematic diagram of the extrusion valve in the application.

[0017] In the figure: 1, inner and outer cleaning mechanism; 101, cleaning connecting rod; 102, filter screen; 103, extrusion rod; 104, cleaning screen cylinder; 105, connecting sleeve; 106, first lifting sliding plate; 107, first worm gear protective cover; 108, first rotating support; 109, first rotating motor; 110, first rotating worm; 111, first rotating worm gear; 112, second rotating support; 113, second rotating motor; 114, second rotating worm; 115, second rotating worm gear; 116, opening and closing sliding rod; 117, opening and closing sliding sleeve; 118, opening and closing sliding plate; 119, opening and closing support; 120, opening and closing spiral slide rail; 121, cleaning support; 122, soft brush; 123, lifting support column; 124, switching motor; 125, lifting support; 126, lifting motor; 127, bevel gear transmission assembly; 128, lifting threaded rod; 129, lifting threaded sleeve; 130, second lifting sliding plate; 2, rotating cleaning mechanism; 201, cleaning cylinder; 202, support leg; 203, sewage valve; 204, second worm gear protective cover; 205, third rotating support; 206, third rotating motor; 207, third rotating worm; 208, third rotating worm gear; 209, first connecting pipe; 210, flow divider; 211, second connecting pipe; 212, rotating main gear; 213, connecting clamping sleeve; 214, meshing tooth ring; 215, support ring; 216, extrusion valve; 217, valve support; 218, valve telescopic rod; 219, valve spring; 220, valve piston; 221, rotating driven gear. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0019] Please refer to Figures 1-6The application provides a clinical tubular device flushing device for gynaecology and obstetrics, which comprises an internal and external cleaning mechanism 1, a lifting support column 123 installed in the middle of the internal and external cleaning mechanism 1, a rotating cleaning mechanism 2 arranged at the bottom of the internal and external cleaning mechanism 1, and a connecting clamping sleeve 213 arranged in the internal and external cleaning mechanism 2. The internal and external cleaning mechanism 1 comprises a cleaning connecting rod 101, a filter screen 102 fixedly installed at the bottom of the cleaning connecting rod 101, an extrusion rod 103 fixedly installed at the bottom center of the filter screen 102, a plurality of cleaning screen barrels 104 rotatably connected to the top of the filter screen 102, and a connecting sleeve 105 fixedly installed at the bottom of the cleaning screen barrel 104. The outer side of the cleaning connecting rod 101 is slidably connected to a first lifting sliding plate 106, the top of the first lifting sliding plate 106 is fixedly installed with a first worm gear protective cover 107, the inner side of the first lifting sliding plate 106 close to the first worm gear protective cover 107 is symmetrically installed with a first rotating support 108, the outer side of the first rotating support 108 is fixedly installed with a first rotating motor 109, the output end of the first rotating motor 109 is fixedly connected with a first rotating worm 110, one side of the first rotating worm 110 is meshingly connected with a first rotating worm wheel 111, the first rotating worm wheel 111 is rotatably connected with the first lifting sliding plate 106, and the first rotating worm wheel 111 is threadedly connected with the cleaning connecting rod 101. The bottom outer side of the first lifting sliding plate 106 is symmetrically installed with a second rotating support 112, the outer side of the second rotating support 112 is fixedly installed with a second rotating motor 113, the output end of the second rotating motor 113 is fixedly connected with a second rotating worm 114, one side of the second rotating worm 114 is meshingly connected with a second rotating worm wheel 115, the inner side of the second rotating worm wheel 115 is fixedly installed with an opening and closing sliding rod 116, the outer side of the opening and closing sliding rod 116 is slidably connected with an opening and closing sliding sleeve 117, the bottom of the opening and closing sliding sleeve 117 is fixedly installed with an opening and closing sliding plate 118, the top of the second rotating worm wheel 115 is rotatably connected with an opening and closing support 119, the opening and closing support 119 is fixedly installed at the bottom of the first lifting sliding plate 106, the bottom inner side of the opening and closing support 119 is fixedly installed with an opening and closing spiral sliding rail 120, the opening and closing spiral sliding rail 120 is slidably connected with the opening and closing sliding sleeve 117, and the bottom of the opening and closing sliding plate 118 is fixedly installed with a cleaning support 121. The device to be cleaned is placed outside the cleaning screen barrel 104, the first rotating motor 109 is started to drive the first rotating worm 110 to rotate, the first rotating worm 110 and the first rotating worm wheel 111 are meshingly connected, the first rotating worm wheel 111 is threadedly rotated outside the cleaning connecting rod 101, the first rotating worm wheel 111 drives the first lifting sliding plate 106 to move up and down, the second rotating motor 113 is started to drive the second rotating worm 114 to rotate, the second rotating worm 114 and the second rotating worm wheel 115 are meshingly connected, the second rotating worm wheel 115 is rotated, the opening and closing sliding sleeve 117 and the opening and closing spiral sliding rail 120 are slidably connected, and the device to be cleaned is cleaned.Under the action of the opening and closing spiral slide rail 120, the opening and closing sliding sleeve 117 drives the opening and closing sliding plate 118 and the cleaning support 121 to move relatively, and the cleaning support 121 can clamp and fix the outside of the appliance.

[0020] Please refer to Figures 4-8 The inner side of the cleaning support 121 is fixedly installed with a soft brush 122, the bottom inner side of the lifting support column 123 is fixedly installed with a switching motor 124, the output end of the switching motor 124 is fixedly connected with a lifting support 125, one side of the bottom of the lifting support 125 is fixedly installed with a lifting motor 126, the output end of the lifting motor 126 is fixedly connected with a bevel gear transmission assembly 127, the top of the bevel gear transmission assembly 127 is fixedly installed with a lifting threaded rod 128, the outer side of the lifting threaded rod 128 is threadedly connected with a lifting threaded sleeve 129, the outer side of the lifting threaded sleeve 129 is fixedly installed with a second lifting sliding plate 130, and the cleaning connecting rod 101 is fixedly installed around the bottom of the second lifting sliding plate 130. The high-pressure water sprayed in the cleaning mesh cylinder 104 can realize cleaning of the inner wall of the appliance. When the outer wall of the appliance needs to be cleaned, the first lifting sliding plate 106 continues to descend by rotating the first rotating worm wheel 111, the rotating bearing in the second rotating worm wheel 115 can realize rotation of the cleaning mesh cylinder 104, the soft brush 122 in the cleaning support 121 can clean the outer surface of the appliance, and the outer wall and the inner wall of the appliance are cleaned twice, so that the cleaning effect of the appliance is improved. The switching motor 124 is started to drive the lifting support 125 to rotate, so that the plurality of filter screens 102 and the cleaning mesh cylinder 104 can be switched, the appliance can be preliminarily cleaned, and the appliance can be soaked by using the protease-containing cleaning agent, the biofilm formed on the surface of the appliance due to drying of organic matter is cleaned by using the protease-containing cleaning agent, and the cleaning effect of the appliance is improved. The lifting motor 126 is started to drive the bevel gear transmission assembly 127 and the lifting threaded rod 128 to rotate, so that the lifting threaded sleeve 129 drives the second lifting sliding plate 130 and the cleaning connecting rod 101 to move up and down, the appliance to be cleaned can be taken out and placed from the inside of the cleaning cylinder 201, so that the appliance can be continuously cleaned, and the cleaning efficiency of the appliance is improved.

[0021] Please refer to Figure 1 , Figures 9-11The rotating cleaning mechanism 2 comprises a cleaning cylinder 201, support legs 202 are fixedly installed around the bottom of the cleaning cylinder 201, a blowdown valve 203 is fixedly installed on one side of the bottom of the cleaning cylinder 201, a second worm gear protective cover 204 is fixedly installed at the center position of the bottom of the cleaning cylinder 201, third rotating supports 205 are symmetrically installed on the inner side of the cleaning cylinder 201 close to the second worm gear protective cover 204, a third rotating motor 206 is fixedly installed on the outer side of the third rotating support 205, a third rotating worm 207 is fixedly connected to the output end of the third rotating motor 206, a third rotating worm gear 208 is meshingly connected to one side of the third rotating worm 207, a first connecting pipe 209 is rotatably connected to the bottom of the third rotating worm gear 208, and a flow divider 210 is fixedly installed on the top of the third rotating worm gear 208.The outer side of the second connecting pipe 211 is fixedly installed with a rotating main gear 212, a connecting clamping sleeve 213 is fixedly installed at the top of the rotating main gear 212, the connecting clamping sleeve 213 is clamped and connected with the connecting sleeve 105, the outer side of the rotating main gear 212 is meshed and connected with a meshing gear ring 214, the top of the meshing gear ring 214 is fixedly installed with a supporting ring 215, the supporting ring 215 is fixedly installed inside the cleaning cylinder 201, an extrusion valve 216 is fixedly installed inside the diverter 210, a valve bracket 217 is fixedly installed at the bottom inside of the extrusion valve 216, a valve telescopic rod 218 is fixedly installed at the top of the valve bracket 217, a valve spring 219 is fixedly installed at the outer side of the valve bracket 217 close to the valve telescopic rod 218, a valve piston 220 is fixedly installed at the top of the valve telescopic rod 218 and the valve spring 219, rotating from gears 221 are meshed and connected between the rotating main gears 212, the rotating from gears 221 are rotationally connected with the diverter 210, a plurality of groups of cleaning cylinders 201 are respectively put into proteinase-containing cleaning agent and cleaning water used for cleaning, the third rotating worm 207 is driven to rotate by the third rotating motor 206, the third rotating worm 207 is meshed and connected with the third rotating worm wheel 208, the third rotating worm wheel 208 drives the first connecting pipe 209 and the diverter 210 to rotate, the first connecting pipe 209 contacts the high-pressure water pump, the cleaning water is pumped into the inner wall of the diverter 210, the second connecting pipe 211 and the rotating main gear 212 flow into the cleaning mesh cylinder 104, thereby cleaning the inner wall of the appliance, the connecting clamping sleeve 213 is clamped and connected with the connecting sleeve 105, the diverter 210 drives the second connecting pipe 211, the rotating main gear 212 and the cleaning mesh cylinder 104 to revolve, the rotating main gear 212 drives the cleaning mesh cylinder 104 to rotate, which can improve the soaking effect of the proteinase-containing cleaning agent by rotating when soaking the proteinase-containing cleaning agent, facilitate cleaning of the biofilm, can fully clean the inner wall and the outer wall of the appliance when cleaning the appliance, reduce the cleaning dead angle, improve the cleaning effect, the valve piston 220 is lifted and lowered by the elastic force of the valve telescopic rod 218 and the valve spring 219 inside the valve bracket 217, the lifting height of the valve piston 220 is controlled by the extrusion rod 103 at the bottom of the filter screen 102, thereby controlling the flow of the cleaning water, achieving the effect of saving water.

[0022] Working principle: Before using the clinical tubular device flushing device for gynecology and obstetrics, the overall situation of the device needs to be checked to determine whether it can work normally, according to Figure 1 - Figure 11As shown, first, the protease-containing cleaning agent and clean water used for cleaning are respectively placed in the inner part of the plurality of cleaning barrels 201, the third rotating motor 206 is used to drive the third rotating worm 207 to rotate, the third rotating worm 207 and the third rotating worm gear 208 are connected in meshing mode, the third rotating worm gear 208 drives the first connecting pipe 209 and the flow divider 210 to rotate, the first connecting pipe 209 contacts the high-pressure water pump, the cleaning water is pumped into the inner wall of the flow divider 210, the second connecting pipe 211 and the rotating main gear 212 flow into the cleaning mesh barrel 104, thereby cleaning the inner wall of the appliance, the connecting clamping sleeve 213 and the connecting sleeve 105 are connected in meshing mode, the flow divider 210 drives the second connecting pipe 211, the rotating main gear 212 and the cleaning mesh barrel 104 to revolve, the rotating main gear 212 and the meshing tooth ring 214 are connected in meshing mode, the rotating main gear 212 drives the cleaning mesh barrel 104 to rotate, which can improve the soaking effect of the protease-containing cleaning agent by rotating when soaking the protease-containing cleaning agent, facilitate cleaning of the biofilm, and can fully clean the inner wall and outer wall of the appliance when cleaning the appliance, reduce the cleaning dead angle, improve the cleaning effect, the valve support 217, the valve extension rod 218 and the valve spring 219 are connected in meshing mode, the valve piston 220 is lifted and lowered, the lifting height of the valve piston 220 is controlled by the extrusion rod 103 at the bottom of the filter screen 102, thereby controlling the flow of the cleaning water, and achieving the effect of saving water.

[0023] Secondly, the appliance to be cleaned is placed outside the cleaning mesh barrel 104, the first rotating motor 109 is started to drive the first rotating worm 110 to rotate, the first rotating worm 110 and the first rotating worm gear 111 are connected in meshing mode, the first rotating worm gear 111 rotates outside the cleaning connecting rod 101, the first rotating worm gear 111 drives the first lifting sliding plate 106 to move up and down, the second rotating motor 113 is started to drive the second rotating worm 114 to rotate, the second rotating worm 114 and the second rotating worm gear 115 are connected in meshing mode, the second rotating worm gear 115 rotates, the opening and closing sliding sleeve 117 and the opening and closing spiral slide rail 120 are connected in sliding mode, the opening and closing sliding sleeve 117 drives the opening and closing sliding plate 118 and the cleaning support 121 to move relatively under the action of the opening and closing spiral slide rail 120, the cleaning support 121 can clamp and fix the outside of the appliance, and the high-pressure water sprayed in the cleaning mesh barrel 104 can clean the inner wall of the appliance.

[0024] Finally, when the outer wall of the appliance needs to be cleaned, the first lifting sliding plate 106 continues to descend by rotating the first rotating worm wheel 111, the rotating bearing inside the second rotating worm wheel 115 is used to realize the rotation of the cleaning net cylinder 104 appliance, the soft brush 122 inside the cleaning support 121 is used to clean the outer surface of the appliance, the double cleaning of the outer wall and the inner wall of the appliance is realized, thereby improving the cleaning effect of the appliance, the lifting support 125 is driven to rotate by starting the switching motor 124, the switching of the plurality of filter screens 102 and the cleaning net cylinder 104 is realized, the appliance can be preliminarily cleaned, and the appliance can be soaked by using the protease-containing cleaning agent, the biofilm formed on the surface of the appliance due to the drying of organic matter is cleaned by using the protease-containing cleaning agent, thereby improving the cleaning effect of the appliance, the bevel gear transmission assembly 127 and the lifting threaded rod 128 are driven to rotate by starting the lifting motor 126, the lifting threaded sleeve 129 drives the second lifting sliding plate 130 and the cleaning connecting rod 101 to move up and down, the appliance to be cleaned can be taken out and placed from the inside of the cleaning cylinder 201, thereby realizing the uninterrupted cleaning of the appliance and improving the cleaning efficiency of the appliance.

[0025] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A gynecological and obstetric clinical tubular instrument rinsing device, comprising an internal and external cleaning mechanism (1) and a lifting support column (123) installed in the middle of the internal and external cleaning mechanism (1). The bottom of the internal and external cleaning mechanism (1) is provided with a rotating cleaning mechanism (2), and the interior of the rotating cleaning mechanism (2) is provided with a connecting sleeve (213). Its features are, Also includes: The internal and external cleaning mechanism (1) includes a cleaning connecting rod (101), a filter screen (102) is fixedly installed at the bottom of the cleaning connecting rod (101), and a squeezing rod (103) is fixedly installed at the center of the bottom of the filter screen (102). The top of the filter screen (102) is rotatably connected to several cleaning screen cylinders (104), and the bottom of the dry cleaning screen cylinder (104) is fixedly installed with a connecting sleeve (105). The cleaning connecting rod (101) is slidably connected to a first lifting sliding plate (106), and a first worm gear guard (107) is fixedly installed on the top of the first lifting sliding plate (106).

2. The gynecological and obstetric clinical tubular instrument irrigation device according to claim 1, characterized in that: A first rotating bracket (108) is symmetrically installed on the inner side of the first lifting sliding plate (106) near the first worm gear protective cover (107). A first rotating motor (109) is fixedly installed on the outer side of the first rotating bracket (108). A first rotating worm (110) is fixedly connected to the output end of the first rotating motor (109). A first rotating worm wheel (111) is meshed with one side of the first rotating worm (110). The first rotating worm wheel (111) is rotatably connected to the first lifting sliding plate (106).

3. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 2, characterized in that: The first rotating worm gear (111) is threadedly connected to the cleaning connecting rod (101). The bottom outer side of the first lifting sliding plate (106) is symmetrically equipped with a second rotating bracket (112). The outer side of the second rotating bracket (112) is fixedly installed with a second rotating motor (113). The output end of the second rotating motor (113) is fixedly connected with a second rotating worm (114). One side of the second rotating worm (114) is meshed with a second rotating worm wheel (115).

4. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 3, characterized in that: An opening and closing sliding rod (116) is fixedly installed around the inside of the second rotating worm gear (115). An opening and closing sliding sleeve (117) is slidably connected to the outside of the opening and closing sliding rod (116). An opening and closing sliding plate (118) is fixedly installed at the bottom of the opening and closing sliding sleeve (117). An opening and closing bracket (119) is rotatably connected to the top of the second rotating worm gear (115). The opening and closing bracket (119) is fixedly installed at the bottom of the first lifting sliding plate (106). An opening and closing spiral slide rail (120) is fixedly installed on the inner side of the bottom of the opening and closing bracket (119).

5. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 4, characterized in that: The opening and closing spiral slide rail (120) is slidably connected to the opening and closing sliding sleeve (117). A cleaning bracket (121) is fixedly installed at the bottom of the opening and closing sliding plate (118). A soft brush (122) is fixedly installed on the inner side of the cleaning bracket (121). A switching motor (124) is fixedly installed on the inner side of the bottom of the lifting support column (123). A lifting bracket (125) is fixedly connected to the output end of the switching motor (124).

6. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 5, characterized in that: A lifting motor (126) is fixedly installed on one side of the bottom of the lifting bracket (125). A bevel gear transmission assembly (127) is fixedly connected to the output end of the lifting motor (126). A lifting threaded rod (128) is fixedly installed on the top of the bevel gear transmission assembly (127). A lifting threaded sleeve (129) is threadedly connected to the outer side of the lifting threaded rod (128). A second lifting sliding plate (130) is fixedly installed on the outer side of the lifting threaded sleeve (129). The cleaning connecting rod (101) is fixedly installed around the bottom of the second lifting sliding plate (130).

7. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 1, characterized in that: The rotating cleaning mechanism (2) includes a cleaning cylinder (201), with support legs (202) fixedly installed around the bottom of the cleaning cylinder (201), a drain valve (203) fixedly installed on one side of the bottom of the cleaning cylinder (201), a second worm gear guard (204) fixedly installed at the center of the bottom of the cleaning cylinder (201), a third rotating bracket (205) symmetrically installed on the inner side of the cleaning cylinder (201) near the second worm gear guard (204), a third rotating motor (206) fixedly installed on the outer side of the third rotating bracket (205), and a third rotating worm (207) fixedly connected to the output end of the third rotating motor (206).

8. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 7, characterized in that: A third rotating worm gear (208) is meshed with one side of the third rotating worm (207). A first connecting pipe (209) is rotatably connected to the bottom of the third rotating worm gear (208). A distributor (210) is fixedly installed on the top of the third rotating worm gear (208). A second connecting pipe (211) is fixedly installed on the outside of the distributor (210). A rotating main gear (212) is rotatably connected to the top of the second connecting pipe (211). A connecting sleeve (213) is fixedly installed on the top of the rotating main gear (212). The connecting sleeve (213) is engaged with the connecting sleeve (105). A meshing toothed ring (214) is meshed with the outside of the rotating main gear (212).

9. A gynecological and obstetric clinical tubular instrument irrigation device according to claim 8, characterized in that: A support ring (215) is fixedly installed on the top of the meshing gear ring (214). The support ring (215) is fixedly installed inside the cleaning cylinder (201). A squeeze valve (216) is fixedly installed inside the distributor (210). A valve bracket (217) is fixedly installed on the bottom inner side of the squeeze valve (216). A valve telescopic rod (218) is fixedly installed on the top of the valve bracket (217). A valve spring (219) is fixedly installed on the outer side of the valve bracket (217) near the valve telescopic rod (218). A valve piston (220) is fixedly installed on the top of the valve telescopic rod (218) and the valve spring (219). A rotating slave gear (221) meshes between the rotating main gear (212). The rotating slave gear (221) is rotatably connected to the distributor (210).

Citation Information

Patent Citations

  • Flushing device for clinical tubular appliances in obstetrics and gynecology department

    CN217393210U