Cleaning device for instruments in obstetrics and gynecology department

By designing the cleaning device of obstetrics and gynecology equipment, using suction pumps, oscillation components and vortex components, the problem of inefficiency of existing cleaning methods is solved, and a fast and efficient cleaning effect is achieved.

CN120169732AActive Publication Date: 2025-06-20HUNAN QIANLONG MEDICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510649661.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-06-20
Estimated Expiration
2045-05-20

AI Technical Summary

Technical Problem

The existing obstetrics and gynecology equipment cleaning methods require long-term soaking, consuming a large amount of cleaning agent, resulting in insufficiency of cleaning.

Method used

A cleaning device for obstetrics and gynecology equipment is designed, including a cleaning tank, a liquid storage tank, an oscillation assembly and a vortex assembly. The cleaning agent is poured into the cleaning tank by a suction pump, and the separation of the attachment from the instrument is accelerated using the oscillation assembly and the vortex assembly.

Benefits of technology

It realizes rapid softening and separation of attachments on the instrument, reduces cleaning time and cleaning agent usage, and improves cleaning efficiency.

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Abstract

The invention relates to the technical field of medical instruments, in particular to a gynecological instrument cleaning device which comprises a mounting frame, a cleaning tank and a liquid storage tank are mounted on the mounting frame, a moving part is arranged in the cleaning tank and used for inserting instruments, and the liquid storage tank is connected with the cleaning tank through a suction pump. The suction pump can be used for filling the cleaning agent in the liquid storage tank into the cleaning tank, so that attachments on the surface of the instrument on the moving part are softened; the moving part is connected with an oscillation assembly on the liquid storage tank, and the oscillation assembly can drive the moving part to reciprocate in the axial direction of the cleaning tank, so that separation of attachments and instruments is accelerated; the cleaning tank is further provided with a swirling flow assembly, the swirling flow assembly comprises an air blowing part installed on the cleaning tank, the air blowing part is connected with a deflection assembly on the liquid storage tank, and when the oscillation assembly acts, the deflection assembly can synchronously drive the air blowing part to deflect in the cleaning tank, so that a cleaning agent in the cleaning tank forms turbulent flow; therefore, the separation speed of the attachment and the instrument is accelerated.
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Description

Technical Field

[0001] The invention relates to the technical field of medical instruments, in particular to a cleaning device for gynecological and obstetric instruments. Background Art

[0002] Cleaning of obstetrics and gynecology instruments is an important step in ensuring instrument hygiene and preventing cross infection. Therefore, relevant instruments need to be effectively cleaned in a timely manner after use.

[0003] Common cleaning methods include soaking, rinsing and flushing; soaking is to use liquid cleaning agent to soften the attachments on the surface of the instrument, which is conducive to the subsequent rinsing process, so that the softened attachments can be separated from the surface of the instrument. Flushing is generally the last stage, mainly using running water to rinse the rinsed instrument.

[0004] The current immersion cleaning method is to place the instrument to be cleaned in a cleaning tank first, then add a cleaning agent into the cleaning tank, and use the softening effect of the cleaning agent to soften and clean the attachments attached to the instrument. However, in order to completely soften the attachments on the instrument, the instrument needs to be soaked for a long time, especially for some sticky attachments, which takes a longer time. In addition, the cleaning effect of the cleaning agent will gradually decrease as the cleaning agent is used, which will result in a longer cleaning time for the instrument and require a large amount of cleaning agent, which ultimately leads to low cleaning efficiency of the instrument. Summary of the invention

[0005] The purpose of the present invention is to provide a gynecological instrument cleaning device to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions: A gynecological instrument cleaning device comprises: a mounting frame, a cleaning tank and a liquid storage tank are mounted on the mounting frame, a moving part is arranged in the cleaning tank, the moving part is used to insert and place the instrument so that the cleaning tank can clean the instrument later, the liquid storage tank is connected to the cleaning tank through a suction pump, and the suction pump is operated to pour the cleaning agent in the liquid storage tank into the cleaning tank, so as to soften the attachments on the instrument surface on the moving part; The moving part is connected to an oscillating assembly installed on the liquid storage tank. When the oscillating assembly is in motion, it can drive the moving part to reciprocate along the axial direction of the cleaning tank, thereby accelerating the separation of the attachments on the instrument from the instrument. The cleaning tank is also provided with a vortex component, which includes a blowing member rotatably mounted on the cleaning tank, and the blowing member is connected to a deflection component provided on the liquid storage tank. When the oscillation component is actuated, the deflection component is actuated synchronously to drive the blowing member to deflect in the cleaning tank, so that the cleaning agent in the cleaning tank forms a vortex, thereby accelerating the separation speed of the attachments from the instrument.

[0007] The gynecological instrument cleaning device as described above: the oscillation component includes a driving structure and a reciprocating member, the driving structure includes a pulley rotatably mounted on the liquid storage tank, the pulleys are arranged in two groups along the vertical direction of the space, a belt is arranged between the two groups of pulleys, and a sliding rod is fixedly arranged on the belt.

[0008] The gynecological instrument cleaning device as described above: the reciprocating part includes a lifting plate slidably arranged on the liquid storage tank, the lifting plate is provided with a slide groove on the side facing the liquid storage tank, the slide rod is slidably arranged in the slide groove, and a connecting rod is fixedly arranged on the lifting plate, and the end of the connecting rod away from the lifting plate passes through the cleaning tank and is fixedly connected to the moving part.

[0009] The gynecological instrument cleaning device as described above: the movable part includes a lifting plate, the lifting plate is slidably connected to a fixed part fixed in the cleaning tank, and a plurality of groups of insertion holes are evenly arranged on the lifting plate, the insertion holes are used to position the instrument so that the instrument can be stably placed on the lifting plate.

[0010] The gynecological instrument cleaning device as described above: the blowing part includes a spherical sleeve fixedly arranged on the cleaning tank, a spherical part is sealingly and rotatably installed in the spherical sleeve, an air nozzle is arranged on the spherical part, the air nozzle enters the cleaning tank along the tangential direction of the cleaning tank, and the air nozzle is connected to the air pump arranged on the mounting frame through a telescopic part.

[0011] The gynecological instrument cleaning device as described above: the telescopic part includes a telescopic tube, one end of which is inserted into the air nozzle, and the other end is connected to the air pump through a pump air pipe, and a section of bellows is provided on the pump air pipe.

[0012] The gynecological instrument cleaning device as described above: the deflection assembly includes a lifting member and a driving member, the lifting member includes a lifting rod fixedly connected to the telescopic tube, the lifting rod is connected to the mounting frame through a limiting structure, and a slide rail is fixedly provided on one end of the lifting rod away from the telescopic tube.

[0013] The obstetrics and gynecology instrument cleaning device as described above: The limiting structure includes a limiting sleeve fixedly arranged on the mounting frame and a protrusion fixedly arranged on the lifting rod. Two groups of the protrusions are equidistantly arranged along the circumferential direction of the lifting rod, and the two groups of protrusions are adapted to the fitting grooves formed on the limiting sleeve, so that the lifting rod can only be lifted and lowered along the axial direction of the limiting sleeve.

[0014] The obstetrics and gynecology instrument cleaning device as described above: The driving member includes a turntable rotatably mounted on the liquid storage tank. A protruding column is fixedly arranged on the side of the turntable away from the liquid storage tank. The protruding column is slidably arranged in the slide rail, and the turntable is connected to one of the groups of belt pulleys through a linkage structure arranged in the liquid storage tank.

[0015] The obstetrics and gynecology instrument cleaning device as described above: The linkage structure is arranged in an inner attachment box fixedly arranged in the liquid storage tank and includes a driving rod rotatably mounted in the inner attachment box. The driving rod is coaxially fixed to the output shaft of a motor fixedly arranged on the liquid storage tank, and the driving rod is connected to the turntable through a linkage transmission belt. A first linkage wheel is coaxially fixedly arranged on the turntable, and a second linkage wheel is coaxially fixedly arranged on one of the groups of belt pulleys. The second linkage wheel is connected to the first linkage wheel through a linkage belt.

[0016] Compared with the prior art, the beneficial effects of the present invention are: The provided suction pump pumps the cleaning agent in the liquid storage tank into the cleaning tank and stops after reaching the preset height. Subsequently, the cleaning agent entering the cleaning tank is used to soak the instruments, which can soften the attachments adhering to the surfaces of the instruments. By arranging a lifting plate in the cleaning tank, the instruments to be cleaned can be fixed by the uniformly arranged insertion holes on the lifting plate. After the cleaning agent soaks for a period of time, the motor and the air pump enter the working state. Immediately, the oscillation assembly and the deflection assembly connected to the motor can synchronously drive the lifting plate and the air nozzles on the cleaning tank to perform reciprocating movements: When the oscillation assembly acts, it can drive the lifting plate to drive the instruments to vibrate up and down along the axial direction of the cleaning tank in the cleaning agent. During this process, the scouring effect of the cleaning agent on the attachments can accelerate the separation speed of the softened attachments from the instruments. When the deflection component operates, due to the limitation of the limit plate, the air nozzle can reciprocally deflect within the plane formed by the axis of symmetry of the limit plate along the vertical direction and the axis of the air nozzle. During the deflection process, the airflow ejected by the air nozzle can cause the cleaning agent in the cleaning tank to form swirling flows in different directions around the inner wall of the cleaning tank. These swirling flows scour the instruments, which can accelerate the separation of the attachments from the instruments. At the same time, when the airflow passes through the cleaning agent, bubbles that are insoluble in water are formed. When these bubbles rise in the liquid, they will come into contact with the surface of the object to be cleaned. By utilizing the tiny but powerful impact force generated when the bubbles burst, the dirt and impurities on the surface of the object can be effectively removed. Moreover, under the impact and shearing action of the bubbles, a good cleaning effect can be achieved with a relatively low amount of cleaning liquid, thereby reducing the waste of the cleaning agent. And the bubbles evenly distributed in the liquid can ensure that all parts of the object surface are subjected to a consistent cleaning action, avoiding the situation of incomplete local cleaning, so as to achieve the purpose of quickly cleaning the instruments and improving the cleaning efficiency of the instruments. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of an obstetrics and gynecology instrument cleaning device.

[0018] Figure 2 It is a schematic structural diagram of the other side of the obstetrics and gynecology instrument cleaning device.

[0019] Figure 3 It is a schematic structural diagram of the spherical sleeve in the obstetrics and gynecology instrument cleaning device.

[0020] Figure 4 It is a schematic structural diagram of the interior of the cleaning tank in the obstetrics and gynecology instrument cleaning device.

[0021] Figure 5 It is a schematic structural diagram of the moving part in the obstetrics and gynecology instrument cleaning device.

[0022] Figure 6 It is a schematic structural diagram of the connection between the air blowing part and the cleaning tank in the obstetrics and gynecology instrument cleaning device.

[0023] Figure 7 It is a schematic structural diagram of the connection between the air blowing part and the telescopic part in the obstetrics and gynecology instrument cleaning device.

[0024] Figure 8 It is a schematic structural diagram of the interior of the liquid storage tank in the obstetrics and gynecology instrument cleaning device.

[0025] Figure 9 It is a schematic structural diagram of the internal linkage structure of the inner attachment box in the obstetrics and gynecology instrument cleaning device.

[0026] Figure 10 It is a schematic structural diagram of the connection between the air blowing part and the deflection component in the obstetrics and gynecology instrument cleaning device.

[0027] Figure 11 It is a schematic structural diagram of the linkage structure in the cleaning device for obstetrics and gynecology instruments.

[0028] Figure 12 It is a schematic structural diagram of the connection between the oscillation component and the moving part in the cleaning device for obstetrics and gynecology instruments.

[0029] Figure 13 It is a schematic structural diagram of the connection between the drive structure and the linkage structure in the cleaning device for obstetrics and gynecology instruments.

[0030] In the figure: 1. mounting rack; 101. control system; 2. liquid storage tank; 201. inner attached box; 202. clamping groove; 3. suction pump; 4. air pump; 5. cleaning tank; 501. fixing part; 502. liquid inlet; 503. socket ring; 6. inductor; 7. limiting plate; 8. pump air pipe; 801. corrugated pipe; 9. spherical sleeve; 10. limiting sleeve; 11. air nozzle; 12. telescopic pipe; 13. spherical part; 14. lifting plate; 1401. insertion hole; 15. connecting rod; 16. lifting board; 1601. sliding groove; 1602. clamping rod; 17. lifting rod; 1701. protrusion; 18. slide rail; 19. drive rod; 20. first linkage wheel; 21. second linkage wheel; 22. turntable; 2201. stud; 23. belt pulley; 24. belt; 2401. slide bar. Detailed implementation manners

[0031] The following will describe various exemplary embodiments, features and aspects of the present application in detail with reference to the drawings. The same reference numerals in the drawings denote elements with the same or similar functions. Although various aspects of the embodiments are shown in the drawings, the drawings do not have to be drawn to scale unless otherwise specified.

[0032] The special term "exemplary" here means "serving as an example, embodiment or illustration". Any embodiment described as "exemplary" here does not have to be construed as superior or better than other embodiments.

[0033] In addition, in order to better illustrate the present application, numerous specific details are given in the following specific embodiments. Those skilled in the art should understand that the present application can also be implemented without some specific details. In some instances, methods, means, and elements well known to those skilled in the art are not described in detail so as to highlight the gist of the present application.

[0034] Please refer to Figure 1 - Figure 13 , in the embodiment of the present invention, a cleaning device for obstetrics and gynecology instruments includes: A mounting frame 1 is provided with a cleaning tank 5 and a liquid storage tank 2. A movable part is arranged in the cleaning tank 5, and the movable part is used for inserting and placing instruments so that the cleaning tank 5 can clean the instruments later. The liquid storage tank 2 is connected to the cleaning tank 5 through a suction pump 3. When the suction pump 3 is working, the cleaning agent in the liquid storage tank 2 can be poured into the cleaning tank 5, so as to soften the attachments on the surface of the instruments on the movable part.

[0035] Preferably, see Figure 1 , Figure 2 , Figure 3 The mounting frame 1 is also provided with a sensor 6 and a control system 101. The suction pump 3 is communicatively connected with the control system 101. The sensor 6 is communicatively connected with the suction pump 3. The suction pump 3 is connected with the liquid storage tank 2 and a liquid inlet 502 opened at the bottom of the cleaning tank 5 through a suction pipe.

[0036] In particular, the liquid stored in the liquid storage tank 2 can be clean water or a medical cleaning agent, and the medical cleaning agent includes an alkaline cleaning agent, a neutral cleaning agent, an acidic cleaning agent and an enzyme cleaning agent. No matter which cleaning agent is used, when cleaning metal instruments, the metal instruments can be effectively cleaned to keep the instruments clean and free of dirt.

[0037] In the initial state, no cleaning agent is introduced into the cleaning tank 5. When it is necessary to clean the obstetric and gynecological instruments, the cleaning tank 5 is opened first, and the medical instruments to be cleaned are inserted into the movable part. After the instruments are placed, the cleaning tank 5 is closed, and then the control system 101 is turned on. The control system 101 can drive the suction pump 3 to work, and then the suction pump 3 pumps the cleaning agent in the liquid storage tank 2 into the cleaning tank 5 through the suction pipe. During this process, the sensor 6 can detect the liquid level of the cleaning liquid in the cleaning tank 5 in real time. After the liquid level reaches the preset value, the sensor 6 sends a signal to the control system 101, and then the control system 101 issues a stop command to the suction pump 3. At this time, the liquid level in the cleaning tank 5 is maintained at a stable height, so that the instruments inserted on the movable part are immersed and cleaned. During the immersion process, the cleaning liquid can soften the attachments on the instruments, so that the attachments can be easily detached from the instruments during the subsequent rinsing process.

[0038] Furthermore, the movable part is connected to an oscillating component installed on the liquid storage tank 2. When the oscillating component is in operation, it can drive the movable part to reciprocate along the axial direction of the cleaning tank 5, so that the movable part can drive the instrument to vibrate along the axial direction of the cleaning tank 5, thereby accelerating the separation of attachments on the instrument from the instrument.

[0039] For details, please refer to Figure 1 , Figure 2 , Figure 3 ,Figure 4 , Figure 5 , Figure 10 , Figure 12 , Figure 13 The oscillation assembly includes a driving structure and a reciprocating member. The driving structure includes a pulley 23 that is installed on the liquid storage tank 2. Two groups of pulleys 23 are arranged in the vertical direction of the space. A belt 24 is arranged between the two groups of pulleys 23. A sliding rod 2401 is fixedly arranged on the belt 24.

[0040] The reciprocating member includes a lifting plate 16 slidably arranged on the liquid storage tank 2, and a slide groove 1601 is opened on the side of the lifting plate 16 facing the liquid storage tank 2, and the slide rod 2401 is slidably arranged in the slide groove 1601, and a connecting rod 15 is fixedly arranged on the lifting plate 16, and the end of the connecting rod 15 away from the lifting plate 16 passes through the cleaning tank 5 and is fixedly connected to the moving member. In particular, a sleeve ring 503 is arranged at the bottom of the above-mentioned cleaning tank 5, and the connecting rod 15 is sealingly slidably arranged in the sleeve ring 503, and a sealing ring is arranged on the inner wall of the sleeve ring 503. With the cooperation of the sealing ring, leakage of the cleaning agent at the connection between the connecting rod 15 and the cleaning tank 5 can be avoided.

[0041] In detail, the lifting plate 16 is fixedly provided with a clamping rod 1602 on one side facing the liquid storage tank 2. The clamping rod 1602 is symmetrically arranged in two groups along the length direction of the lifting plate 16. The two groups of the clamping rods 1602 are slidably arranged in the clamping grooves 202 opened on the liquid storage tank 2. Under the restriction of the clamping rods 1602 and the clamping grooves 202, the lifting plate 16 can only be lifted and lowered along the vertical direction of the space, thereby driving the moving part to reciprocate along the axial direction of the cleaning tank 5, and then the equipment placed on the moving part can vibrate up and down in the cleaning agent to accelerate the separation of the softened attachments from the equipment.

[0042] For further information, see Figure 4 , Figure 5 The movable part includes a lifting plate 14, which is slidably connected to a fixing part 501 fixedly arranged in the cleaning tank 5, and a plurality of groups of insertion holes 1401 are evenly arranged on the lifting plate 14, and the insertion holes 1401 are used to position the instrument so that the instrument can be stably placed on the lifting plate 14.

[0043] Preferably, four groups of the fixing members 501 are equidistantly arranged along the circumferential direction of the cleaning tank 5, and the lifting plate 14 is slidably arranged on the four groups of fixing members 501. Under the restriction of the fixing members 501, the lifting plate 14 can only be lifted and lowered along the axial direction of the cleaning tank 5, and a plurality of groups of hollow grooves are provided on the lifting plate 14. The provision of the hollow grooves allows the cleaning agent to be immersed above the lifting plate 14, thereby fully immersing the instruments placed on the lifting plate 14 to achieve the purpose of cleaning the instruments.

[0044] In particular, a circle of rubber pads is formed on the inner wall of the insertion hole 1401, and the rubber pads can increase the basic friction between the insertion hole 1401 and the instrument, so that during the soaking process, the obstetrics and gynecology instruments can be stably inserted on the lifting plate 14 and follow the lifting plate 14 to perform reciprocating lifting and lowering movements in the cleaning tank 5, thereby accelerating the separation of attachments and instruments.

[0045] Specifically, in the initial state, the lifting plate 14 is away from the bottom of the cleaning tank 5, which can facilitate medical staff to insert the instrument onto the lifting plate 14. At this time, the lifting plate 16 is close to the cleaning tank 5. When the instrument is inserted and the cleaning agent liquid level reaches a preset height, the cleaning agent can fully soak the instrument. After soaking for a period of time, the control system 101 can drive the pulley 23 to rotate continuously in the same direction. During this period of time, the cleaning agent can soften the attachments on the instrument so that the attachments can be separated from the instrument, thereby achieving the purpose of separating the instrument.

[0046] And when the pulley 23 is continuously rotating in the same direction, it can drive the belt 24 to continuously rotate in the same direction. During this process, the slide bar 2401 can slide in the slide groove 1601. In the process of continuous rotation of the belt 24 in the same direction, the contact and extrusion of the slide bar 2401 on the wall of the slide groove 1601 can force the lifting plate 16 to drive the lifting plate 14 to reciprocate along the axial direction of the cleaning tank 5, so that the instrument can oscillate up and down in the cleaning tank 5. The reciprocating vibration of the instrument can speed up the separation of the attachments from the instrument, thereby improving the efficiency of instrument cleaning.

[0047] For further information, see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10The cleaning tank 5 is also provided with a vortex component, which includes a blowing member rotatably mounted on the cleaning tank 5, and the blowing member is connected to a deflection component provided on the liquid storage tank 2. When the oscillation component is actuated, the deflection component is actuated synchronously to drive the blowing member to deflect in the cleaning tank 5, so that the cleaning agent in the cleaning tank 5 forms a vortex, thereby accelerating the separation speed of the attachments from the instrument.

[0048] The blowing part includes a spherical sleeve 9 fixedly arranged on the cleaning tank 5, a spherical part 13 is sealed and rotatably installed in the spherical sleeve 9, an air nozzle 11 is arranged on the spherical part 13, the air nozzle 11 enters the cleaning tank 5 along the tangential direction of the cleaning tank 5, and the air nozzle 11 is connected to the air pump 4 arranged on the mounting frame 1 through a telescopic part.

[0049] For details, please refer to Figure 4 , Figure 6 , Figure 7 The spherical member 13 is sealed and rotatably mounted in the spherical sleeve 9, and one end of the air nozzle 11 protruding from the outside of the cleaning tank 5 is slidably connected to the limit plate 7 fixedly arranged on the mounting frame 1. Under the restriction of the limit plate 7, the air nozzle 11 can only deflect within the plane formed by the symmetry axis of the limit plate 7 along the vertical direction and the axis of the air nozzle 11. In particular, since the air nozzle 11 is inserted into the cleaning tank 5 in the tangential direction of the cleaning tank 5, when the air nozzle 11 continuously injects airflow into the cleaning tank 5, the airflow can cause the cleaning agent in the cleaning tank 5 to form vortices in different directions around the inner wall of the cleaning tank 5. These vortices can flush the instrument so that the attachments can be quickly separated from the instrument.

[0050] In particular, during the inflation process, the bubbles formed by the gas in the cleaning agent are difficult to dissolve in water. Therefore, the bubbles generated by the inflation will contact the surface of the object to be cleaned during the rising process in the liquid. When the bubbles burst, they will produce a small but strong impact force, which can effectively remove dirt and impurities on the surface of the object. Through the impact and shearing action of the bubbles, a better cleaning effect can be achieved with a lower amount of cleaning liquid, thereby reducing the waste of water resources. At the same time, the uniform distribution of bubbles in the liquid can ensure that all parts of the surface of the object are subjected to a consistent cleaning effect, avoiding incomplete local cleaning.

[0051] For details, please refer to Figure 6 , Figure 7 The telescopic part includes a telescopic tube 12, one end of the telescopic tube 12 is inserted into the air nozzle 11, and the other end is connected to the air pump 4 through the pump air pipe 8, and a section of bellows 801 is provided on the pump air pipe 8. The bellows 801 can be telescopic so that when the telescopic tube 12 is subsequently moved, the air pump 4 and the air nozzle 11 can always be kept in a connected state.

[0052] Specifically, the air pump 4 is communicatively connected with the control system 101. When the control system 101 drives the pulley 23 to rotate continuously in the same direction, the control system 101 can synchronously drive the air pump 4 to enter the working state, and then the air pump 4 can continuously deliver airflow into the cleaning tank 5 to speed up the cleaning efficiency of the detergent on the equipment.

[0053] For further information, see Figure 6 , Figure 7 , Figure 10 , Figure 11 , Figure 13 The deflection assembly includes a lifting member and a driving member. The lifting member includes a lifting rod 17 fixedly connected to the telescopic tube 12. The lifting rod 17 is connected to the mounting frame 1 through a limiting structure, and a slide rail 18 is fixedly provided at one end of the lifting rod 17 away from the telescopic tube 12.

[0054] The limiting structure includes a limiting sleeve 10 fixedly arranged on the mounting frame 1, and a protrusion 1701 fixedly arranged on the lifting rod 17, and two groups of protrusions 1701 are equidistantly arranged along the circumferential direction of the lifting rod 17. The two groups of protrusions 1701 are adapted to the adaption grooves formed on the limiting sleeve 10, so that the lifting rod 17 can only be lifted and lowered along the axial direction of the limiting sleeve 10.

[0055] The driving member includes a turntable 22 rotatably mounted on the liquid storage tank 2, a protrusion 2201 is fixedly arranged on the side of the turntable 22 away from the liquid storage tank 2, the protrusion 2201 is slidably arranged in the slide rail 18, and the turntable 22 is connected to one group of the pulleys 23 through a linkage structure arranged in the liquid storage tank 2.

[0056] The linkage structure is arranged in an inner box 201 fixedly arranged in the liquid storage tank 2, and the inner box 201 can prevent the linkage structure from being soaked in the cleaning agent, thereby providing protection for the linkage structure, including a driving rod 19 rotatably installed in the inner box 201, the driving rod 19 is coaxially fixed with the output shaft of the motor fixedly arranged on the liquid storage tank 2, and the driving rod 19 is connected to the turntable 22 through a linkage transmission belt, and a first linkage wheel 20 is coaxially fixedly arranged on the turntable 22, and a second linkage wheel 21 is coaxially fixedly arranged on one group of the pulleys 23, and the second linkage wheel 21 is connected to the first linkage wheel 20 through a linkage belt.

[0057] In particular, the radius of the first linkage wheel 20 is a multiple of the radius of the second linkage wheel 21, and the motor is connected to the control system 101 for communication. When the cleaning agent reaches a preset height and the instrument is soaked for a certain period of time, the control system 101 can control the motor and the air pump 4 to perform synchronous actions, and then the motor can drive the turntable 22 to rotate continuously in the same direction. When the turntable 22 rotates continuously in the same direction, the protruding column 2201 fixedly arranged on the turntable 22 can slide back and forth in the slide rail 18, and in the process of the protruding column 2201 sliding the rod, The contact and compression of the protruding column 2201 on the slide rail 18 can force the slide rail 18 to drive the lifting rod 17 and the telescopic tube 12 to move back and forth along the axial direction of the cleaning tank 5. During the movement, the telescopic tube 12 can slide in the air nozzle 11. At the same time, the lifting telescopic tube 12 can drive the air nozzle 11 to deflect up and down in the cleaning tank 5, so that when the air nozzle 11 is working, it can generate vortexes in various directions in the cleaning tank 5, so that all parts of the instrument can be flushed by bubbles, thereby improving the overall cleanliness of the instrument.

[0058] And in the process of continuous rotation of the turntable 22 in the same direction, the first interlocking wheel 20 can rotate synchronously with the turntable 22. Subsequently, under the connection of the interlocking belt, the first interlocking wheel 20 can drive the second interlocking wheel 21 to rotate continuously in the same direction. At the same time, due to the transmission ratio between the first interlocking wheel 20 and the second interlocking wheel 21, the first interlocking wheel 20 can drive the second interlocking wheel 21 to rotate multiple circles in the process of following the turntable 22 to rotate one circle, and then the pulley 23 can drive the belt 24 to rotate at least one circle, so that while the air nozzle 11 is working, the lifting plate 14 can synchronously drive the instrument to vibrate in the cleaning tank 5, so as to achieve the purpose of quickly separating the attachments from the instrument.

[0059] And after the control system 101 controls the motor and the air pump 4 to work for a period of time, the control system 101 can send a stop command to the motor and the air pump 4. At this time, the lifting plate 14 returns to the initial state. Then, the control system 101 can drive the suction pump 3 to suck the cleaning agent in the cleaning tank 5. When the instrument is cleaned next time, the control system 101 will repeat the above process and deliver clean cleaning agent to the cleaning tank 5 for the next cleaning of the instrument.

[0060] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, in any regard, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0061] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A gynecological instrument cleaning device, characterized in that: include: A mounting frame (1), wherein a cleaning tank (5) and a liquid storage tank (2) are mounted on the mounting frame (1), wherein a moving part is arranged in the cleaning tank (5), and wherein the moving part is used to insert and place an instrument so that the cleaning tank (5) can subsequently clean the instrument, wherein the liquid storage tank (2) is connected to the cleaning tank (5) via a suction pump (3), and when the suction pump (3) is in operation, the cleaning agent in the liquid storage tank (2) can be poured into the cleaning tank (5), thereby softening the attachments on the surface of the instrument on the moving part; The moving part is connected to an oscillating component mounted on the liquid storage tank (2); when the oscillating component is in motion, it can drive the moving part to reciprocate along the axial direction of the cleaning tank (5), thereby accelerating the separation of the attached matter on the instrument from the instrument; The cleaning tank (5) is also provided with a vortex assembly, the vortex assembly comprising a blowing member rotatably mounted on the cleaning tank (5), the blowing member being connected to a deflection assembly arranged on the liquid storage tank (2); when the oscillating assembly is actuated, the deflection assembly is actuated synchronously, and can drive the blowing member to deflect in the cleaning tank (5), so that the cleaning agent in the cleaning tank (5) forms a vortex, thereby accelerating the speed of separation of the attached matter from the instrument.

2. The gynecological and obstetrics instrument cleaning device according to claim 1, characterized in that: The oscillation assembly comprises a driving structure and a reciprocating member, the driving structure comprising a pulley (23) rotatably mounted on the liquid storage tank (2), two groups of pulleys (23) being arranged along a vertical direction of space, a belt (24) being arranged between the two groups of pulleys (23), and a sliding rod (2401) being fixedly arranged on the belt (24).

3. The gynecological and obstetrics instrument cleaning device according to claim 2, characterized in that: The reciprocating member comprises a lifting plate (16) slidably arranged on the liquid storage tank (2); a slide groove (1601) is provided on a side of the lifting plate (16) facing the liquid storage tank (2); the slide rod (2401) is slidably arranged in the slide groove (1601); and a connecting rod (15) is fixedly arranged on the lifting plate (16); an end of the connecting rod (15) away from the lifting plate (16) passes through the cleaning tank (5) and is fixedly connected to the moving member.

4. The gynecological and obstetrics instrument cleaning device according to claim 3, characterized in that: The movable part comprises a lifting plate (14), the lifting plate (14) being slidably connected to a fixing part (501) fixedly arranged in the cleaning tank (5), and a plurality of groups of insertion holes (1401) being evenly arranged on the lifting plate (14), the insertion holes (1401) being used to position the instrument so that the instrument can be stably placed on the lifting plate (14).

5. The gynecological and obstetric instrument cleaning device according to claim 2, characterized in that: The blowing member comprises a spherical sleeve (9) fixedly arranged on the cleaning tank (5), a spherical member (13) being rotatably mounted in the spherical sleeve (9), an air nozzle (11) being arranged on the spherical member (13), the air nozzle (11) entering the cleaning tank (5) along a tangential direction of the cleaning tank (5), and the air nozzle (11) being connected to an air pump (4) arranged on the mounting frame (1) via a telescopic member.

6. The gynecological and obstetrics instrument cleaning device according to claim 5, characterized in that: The telescopic member comprises a telescopic tube (12), one end of the telescopic tube (12) is inserted into the air nozzle (11), and the other end is connected to the air pump (4) via a pump air pipe (8), and a section of bellows (801) is provided on the pump air pipe (8).

7. The gynecological and obstetric instrument cleaning device according to claim 6, characterized in that: The deflection assembly comprises a lifting member and a driving member, the lifting member comprises a lifting rod (17) fixedly connected to the telescopic tube (12), the lifting rod (17) being connected to the mounting frame (1) via a limiting structure, and a slide rail (18) is fixedly provided at one end of the lifting rod (17) away from the telescopic tube (12).

8. The gynecological and obstetric instrument cleaning device according to claim 7, characterized in that: The limiting structure comprises a limiting sleeve (10) fixedly arranged on the mounting frame (1), and a protrusion (1701) fixedly arranged on the lifting rod (17), wherein two groups of the protrusions (1701) are equidistantly arranged along the circumferential direction of the lifting rod (17), and the two groups of the protrusions (1701) are adapted to the adaption grooves formed on the limiting sleeve (10), so that the lifting rod (17) can only be lifted and lowered along the axial direction of the limiting sleeve (10).

9. The gynecological and obstetric instrument cleaning device according to claim 7, characterized in that: The driving member comprises a turntable (22) rotatably mounted on the liquid storage tank (2), a protruding column (2201) being fixedly arranged on a side of the turntable (22) away from the liquid storage tank (2), the protruding column (2201) being slidably arranged in the slide rail (18), and the turntable (22) is connected to one set of the pulleys (23) via a linkage structure arranged in the liquid storage tank (2).

10. The gynecological and obstetric instrument cleaning device according to claim 9, characterized in that: The linkage structure is arranged in an inner box (201) fixedly arranged in the liquid storage tank (2), and comprises a driving rod (19) rotatably mounted in the inner box (201), the driving rod (19) being coaxially fixed to an output shaft of a motor fixedly arranged on the liquid storage tank (2), and the driving rod (19) being connected to the rotating disk (22) via a linkage transmission belt, a first linkage wheel (20) being coaxially fixedly arranged on the rotating disk (22), a second linkage wheel (21) being coaxially fixedly arranged on one set of the pulleys (23), and the second linkage wheel (21) being connected to the first linkage wheel (20) via a linkage belt.

Citation Information

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