Generating device for water ions with stable release amount
By using composite moisture-absorbing materials and a water storage layer in the water ion generator, the problem of unstable water ion release was solved, achieving stable water ion release under different humidity environments and improving the sterilization and deodorization effects.
Patent Information
- Application Number
- CN202423116183.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing water ion generators in small purification devices require large built-in water storage space or are affected by environmental humidity, resulting in unstable water ion release and failing to achieve stable sterilization and deodorization effects.
The emitting electrode is made of composite moisture-absorbing material, combined with a water-permeable cover and a water storage layer. The moisture-absorbing core regulates the moisture supply under different humidity conditions to ensure stable humidity around the electrode and achieve stable release of water ions.
It maintains the stability of water ion release under different humidity conditions, improves the activity and mobility of water ions in the air, and enhances the sterilization and deodorization effect.
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Figure CN223665845U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ion generator technical field, especially a kind of stable release quantity water ion generator. BACKGROUND
[0002] Ion generator is often used in air purification field, usually air ionization produces air negative ion, then air negative ion diffuses to environment with airflow, to realize the sterilization, dust purification effect of air. However, the activity and mobility of air negative ion are low, and the penetration is poor, the residence time in air is short, the processing range is small and the effect is not significant. Relatively, the activity of water ion is higher, and the penetration is higher, but in the current water ion generator, enough large built-in water storage space is needed by active water supply, which is not suitable for the configuration requirements of small purification equipment, and the water ion release amount is greatly affected by environmental humidity fluctuation, and the air treatment effect is unstable. SUMMARY
[0003] The utility model discloses a kind of stable release quantity water ion generator, can not be influenced by environmental humidity and stably output water ion, to reach the stable degerming deodorization effect.
[0004] Technical solution: to achieve the above-mentioned purpose, a kind of stable release quantity water ion generator of the utility model, including launch module and high voltage module, the launch module includes several launch electrodes and plug-in assembly, the launch electrode is electrically connected with the high voltage output end of the high voltage module by the plug-in assembly;
[0005] The launch electrode is made of composite moisture-absorbing material, the launch electrode outer side is equipped with water-permeable cover shell, the water-permeable cover shell is connected with the plug-in assembly and constitutes electrode shell, water storage layer is arranged between the electrode shell and the launch electrode.
[0006] Further, the launch electrode includes moisture-absorbing core, and the outer surface of the moisture-absorbing core is attached with a conductive layer.
[0007] Further, the outer side of the conductive layer is smooth surface, and the moisture-absorbing core is vertically inserted relative to the plug-in assembly.
[0008] Further, the plug-in assembly comprises a conductive member, one end of the conductive member is connected with the moisture absorption core body, the other end of the conductive member is connected with the high-voltage module through a wire; the outer side of the conductive member is sleeved with a plug-in sleeve, a sealing structure is sleeved between the plug-in sleeve and the conductive member, the plug-in sleeve is connected with the water-permeable cover shell, a water passing gap is formed between the water-permeable cover shell and the transmitting electrode, a water storage gap is formed between the plug-in sleeve and the transmitting electrode, and the water passing gap and the water storage gap are communicated in sequence to form the water storage layer.
[0009] Further, the water-permeable cover shell is made of micro-filtered water material.
[0010] Further, the moisture absorption core body is a water absorption carbon rod, and the conductive layer is a carbon fiber composite layer.
[0011] Beneficial effects: the stable release amount water ion generating device can provide sufficient moisture for water ion generation through the electrode of the moisture absorption material, can store a small amount of water absorbed by oversaturation when the environmental humidity is relatively large, can maintain the environmental humidity around the electrode in a sufficient state when the environmental humidity is relatively low, and can ensure that the water ion release amount is not affected by the environmental humidity, and can always stably output water ions in a sufficient moisture state, so that the stable bactericidal and deodorizing effects are achieved. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a structure schematic view of the stable release amount water ion generating device embodiment of the utility model. DETAILED DESCRIPTION
[0013] The utility model will be further described in connection with the drawings.
[0014] As shown in the accompanying Figure 1 The stable release amount water ion generating device comprises a transmitting module 1 and a high-voltage module 2, the transmitting module 1 comprises a plurality of transmitting electrodes 3 and a plug-in assembly 4, the transmitting electrode 3 is electrically connected with the high-voltage output end of the high-voltage module 2 through the plug-in assembly 4, wherein the high-voltage module 2 comprises a high-voltage rectifier circuit, an oscillation circuit and a boost circuit are connected in series at the power input end of the high-voltage rectifier circuit, and the high-voltage rectifier circuit is connected at the boost side of the boost circuit.The positive and negative high-voltage output ends of the high-voltage rectifier circuit are connected with the transmitting electrode to realize the ionization of water and generate water ions.
[0015] The emitting electrode 3 is made of a composite hygroscopic material, which absorbs moisture in the environment by using the hygroscopicity of the electrode, so that enough water molecules are ionized to generate enough water ions. The emitting electrode 3 is externally sleeved with a water-permeable cover shell 5, which is connected with the plug-in assembly 4 to form an electrode shell. A water storage layer is arranged between the electrode shell and the emitting electrode 3. The pores of the water-permeable cover shell are sufficient to allow water molecules to enter the inside under air diffusion and capillary action, so as to be absorbed by the emitting electrode for generating water ions, while other molecules or substance particles larger than water molecules in the air are intercepted outside to avoid adsorption on the electrode surface and affect the uniformity of the electric field, thereby ensuring the stability of water ion generation and diffusion.
[0016] The emitting electrode 3 includes a hygroscopic core 31, and an electrically conductive layer 32 is attached to the outer surface of the hygroscopic core 31. The electrically conductive layer is made of a porous material, so that the moisture in the air can penetrate the electrically conductive layer and be fully absorbed by the hygroscopic core 31, so that the surface of the hygroscopic core is always kept wet, providing enough water to contact the electrically conductive layer for ionization to generate water ions. The contact area between the electrically conductive layer and water is larger and more uniform, which can quickly generate a large amount of water ions.
[0017] The outer side of the electrically conductive layer 32 is a smooth surface, and the hygroscopic core 31 is vertically inserted relative to the plug-in assembly 4. The hygroscopic core 31 is made of any hygroscopic material, and there is an upper limit to the absorption of water. When the emitting electrode is placed in an environment with high humidity, the surface of the electrode will have a noticeable wet feeling, indicating that the material has absorbed enough water and is saturated. By setting the outer side as a smooth surface, the adsorption of water on the surface of the electrically conductive layer is reduced, and by vertically arranging the hygroscopic core, the oversaturated water condenses into beads on the surface of the electrically conductive layer and slides down under the action of gravity, eventually gathering in the water storage layer to form a certain amount of water storage. When the environmental humidity is low and there is not enough water to penetrate the cover shell and be absorbed by the electrode, the small amount of water stored in the water storage layer plays a role in maintaining the humidity of the electrode. The lower end of the hygroscopic core can directly absorb water from the small amount of water storage, ensuring that there is always enough water to contact the electrically conductive layer for ionization to generate water ions.
[0018] The plug-in assembly 4 includes an electrically conductive member 41, one end of which is connected to the hygroscopic core 31, and the other end of which is connected to the high-voltage module 2 through a wire; the electrically conductive member is used to conduct the high-voltage module and the emitting electrode. The specific connection relationship between the electrically conductive member and the discharge electrode can be plug-in or contact connection according to the plug-in method of the electrode.
[0019] The outer side of the conductive member 41 is sleeved with a plug sleeve 42, and a sealing structure is sleeved between the plug sleeve 42 and the conductive member 41, which plays a role of preventing water leakage, avoids the seepage of a small amount of accumulated water, and protects the high-voltage module to a certain extent; the plug sleeve 42 is connected with the water-permeable cover 5, a water-permeable gap is formed between the water-permeable cover 5 and the transmitting electrode 3, a water storage gap is formed between the plug sleeve 42 and the transmitting electrode 3, and the water-permeable gap and the water storage gap are connected in series to form the water storage layer. Among them, the water-permeable gap is used for the free diffusion of water molecules and water ions, and the water storage gap is used for receiving a small amount of accumulated water.
[0020] The water-permeable cover 5 is made of microfiltration water material, for example, polyester film, ceramic membrane, metal film and the like. The water-permeable cover 5 ensures good water permeability and protects the electrode.
[0021] The moisture absorption core 31 is a water absorption carbon rod, and the conductive layer 32 is a carbon fiber composite layer. The carbon rod and the carbon fiber both have a certain moisture absorption, the carbon rod has strong moisture absorption due to its porous structure, but its texture is brittle and has poor alkali resistance, the carbon fiber has a compact structure, relatively low porosity, relatively weak moisture absorption, good electrical conductivity, fatigue resistance, friction resistance, good chemical stability and high strength, and the carbon fiber protects the internal carbon rod. Most of the water penetrates the carbon fiber layer and is absorbed and locked by the carbon rod. The moisture absorption of the carbon rod provides sufficient power for water molecules to penetrate the carbon fiber. When the carbon rod is saturated with moisture, a small amount of water is stored in the pores of the carbon fiber layer. The carbon rod surface has sufficient water to generate a large number of water ions. Under the action of an electric field, the reverse osmosis releases water ions through the carbon fiber layer. When the water ions pass through the carbon fiber layer, a small amount of un-ionized water molecules are carried out. In the emission process, the water ions are continuously covered by the reverse water molecules, and finally a protective layer composed of water molecules is formed, so that the water ions are mixed in the water molecules to diffuse, and the weak alkaline water ions OH - In the propagation process, the water ions are not easy to be neutralized, the mobility is improved, the propagation is farther, the time in the air is longer, the concentration of the water ions acting on the bacteria and viruses is higher, and the bactericidal and deodorizing effect is better. The present application is suitable for environments with certain air humidity and large air humidity fluctuations. The influence of air humidity on the water ion release amount can be coped with, the stability of the water ion release amount can be improved, and stable bactericidal and deodorizing effect can be obtained.
[0022] The above is only a preferred embodiment of the present application, and it should be pointed out that for ordinary skilled persons in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should also be considered as the protection scope of the present application.
Claims
1. A stable release amount water ion generating device, characterized by: The application relates to a high-voltage emitting device, which comprises a transmitting module (1) and a high-voltage module (2), wherein the transmitting module (1) comprises a plurality of transmitting electrodes (3) and a plug-in assembly (4), and the transmitting electrodes (3) are electrically connected with high-voltage output ends of the high-voltage module (2) through the plug-in assembly (4). The transmitting electrodes (3) are made of composite moisture-absorbing materials, the transmitting electrodes (3) are externally sleeved with water-permeable cover shells (5), the water-permeable cover shells (5) are connected with the plug-in assembly (4) to form electrode housings, and water storage layers are arranged between the electrode housings and the transmitting electrodes (3).
2. The stable release amount water ion generating device according to claim 1, characterized in that: The transmitting electrodes (3) comprise moisture-absorbing cores (31), and the outer surfaces of the moisture-absorbing cores (31) are externally and integrally attached with conductive layers (32).
3. The stable release amount water ion generating device according to claim 2, characterized in that: The outer side surface of the conductive layer (32) is a smooth surface, and the moisture-absorbing core (31) is vertically inserted relative to the plug-in assembly (4).
4. The stable release amount water ion generating device according to claim 3, characterized in that: The plug-in assembly (4) comprises a conductive member (41), one end of the conductive member (41) is connected with the moisture-absorbing core (31), the other end of the conductive member (41) is connected with the high-voltage module (2) through a wire, the outer side of the conductive member (41) is sleeved with a plug-in sleeve (42), a sealing structure is sleeved between the conductive member (41) and the plug-in sleeve (42), the plug-in sleeve (42) is connected with the water-permeable cover shell (5), a water-permeable gap is formed between the water-permeable cover shell (5) and the transmitting electrodes (3), a water storage gap is formed between the plug-in sleeve (42) and the transmitting electrodes (3), and the water-permeable gap and the water storage gap are connected in series in the up-down direction to form the water storage layer.
5. A stable release amount water ion generating device according to claim 4, characterized in that: The water-permeable cover shell (5) is made of micro-filtered water materials.
6. The stable release amount water ion generating device according to claim 5, characterized in that: The moisture-absorbing core (31) is a water-absorbing carbon rod, and the conductive layer (32) is a carbon fiber composite layer.