Top-speed superconductive water-light instrument
By combining negative pressure microneedles and electroporation treatment heads, the problem of limited skincare functions in water-light beauty devices is solved, achieving deep penetration of beauty serums and highly effective skincare results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-04-03
AI Technical Summary
Existing skincare devices for hyaluronic acid injections have limited skincare functions, resulting in insufficient skincare effects.
It adopts a combination design of negative pressure microneedles and electroporation treatment head. The negative pressure microneedles use negative pressure to adsorb the skin and open the stratum corneum channel, while the electroporation treatment head further promotes the penetration of beauty serum into the dermis.
It significantly improves the penetration and absorption rate of the beauty serum, achieving a deep skin care effect.
Smart Images

Figure CN224070962U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beauty equipment technology, and in particular to an ultra-fast superconducting water light device. Background Technology
[0002] Traditional beauty methods typically rely on applying skincare products to the surface, but these products often have difficulty penetrating the dermis layer of the skin, resulting in limited effects. With the development of technology, the water-light beauty device itself has emerged. The water-light beauty device itself is based on the progress of modern dermatology and cosmetic medicine, and combines advanced transdermal technology to solve the problem of deep skin hydration and nutrient supply, and has been widely praised by consumers.
[0003] Currently, in related technologies, the main body of the water-light beauty device mainly uses tiny needles or nano needles to inject nutrients such as essence and hyaluronic acid directly into the deep layers of the skin through high-frequency vibration or pressure. This breaks through the limitations of the skin barrier and can efficiently deliver moisture and nutrients to the deep layers of the skin, thereby achieving multiple effects such as deep hydration, brightening skin tone, shrinking pores, and anti-aging.
[0004] However, current beauty devices still suffer from limited skincare functions, which prevents them from achieving the desired results. How to further promote the absorption of the serum remains a challenge that current beauty device products need to research and overcome.
[0005] The above information is provided as background information only to aid in understanding this disclosure and does not constitute an assertion or admission that any of the above content can be used as prior art relative to this disclosure. Utility Model Content
[0006] This invention provides a high-speed superconducting water light device to solve the problem of insufficient skin care effects caused by the single skin care function in the existing technology.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] A high-speed superconducting hydrophotometer includes:
[0009] The beauty device itself;
[0010] A negative pressure microneedle is installed in the body of the beauty device and has a negative pressure cavity. The negative pressure microneedle is adsorbed onto the skin through the negative pressure cavity and performs microneedle care on the skin.
[0011] And an electroporation treatment head, which is disposed on the body of the beauty device and is used to perform electrotherapy treatment on the skin.
[0012] In some embodiments, the electroporation treatment head is detachably sleeved on the outside of the negative pressure microneedle head;
[0013] Alternatively, the electroporation head and the negative pressure microneedle head may be respectively positioned at different locations on the body of the beauty device;
[0014] Alternatively, the electroporation treatment head can be disassembled and replaced with the negative pressure microneedle.
[0015] In some embodiments, when the electroporation treatment head and the negative pressure microneedle head are disassembled and replaced, the end face of the beauty device body has a positioning notch, and the negative pressure microneedle head and the electroporation treatment head are respectively provided with positioning protrusions, and the positioning notch and the positioning protrusions are inserted and matched.
[0016] One of the positioning recess and the positioning protrusion has a slot, and the other of the positioning recess and the positioning protrusion has a locking block that can be movably engaged with the slot.
[0017] Alternatively, one of the positioning recess and the positioning protrusion may have a first magnetic element, and the other of the positioning recess and the positioning protrusion may have a second magnetic element that cooperates with and is attracted to the first magnetic element.
[0018] In some embodiments, the peripheral contour of the positioning notch includes sequentially connected straight line segments and arc segments, and the peripheral contour of the positioning protrusion is adapted to the positioning notch.
[0019] In some embodiments, the ultra-fast superconducting water light device further includes an electrically connected power supply module and a first contact electrode, the power supply module being disposed within the body of the beauty device;
[0020] When the electroporation treatment head is detachably sleeved on the outside of the negative pressure microneedle, the first contact electrode is located on the end face of the beauty device body or the outer surface of the negative pressure microneedle. The electroporation treatment head is provided with a second contact electrode. When the electroporation treatment head is sleeved on the outside of the negative pressure microneedle, the first contact electrode and the second contact electrode abut against each other, and at least one of them is a probe electrode or at least one of them is a magnetic electrode.
[0021] Alternatively, when the electroporation treatment head and the negative pressure microneedle head are disassembled and replaced, the first contact electrode is located on the end face of the beauty device body, and the electroporation treatment head is provided with a second contact electrode. When the electroporation treatment head is placed on the beauty device body, the first contact electrode and the second contact electrode abut against each other, and at least one of them is a probe electrode or at least one of them is a magnetic electrode.
[0022] In some embodiments, the system also includes a liquid storage chamber and a liquid outlet channel. The end of the negative pressure microneedle is provided with a liquid outlet, which is located in the negative pressure chamber. The liquid storage chamber and the liquid outlet are connected through the liquid outlet channel.
[0023] The ultra-fast superconducting water light device also includes a negative pressure mechanism located inside the beauty device body (1). The negative pressure mechanism is connected to the negative pressure cavity and is used to extract the air from the negative pressure cavity to achieve skin adsorption and liquid supply.
[0024] Alternatively, the ultra-fast superconducting water light device may further include a negative pressure mechanism and a positive pressure mechanism disposed within the main body of the beauty device. The negative pressure mechanism is connected to the negative pressure cavity and is used to extract air from the negative pressure cavity to achieve skin adsorption. The positive pressure mechanism is connected to the liquid storage cavity or the liquid outlet channel and is used to supply liquid.
[0025] In some embodiments, a container detachably connected to the body of the beauty device is also included, with the liquid reservoir formed in the container.
[0026] In some embodiments, the beauty device body has a clearance hole for avoiding the container; the beauty device body is slidably provided with a sliding cover for blocking the clearance hole.
[0027] In some embodiments, the electroporation treatment head includes a substrate with electrode assemblies distributed on its surface, the electrode assemblies having a discharge frequency of 2.5 kHz to 3.5 kHz.
[0028] In some embodiments, the beauty device body further includes a control system and a prompting module, the control system being connected to the prompting module, the prompting module being used to prompt the sequential use of the negative pressure microneedle and the electroporation treatment head.
[0029] Compared with the prior art, the present invention has the following beneficial effects:
[0030] The ultra-fast superconducting water light device provided by this utility model, with its negative pressure microneedle head and electroporation treatment head, can provide different beauty effects. The negative pressure microneedle head uses negative pressure adsorption technology to adsorb the skin, improve skin smoothness, and facilitate subsequent care. Based on negative pressure adsorption, the negative pressure microneedle head also uses microneedles to open the stratum corneum channels, delivering the beauty serum to the skin and allowing it to penetrate the skin more easily through the stratum corneum channels. Finally, the electroporation treatment head further promotes penetration, allowing the beauty ingredients to penetrate into the dermis, greatly improving the penetration and absorption rate. This solves the problem of insufficient skin care effects due to the single skin care function in existing technologies.
[0031] This invention has other features and advantages that will be apparent from or will be set forth in detail in the accompanying drawings and the following detailed description, which together serve to explain the particular principles of this invention. Attached Figure Description
[0032] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0033] Figure 1 This is a schematic diagram of the assembly relationship of the ultra-fast superconducting hydrophotometer provided in this embodiment of the utility model;
[0034] Figure 2 This is a schematic diagram of the structure of the beauty device body provided in this embodiment of the utility model;
[0035] Figure 3 This is a schematic diagram of the structure of the negative pressure microneedle provided in this embodiment of the utility model;
[0036] Figure 4 This is a schematic diagram of the structure of the electroporation nursing head provided in this embodiment of the utility model;
[0037] Figure 5 This is a structural schematic diagram of the electroporation nursing head provided in another embodiment of the present invention;
[0038] Figure 6 This is a cross-sectional view of the ultra-fast superconducting hydrophotometer provided in this embodiment of the utility model;
[0039] Figure 7 This is a cross-sectional view of the negative pressure microneedle provided in this embodiment of the utility model;
[0040] Figure 8 This is a schematic diagram of the assembly relationship between the beauty instrument body and the container provided in this embodiment of the utility model.
[0041] Figure label:
[0042] 1. Beauty device body; 1001. Clearance hole; 1002. Sliding cover; 2. Negative pressure microneedle tip; 3. Electroporation treatment head; 4. Positioning notch; 41. Straight segment; 42. Arc segment; 5. Positioning protrusion; 6. Slot; 7. Locking block; 8. First contact electrode; 9. Second contact electrode; 10. Base; 101. Electrode assembly; 11. Liquid storage chamber; 12. Liquid outlet channel; 13. Negative pressure mechanism; 131. Negative pressure pump; 132. Negative pressure pipeline; 14. Container; 15. Negative pressure chamber. Detailed Implementation
[0043] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0044] In the description of this utility model, it should be understood that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be a component that is centrally positioned therein. When a component is considered to be "set" on another component, it can be directly set on the other component or there may be a component that is centrally positioned therein.
[0045] Furthermore, terms such as "long," "short," "inner," and "outer" indicate orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings. They are used only for the convenience of describing this utility model and do not indicate or imply that the device or component referred to must have this specific orientation or operate in a specific orientational configuration. Therefore, they should not be construed as limitations of this utility model.
[0046] The following is in conjunction with the appendix Figure 1-8 The technical solution of this utility model will be further illustrated through specific implementation methods.
[0047] Please refer to Figure 1 This utility model provides a high-speed superconducting water light device, including a beauty device body 1, a negative pressure microneedle head 2, and an electroporation treatment head 3. The beauty device body 1 provided in this embodiment includes a long, narrow outer shell, which facilitates the user's grip and provides a stable and comfortable hold.
[0048] The negative pressure microneedle head 2 is disposed on the beauty device body 1. Specifically, in this embodiment, when the beauty device body 1 has a long, narrow outer shell, the negative pressure microneedle head 2 can be disposed at one end of the beauty device body 1. The negative pressure microneedle head 2 has microneedles, and its interior has a negative pressure cavity 15. The negative pressure microneedle head 2 adsorbs onto the skin through the negative pressure cavity 15, and during the negative pressure adsorption process, the negative pressure microneedle head 2 delivers the essence to the user's skin. Under the action of the microneedles, the stratum corneum channels are opened, allowing the essence to penetrate into the skin through the stratum corneum channels, thereby achieving microneedle skin care. It is understood that the microneedles described in this embodiment can be nano-microneedle chips.
[0049] In addition, the electroporation treatment head 3 is also set on the beauty device body 1. After the microneedling treatment is completed, the electroporation treatment head 3 is used to perform electrotherapy treatment on the skin.
[0050] This embodiment provides a high-speed superconducting water light device that uses negative pressure to adhere to the skin, improving skin smoothness to facilitate subsequent care while simultaneously enabling the initial penetration of the serum. Based on this negative pressure adsorption, microneedles are used to open channels in the stratum corneum, allowing the serum to penetrate the epidermis more easily. Finally, an electroporation treatment head 3 further promotes penetration, enabling the beauty ingredients to penetrate into the dermis, significantly improving the serum's absorption rate.
[0051] In the embodiments of this application, the electroporation treatment head 3 and the negative pressure microneedle head 2 are detached and interchangeable. This allows for quick switching of the function mode of the electroporation treatment head 3 after the negative pressure microneedle head 2 has completed the microneedle treatment function, thereby quickly performing the electroporation treatment function and achieving multiple uses in one machine.
[0052] Furthermore, referring to Figure 2 , Figure 3 and Figure 4 When the electroporation treatment head 3 and the negative pressure microneedle head 2 are disassembled and replaced, in order to make full use of the structural space of the beauty instrument body 1, the end face of the beauty instrument body 1 has a positioning notch 4, and the negative pressure microneedle head 2 and the electroporation treatment head 3 are respectively provided with positioning protrusions 5.
[0053] It is understandable that the positioning protrusions 5 on the negative pressure microneedle head 2 and the electroporation treatment head 3 are the same in size and outline, and the positioning recess 4 and the positioning protrusion 5 are compatible with each other. The positioning recess 4 and the positioning protrusion 5 are interlocked and cooperate with each other. When the positioning protrusion 5 is inserted into the positioning recess 4, the beauty instrument body 1 and the negative pressure microneedle head 2, or the beauty instrument body 1 and the electroporation treatment head 3 are initially positioned.
[0054] Based on this, one of the positioning recess 4 and the positioning protrusion 5 has a slot 6, and the other of the positioning recess 4 and the positioning protrusion 5 has a locking block 7 that is movably engaged with the slot; or, one of the positioning recess 4 and the positioning protrusion 5 has a first magnetic element, and the other of the positioning recess 4 and the positioning protrusion 5 has a second magnetic element that cooperates with and is attracted to the first magnetic element.
[0055] Reference Figure 2 and Figure 3 In one embodiment, the inner edge of the positioning notch 4 has a slot 6, and the outer periphery of the positioning protrusion 5 has a locking block 7 that is movably engaged with the slot 6. Typically, the positioning protrusion 5 and the locking block 7 are integrally connected. Under the movable engaging action of the slot 6 and the locking block 7, the negative pressure microneedle 2 and the electroporation care head 3 can be detachably connected to the beauty instrument body 1, and the operation process only requires inserting and unplugging the negative pressure microneedle 2 and the electroporation care head 3, making the operation convenient.
[0056] In another embodiment, the relative positions of the card block 7 and the card slot 6 can be interchanged. For example, the card block 7 can be set at the inner edge of the positioning recess 4. Usually, the card block 7 is integrally connected with the beauty device body 1. At the same time, the positioning protrusion 5 has a card slot 6 that can be movably engaged with the card block 7. In this case, by interchanged, the movable engagement function can also be achieved. The specific setting method of the card block 7 and the card slot 6 is not limited here.
[0057] It is understood that in other embodiments, the movable snap-fit method of the card block 7 and the card slot 6 can be replaced with an elastic snap-fit scheme with a spring pin structure, or it can be replaced with a disassembly connection method with threaded fasteners. When the positioning protrusion 5 is inserted into the positioning recess 4, regardless of the specific disassembly connection method adopted, it should be included in the interpretation of the equivalent means of movable snap-fit.
[0058] In another embodiment, a first magnetic element (not shown in the figure) is provided on the inner wall of the positioning recess 4 or inside the beauty device body corresponding to the inner wall, and a second magnetic element (not shown in the figure) is provided on the outer peripheral wall of the positioning protrusion 5 or inside the electroporation treatment head 3 corresponding to the outer peripheral wall, which is attracted to the first magnetic element. The first and second magnetic elements can be made of existing magnetic adsorption materials. When installing the negative pressure microneedle head 2 or the electroporation treatment head 3 to the beauty device body 1, the user only needs to insert the negative pressure microneedle head 2 or the electroporation treatment head 3 into the positioning recess 4 of the beauty device body 1 at will, and the first and second magnetic elements will automatically correct their alignment by magnetic force. That is, under the mutual attraction of the first and second magnetic elements, it can also play a foolproof role, eliminating the need for the user to manually align them, making the installation or removal of the negative pressure microneedle head 2 and the electroporation treatment head 3 from the beauty device body 1 more convenient.
[0059] Furthermore, continue to refer to Figure 2 In actual use, when the negative pressure microneedle 2 and the electroporation nursing head 3 are inserted and removed, there may be assembly errors. Based on this, the peripheral contour of the positioning notch 4 includes a straight line segment 41 and an arc segment 42 connected in sequence, and the peripheral contour of the positioning protrusion 5 is adapted to the positioning notch 4.
[0060] In the above embodiment, by setting the opening contour of the positioning notch 4 to be composed of a straight line segment 41 and an arc segment 42, the electroporation nursing head 3 and the negative pressure suction head can achieve a foolproof function during disassembly and installation, so as to avoid assembly errors.
[0061] Furthermore, referring to Figure 2 and Figure 4The electroporation treatment head 3 needs to receive electrical energy to achieve the electrotherapy effect. Based on this, the ultra-fast superconducting water light device includes an electrically connected power supply module and a first contact electrode 8, with the power supply module located inside the beauty device body 1.
[0062] It is understood that the power supply module includes a battery and a power supply circuit. The battery is installed inside the outer casing, and a PCB board is provided inside the outer casing of the beauty device body 1. The power supply circuit is located on the PCB board, and the battery is electrically connected to the power supply circuit. The first contact electrode 8 is located at the end face of the beauty device body 1. At the same time, the electroporation treatment head 3 is provided with a second contact electrode 9. The first contact electrode 8 and the second contact electrode 9 are arranged opposite to each other. When the electroporation treatment head 3 is placed on the beauty device body 1, the first contact electrode 8 and the second contact electrode 9 abut against each other.
[0063] At this time, the battery can provide power to the first contact electrode 8 through the power supply module, so that the first contact electrode 8 and the second contact electrode 9 are brought into contact to achieve mutual conduction, thereby enabling the detachable electroporation head 3 to obtain power.
[0064] Optionally, in one embodiment, at least one of the first contact electrode 8 and the second contact electrode 9 is a probe electrode, and the other is a contact point; wherein, the probe electrode has a spring electrode structure, which can form a stable contact with the contact point through elastic support, so that the first contact electrode 8 and the second contact electrode 9 can conduct stably.
[0065] In another embodiment, at least one of the first contact electrode 8 and the second contact electrode 9 is a magnetic electrode. The magnetic electrode can also be understood as a magnetic connector, which is mainly a connector composed of a pogo pin and a magnet. It can not only provide contact conduction function, but also achieve magnetic reinforcement effect, so that the first contact electrode 8 and the second contact electrode 9 can conduct stably, and make the electroporation nursing head 3 more secure during installation.
[0066] Furthermore, referring to Figure 5 The electroporation treatment head 3 includes a base 10, on the surface of which electrode components 101 are distributed. The electrode components 101 are used to generate an alternating current on the skin, thereby enabling cosmetic ingredients to penetrate into the dermis.
[0067] Furthermore, the discharge frequency of the electrode component 101 is 2.5kHz-3.5kHz. When the discharge frequency of the electrode component 101 is less than 2.5kHz, the discharge energy may be insufficient, and the microcurrent may not be able to reach the dermis, affecting the absorption effect. When the discharge frequency of the electrode component 101 is greater than 3.5kHz, the discharge energy may be too high, resulting in skin redness, allergies, and other phenomena. Therefore, limiting the discharge frequency of the electrode component 101 to between 2.5kHz and 3.5kHz can further protect the skin while achieving good deep skin care effects, thus optimizing and improving the user experience.
[0068] For example, the discharge frequency of the electrode assembly 101 can be specifically set to 2.5 kHz, 2.6 kHz, 2.7 kHz, 2.8 kHz, 2.9 kHz, 3.0 kHz, 3.1 kHz, 3.2 kHz, 3.3 kHz, 3.4 kHz, or 3.5 kHz. Alternatively, the range of the discharge frequency can be set between any two of the above parameter values. This embodiment does not limit the specific parameters of the discharge rate.
[0069] Based on the above settings, an electroporation treatment solution was further developed that can more comprehensively and deeply stimulate skin cells, promote skin metabolism, and enhance beauty effects.
[0070] Furthermore, referring to Figure 6 To ensure the serum is evenly applied to the skin, this embodiment further includes a reservoir 11 and an outlet channel 12. The negative pressure microneedle 2 has an outlet located within the negative pressure chamber 15. The reservoir 11 and the outlet are connected via the outlet channel 12. The beauty device body 1 includes a negative pressure mechanism 13 connected to the negative pressure chamber 15. The negative pressure mechanism 13 extracts air from the negative pressure chamber 15 to achieve skin adsorption and serum supply. In this embodiment, the ultra-fast superconducting water light device can simultaneously achieve negative pressure adsorption of the skin and serum supply by using only one negative pressure mechanism 13, simplifying the internal structure design and reducing costs.
[0071] Specifically, the negative pressure mechanism 13 includes a negative pressure pump 131 and a negative pressure pipe 132. The negative pressure pipe 132 is connected to the negative pressure pump 131 and the negative pressure microneedle 2 respectively. The negative pressure microneedle 2 has a through hole that communicates with the negative pressure chamber 15. The negative pressure pipe 132 is connected to the negative pressure chamber 15 through the through hole. By starting the negative pressure pump 131, the air in the negative pressure chamber 15 is sucked in through the negative pressure pipe 132, so that the negative pressure chamber 15 can perform skin adsorption function.
[0072] In addition, there are several ways to set up the liquid storage chamber 11, see reference. Figure 7In one embodiment, a portion of the space within the negative pressure microneedle 2 can be directly divided to form a liquid storage chamber 11, and a filling port can be provided at the negative pressure microneedle 2 to facilitate the addition of essence into the liquid storage chamber 11. At the same time, a liquid outlet pipe is also provided within the negative pressure microneedle 2, and a liquid outlet channel 12 is formed inside the liquid outlet pipe. By connecting the two ends of the liquid outlet pipe to the negative pressure chamber 15 and the liquid outlet respectively, a conductive effect is achieved. At this time, under the adsorption force of the negative pressure chamber 15, the essence can flow from the liquid storage chamber 11 through the liquid outlet channel 12 to the liquid outlet, thereby achieving a spraying liquid application effect.
[0073] Reference Figure 6 and Figure 8 In other embodiments, to reduce contamination during the addition of serum, the high-speed superconducting water light device also includes a container 14 detachably connected to the main body 1 of the beauty device. The container 14 is detachably connected to the negative pressure microneedle 2, and a liquid storage chamber 11 is formed in the container 14. In this case, the container 14 provides hygienic usage conditions, and by replacing the container 14, serum can be added quickly and conveniently, improving the user experience. Specifically, the container 14 can be housed inside the main body 1 of the beauty device or externally connected to the main body 1 of the beauty device. In some embodiments, the container 14 can be a vial.
[0074] It is understandable that, in order to connect the liquid outlet channel 12 with the container 14, a needle insertion mechanism can be set on the negative pressure microneedle 2, and an air inlet and a liquid outlet can be set on the needle insertion mechanism. By connecting the liquid outlet channel 12 with the needle and connecting the liquid outlet with the liquid outlet channel 12, the essence can be replaced and installed under the insertion and removal action of the needle and the container 14.
[0075] Furthermore, to improve the overall compactness of the structure, the beauty device body 1 has a clearance hole 1001 for avoiding the container 14. The clearance hole 1001 is arranged opposite to the insertion pin. At this time, by inserting and unplugging the container 14 to the insertion pin through the clearance hole 1001, the compactness of the structure can be improved under the action of the clearance hole 1001.
[0076] Furthermore, when the container 14 is connected to the beauty device body, a sliding cover 1002 for blocking the clearance hole 1001 is slidably installed on the beauty device body 1. When the beauty device body 1 is not in use, the clearance hole 1001 can be closed by operating the sliding cover 1002 to reduce the possibility of external impurities and dust entering the needle insertion part, making the beauty device body 1 more hygienic and safer to use.
[0077] Based on actual usage scenarios, the preferred treatment sequence is to first perform negative pressure adsorption and microneedle treatment, followed by electroporation treatment to promote penetration. To provide reminders for this sequence, the beauty device body 1 also includes a control system and a reminder module. The control system mainly includes a main control chip, which is installed on the PCB board and electrically connected to the reminder module. When the beauty device body 1 is in the power-on or startup state, the main control chip controls the reminder module to start. Alternatively, a timed reminder mode can be set through APP software to achieve the timed reminder function. The reminder module is used to remind the user to use the negative pressure microneedle head 2 and the electroporation treatment head 3 in sequence.
[0078] Optionally, the prompting module can be an LED bulb, a buzzer alarm, a voice reminder module, or a vibration module, etc., which can achieve the reminder function through light, sound, voice, vibration, etc. There is no restriction on the specific form of the prompting module.
[0079] In some embodiments, the ultra-fast superconducting water light device can also achieve negative pressure adsorption of the skin through the negative pressure mechanism 13 and liquid supply through the positive pressure mechanism. In this embodiment, the ultra-fast superconducting water light device also includes a negative pressure mechanism 13 and a positive pressure mechanism disposed within the beauty device body 1. The negative pressure mechanism 13 is configured as described above, and is connected to the negative pressure cavity 15 to extract air from the negative pressure cavity 15 to achieve skin adsorption. At the same time, the positive pressure mechanism is connected to the liquid storage cavity 11 or the liquid outlet channel 12 to achieve liquid supply. It is understood that the positive pressure mechanism adopts an air pump structure, which is connected to the liquid storage cavity 11 or the liquid outlet channel 12 through a pipe. By pumping air pressure into the liquid storage cavity 11 or the liquid outlet channel 12, the active liquid outlet function is achieved, and the liquid outlet efficiency can be further optimized and improved.
[0080] In this embodiment, the independent adsorption and liquid supply gas path systems allow for independent control of the two without affecting each other, enabling more flexible adjustment and setting of the skin adsorption strength and liquid supply volume.
[0081] In some embodiments, the electroporation nursing head 3 and the negative pressure microneedle head 2 can also be arranged in another specific way.
[0082] In this embodiment, the negative pressure microneedle 2 is detachably mounted on the beauty device body 1 in the manner described above, which will not be repeated here. The electroporation treatment head 3 is also detachably mounted on the beauty device body 1, but at this time the electroporation treatment head 3 is sleeved on the outside of the negative pressure microneedle 2. Specifically, a first snap-fit component can be opened on the end face of the beauty device body 1 or on the negative pressure microneedle 2, and a second snap-fit component is provided on the electroporation treatment head 3 that is movably snapped with the first snap-fit component.
[0083] Optionally, the first and second snap-fit components can be either snap-fit structures or magnetic structures, and their specific structures are not limited here.
[0084] Meanwhile, a receiving groove is recessed on the inner side of the electroporation treatment head 3. When the electroporation treatment head 3 is placed on the beauty instrument body 1, the negative pressure microneedle head 2 is accommodated in the receiving groove of the electroporation treatment head 3, so that the electroporation treatment head 3 can be sleeved on the outer side of the electroporation treatment head 3, providing installation space for the electroporation treatment head 3.
[0085] By adopting the above solution, the electroporation care head 3 can be detachably sleeved on the outside of the negative pressure microneedle head 2. In the actual function switching process, it is only necessary to continue to disassemble and assemble the electroporation care head 3, making the use process more convenient.
[0086] It should be noted that when the electroporation nursing head 3 is detachably sleeved on the outside of the negative pressure microneedle head 2, the arrangement of the first contact electrode 8 can be enriched.
[0087] Specifically, on the one hand, the first contact electrode 8 can be set in the manner described above, that is, the first contact electrode 8 is set on the end face of the beauty device body 1; on the other hand, the first contact electrode 8 can also be set on the outer surface of the negative pressure microneedle head 2. When the electroporation treatment head 3 is sleeved on the outside of the negative pressure microneedle head 2, the first contact electrode 8 and the second contact electrode 9 abut against each other. At this time, the second contact electrode 9 on the electroporation treatment head 3 can conduct electricity with the first contact electrode 8 in different settings according to the actual situation, making the setting method of the first contact electrode 8 more flexible.
[0088] In addition, in some embodiments, the electroporation treatment head 3 and the negative pressure microneedle head 2 are respectively disposed at different positions on the beauty device body 1. For example, the electroporation treatment head 3 and the negative pressure microneedle head 2 can be disposed on opposite sides of the beauty device body 1. The use of the negative pressure microneedle head 2 and the electroporation treatment head 3 does not require disassembly or replacement; only the angle of holding the beauty device body 1 needs to be adjusted. It is understood that, in this embodiment, to improve the hygiene and safety of the negative pressure microneedle head 2, it is only necessary to make the negative pressure microneedle head 2 detachable. In this case, only a positioning recess 4 needs to be provided for the negative pressure microneedle head 2, and the structural installation is achieved by installing the positioning protrusion 5 on the negative pressure microneedle head 2 into the positioning recess 4.
[0089] Therefore, the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A super-fast superconducting water-optical instrument, characterized by, The device comprises: a cosmetic instrument body (1); a negative pressure microneedle head (2) arranged on the cosmetic instrument body (1) and having a negative pressure cavity (15), the negative pressure microneedle head (2) being used to adsorb skin and perform microneedle treatment on the skin through the negative pressure cavity (15); and an electroporation treatment head (3) arranged on the cosmetic instrument body (1) and used to perform electrotherapy treatment on the skin.
2. The instant superconducting water light instrument of claim 1, wherein, The electroporation treatment head (3) is detachably sleeved on the outside of the negative pressure microneedle head (2); or the electroporation treatment head (3) and the negative pressure microneedle head (2) are arranged at different positions of the cosmetic instrument body (1), respectively; or the electroporation treatment head (3) and the negative pressure microneedle head (2) are detachably replaced.
3. The instant superconducting water optic of claim 2, wherein, When the electroporation treatment head (3) and the negative pressure microneedle head (2) are detachably replaced, the end surface of the cosmetic instrument body (1) is provided with a positioning recess (4), the negative pressure microneedle head (2) and the electroporation treatment head (3) are respectively provided with a positioning protrusion (5), and the positioning recess (4) and the positioning protrusion (5) are inserted and matched. One of the positioning recess (4) and the positioning protrusion (5) is provided with a clamping groove (6), and the other one of the positioning recess (4) and the positioning protrusion (5) is provided with a clamping block (7) movably clamped with the clamping groove (6); or one of the positioning recess (4) and the positioning protrusion (5) is provided with a first magnetic member, and the other one of the positioning recess (4) and the positioning protrusion (5) is provided with a second magnetic member magnetically matched with the first magnetic member.
4. The instant superconducting water optic of claim 3, wherein, The peripheral contour of the positioning recess (4) comprises a straight line segment (41) and an arc line segment (42) connected in sequence, and the peripheral contour of the positioning protrusion (5) is matched with the positioning recess (4).
5. The ultra-fast superconducting water-optical instrument of claim 2, wherein, The device further comprises an electrically connected power supply module and a first contact electrode (8), and the power supply module is arranged in the cosmetic instrument body (1). When the electroporation treatment head (3) is detachably sleeved on the outside of the negative pressure microneedle head (2), the first contact electrode (8) is located on the end surface of the cosmetic instrument body (1) or the outer surface of the negative pressure microneedle head (2), the electroporation treatment head (3) is provided with a second contact electrode (9), the first contact electrode (8) and the second contact electrode (9) abut against each other when the electroporation treatment head (3) is sleeved on the outside of the negative pressure microneedle head (2), and at least one of them is a probe electrode or at least one of them is a magnetic attraction electrode; or when the electroporation treatment head (3) and the negative pressure microneedle head (2) are detachably replaced, the first contact electrode (8) is located on the end surface of the cosmetic instrument body (1), the electroporation treatment head (3) is provided with a second contact electrode (9), the first contact electrode (8) and the second contact electrode (9) abut against each other when the electroporation treatment head (3) is arranged on the cosmetic instrument body (1), and at least one of them is a probe electrode or at least one of them is a magnetic attraction electrode.
6. The instant superconducting water light instrument of claim 1, wherein, Further comprising a liquid storage cavity (11) and a liquid outlet channel (12), an end of the negative pressure microneedle (2) is provided with a liquid outlet, the liquid outlet is located in the negative pressure cavity (15), the liquid storage cavity (11) and the liquid outlet are communicated through the liquid outlet channel (12); The super-speed superconducting water and light instrument further comprises a negative pressure mechanism (13) arranged in the cosmetic instrument body (1), the negative pressure mechanism (13) is communicated with the negative pressure cavity (15), and the negative pressure mechanism (13) is used for pumping out air in the negative pressure cavity (15) to realize skin adsorption and liquid supply. Alternatively, the super-speed superconducting water and light instrument further comprises a negative pressure mechanism (13) and a positive pressure mechanism arranged in the cosmetic instrument body (1), the negative pressure mechanism (13) is communicated with the negative pressure cavity (15), and the negative pressure mechanism (13) is used for pumping out air in the negative pressure cavity (15) to realize skin adsorption, and the positive pressure mechanism is communicated with the liquid storage cavity (11) or the liquid outlet channel (12), and the positive pressure mechanism is used for realizing liquid supply.
7. The instant superconducting water optic of claim 6, wherein, Further comprising a container (14) which is detachably connected to the cosmetic instrument body (1), and the liquid storage cavity (11) is formed in the container (14).
8. The instant superconducting water optic of claim 7, wherein, The cosmetic instrument body (1) is provided with a avoiding hole (1001) for avoiding the container (14), and a sliding cover (1002) is arranged on the cosmetic instrument body (1) to shield the avoiding hole (1001).
9. The instant superconducting water optic of claim 1, wherein, The electroporation treatment head (3) comprises a base body (10), and a plurality of electrode assemblies (101) are distributed on the surface of the base body (10), and the discharge frequency of the electrode assemblies (101) is 2.5KHz-3.5KHz.
10. The instant superconducting water light instrument of claim 1, wherein, The cosmetic instrument body (1) further comprises a control system and a prompt module, the control system is connected with the prompt module, and the prompt module is used for prompting to use the negative pressure microneedle (2) and the electroporation treatment head (3) in sequence.