High-oxygen negative ion bubble maker
By designing a high-oxygen negative ion bubble generator and utilizing a rotating float to enhance gas stirring, the problems of large bubble particles and low negative ion concentration in existing technologies have been solved, realizing the generation of ultra-fine bubbles and high-concentration negative ions, which is suitable for hot baths and medical rehabilitation equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SILENCE IS GOLD INC
- Filing Date
- 2025-07-01
- Publication Date
- 2026-07-31
AI Technical Summary
Existing high-end hot tubs produce larger bubbles and lower negative ion concentrations, making it difficult to achieve the desired effect.
Design a high-oxygen negative ion bubble generator, including a pump, a return water pipe, an electric air inlet valve, an outlet water pipe, an exhaust valve, a balance valve, and a negative ion bubble device. It utilizes a rotating float to enhance gas stirring, generating finer bubbles and a higher concentration of negative ions.
It achieves the generation of ultrafine bubbles and high concentration of negative ions in water, and is characterized by its beautiful appearance, space-saving design, and portability, making it suitable for use in various places.
Smart Images

Figure CN224573549U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the technical field of generating high-oxygen negative ion bubble water, and more particularly to a high-oxygen negative ion bubble generator that can generate microbubbles and a higher concentration of negative ions in water. [Background Technology]
[0002] Modern high-end bubble baths utilize bubble micronization technology. Pressurized air is introduced into the water, where turbulent mixing breaks down the gas into tiny bubble particles that dissolve into the water. These fine bubbles provide a deep cleansing effect on pores. Furthermore, the bursting of these bubbles in the water generates micro-explosive energy and water ripples, creating a gentle, patting massage effect that further promotes blood circulation and metabolism in the skin. Therefore, bubble micronization baths have become a leading high-tech health bathing technology in modern high-end bathroom fixtures, commonly used in hotels, spas, and medical rehabilitation facilities.
[0003] like Figure 1 As shown, a known sparkling water production device connects a pump 200 and a pressure tank 300 via an inlet pipe 100, with the outlet of the inlet pipe 100 facing the top surface inside the pressure tank 300. When the pump 200 pumps high-pressure water into the inlet pipe 100, the high-pressure water flow enters the pressure tank 300, impacting the inner wall and mixing in air. The water flow also creates agitation within the tank, causing the gas to mix with the water and form sparkling water. This sparkling water is then discharged through the outlet 301 and supplied to a hot bubble bath. While the aforementioned known technology can mix bubbles in water to produce negative ion sparkling water, the resulting bubble particles are relatively large, making it difficult to form finer bubbles. Furthermore, the concentration of negative ions generated is low, failing to achieve the desired effect. [Utility Model Content]
[0004] In view of the shortcomings of the aforementioned prior art, the inventor felt that it was not perfect, so he devoted his mind and effort to researching and overcoming it. Based on his years of experience in this industry, he developed a high-oxygen negative ion bubble generator that can produce finer bubbles and higher concentrations of negative ions in water, and achieves the purposes of being aesthetically pleasing, space-saving, and portable and hanging.
[0005] The main purpose of this utility model is to provide a high-oxygen negative ion bubble generator. Through the design of a machine body containing a pump, a return water pipe, an electric air inlet valve, a water outlet pipe, an exhaust valve, a balance valve, and a negative ion bubble device, the machine achieves the effect of generating finer bubbles and a higher concentration of negative ions in water by utilizing a special negative ion bubble device.
[0006] The secondary objective of this invention is to provide a high-oxygen negative ion bubble generator, which, through its hanging design, achieves the effects of being aesthetically pleasing, space-saving, and easy to carry and hang for use.
[0007] To achieve the above objectives, the preferred technical solution of the high-oxygen negative ion bubble generator of this utility model includes a machine body, and a pump, a return water pipe, an electric air inlet valve, a water outlet pipe, a negative ion bubble device, an exhaust valve, and a balance valve disposed within the machine body. The pump is an air-cooled or water-cooled high-pressure water pump, with one inlet end connected to a water inlet port of the machine body via the return water pipe. The electric air inlet valve is disposed in the return water pipe, allowing air to enter and mix with the water in the return water pipe during pumping, thereby generating primary microparticle high-oxygen negative ion water. One outlet end of the pump is connected to a water outlet port of the machine body via the water outlet pipe, and the negative ion bubble device, the exhaust valve, and the balance valve are disposed within the water outlet pipe. The negative ion bubble device includes a pressure tube and a rotating float. The upper and lower ends of the pressure tube are connected to the water outlet pipe, and the rotating float is floatably disposed in the pressure tube. The negative ion bubble device is used to allow water from the water outlet pipe to enter the pressure tube and impact the surface of the rotating float. When the rotating float is impacted and rotates, it can bring more gas into the water body to generate a higher concentration of ultra-fine microparticle high-oxygen negative ion water.
[0008] In the aforementioned high-oxygen negative ion bubble generator, the rotating float is a spherical or multi-faceted sphere.
[0009] In the aforementioned high-oxygen negative ion bubble generator, the machine body is a portable shell, which contains the pump, the return water pipe, the electric air inlet valve, the water outlet pipe, the negative ion bubble device, the exhaust valve and the balance valve. The water inlet and the water outlet are provided on one side of the portable shell.
[0010] In the aforementioned high-oxygen negative ion bubble generator, the portable housing is a plastic housing.
[0011] The aforementioned high-oxygen negative ion bubble generator further includes a water intake hose and a water outlet hose; the water intake hose is detachably connected to the water inlet of the machine body for drawing in external water; the water outlet hose is detachably connected to the water outlet of the machine body for outputting the high-oxygen negative ion water.
[0012] In the aforementioned high-oxygen negative ion bubble generator, a water-drawing head is attached to the end of the water-drawing hose.
[0013] In the aforementioned high-oxygen negative ion bubble generator, a water outlet head is attached to the end of the water outlet hose.
[0014] This utility model discloses a high-oxygen negative ion bubble generator, which can achieve the following effects:
[0015] (I) It can generate ultrafine bubbles and high concentration of negative ions: This utility model uses an electric air inlet valve to introduce gas into the water in the return water pipe for pre-mixing, and then pumps it to the negative ion bubble device under pressure. When the high-pressure water flow impacts the float, it rotates, thereby enhancing the gas stirring and dispersion effect, generating even smaller bubbles and promoting the dissolution of gas into the water, and increasing the oxygen content and negative ion concentration in the bubble water.
[0016] (II) High structural integration and compact size: All key components of this utility model (such as pumps, pipelines, valve bodies and bubble devices) are integrated into a portable housing, and the structural design is simple and beautiful.
[0017] (III) Portable and hanging functions: The shell of this utility model can be vertically hung, and users can freely hang it on the wall or other support devices as needed. It has the characteristics of being beautiful, space-saving and convenient, and is easy to carry to different places of use. [Attached Image Description]
[0018] Figure 1 This is a schematic diagram of an existing negative ion bubble manufacturing device and its operating principle.
[0019] Figure 2 This is a schematic diagram of the high-oxygen negative ion bubble manufacturing machine of this utility model.
[0020] Figure 3 This is a schematic diagram illustrating the operating principle of the negative ion bubble device of this utility model.
[0021] Figure 4 This is a schematic diagram of the appearance of the high-oxygen negative ion bubble manufacturing machine of this utility model.
[0022] Symbol explanation:
[0023] 1: Body
[0024] 11: Portable casing
[0025] 12: Water entrance
[0026] 13: Outlet port
[0027] 2: Pump
[0028] 3: Return water pipe
[0029] 4: Electric intake valve
[0030] 5: Water outlet pipe
[0031] 6: Negative ion bubble device
[0032] 61: Pressure pipe
[0033] 62: Rotating Float
[0034] 7: Exhaust valve
[0035] 8: Balance valve
[0036] 9: Water suction hose
[0037] 91: Water-drawing head
[0038] 10: Water outlet hose
[0039] 101 water outlet
Detailed Implementation Methods
[0040] The structural features and other functions and purposes of this utility model are described in detail below with reference to the accompanying drawings and embodiments:
[0041] See Figure 2 and Figure 4 As shown, this utility model discloses a high-oxygen negative ion bubble generator, the specific embodiment of which includes: a machine body 1, and a pump 2, a return water pipe 3, an electric air inlet valve 4, a water outlet pipe 5, a negative ion bubble device 6, an exhaust valve 7, and a balance valve 8, etc., disposed within the machine body 1, wherein:
[0042] The body 1 is preferably implemented as a portable shell 11 (e.g. Figure 4 As shown), its shape is not limited. The portable housing 11 provides the aforementioned pump 2 and other equipment and pipelines. One side of the portable housing 11 is provided with a water inlet 12 and a water outlet 13. More specifically, the portable housing 11 can be implemented as a plastic housing, so that the portable housing 11 has the functions of being beautiful, convenient for hanging and carrying.
[0043] The pump 2 is an air-cooled or water-cooled high-pressure water pump, and one of its inlet ends is connected to the water inlet port 12 of the body 1 via the return water pipe 3. The outlet end of the pump 2 is connected to the water outlet port 13 of the body 1 via the outlet water pipe 5.
[0044] The electric air intake valve 4 is an existing device installed on the return water pipe 3, so that when the pump 2 is pumping water, the electric air intake valve 4 can mix external air into the water in the return water pipe 3 to generate primary particulate high oxygen negative ion water.
[0045] The negative ion bubble device 6, the exhaust valve 7, and the balance valve 8 are connected in series through the water outlet pipe 5, allowing the microparticle high-oxygen negative ion water to flow sequentially through the negative ion bubble device 6, the exhaust valve 7, and the balance valve 8, and then flow out from the water outlet 13 of the machine body 1. Among them, the exhaust valve 7 and the balance valve 8 are existing devices.
[0046] See Figure 2 and Figure 3As shown, a preferred embodiment of the negative ion bubble device 6 includes a pressure pipe 61 and a rotating float 62. The diameter of the pressure pipe 61 is larger than that of the water outlet pipe 5, with its upper and lower ends connected to the water outlet pipe 5. The rotating float 61 is floatably disposed within the pressure pipe 61 and can be composed of a spherical or multifaceted sphere or other shape with a density lower than water. When the primary microparticle high-oxygen negative ion water pumped by the pump 2 enters the pressure pipe 61, it impacts the surface of the rotating float 62. As the rotating float 62 rotates under impact, it can bring more gas into the water, thereby generating a higher concentration of ultra-microparticle high-oxygen negative ion water.
[0047] See Figure 4 As shown, to facilitate application in heated bubble baths, other cleaning equipment, or rehabilitation equipment, a preferred embodiment of this invention further includes a water intake hose 9 and a water outlet hose 10. The water intake hose 9 is detachably connected to the water inlet 12 of the body 1, and its end is connected to a water intake head 91, which can be used to draw external water into the return water pipe 3. The water outlet hose 10 is detachably connected to the water outlet 13 of the body 1, and its end is connected to a water outlet head 101, which is used to output the ultrafine microparticle high-oxygen negative ion water.
[0048] When this utility model is actually installed, the body 1 is designed as a portable shell 11 (plastic shell), which has the effects of reducing volume, saving space and being aesthetically pleasing. Furthermore, due to the design of the water intake hose 9 and the water outlet hose 10, this utility model can be flexibly adjusted, moved and connected whether it is wall-mounted, upright, horizontal or mobile, which can facilitate the overall installation and application.
[0049] In use, this invention allows for the placement of the water intake hose 9 and the water outlet hose 10 into the water in a basin, bathtub, or tub after the basin, bathtub, or tub is filled with water. When the system is activated, water is drawn into the pump 2 via the water intake hose 9, while simultaneously, primary microparticle high-oxygen negative ion water is generated in the return pipe 3 using the electric air inlet valve 4. This primary microparticle high-oxygen negative ion water is pumped by the pump 2 to the outlet pipe 5, and then passes through the negative ion bubble device 6 to generate ultra-microparticle high-oxygen negative ion water. Afterward, it is returned to the basin, bathtub, or tub through the outlet hose 10, and this cycle continues, transforming ordinary tap water into ultra-microparticle high-oxygen bubble milky white water. When the ultra-microparticle high-oxygen bubbles burst, they generate 100,000 negative ions per cubic centimeter.
[0050] Specifically, when applied to shampooing, this invention can achieve the following effects: (i) It allows hair growth serum and hair nourishing serum to easily penetrate the pores and reach the depth of the scalp. Combined with the vibration function, it removes various oil, dirt, and chemical residues remaining in the pores of the scalp, achieving the best cleaning effect. This is the optimal time to use hair growth serum and hair nourishing serum. (ii) It promotes metabolism and slows hair loss: Because it contains ultra-high negative ions, it can remove waste from scalp cells, allowing nutrients to be absorbed into the cells, accelerating the metabolism of all scalp cells, making the scalp healthier, strengthening hair follicles, increasing hair lifespan, and slowing hair loss. (iii) It relieves scalp itching and dandruff, and strengthens hair follicles: The conditioning machine of this invention generates negative ions during the process of creating micron-sized bubbles, while simultaneously increasing oxygen content. The ultrasonic vibration generated when the micron-sized bubbles burst activates hair follicle cells, purifying the scalp and hair and relieving dandruff and scalp itching. (iv) It has a calming and inhibitory effect: When rinsing the head, the negative ions generated promote sleep, eliminate fatigue, and increase mental function for clearer thinking. (v) Improves severely oily scalp and shortens perming and dyeing time: because microbubbles and ultrasound clean the oil and dirt on the scalp and hair, and improve oil production, the perming and dyeing agents can penetrate the hair cortex more easily.
[0051] This invention, when applied to skin cleansing, can achieve the following effects: (I) Deep cleansing effect: This invention generates micron-sized bubbles during operation, only one-fifth the size of capillaries, allowing them to quickly penetrate deep into the skin. The ultrasonic waves generated when these microbubbles burst can expel dirt and chemical residues clogging the capillaries, achieving a thorough cleansing effect. (II) Activating epidermal cells and relieving itchy skin: The high oxygen content in the water promotes smooth circulation in subcutaneous capillaries, restoring cells to their optimal active state and effectively relieving skin aging and itching. (III) Enhancing metabolism and expelling excess fat: After negative ions enter the body, the ionization of calcium, sodium, and potassium in the blood increases, accelerating the alkalization of the blood, which has a purifying effect. This leads to vigorous metabolism, and the body's cells gradually become more activated and healthier. This invention utilizes the process of microbubble generation, through which ultrasound waves are formed by contraction and explosion. This process consumes heat to break down deep subcutaneous fat, promotes blood and lymph circulation, and smoothly removes excess fat, resulting in a more shapely figure.
[0052] In summary, this utility model of a high-oxygen negative ion bubble generator is indeed practical and novel. Its technical methods are undeniably novel, and its efficacy and design purpose are certainly consistent, thus representing a reasonable advancement. Therefore, a utility model patent application is hereby filed.
Claims
1. A high oxygen anion bubble generator, characterized by, It includes a body, and a pump, a return water pipe, an electric air inlet valve, an outlet water pipe, a negative ion bubble device, an exhaust valve and a balance valve installed in the body. The pump is an air-cooled or water-cooled high-pressure water pump, and one of its inlet ends is connected to a water inlet of the machine body via the return water pipe. The electric air intake valve is installed in the return water pipe, and when the pump is pumping water, air is introduced and mixed into the water in the return water pipe to generate primary particulate high oxygen negative ion water. One outlet end of the pump is connected to a water outlet port of the machine body via the water outlet pipe, and the water outlet pipe is provided with the negative ion bubble device, the exhaust valve and the balance valve; The negative ion bubble device includes a pressure tube and a rotating float. The upper and lower ends of the pressure tube are connected to the water outlet pipe, and the rotating float is floatably disposed in the pressure tube. The negative ion bubble device is used to allow water from the water outlet pipe to enter the pressure tube and impact the surface of the rotating float. When the rotating float is impacted and rotates, it can bring more gas into the water body to generate a higher concentration of ultra-fine microparticle high-oxygen negative ion water.
2. The high oxygen anion bubble generator as claimed in claim 1, wherein, The rotating float is a spherical or multi-faceted sphere.
3. The high oxygen anion bubble generator according to claim 1 or 2, wherein The device body is a portable housing, which contains the pump, the return water pipe, the electric air inlet valve, the water outlet pipe, the negative ion bubble device, the exhaust valve and the balance valve. The water inlet and the water outlet are located on one side of the portable housing.
4. The high oxygen anion bubble generator of claim 3, wherein, The portable housing is a plastic housing.
5. The high oxygen anion bubble generator of claim 3, wherein, It also includes a water intake hose and a water outlet hose; the water intake hose is detachably connected to the water inlet of the machine body for drawing water from the outside; the water outlet hose is detachably connected to the water outlet of the machine body for outputting the ultra-fine high-oxygen negative ion water.
6. The high oxygen anion bubble generator of claim 5, wherein, The end of the water-drawing hose is connected to a water-drawing head.
7. The high oxygen anion bubble generator of claim 5, wherein, The end of the water outlet hose is connected to a water outlet head.