Gynecological ozone therapeutic apparatus
By introducing a water-gas separation device into the ozone treatment device, the discomfort caused by bubbles in the ozone water is solved, and the use of purer ozone water is achieved, and the comfort and safety of treatment is improved.
Patent Information
- Application Number
- CN202411945876.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-06-27
AI Technical Summary
When existing ozone therapy devices generate ozone water, they are prone to bubbles, causing discomfort and pain when used in women's body, and may cause damage to the inner wall of the vagina.
A gynecological ozone therapy device is designed, including a water tank, an ozone generator and a water-gas separation device. The water-gas separation device can effectively separate the bubbles in the ozone water through components such as pressurized separation chamber and solenoid valve to ensure the purity of the ozone water.
By effectively separating bubbles, the discomfort and pain problems of ozone bubbles in women's bodies are reduced, and the comfort and safety of treatment are improved.
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Figure CN120204028A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a gynecological treatment instrument, and more specifically, to a treatment instrument for treating gynecological diseases by applying ozone water. Background Art
[0002] Ozone has efficient, rapid, and broad-spectrum bactericidal characteristics, and has extremely strong killing effects on pathogenic microorganisms such as bacterial vegetative bodies, bacterial spores, viruses, and fungi. Therefore, it can treat gynecological external reproductive system diseases caused by various pathogenic microorganisms. The active ingredient can promote the growth of epithelial cells and the healing of wound surfaces, and thus achieve the effect of thoroughly treating cervicitis. It has a broad bactericidal spectrum and thorough treatment. Ozone can kill various harmful pathogenic bacteria in the female reproductive tract. When acting, it fully contacts the lesion area in all directions, leaving no dead angle and achieving thorough treatment. Therefore, there are instruments on the market that use ozone to treat gynecological diseases.
[0003] The preparation of ozone water generally uses an electrolysis module. The electrolysis module generally includes a housing and internal electrolysis sheets, and water is used as the raw material for preparing ozone. Mixing ozone with water turns it into ozone water. At the ozone generation site, the ozone concentration in water will reach saturation locally and rapidly. In addition, the newly generated fine ozone gas bubbles stay in the gas generation site and quickly grow into larger gas bubbles. As a result, it becomes difficult for ozone gas to dissolve in water efficiently.
[0004] And this phenomenon not only exists in the conventional ozone application field, hindering the concentration of ozone water. In the gynecological field of ozone, if there are gas bubbles, due to the special structure inside the female body, the gas bubbles will enter the body, and the bubbles are easy to burst, which will not only cause discomfort and pain, but also cause harm to the inner wall of the female vagina. Summary of the Invention
[0005] The purpose of the present invention is to provide a kind of ozone water that can produce purer and bubble-free ozone water, which is applied to the treatment of gynecological diseases, so as to reduce the discomfort and pain problems caused by ozone bubbles in the female body.
[0006] The above technical purpose of the present invention is achieved through the following technical solutions: A gynecological ozone treatment instrument includes a body, including a water tank for containing an aqueous solution; an ozone generator, the ozone generator is arranged downstream of the water tank and is connected by a water pump. The ozone generator is used to generate ozone gas and mix it with water to form ozone water. A gas-liquid separation device is arranged downstream of the ozone generator, and the gas-liquid separation device is used to separate the bubbles in the ozone water; a treatment head is arranged downstream of the gas-liquid separation device, and a water outlet pipe is arranged between the treatment head and the gas-liquid separation device.
[0007] By adopting the above technical solution, since a water-gas separation device is provided, gas can be better separated from the ozone water, and when the ozone water enters the female vagina, it can avoid the introduction of air bubbles, thus better carrying out treatment and avoiding adverse reactions.
[0008] Furthermore, the water-gas separation device includes a pressurized separation chamber. An exhaust passage is provided at the upper end inside the pressurized separation chamber. The exhaust passage is connected to an opening and closing device. A drain port connected to the water outlet pipe is provided at the bottom of the pressurized separation chamber.
[0009] Furthermore, the pressurized separation chamber is integrally provided with the water tank, and a partition is provided between the pressurized separation chamber and the water tank.
[0010] Furthermore, the pressurized separation chamber is separately provided from the water tank.
[0011] By adopting the above technical solution, by providing a pressurized separation chamber, on the one hand, the pressurized separation chamber forms a chamber for water-gas separation, and the ozone water can be temporarily stored here. Since small air bubbles will float on the liquid surface, the ozone water without air bubbles will enter the water outlet pipe through the drain port below, thus well solving the problem of air bubbles.
[0012] Furthermore, the opening and closing device is an electromagnetic valve.
[0013] By adopting the above technical solution, by providing an electromagnetic valve, the exhaust passage can be opened or closed, and the ozone can be discharged in time, avoiding too much gas in the pressurized separation chamber so that the gas above is squeezed and brought into the drain port below, reintroducing ozone gas bubbles into the ozone water.
[0014] Furthermore, the other end of the electromagnetic valve is connected to the water tank.
[0015] By adopting the above technical solution, by being connected to the water tank, the excess ozone gas can enter the water tank, avoiding the leakage of ozone gas.
[0016] Furthermore, the water pump includes a first water pump and a second water pump, and a three-way valve is provided at the water outlet ends of the first water pump and the second water pump.
[0017] By adopting the above technical solution, by providing multiple water pumps, two water pumps are provided in this embodiment, so that the gear adjustment of the water flow rate can be realized. One water pump can be opened when a slow speed is required, and two water pumps can be opened when a fast speed is required.
[0018] Furthermore, a heating pipe is provided inside the water tank.
[0019] By adopting the above technical solution, by providing a heating pipe, the water in the water tank can be heated to a temperature suitable for the human body, improving the comfort of use.
[0020] Furthermore, a TDS probe is provided inside the water tank.
[0021] By adopting the above technical solution, by providing a TDS probe, the water quality can be detected to avoid harmful effects on the human body when the water quality is poor. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] FIG Figure 1 is an overall external schematic diagram of a gynecological ozone therapeutic instrument; FIG Figure 2 is an internal schematic diagram of a gynecological ozone therapeutic instrument; FIG Figure 3 is an internal three-dimensional schematic diagram of a gynecological ozone therapeutic instrument; FIG Figure 4 is a side internal view of another embodiment of a gynecological ozone therapeutic instrument; FIG Figure 5 is an internal pole piece schematic diagram of an ozone generator; FIG Figure 6 is a cross-sectional view of a water tank; FIG Figure 7 is an overall schematic diagram of a gynecological irrigation head hanging outside a gynecological ozone therapeutic instrument.
[0023] Reference numerals: 1, water tank; 11, water pump; 12, heating pipe; 13, TDS probe; 14, flip cover; 141, handle; 2, ozone generator; 21, cathode pole piece; 22, proton exchange membrane; 23, anode pole piece; 24, water inlet pipe; 25, water outlet pipe; 3, water-gas separation device; 31, pressurized separation chamber; 32, exhaust passage; 33, drain port; 34, solenoid valve; 35, discharge outlet; 4, drain pipe; 5, gynecological irrigation head; 6, body; 7, water flow sensor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0024] The present invention will be further described in detail below with reference to the accompanying drawings.
[0025] The disclosed inventive concepts will hereinafter be described using terms commonly employed by those skilled in the art to convey the substance of their work to other artisans in the art. However, these inventive concepts may be embodied in many different forms and should not be construed as limited to the embodiments described herein. These embodiments are provided to make the disclosure more thorough and complete, and to fully convey the scope included therein to those skilled in the art. It should also be noted that these embodiments are not mutually exclusive. Components, steps, or elements from one embodiment may be assumed to be present or used in another embodiment. Without departing from the scope of the disclosed embodiments, various alternative and / or equivalent implementations may be substituted for the specific embodiments shown and described. This application is intended to cover any modifications or variations of the embodiments discussed herein. It will be apparent to those skilled in the art that alternative embodiments may be practiced using only some of the aspects described. For purposes of illustration, specific numbers, materials, and configurations are described in the embodiments, however, those skilled in the art may also practice alternative embodiments without these specific details. In other instances, well-known features may be omitted or simplified so as not to obscure the illustrative embodiments.
[0026] In the present invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present invention, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically defined.
[0027] In the present invention, unless otherwise clearly specified and defined, terms such as "install", "connect", "cooperate", "fix", etc. should be understood in a broad sense. For example, it may be a fixed cooperation, a detachable cooperation, or integrated; it may be a mechanical cooperation, an electrical cooperation, or capable of communicating with each other; it may be directly connected, or indirectly connected through an intermediate medium, and may be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention may be understood according to specific circumstances.
[0028] Referring to the attached Figure 1 , a gynecological ozone therapeutic instrument is designed to obtain ozone gas by electrolyzing water, and through the mixing of ozone gas and water, it becomes ozone water. Since the characteristic of ozone is that it has high-efficiency, fast, and broad-spectrum bactericidal properties and has extremely strong killing effects on pathogenic microorganisms such as bacterial vegetations, bacterial spores, viruses, and fungi, it can treat gynecological external reproductive system diseases caused by various pathogenic microorganisms. The active ingredient can promote the growth of epithelial cells and the healing of wound surfaces, and thus achieve the effect of thoroughly treating cervicitis.
[0029] Ozone is a reactive oxidant with very active chemical properties. Therefore, when ozone gas is mixed with water, some small ozone gas bubbles are likely to form and cannot be well mixed with water. After these small bubbles enter the human body, they are prone to burst in the folded environment inside the vagina, causing pain. Therefore, how to obtain purer ozone water for treating gynecological diseases is a major problem.
[0030] Refer to the appendix Figure 1 and 2 As shown, the ozone water treatment instrument includes a body 6. Inside the body 6, there is a water tank 1 for placing an aqueous solution, and an ozone generator 2. The ozone generator 2 is used to electrolyze the water in the water tank 1 to form ozone gas, and the ozone gas is mixed with water to form ozone water. There is also a water-gas separation device 3. The water-gas separation device 3 can separate the unmixed ozone gas and ozone water, thus preventing ozone gas from entering the body and forming bubbles inside the body, effectively improving the cleaning comfort and safety.
[0031] Refer to the appendix Figure 5 As shown, the ozone generator 2 includes an upper housing and a lower housing. An electrolysis chamber is formed inside the upper housing and the lower housing. The electrolysis chamber includes a cathode plate 21, a proton exchange membrane 22, and an anode plate 23. Among them, the cathode plate 21, the proton exchange membrane 22, and the anode plate 23 are stacked together in sequence to form an electrolysis main body. The electrolysis main body also needs to be electrically connected to the outside by a conductive needle. Therefore, the ozone generator 2 also includes a cathode conductive needle and an anode conductive needle (which are well-known attempts in the field of ozone electrolysis and will not be elaborated too much in this embodiment).
[0032] Refer to the appendix Figure 2 and 3 As shown, the gynecological treatment instrument further includes a water pump 11. The water pump 11 is arranged below the water tank 1. The water pump 11 is connected to the water outlet of the water tank 1. The upper housing of the ozone generator 2 further includes a water inlet pipe 24 and a water outlet pipe 25. Both the water inlet pipe 24 and the water outlet pipe 25 are arranged on the upper housing. In this embodiment, the water inlet pipe 24 is arranged below the water outlet pipe 25. One end of the water inlet pipe 24 is connected to the water pump 11, and the other end of the water inlet pipe 24 is connected to the ozone generator 2. Preferably, a water flow sensor 7 is arranged on the water inlet pipe 24. The water flow sensor 7 configures the start and stop of the ozone generator 2. By arranging the water flow sensor 7, the ozone generating device can be effectively protected, avoiding abnormal operation and mis-starting in the state without water, and prolonging the service life.
[0033] Refer to the appendix Figure 2 and 3, in this embodiment, preferably two water pumps 11 are provided. Of course, other quantities can also be set, which are not limited in this embodiment. Setting multiple ones can play a role in adjusting the gear flow rate. When two water pumps 11 are provided, a three-way valve is provided at the water outlet ends of the two water pumps 11. When the user needs a larger flow rate, the two water pumps 11 are turned on simultaneously. When a slower flow rate is needed, only one water pump 11 needs to be turned on.
[0034] Refer to the appendix Figure 3 , after the water is accelerated by the water pump 11, it enters the ozone generator 2. The ozone generator 2 generates ozone gas and mixes it with water to form ozone water. The water outlet pipe 25 of the ozone generator 2 is connected to the water-gas separation device 3 and further enters the water-gas separation device 3. The water-gas separation device 3 includes a pressurized separation chamber 31. An exhaust passage 32 is provided at the upper end of the pressurized separation chamber 31, and a drain port 33 connected to the drain pipe 4 is provided at the bottom of the pressurized separation chamber 31. By providing the pressurized separation chamber 31, on the one hand, the pressurized separation chamber 31 forms a chamber for water-gas separation, and the ozone water can be temporarily stored here. Since the small bubbles will float on the liquid surface, and the ozone water without bubbles will enter the water outlet pipe 25 through the drain port 33 below, thus effectively solving the problem of bubbles.
[0035] Refer to the appendix Figure 3 , as the setting of the pressurized separation chamber 31, as an implementation manner, the pressurized separation chamber 31 is integrally provided with the water tank 1. The pressurized separation chamber 31 and the water tank 1 are formed by integral injection molding as one part. Such a close arrangement saves more space and is more conducive to the miniaturization of the instrument.
[0036] Refer to the appendix Figure 4 , as another implementation manner of the pressurized separation chamber 31, the pressurized separation chamber 31 is separately provided from the water tank 1, that is, the pressurized separation chamber 31 is formed as a separate part. In this way, the placement position of the pressurized separation chamber 31 is more flexible and is more suitable for instruments with sufficient space.
[0037] Refer to the appendix Figure 3 Or 4. Additionally, since the separation chamber is the pressurized separation chamber 31, specifically, an exhaust passage 32 is provided above, and a switching device is provided in the exhaust passage 32. When the exhaust passage 32 is not opened, the pressure in the separation chamber gradually increases. According to the principle that the solubility of gas increases under high pressure, and the gradually increasing pressure can effectively help smaller ozone bubbles burst, forming purer bubble-free ozone water.
[0038] Refer to the appendix Figure 3Or 4, but with too much gas introduced, the side effect is that the ozone gas above continues to accumulate. Although it helps the mixing of ozone bubbles and water, due to the excessive gas, the active gas runs around in the separation chamber and is still easy to mix in from the water outlet pipe 25. Therefore, a water outlet pipe 25 is set at the bottom. Since it is farthest from the ozone gas layer above, it can prevent the gas above from entering the water outlet pipe 25 to the greatest extent. Therefore, the water outlet pipe 25 set at the bottom is the optimal solution in this embodiment.
[0039] In addition, an openable and closable exhaust passage 32 is provided on the top. The opening and closing device of the exhaust passage 32 is preferably a solenoid valve 34 in this embodiment. Of course, as other embodiments, it can also be set to a rotary valve plate or other mechanism for opening or closing the exhaust passage 32.
[0040] When the gas capacity in the separation chamber is too large, although the increasing pressure is conducive to the dissolution of the gas, the space occupied by the ozone gas layer continues to increase, so the ozone gas layer is getting closer and closer to the water outlet pipe 25 below. When the distance is too close, due to the step surface of ozone gas and water, when gas and water are continuously introduced, the distance to the water outlet pipe 25 below is too close, which will cause the ozone gas to easily mix into the water outlet pipe 25 along with the ozone water.
[0041] Therefore, the exhaust passage 32 is opened to discharge the excess ozone gas, and when the gas volume reaches a normal value, the exhaust passage 32 is closed again to achieve internal gas balance, thereby ensuring the high pressure in the separation chamber and preventing the gas from entering the water inlet pipe 24 through the exhaust passage 32.
[0042] The exhaust channel 32 can be opened in the following ways: when the exhaust channel 32 is provided with a solenoid valve 34, it can be opened at a predetermined time interval. For example, in the present embodiment, when two water pumps 11 are opened at the same time, the test results show that the ratio of ventilation time to exhaust time is 5:1, that is, the time for introducing ozone water and ozone gas is 5 seconds, and the time for opening the exhaust channel 32 is 1 second. Alternatively, the time for introducing ozone water and ozone gas is 10 seconds, and the time for opening the exhaust channel 32 is 2 seconds. In principle, ozone water and ozone gas shall not be introduced for more than 1 minute. When one water pump 11 is opened, the ozone water test results show that the ratio of ventilation time to exhaust time is 4:1, that is, the time for introducing ozone water and ozone gas is 4 seconds, and the time for opening the exhaust channel 32 is 1 second. Alternatively, the time for introducing ozone water and ozone gas is 8 seconds, and the time for opening the exhaust channel 32 is 2 seconds. In principle, ozone water and ozone gas shall not be introduced for more than 1 minute. Of course, the above test is subject to the actual working conditions and is slightly adjusted in different situations.
[0043] The exhaust passage 32 is at the other end of the solenoid valve 34, i.e., the ozone gas discharge outlet 35. In this embodiment, it is selected to be connected to the side wall of the water tank 1, so that the excess ozone gas can re-enter the interior of the water tank 1, avoiding safety accidents caused by the leakage of ozone gas.
[0044] Refer to the appendix Figure 6 and 7 Furthermore, a flip cover 14 is provided at the top of the water tank 1. A concave handle 141 is provided on the flip cover 14, which can facilitate the opening of the flip cover 14 for the water filling operation. A heating pipe 12 is provided in the water tank 1. By providing the heating pipe 12, the water in the water tank 1 can be heated to a suitable temperature for the human body, improving the comfort of use. A TDS probe 13 is provided in the water tank 1. By providing the TDS probe 13, the water quality can be detected to avoid harmful effects on the human body when the water quality is poor.
[0045] The end of the water outlet pipe 25 of the ozone therapeutic apparatus is connected to a gynecological irrigation head 5. The gynecological irrigation head 5 includes a columnar body. A water flow passage communicating with the water outlet pipe 25 is formed inside the body, and irrigation holes are provided at the head end of the body. The ozone water enters the water flow passage inside the gynecological irrigation head through the water outlet pipe 25 and finally flushes out from the irrigation holes at the head end for the internal irrigation treatment of women.
[0046] This specific embodiment is only an explanation of the present invention, and it is not a limitation of the present invention. Those skilled in the art can make modifications without creative contributions to this embodiment according to needs after reading this specification, but as long as it is within the scope of the claims of the present invention, it is protected by the patent law.
Claims
1. A gynecological ozone therapy device, characterized in that: The invention comprises a body (6), wherein the body (6) comprises: A water tank (1) for containing an aqueous solution; an ozone generator (2), the ozone generator (2) being arranged downstream of the water tank (1) and connected via a water pump (11), the ozone generator (2) being used to generate ozone gas and mix it with water to form ozone water, A water-gas separation device (3), the water-gas separation device (3) being arranged downstream of the ozone generator (2), the water-gas separation device (3) being used to separate bubbles in ozone water; a treatment head, the treatment head being arranged downstream of the water-gas separation device (3), a water outlet pipe (25) being arranged between the treatment head and the water-gas separation device (3).
2. The gynecological ozone therapy device according to claim 1, characterized in that: The water-gas separation device (3) comprises a pressurized separation chamber (31), an exhaust passage (32) is provided at the upper end of the pressurized separation chamber (31), the exhaust passage (32) is connected to an opening and closing device, and a drain outlet (33) connected to a water outlet pipe (25) is provided at the bottom of the pressurized separation chamber (31).
3. The gynecological ozone therapy device according to claim 2, characterized in that: The pressurized separation chamber (31) is integrally arranged with the water tank (1), and a partition is arranged between the pressurized separation chamber (31) and the water tank (1).
4. The gynecological ozone therapy device according to claim 2, characterized in that: The pressurized separation chamber (31) and the water tank (1) are arranged separately.
5. The gynecological ozone therapy device according to claim 2, characterized in that: The opening and closing device is a solenoid valve (34).
6. The gynecological ozone therapy device according to claim 5, characterized in that: The other end of the solenoid valve (34) is connected to the water tank (1).
7. The gynecological ozone therapy device according to claim 1, characterized in that: The water pump (11) comprises a first water pump (11) and a second water pump (11), and water outlet ends of the first water pump (11) and the second water pump (11) are provided with three-way valves.
8. The gynecological ozone therapy device according to claim 1, characterized in that: A heating pipe (12) is arranged in the water tank (1).
9. The gynecological ozone therapy device according to claim 8, characterized in that: A TDS probe (13) is arranged in the water tank (1).