A water-light beauty device with high-pressure infusion function
Patent Information
- Application Number
- CN202520912754.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-10
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-05-10
AI Technical Summary
[0005]从上述实施方案和相应的图纸展示可知,该水光美容仪只是设置了气嘴来向法兰处输送气体,没有设置将气体进行集中分散再输送的结构,这就使得美容仪出口处的气体走向难以保持均匀,进而对最终的美容效果产生不利影响,无法充分发挥水光美容的优势
1、设置了第一聚气腔、第一气流通道以及第二聚气腔,对高压气体的流向进行了整合,当高压气体进入本水光美容仪后,首先会抵达第一聚气腔。第一聚气腔能够将高压气体均匀地分散开来,为后续的气体流动做好铺垫。接着,分散后的气体通过第一气流通道有序地流动,最终,气体汇聚到第二聚气腔中。在第二聚气腔里,气体再次进行优化组合,形成了分布极为均匀的气流,在与原液接触时,气流能够以更加充分、快速地将原液吹散,将原液彻底分解成小分子状态。因此能极大地提高了皮肤对原液的吸收效率,无论是肌肤所需的水分、营养成分还是其他有效物质,都能更顺畅地被皮肤吸收。
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Figure CN224699529U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beauty instrument technology, and in particular to a water-light beauty instrument with high-pressure infusion function. Background Technology
[0002] In today's ever-evolving beauty technology, high-pressure infusion-enabled hydrating beauty devices have emerged as a favorite among beauty enthusiasts. These advanced devices utilize high-pressure technology to rapidly deliver nourishing essences to the deeper layers of the skin. Typically, these devices employ microneedling or needle-free techniques, using ultra-high-speed airflow to instantly break down nutrients into fine particles and accelerate them to supersonic speeds. This allows them to penetrate the skin barrier in a very short time, precisely delivering nutrients to the deeper layers of the skin. This not only effectively increases skin hydration, making it more supple and plump, but also significantly enhances its radiance and elasticity. Furthermore, it is highly effective in improving dullness and reducing melanin deposition, restoring a healthy glow to the skin.
[0003] However, a common problem with many current water-light beauty devices is uneven air pressure. During the airflow process, uneven air distribution results in some nutrients being fully broken down by the airflow, while others cannot be effectively broken down. This not only wastes nutrients but also significantly affects the beauty effect, failing to meet consumers' demands for a high-quality beauty experience.
[0004] The technical content disclosed in the Chinese patent document (publication number: CN219049865U, patent name: a novel high-pressure non-invasive water light beauty instrument handle structure) is as follows: it includes a syringe and a handle. A sealing element is fixedly sleeved on the outer wall of the syringe near the left end. A flange is fixedly sleeved on the outer wall of the sealing element. A needle is threadedly connected to the outer wall of the flange near the left end. The outer wall of the flange near the right end is fixedly snapped into the inner wall of the handle. The sealing element is fixed by the extrusion force between the left end face of the flange and the right end face of the needle. An air nozzle cap is threadedly connected to the outer wall of the flange and located outside the needle. A sealing gasket is fixedly sleeved on the inner wall of the annular groove of the air nozzle cap. The narrow tube structure of the air nozzle cap head plays the role of gathering compressed air and guiding it, thereby fixing and concentrating the spray direction. An air nozzle is connected to the oblique threaded hole near the lower right end of the flange.
[0005] As can be seen from the above implementation plan and the corresponding drawings, the water-light beauty device only has an air nozzle to deliver gas to the flange, without a structure to concentrate and disperse the gas before delivery. This makes it difficult to keep the gas direction at the outlet of the beauty device uniform, which in turn has an adverse effect on the final beauty effect and fails to fully realize the advantages of water-light beauty. Utility Model Content
[0006] This invention overcomes the shortcomings of existing technologies and provides a water-light beauty device with high-pressure infusion function. It features a first gas-gathering chamber, a first airflow channel, and a second gas-gathering chamber, integrating the flow direction of the high-pressure gas. The integrated gas forms an extremely uniformly distributed airflow. Upon contact with the serum, the airflow can more fully and quickly disperse the serum, thoroughly breaking it down into smaller molecules. Therefore, it greatly improves the skin's absorption efficiency of the serum, allowing for smoother absorption of moisture, nutrients, and other effective substances.
[0007] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: A water-light beauty device with high-pressure infusion function includes a handle, a handle connected to a front end of the handle, an air pump connector between the handle and the front end of the handle, a first air-gathering chamber inside the front end of the handle, and the first air-gathering chamber connected to a first airflow channel. The end of the handle furthest from the handle is connected to the nozzle cover. The nozzle cover includes an air jet guide seat and a second air-gathering chamber. The handle front end is provided with a stock solution bottle. One end of the stock solution bottle is connected to the liquid pushing component, and the other end is connected to the liquid guiding needle tube. High-pressure gas enters the first gas-gathering chamber through the air pump connector. After being dispersed in the first gas-gathering chamber, it flows to the second gas-gathering chamber through several first airflow channels. After converging in the second gas-gathering chamber, it is finally ejected at high speed from the jet guide seat. While the jet guide ejects high-pressure gas, the liquid pushing component pushes the original liquid in the original liquid bottle, causing the original liquid to be output from the liquid guiding needle tube. The output original liquid encounters the high-pressure gas ejected at high speed, is quickly carried out and blown away, forming a high-speed fine molecular original liquid.
[0008] Furthermore, a raw liquid bottle fixing seat is provided between the front end of the handle and the outer cover of the nozzle. A needle tube fixing cap is provided inside the raw liquid bottle fixing seat. Several second airflow channels are provided around the needle tube fixing cap. The second airflow channels are connected to the first airflow channel and the second gas gathering chamber.
[0009] Furthermore, the syringe cap is connected to the upper end of the original solution bottle via a thread.
[0010] Furthermore, the syringe cap and the original liquid bottle holder are connected by threads.
[0011] Furthermore, the liquid pushing assembly includes a piston head made of rubber, which is slidably inserted into the original liquid bottle.
[0012] Furthermore, the liquid-pushing assembly includes a power base, a motor connected to the power base, a lead screw connected to the motor, a slide rod arranged parallel to one side of the lead screw, a movable seat threadedly connected to the lead screw, the movable seat connected to a linear bearing, and the linear bearing slidably connected to the slide rod.
[0013] Furthermore, the movable seat is connected to the push rod, and the piston head is connected to the end of the push rod away from the movable seat.
[0014] Furthermore, the liquid-pushing component is disposed within the cavity of the handle, and the end of the handle away from the front end is connected to the connecting seat. The connecting seat is provided with a ventilation hose, which is inserted into the inner cavity of the handle and connected to the air pump connector.
[0015] Furthermore, the front end of the handle is also provided with an observation window, through which the usage status of the concentrate bottle can be observed.
[0016] Compared with the prior art, the beneficial effects of this utility model are: 1. The device is equipped with a first gas-gathering chamber, a first airflow channel, and a second gas-gathering chamber, integrating the flow of high-pressure gas. When the high-pressure gas enters this water-light beauty device, it first reaches the first gas-gathering chamber. The first gas-gathering chamber evenly disperses the high-pressure gas, preparing for subsequent gas flow. Then, the dispersed gas flows orderly through the first airflow channel, finally converging into the second gas-gathering chamber. In the second gas-gathering chamber, the gas is further optimized and combined, forming an extremely evenly distributed airflow. When in contact with the serum, the airflow can more fully and quickly disperse the serum, completely breaking it down into smaller molecules. Therefore, it greatly improves the skin's absorption efficiency of the serum, allowing the skin to absorb moisture, nutrients, and other effective substances more smoothly.
[0017] 2. This design also cleverly solves the problem of potential impact on the skin caused by high-speed gas. In some traditional beauty devices, high-speed gas often concentrates and impacts the skin, causing discomfort or even damage. However, in this water-light beauty device, the energy of the high-speed gas is effectively dispersed to disperse the essence. Users do not feel a strong impact during use, but rather enjoy a gentle and comfortable beauty experience, significantly improving the user experience. Attached Figure Description
[0018] The accompanying drawings are provided to further illustrate the present invention and, together with the embodiments of the present invention, are used to explain the present invention. They do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the overall structure of the water-light beauty device according to an embodiment of this utility model; Figure 2 This is a cross-sectional view of the water-light beauty device according to an embodiment of this utility model; Figure 3 This is a schematic diagram of the internal structure of the water-light beauty device according to an embodiment of the present invention; Figure 4This is a schematic diagram of the liquid-pushing component structure according to an embodiment of the present invention; Figure 5 This is a cross-sectional view of the handle and the front end of the handle according to an embodiment of the present utility model.
[0019] In the diagram: 1. Connecting seat; 2. Handle; 3. Handle front end; 301. First airflow channel; 302. First gas gathering chamber; 303. Observation window; 4. Nozzle outer cover; 401. Air jet guide seat; 402. Second gas gathering chamber; 5. Air pump connector; 6. Original liquid bottle; 7. Liquid pushing assembly; 701. Power base; 702. Motor; 703. Lead screw; 704. Linear bearing; 705. Moving seat; 706. Push rod; 707. Piston head; 708. Slide rod; 8. Original liquid bottle fixing seat; 801. Second airflow channel; 802. Needle tube fixing cap; 9. Liquid guiding needle tube. Detailed Implementation
[0020] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0021] like Figures 1 to 5 As shown, a water light beauty device with high pressure import function includes a handle 2, the handle 2 is connected to the handle front end 3, an air pump connector 5 is provided between the handle 2 and the handle front end 3, a first air gathering chamber 302 is provided inside the handle front end 3, and the first air gathering chamber 302 is connected to a first airflow channel 301. The end of the handle front end 3 away from the handle 2 is connected to the nozzle outer cover 4. The nozzle outer cover 4 includes an air jet guide seat 401 and a second air gathering chamber 402. The handle front end 3 is provided with a raw liquid bottle 6. One end of the raw liquid bottle 6 is connected to the liquid pushing component 7, and the other end is connected to the liquid guiding needle tube 9. During operation, high-pressure gas enters the first gas-gathering chamber 302 through the air pump connector 5. Within the first gas-gathering chamber 302, the high-pressure gas is fully dispersed and then flows through several first airflow channels 301 to the second gas-gathering chamber 402. In the second gas-gathering chamber 402, the dispersed gas reassembles, forming a uniform airflow, which is then ejected at high speed from the jet guide seat 401. This unique gas flow design ensures a more uniform gas distribution. This uniform gas can more fully and quickly disperse the liquid, breaking it down into smaller molecules, which greatly facilitates skin absorption. Simultaneously, because the energy of the high-speed gas is effectively dispersed to disperse the liquid, it avoids concentrated impact on the skin, thus significantly improving the user experience.
[0022] Simultaneously, as the jet guide 401 ejects high-pressure gas, the liquid pushing component 7 synchronously pushes the stock solution in the stock solution bottle 6, causing the stock solution to be output from the liquid guiding needle 9. Upon encountering the high-speed ejected high-pressure gas, the output stock solution is rapidly carried out and dispersed, forming high-speed, finely milled stock solutions. These high-speed, finely milled stock solutions can penetrate deeper into the skin, promoting better absorption of moisture and achieving the desired hydrating and beautifying effect.
[0023] A liquid bottle fixing seat 8 is provided between the front end 3 of the handle and the outer cover 4 of the nozzle. Inside the liquid bottle fixing seat 8, a needle fixing cap 802 is provided. Several second airflow channels 801 are provided around the needle fixing cap 802. The second airflow channels 801 serve to connect the first airflow channel 301 and the second gas gathering chamber 402, ensuring smooth gas flow.
[0024] The syringe cap 802 is threaded to the upper end of the concentrate bottle 6, and the syringe cap 802 is also threaded to the concentrate bottle holder 8. This design makes it simple and easy to replace the concentrate bottle 6, allowing users to quickly replace the concentrate bottle without complicated tools and steps, thus improving convenience and efficiency.
[0025] The user simply needs to rotate and remove the entire original liquid bottle holder 8, then separate the original liquid bottle 6 from the original liquid bottle holder 8, and then connect the new original liquid bottle 6 to the original liquid bottle holder 8.
[0026] The liquid guide needle 9 is inserted into the original liquid bottle fixing seat 8. When the original liquid bottle fixing seat 8 is connected to the original liquid bottle 6, the liquid guide needle 9 will be accurately inserted into the original liquid bottle 6, which will guide the subsequent discharge of the original liquid in the original liquid bottle 6 and ensure that the original liquid can be output smoothly.
[0027] The liquid pushing assembly 7 includes a piston head 707, which is made of rubber. The piston head 707 is slidably inserted into the original liquid bottle 6. Therefore, the piston head 707 can push the original liquid out towards the liquid guiding needle tube 9, and can also form a sealed state with the inner wall of the original liquid bottle 6, so that the original liquid will not be exposed from the contact point between the original liquid bottle 6 and the piston head 707.
[0028] The liquid-pushing assembly 7 includes a power base 701, which is connected to a motor 702. The motor 702 is connected to a lead screw 703. A slide rod 708 is parallel to one side of the lead screw 703. A movable seat 705 is threadedly connected to the lead screw 703. The movable seat 705 is connected to a linear bearing 704, which is slidably connected to the slide rod 708. A push rod 706 is connected to the movable seat 705. A piston head 707 is connected to the end of the push rod 706 away from the movable seat 705. Therefore, when the motor 702 drives the lead screw 703 to rotate, the movable seat 705 pushes the push rod 706, thereby causing... The piston head 707 pushes the concentrate in the concentrate bottle 6. The front end 3 of the handle is also equipped with an observation window 303, through which the usage status of the concentrate bottle 6 can be observed. When it is observed that the concentrate has been used up, the motor 702 drives the lead screw 703 to rotate in the opposite direction to push the piston head 707 out. After the piston head 707 is completely out of the concentrate bottle 6, the concentrate bottle 6 can be taken out. The motor 702 drives the piston head 707 to push the concentrate, so the amount of concentrate output each time can be precisely controlled, so as to achieve the purpose of precise control of concentrate usage and make the water light beauty device more effective in moisturizing.
[0029] The liquid injection component 7 is located inside the cavity of the handle 2. The end of the handle 2 away from the front end 3 is connected to the connector 1. The connector 1 is equipped with an air hose. The air hose is inserted into the cavity of the handle 2 and connected to the air pump connector 5. The air hose can be bent during use, so it is convenient for the user to hold the handle 2 and apply water-light hydration to multiple areas of the face, making it more convenient for the user to use.
[0030] This hyaluronic acid beauty device achieves a more efficient, comfortable, and high-quality beauty experience through its unique integrated gas flow design. It features a first gas-gathering chamber 302, a first airflow channel 301, and a second gas-gathering chamber 402, integrating the flow of high-pressure gas. When the high-pressure gas enters the device, it first reaches the first gas-gathering chamber 302. The first gas-gathering chamber 302 evenly disperses the high-pressure gas, preparing for subsequent gas flow. Then, the dispersed gas flows orderly through the first airflow channel 301, finally converging into the second gas-gathering chamber 402. In the second gas-gathering chamber 402, the gas is further optimized and combined, forming an extremely evenly distributed airflow. When in contact with the serum, the airflow can more fully and quickly disperse the serum, thoroughly breaking it down into smaller molecules. Therefore, it greatly improves the skin's absorption efficiency of the serum, allowing the skin to absorb the necessary moisture, nutrients, and other effective substances more smoothly.
[0031] Meanwhile, this design cleverly solves the problem of potential impact from high-speed gas on the skin. In some traditional beauty devices, high-speed gas often concentrates and impacts the skin, causing discomfort or even damage. However, in this water-light beauty device, the energy of the high-speed gas is effectively dispersed to disperse the essence. Users do not feel a strong impact during use, but rather enjoy a gentle and comfortable beauty experience, significantly improving the user experience.
[0032] Finally, it should be noted that the above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A water-light beauty device with high-pressure infusion function, characterized in that, Includes a handle (2), the handle (2) is connected to the front end of the handle (3), an air pump connector (5) is provided between the handle (2) and the front end of the handle (3), a first air gathering chamber (302) is provided inside the front end of the handle (3), and the first air gathering chamber (302) is connected to the first airflow channel (301). The end of the handle front end (3) away from the handle (2) is connected to the nozzle outer cover (4). The nozzle outer cover (4) includes an air jet guide seat (401) and a second gas gathering chamber (402). The handle front end (3) is provided with a raw liquid bottle (6). One end of the raw liquid bottle (6) is connected to the liquid pushing component (7), and the other end is connected to the liquid guiding needle tube (9). High-pressure gas enters the first gas-gathering chamber (302) through the air pump connector (5), disperses in the first gas-gathering chamber (302), flows to the second gas-gathering chamber (402) through several first airflow channels (301), and finally is ejected at high speed from the jet guide seat (401) after converging in the second gas-gathering chamber (402); While the jet guide seat (401) ejects high-pressure gas, the liquid pushing assembly (7) pushes the original liquid in the original liquid bottle (6) so that the original liquid is output from the liquid guiding needle tube (9). The output original liquid encounters the high-pressure gas ejected at high speed, is quickly carried out and blown away, forming a high-speed fine molecular original liquid.
2. The water-light beauty device with high-pressure infusion function according to claim 1, characterized in that, A liquid bottle fixing seat (8) is provided between the front end of the handle (3) and the nozzle cover (4). A syringe fixing cap (802) is provided inside the liquid bottle fixing seat (8). Several second airflow channels (801) are provided around the syringe fixing cap (802). The second airflow channels (801) are connected to the first airflow channel (301) and the second gas gathering chamber (402).
3. The water-light beauty device with high-pressure infusion function according to claim 2, characterized in that, The syringe cap (802) is connected to the upper end of the original liquid bottle (6) by a thread.
4. The water-light beauty device with high-pressure infusion function according to claim 3, characterized in that, The syringe fixing cap (802) and the original liquid bottle fixing seat (8) are connected by threads.
5. The water-light beauty device with high-pressure infusion function according to any one of claims 1 to 4, characterized in that, The liquid pushing assembly (7) includes a piston head (707), which is made of rubber and is slidably inserted into the original liquid bottle (6).
6. The water-light beauty device with high-pressure infusion function according to claim 5, characterized in that, The liquid-pushing assembly (7) includes a power base (701), which is connected to a motor (702). The motor (702) is connected to a lead screw (703). A slide rod (708) is arranged parallel to one side of the lead screw (703). A movable seat (705) is threadedly connected to the lead screw (703). The movable seat (705) is connected to a linear bearing (704). The linear bearing (704) is slidably connected to the slide rod (708).
7. The water-light beauty device with high-pressure infusion function according to claim 6, characterized in that, The movable seat (705) is connected to the push rod (706), and the piston head (707) is connected to the end of the push rod (706) away from the movable seat (705).
8. The water-light beauty device with high-pressure infusion function according to claim 7, characterized in that, The liquid pushing component (7) is located inside the cavity of the handle (2). The end of the handle (2) away from the front end (3) is connected to the connecting seat (1). The connecting seat (1) is equipped with a ventilation hose. The ventilation hose is inserted into the inner cavity of the handle (2) and connected to the air pump connector (5).
9. The water-light beauty device with high-pressure infusion function according to claim 1, characterized in that, The front end (3) of the handle is also provided with an observation window (303), through which the usage status of the original liquid bottle (6) can be observed.
Citation Information
Patent Citations
Novel high-pressure non-invasive water-light beauty instrument handle structure
CN219049865U