A gynecological irrigator for gynecology

Through the combined design of the extrusion structure and the turbine structure, the gynecological irrigator achieves uniform spraying, solves the problem of insufficient or excessive local flushing of traditional irrigators, improves the flushing effect and safety, and adapts to different usage scenarios.

CN119405934BActive Publication Date: 2025-09-23FOURTH MILITARY MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202411698266.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-09-23
Estimated Expiration
2044-11-26

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Abstract

The present invention discloses a gynecological irrigator, which includes an extrusion structure, a turbine structure and a rotating structure. The output end of the extrusion structure is connected to the input end of the turbine structure through a first hose, and the output end of the turbine structure is connected to the input end of the rotating structure through a second hose. Cleaning liquid is stored in the inner cavity of the extrusion structure and is squeezed through the first hose into the interior of the turbine structure. The water flow impulse input through the first hose causes the interior of the turbine structure to rotate and drives the rotating structure to rotate. The output end of the turbine structure causes the cleaning liquid to enter the inner cavity of the rotating structure through the second hose due to the extrusion force, causing the rotating structure to rotate to achieve uniform flushing. The uniform flushing method and adjustable flushing force reduce the possibility of damage to the vaginal mucosa due to excessive flushing force or uneven flushing. This irrigator can better protect the vaginal mucosa while ensuring the flushing effect, thereby improving the safety of use.
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Description

Technical Field

[0001] The present invention relates to the technical field of gynecological cleaning equipment, in particular to a gynecological irrigator. Background Art

[0002] In the field of gynecological health care and disease treatment, vaginal douching is a common nursing and auxiliary treatment method. Many gynecological diseases, such as vaginitis and cervicitis, require maintaining a clean environment in the vagina to promote recovery. At the same time, daily hygiene care often involves douching operations.

[0003] Most traditional gynecological douches have a simple structure and rely mainly on manual squeezing or gravity to deliver the cleaning fluid. For example, the common squeeze-type douche only discharges the cleaning fluid by manually squeezing the container. This method makes it difficult to achieve uniform spraying of the cleaning fluid and can easily cause local over- or under-washing.

[0004] There are also some flushing devices that use gravity, but their flushing effects are often affected by the height of the container and the user's posture. They cannot adapt well to different usage scenarios, and the flow rate and spray angle of the flushing liquid are difficult to control.

[0005] During gynecological douching, uniform douching is crucial for thorough cleaning and effective drug action. Uneven douching may lead to residual bacteria or uneven drug distribution, affecting the treatment effect. However, existing douching devices have obvious deficiencies in achieving uniform douching and lack an effective structure to ensure that the cleaning fluid can be sprayed evenly on various parts of the vagina. Summary of the Invention

[0006] The purpose of the present invention is to provide a gynecological irrigator for gynecology to solve the problems raised in the above-mentioned background technology. To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a gynecological irrigator for gynecology, comprising an extrusion structure, a turbine structure and a rotating structure, wherein the output end of the extrusion structure is connected to the input end of the turbine structure via a first hose, and the output end of the turbine structure is connected to the input end of the rotating structure via a second hose. The inner cavity of the extrusion structure contains cleaning liquid, which is squeezed through the first hose into the interior of the turbine structure. The water flow input through the first hose causes the inner portion of the turbine structure to rotate and drives the rotating structure to rotate. The output end of the turbine structure causes the cleaning liquid to enter the inner cavity of the rotating structure through the second hose due to the squeezing force, causing the rotating structure to rotate to achieve uniform flushing.

[0007] Preferably, the extrusion structure includes a lever plate, a round rod, a round plate, a large cylinder, a small cylinder, a plug and a round hole. A small cylinder is fixedly provided at the center of one end of the large cylinder, a round hole is provided at the other end of the large cylinder, a lever plate is fixedly provided on the outer wall of the other end of the large cylinder, a movable plug is provided on the inner wall of the large cylinder, and the plug matches the round hole so that the side of the plug contacts the inner wall of the large cylinder, one end of the plug is a round surface, one end of a round rod is fixedly provided at the center of the round surface of the other end of the plug, and a round plate is fixedly provided at the center of the round surface of the other end of the round rod.

[0008] Preferably, the circular plate drives the leather plug via the round rod, so that the leather plug squeezes the cleaning liquid inside the large cylinder and outputs it out of the small cylinder.

[0009] Preferably, the turbine structure includes a drive plate, a first cylindrical barrel, a first outer shell, a second cylindrical barrel, a third cylindrical barrel and a cylinder rod, one end of the outer wall of the first outer shell is fixedly provided with a front-to-back penetrating third cylindrical barrel, the other end of the outer wall of the first outer shell is fixedly provided with a front-to-back penetrating third cylindrical barrel, the inner center of the first outer shell is provided with a penetrating first cylindrical barrel, both ends of the first cylindrical barrel are sleeved with a rotating shaft, and the two rotating shafts are respectively fixed on the outer wall of the first outer shell, the outer wall of the first cylindrical barrel is fixedly provided with a number of equidistant drive plates, the first cylindrical barrel matches the cylinder rod and can be plugged in, so that the input end of the cylinder rod extends through to the bottom end of the first cylindrical barrel, and the rotating shaft is sleeved on the input end of the cylinder rod, so that the second hose is sleeved on the outer wall of the rotating shaft, and the second cylindrical barrel is connected to the input end of the cylinder rod through the second hose.

[0010] Preferably, the cleaning liquid inside the third cylindrical barrel is squeezed into the first shell, so that the driving plate drives the first cylindrical barrel to drive the cylindrical rod to rotate, and at the same time, the cleaning liquid in the second cylindrical barrel enters the cylindrical rod through the second hose to output the cleaning liquid.

[0011] Preferably, the rotating structure includes a plate, a circular hole, a cylindrical rod, a groove and a second shell, a plurality of groups of equidistant circular holes are provided on the surface of the second shell, a rotatable cylindrical rod is provided at the center of the inner cavity of the second shell, a cylindrical rod is fixedly provided at the bottom of the cylindrical rod, a groove is provided between the cylindrical rod and the cylindrical rod, and the groove is on the same horizontal plane as the bottom surface of the second shell.

[0012] Preferably, the cylindrical rod drives the plate to rotate, and at the same time the groove outputs the cleaning liquid to the bottom surface of the second shell cavity, so that the cleaning liquid is evenly sprayed through the circular hole when the plate rotates and hits the bottom surface of the groove.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] This gynecological irrigator achieves uniform flushing through its unique structural design. The plates in the rotating structure rotate under the drive of the cylindrical rod and the column rod, hitting the cleaning liquid on the bottom surface of the groove, so that the cleaning liquid is evenly sprayed through the circular hole. This rotary spraying method can cover all parts of the vagina, avoiding the problem of excessive or insufficient local flushing of traditional irrigators, and improving the comprehensiveness and effectiveness of flushing.

[0015] The water flow force generated by the extrusion structure squeezing the cleaning liquid is fully utilized. The water flows into the turbine structure through the first hose, driving the components inside the turbine structure to rotate, and then driving the rotating structure to rotate. This design effectively converts and utilizes the power in the flushing process, making the flushing process more efficient and the flushing effect better.

[0016] The uniform flushing method and adjustable flushing intensity reduce the possibility of damage to the vaginal mucosa due to excessive flushing intensity or uneven flushing. Compared with traditional douches, this douche can better protect the vaginal mucosa while ensuring the flushing effect, thereby improving the safety of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the structure of the present invention;

[0018] Figure 2 It is a schematic diagram of the extrusion structure of the upper half of the present invention;

[0019] Figure 3 It is a schematic diagram of the extrusion structure of the lower half of the present invention;

[0020] Figure 4 It is a schematic diagram of the structure of the water turbine of the present invention;

[0021] Figure 5 Schematic diagram of the cross-sectional structure of the water turbine of the present invention;

[0022] Figure 6 Schematic diagram of the driving plate structure of the present invention;

[0023] Figure 7 This is a schematic diagram of the rotary shaft connection structure of the present invention;

[0024] Figure 8 A schematic diagram of the rotating cross-sectional structure of the present invention.

[0025] In the figure: 1, extrusion structure, 2, turbine structure, 3, rotating structure, 4, first hose, 5, second hose, 11, lever plate, 12, round rod, 13, round plate, 14, large cylinder, 15, small cylinder, 16, plug, 17, round hole, 21, drive plate, 22, first cylindrical tube, 23, first shell, 24, second cylindrical tube, 25, third cylindrical tube, 26, cylindrical rod, 31, plate, 32, round hole, 33, cylindrical rod, 34, groove, 35, second shell. DETAILED DESCRIPTION

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] See also Figure 1-8 The present invention provides a technical solution: a gynecological irrigator, comprising an extrusion structure 1, a turbine structure 2 and a rotating structure 3. The output end of the extrusion structure 1 is connected to the input end of the turbine structure 2 through a first hose 4, and the output end of the turbine structure 2 is connected to the input end of the rotating structure 3 through a second hose 5. Cleaning liquid is stored in the inner cavity of the extrusion structure 1 and is squeezed through the first hose 4 into the interior of the turbine structure 2. The water flow impulse input through the first hose 4 causes the turbine structure 2 to rotate and drives the rotating structure 3 to rotate. The output end of the turbine structure 2 causes the cleaning liquid to enter the inner cavity of the rotating structure 3 through the second hose 5 due to the extrusion force, and is converted into rotational power, causing the rotating structure 3 to rotate to achieve uniform flushing. The device reduces pain during flushing and can reduce discomfort during use. The extrusion structure 1 is simple and easy to operate and use, the turbine structure 2 is small and easy to carry, and the outer shell of the rotating structure 3 is designed to fit the human body structure, so that when entering the human body, pain and discomfort are reduced, and the discomfort or pain caused by excessive local pressure is reduced.

[0028] As a preferred embodiment, further, the extrusion structure 1 includes a lever plate 11, a round rod 12, a circular plate 13, a large cylinder 14, a small cylinder 15, a plug 16 and a circular hole 17. The center of one end of the large cylinder 14 is fixedly provided with a small cylinder 15 that passes through it. The other end of the large cylinder 14 is provided with a circular hole 17. The outer wall of the other end of the large cylinder 14 is fixedly provided with a lever plate 11. The inner wall of the large cylinder 14 is provided with a movable plug 16, and the plug 16 matches the circular hole 17, so that the plug 1 6 is in contact with the inner wall of the large cylinder 14, one end of the leather plug 16 is a circular surface, and the center of the circular surface of the other end of the leather plug 16 is fixedly provided with one end of the round rod 12, and the center of the circular surface of the other end of the round rod 12 is fixedly provided with a circular plate 13. The leather plug 16 is driven outward by the circular plate 13 and the lever plate 11. The cleaning liquid is stored in the inner cavity of the large cylinder 14. The leather plug 16 is driven to the top of the inner cavity of the large cylinder by pushing the circular plate 13, thereby squeezing the cleaning liquid of the large cylinder 14 and outputting it outward from the small cylinder 15.

[0029] As a preferred solution, further, the circular plate 13 drives the leather plug 16 through the round rod 12, so that the leather plug 16 squeezes the cleaning liquid inside the large cylinder 14 and outputs it out of the small cylinder 15.

[0030] As a preferred solution, further, the turbine structure 2 includes a drive plate 21, a first cylindrical tube 22, a first shell 23, a second cylindrical tube 24, a third cylindrical tube 25 and a cylindrical rod 26. One end of the outer wall of the first shell 23 is fixedly provided with a front-to-back through 24, and the other end of the outer wall of the first shell 23 is fixedly provided with a front-to-back through third cylindrical tube 25. The inner center of the first shell 23 is provided with a through-first cylindrical tube 22. The first cylindrical tube 22 has a rotating shaft sleeved at both ends, and the two rotating shafts are respectively fixed on the outer wall of the first shell 23. The outer wall of the first cylindrical tube 22 is fixedly provided with a number of equidistant drive plates 21, and the outer wall of the drive plate 21 is provided with a groove, which can allow the cleaning liquid to flow quickly to the output port during rotation, thereby achieving the effect of fast output. The first cylindrical tube 22 matches and can be plugged into the cylindrical rod 26, so that the input end of the cylindrical rod 26 is through. It extends to the bottom end of the first cylindrical barrel 22, and the rotating shaft is sleeved on the input end of the cylindrical rod 26, so that the second hose 5 is sleeved on the outer wall of the rotating shaft. A rotating shaft is set at the connection point between the cylindrical rod 26 and the second hose 5. Because the rotation of the cylindrical rod 26 will drive the second hose 5 to rotate, causing the second hose 5 to twist into a knot, a rotating shaft is set at the connection end between the second hose 5 and the cylindrical rod 26 to prevent the second hose 5 from twisting into a knot, thereby causing the cleaning liquid to not circulate. The rotating shaft is set to output the cleaning liquid through the output port 34 at the top of 26. The second cylindrical barrel 24 is connected to the input end of the cylindrical rod 26 through the second hose 5, and the cleaning liquid inside the third cylindrical barrel 25 is squeezed into the first shell 23. The first cylindrical barrel 22 is driven by the driving plate 21 to drive the cylindrical rod 26 to rotate, and at the same time, the cleaning liquid in the second cylindrical barrel 24 enters the cylindrical rod 26 through the second hose 5 to output the cleaning liquid.

[0031] As a preferred solution, further, the cleaning liquid inside the third cylindrical barrel 25 is squeezed into the first outer shell 23, so that the driving plate 21 drives the first cylindrical barrel 22 to drive the cylindrical rod 26 to rotate, and at the same time, the cleaning liquid in the second cylindrical barrel 24 enters the cylindrical rod 26 through the second hose 5 to output the cleaning liquid. The overall turbine structure is reduced in size, which is more convenient to carry and use, and the rotation is achieved by the impact of the cleaning liquid.

[0032] As a preferred solution, further, the rotating structure 3 includes a plate 31, a circular hole 32, a cylindrical rod 33, a groove 34 and a second shell 35. Several groups of equidistant circular holes 32 are provided on the surface of the second shell 35. A rotatable cylindrical rod 33 is provided in the center of the inner cavity of the second shell 35. A cylindrical rod 26 is fixedly provided at the bottom of the cylindrical rod 33. A groove 34 is provided between the cylindrical rod 26 and the cylindrical rod 33, and the groove 34 is at the same horizontal plane as the bottom surface of the second shell 35. The cylindrical rod 33 is driven by the cylindrical rod 26 to rotate the plate 31, and at the same time, the groove 34 outputs the cleaning liquid to the bottom surface of the inner cavity of the second shell 35, so that the cleaning liquid including the plate 31 rotating and hitting the bottom surface of the groove 34 is evenly sprayed through the circular hole 32. There is a certain distance between the plate 31 and the circular hole 32. When the cleaning liquid is rotated and hit by the plate 31, the certain distance between the plate 31 and the circular hole 32 can buffer the impact of the cleaning liquid, thereby reducing the pain of flushing.

[0033] As a preferred solution, further, the cylindrical rod 33 is driven by the cylindrical rod 26 to rotate the plate 31, and at the same time, the groove 34 outputs the cleaning liquid to the bottom surface of the inner cavity of the second shell 35, so that the cleaning liquid including the plate 31 rotating and hitting the bottom surface of the groove 34 is evenly sprayed through the circular hole 32. A certain distance between the plate 31 and the circular hole 32 can buffer the impact of the cleaning liquid, thereby reducing the pain of flushing. The shape of the second shell 35 fits the human body structure, which can reduce discomfort during use.

[0034] The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process. The specific operation is as follows: when the small cylinder 15 moves outward through the extrusion structure 1, the small cylinder 15 absorbs the cleaning liquid to the inner cavity of the large cylinder 14 for storage, and pushes the circular plate 13 to squeeze the cleaning liquid in the inner cavity of the large cylinder 14, so that the cleaning liquid passes from the small cylinder 15 through the first hose 4 and the third cylindrical cylinder 25 to the inner cavity of the first shell 23. The impact of the cleaning liquid pushes the first cylindrical cylinder 22 to rotate, and drives the cylindrical rod 26 and the plate 31 to rotate. At the same time, the extrusion force squeezes the water to The second cylindrical barrel 24 outputs, the cylindrical rod 26 is hollow, and the cleaning liquid enters the cylindrical rod 26 from the second cylindrical barrel 24 through the second hose 5, and the cleaning liquid is output through the groove 34 output port on the top of the cylindrical rod 26. The cylindrical rod 33 rotates through the first cylindrical barrel 22. When the cleaning liquid enters the bottom surface of the inner cavity of the second shell 35, the first cylindrical barrel 22 drives the plate 31 to rotate and hit the surface cleaning liquid, and uniform spraying is achieved through the circular hole 32. There is a certain distance between the circular hole 32 and the plate 31, which can buffer the impact of the cleaning liquid and reduce the pain of flushing.

[0035] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A gynecological irrigator, characterized in that The invention comprises an extrusion structure (1), a turbine structure (2) and a rotating structure (3), wherein the output end of the extrusion structure (1) is connected to the input end of the turbine structure (2) via a first hose (4), and the output end of the turbine structure (2) is connected to the input end of the rotating structure (3) via a second hose (5). The inner cavity of the extrusion structure (1) contains a cleaning liquid, and the extrusion structure (1) squeezes the cleaning liquid so that the cleaning liquid enters the inner cavity of the turbine structure (2) through the first hose (4). The water flow impulse is input through the first hose (4) to rotate the inner cavity of the turbine structure (2) and drive the rotating structure (3) to rotate. Moreover, due to the extrusion force, the output end of the turbine structure (2) causes the cleaning liquid to enter the inner cavity of the rotating structure (3) through the second hose (5), so that the rotating structure (3) rotates to achieve uniform flushing. The turbine structure (2) comprises a driving plate (21), a first cylindrical tube (22), a first outer shell (23), a second cylindrical tube (24), a third cylindrical tube (25) and a cylindrical rod (26); a cylindrical tube (24) penetrating front to back is fixedly provided at one end of the outer wall of the first outer shell (23); a third cylindrical tube (25) penetrating front to back is fixedly provided at the other end of the outer wall of the first outer shell (23); a first cylindrical tube (22) penetrating up and down is provided at the inner center of the first outer shell (23); and a rotating shaft is sleeved at both ends of the first cylindrical tube (22). , and the two rotating shafts are respectively fixedly arranged on the outer wall of the first shell (23), and the outer wall of the first cylindrical tube (22) is fixedly provided with a plurality of equidistant driving plates (21), the first cylindrical tube (22) matches the cylindrical rod (26) and can be plugged in, so that the input end of the cylindrical rod (26) extends through to the bottom end of the first cylindrical tube (22), and the rotating shaft is sleeved on the input end of the cylindrical rod (26), so that the second hose (5) is sleeved on the outer wall of the rotating shaft, and the second cylindrical tube (24) is connected to the input end of the cylindrical rod (26) through the second hose (5); The rotating structure (3) comprises a plate (31), a circular hole (32), a cylindrical rod (33), a groove (34) and a second shell (35). The surface of the second shell (35) is provided with a plurality of groups of equidistant circular holes (32). A rotatable cylindrical rod (33) is provided at the center of the inner cavity of the second shell (35). A cylindrical rod (26) is fixedly provided at the bottom of the cylindrical rod (33). A groove (34) is provided between the cylindrical rod (26) and the cylindrical rod (33), and the groove (34) and the bottom surface of the second shell (35) are on the same horizontal plane.

2. A gynecological irrigator according to claim 1, characterized in that: The extrusion structure (1) comprises a lever plate (11), a round rod (12), a round plate (13), a large cylinder (14), a small cylinder (15), a plug (16) and a round hole (17). A small cylinder (15) is fixedly provided at the center of one end of the large cylinder (14). A round hole (17) is provided at the other end of the large cylinder (14). A lever plate (11) is fixedly provided on the outer wall of the other end of the large cylinder (14). A movable plug (16) is provided on the inner wall of the large cylinder (14). The plug (16) matches the round hole (17) so that the side surface of the plug (16) contacts the inner wall of the large cylinder (14). One end of the plug (16) is a round surface. One end of the round rod (12) is fixedly provided at the center of the round surface of the other end of the plug (16). A round plate (13) is fixedly provided at the center of the round surface of the other end of the round rod (12).

3. A gynecological irrigator according to claim 2, characterized in that: The circular plate (13) drives the leather plug (16) through the round rod (12), so that the leather plug (16) squeezes the cleaning liquid inside the large cylinder (14) and outputs it outward from the small cylinder (15).

4. A gynecological irrigator according to claim 3, characterized in that: The cleaning liquid in the third cylindrical barrel (25) is squeezed into the first housing (23), causing the driving plate (21) to drive the first cylindrical barrel (22) to rotate the cylindrical rod (26), and at the same time, the cleaning liquid in the second cylindrical barrel (24) enters the cylindrical rod (26) through the second hose (5) to output the cleaning liquid.

5. A gynecological irrigator according to claim 4, characterized in that: The flusher drives the first cylindrical barrel (22) to rotate by the impact of the cleaning liquid, and the cylindrical rod (26) drives the cylindrical rod (33) to rotate the plate (31), and at the same time, the groove (34) outputs the cleaning liquid to the bottom surface of the inner cavity of the second shell (35), so that the plate (31) rotates and hits the bottom surface of the groove (34), and the cleaning liquid is evenly sprayed through the circular hole (32).

Citation Information

Patent Citations

  • Gynecological vaginal syringe

    CN209864816U

  • Vaginal syringe

    CN215426476U