Self-adaptive skincare beauty energy instrument and control method
By designing a ring-shaped distribution of skincare components and a central moving component in the beauty energy device, the problem of separation between vibration massage and energy projection in existing technologies is solved, achieving deep myofascial relaxation and uniform penetration, and improving the depth and lasting effect of skincare.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-12
- Publication Date
- 2026-04-10
AI Technical Summary
The vibration massage function of existing beauty energy devices is located at the edge of the treatment head, which causes the mechanical vibration to be separated from the core energy projection, making it impossible to achieve deep myofascial relaxation and uniform penetration, thus limiting the improvement of overall skin care efficacy.
Design an adaptive skincare beauty energy device. By arranging the skincare components in a ring and setting the motion component in the central area for vertical reciprocating movement, combined with the nested design of the head shell, cover plate and light mask, a high degree of integration of ring light therapy and central massage is achieved. The motion component utilizes air pressure changes and elastic reset to achieve stable reciprocating motion.
It achieves a synergistic effect of physical massage and energy care, enhancing the depth and lasting effect of skin care, providing a gentle yet powerful vertical massage sensation, and significantly improving user comfort and skin care results.
Smart Images

Figure CN121818347A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of biomedicine and cosmetology, in particular to a self-adaptive skin care cosmetology energy instrument and a control method. BACKGROUND
[0002] The cosmetology energy instrument mainly realizes skin care function based on various physical principles, forming several mainstream technical paths. One is radio frequency technology, which generates resonance friction heat in the dermis layer of the skin by high-frequency electromagnetic waves, stimulates collagen contraction and regeneration by heat effect, and aims to realize skin tightening and wrinkle removal. The second is light therapy technology, which usually uses light-emitting diodes to emit specific wavelength low-energy visible light or near-infrared light, uses light biological regulation to affect cell metabolism, for example, red light is used for anti-aging, and blue light is used for anti-acne. The third is micro-current technology, which applies a weak current similar to human bioelectricity to stimulate muscle contraction and promote ATP synthesis in cells to achieve the effect of edema removal and instant lifting profile.
[0003] In addition, in order to improve the use experience and promote the penetration of skin care products, some devices integrate mechanical vibration massage function. The existing vibration massage function is mainly realized by simple eccentric motor, which has single vibration mode and random direction, and is usually placed at the edge of the treatment head or as an independent module. This design causes the mechanical vibration and the core radio frequency or light therapy energy to be separated in the physical space. The vibration can only provide basic surface massage feeling, and cannot realize deep muscle fascia relaxation, energy deeper and more uniform penetration, which seriously limits the improvement of comprehensive skin care efficiency. SUMMARY
[0004] In view of the defects of the prior art, the present application provides a self-adaptive skin care cosmetology energy instrument and a control method, which solves the problem that the existing cosmetology energy instrument's vibration massage is placed at the edge of the treatment head, which seriously limits the improvement of comprehensive skin care efficiency.
[0005] To achieve the above purpose, the present application realizes the following technical scheme:
[0006] A self-adaptive skin care cosmetology energy instrument, comprising:
[0007] a skin care piece substrate;
[0008] a first skin care piece installed on the skin care piece substrate, the first skin care piece comprising a plurality of unit pieces for skin care, and the plurality of unit pieces being distributed in a ring shape;
[0009] a moving piece arranged in a central area surrounded by the ring-shaped distributed unit pieces, and configured to be able to reciprocate in a direction perpendicular to the plane of the skin care piece substrate.
[0010] Preferably, the unit element is one or a combination of the following: a radio frequency unit, a light therapy unit, and a micro-current unit.
[0011] Preferably, the first skin care element comprises: a driving unit mounted on the skin care element substrate away from the skin care area of the user, and a light emitting element mounted on the skin care element substrate towards the skin care area of the user.
[0012] The unit element is a light emitting element.
[0013] Preferably, the head shell, the cover plate element, and the light shield are further included.
[0014] The first side of the head shell forms a first mounting cavity, and the skin care element substrate is fixedly mounted inside the first mounting cavity. The second side of the head shell forms a main panel, which is recessed inward to form a second mounting cavity.
[0015] The cover plate element is annular, the light shield is clamped at the center ring of the cover plate element, the cover plate element is mounted in the second mounting cavity, and the light shield and the head shell are fixed by the cover plate element.
[0016] The light shield is provided with a matching cavity at the center of the side away from the head shell, and the action element is mounted inside the matching cavity.
[0017] The main panel is provided with a receiving hole corresponding to the unit element.
[0018] Preferably, the second side of the head shell is provided with a secondary surface part at an angle of 120°-160° with the main panel, and the secondary surface part is provided with a second skin care element or a non-contact detection element.
[0019] Preferably, the action element comprises: a reciprocating moving element, and a contact head, the contact head is located inside the second mounting cavity, and a gasket with elasticity is provided between the contact head and the inner end of the second mounting cavity.
[0020] The reciprocating moving element comprises: a connecting pipe, and an elastic element, the first end of the connecting pipe is connected with an adapter port fixedly provided on the skin care element substrate, the second end of the connecting pipe passes through a first through hole provided on the main panel, a second through hole provided on the light shield in sequence, and extends to the inside of the matching cavity, a gas overflow hole is provided on the side of the connecting pipe between the skin care element substrate and the main panel, a circular groove is provided on the side of the contact head facing the light shield, the inner end of the circular groove is fixedly connected with a center pipe, one end of the center pipe is located inside the connecting pipe, a positioning groove is provided in the annular area inside the circular groove and outside the center pipe, one end of the elastic element is fixedly connected with the positioning groove, and the other end of the elastic element is fixedly connected with the end of the connecting pipe.
[0021] The center tube is configured to block the overflow hole when the elastic member is in a natural state and open the overflow hole when the elastic member is in an elongated state.
[0022] Preferably, it further comprises a handle main shell, an inner part of the handle main shell is provided with a first source and a second source, the first source corresponds to the first skin care part, and the second source corresponds to the action part.
[0023] Preferably, the handle main shell comprises a middle shell and a main body shell, the middle shell comprises a trailing part and a head part which are integrally arranged, the head part is fixedly connected with the first side of the head shell, the main body shell is installed above the trailing part, and an inner cavity is formed between the main body shell and the upper part of the trailing part.
[0024] Preferably, the first source comprises a charging part, a battery part and a circuit board, the second source comprises a micro pump, the charging part is electrically connected with the battery part, the battery part is electrically connected with the circuit board, and the circuit board is electrically connected with the micro pump, the first skin care part and the second skin care part.
[0025] A control method of the adaptive skin care beauty energy instrument is used for the adaptive skin care beauty energy instrument of any one of the above, and the action part is used for skin care synchronously with the first skin care part.
[0026] The application provides an adaptive skin care beauty energy instrument and a control method.
[0027] 1. In the application, a plurality of single elements (such as radio frequency and light therapy units) of the first skin care part are arranged in a ring shape, and the action part is arranged in the central area and vertically reciprocates, the layout creates a unique "central vibration and ring energy" mode of action; during work, the central mechanical massage can first promote subcutaneous blood circulation and relax muscle fascia, and prepare for the action of the ring-shaped distributed single elements; at the same time, the continuous vertical massage action helps to guide and diffuse light energy, radio frequency heat energy and the like to the skin more deeply and uniformly, the cooperation of the spatial structure and the working sequence overcomes the shortcomings that the energy module and the massage module are independent and the action is fragmented in the traditional equipment, realizes the synergistic effect of physical massage and energy care, and is expected to improve the depth and durability of skin care effect.
[0028] 2. In the application, the nested design of the head shell, the cover plate part and the light shield, and the precise installation of the action part in the cooperation cavity enable the ring-shaped light therapy and the central massage structure to be highly integrated, and ensure the appearance and reliability of the product; in particular, the reciprocating moving part is composed of a connecting pipe, an elastic member and an overflow hole, and reciprocating motion is realized by using air pressure change and elastic reset. The pure mechanical design is stable in operation, low in noise and easy to control, and through the elastic contact of the contact head and the pad, soft and powerful vertical massage feeling can be provided, and the comfort of use is significantly improved. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 This is a 3D model of an adaptive skincare beauty energy device proposed in this invention.
[0030] Figure 2 This is a perspective view of an adaptive skincare beauty energy device proposed in this invention;
[0031] Figure 3 This is a diagram illustrating the internal structure of an adaptive skincare beauty energy device proposed in this invention.
[0032] Figure 4 This is an exploded view of the head of an adaptive skincare beauty energy device proposed in this invention.
[0033] Figure 5 This is a perspective view of the first skincare component of an adaptive skincare beauty energy device proposed in this invention;
[0034] Figure 6 This is a perspective view of the inner liner of an adaptive skincare beauty energy device proposed in this invention;
[0035] Figure 7 This is a three-dimensional view of the massage head of an adaptive skincare beauty energy device proposed in this invention.
[0036] Among them, 1. middle shell; 101. drag section; 102. head; 2. main body shell; 3. head shell; 4. battery component; 5. charging component; 6. circuit board; 7. micro pump; 8. secondary face; 9. second skin care component; 10. skin care component substrate; 11. receiving hole; 12. adapter; 13. first skin care component; 13a. light-emitting component; 14. first through hole; 15. main panel; 16. cover plate; 17. light cover; 18. second through hole; 19. contact head; 20. mating cavity; 21. connecting tube; 22. vent hole; 23. elastic component; 24. pad; 25. central tube; 26. positioning groove. Detailed Implementation
[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] Example 1:
[0039] like Figures 1-7As shown, this embodiment of the invention provides an adaptive skincare beauty energy device, applied in the biomedical field, specifically a facial beauty care tool / device, which includes: a skincare component substrate 10, a first skincare component 13, and an action component. The first skincare component 13 is the main unit for the user's facial care and works in conjunction with the action component to press (can be understood as massage) the user's face.
[0040] Specifically, the skin care component substrate 10 serves as the base plate, and the first skin care component 13 is mounted on the skin care component substrate 10. The first skin care component 13 includes multiple units for skin care, and the multiple units are arranged in a ring. The multiple units can be designed as one or more rings, so that the multiple units always maintain a central area. The actuator is located in the central area surrounded by the ring-shaped units and is configured to reciprocate in a direction perpendicular to the plane of the skin care component substrate 10. The reciprocating movement of the actuator can vibrate the user's face or generally reciprocate push the user's face. When the actuator is working, the central mechanical massage can first promote subcutaneous blood circulation and relax the myofascia, preparing for the action of the ring-shaped units, which is expected to improve the depth and lasting effect of skin care.
[0041] Understandably, when the user faces the side of the skin care component 13 on the skin care component substrate 10 toward the user's face, the motion component also faces the user's face. The motion component works first (or works synchronously with the first skin care component 13). The central mechanical massage can first promote subcutaneous blood circulation and relax the myofascia, preparing for the action of the ring-distributed unit components. Then, the unit components of the first skin care component 13 work in a predetermined manner to perform beauty and skin care on the user's face.
[0042] The design concept of the above embodiment mainly lies in the distribution of the unit components and the position of the action components in the first skin care component 13; it can be considered that multiple unit components are arranged in a ring or multiple rings, and the action components are arranged in the central area surrounded by the ring-shaped unit components, so as to achieve a better effect in the process of beauty and skin care.
[0043] The unit of the first skin care component 13 can be designed based on any technology path currently available on the market, such as one or more combinations of radio frequency unit, phototherapy unit, and microcurrent unit.
[0044] Radio frequency (RF) technology uses high-frequency electromagnetic waves to cause polar molecules (such as water molecules) in the dermis of the skin to resonate and generate heat through friction. This heat effect stimulates collagen contraction and regeneration, resulting in skin tightening and wrinkle removal.
[0045] Phototherapy typically uses light-emitting diodes to emit low-energy visible or near-infrared light of specific wavelengths, which affects cell metabolism through photobiological regulation. For example, red light is used for anti-aging, and blue light is used for acne treatment.
[0046] Microcurrent technology applies a weak current similar to the body's bioelectricity to stimulate muscle contraction and promote the synthesis of adenosine triphosphate (ATP) in cells, thereby achieving the effects of reducing edema and instantly lifting facial contours.
[0047] Any of these technical approaches to skincare can utilize motion-activated components to promote subcutaneous blood circulation and relax the myofascia, thereby further enhancing the skincare effect.
[0048] In one embodiment, the first skin care component 13 includes: a driving unit mounted on the skin care component substrate 10 away from the user's skin care area and a light-emitting component 13a mounted on the skin care component substrate 10 facing the user's skin care area.
[0049] The driving unit is electrically connected to multiple of the aforementioned light-emitting elements 13a. The driving unit is used to control the operation of the light-emitting elements 13a according to a preset method (including the operating state and operating energy level). The driving unit is a light source driving control circuit (an intelligent driving board containing an MCU), which drives the light-emitting elements 13a to emit light and can adjust their light emission parameters.
[0050] In one embodiment, a head shell 3, a cover plate 16, and a photomask 17 are also designed. The design of the head shell 3, the cover plate 16, and the photomask 17 makes the installation of each structure more compact.
[0051] like Figure 3 As shown, a first mounting cavity is formed on the first side of the head shell 3, where the skin care component substrate 10 is fixedly mounted. This provides support and protection for the skin care component substrate 10 and the first skin care component 13. A main panel 15 is formed on the second side of the head shell 3. The main panel 15 has a receiving hole 11 corresponding to the unit component, which protrudes from the receiving hole 11. For example, if the unit component is a light-emitting component 13a, the light emitted by it can pass through the receiving hole 11. The main panel 15 is recessed inward to form a second mounting cavity, which is used to support and protect the light cover 17. The photomask 17 is made of a light-transmitting material, and the cover plate 16 is designed as a ring. The photomask 17 is snapped into the central ring of the cover plate 16. The cover plate 16 is installed in the second mounting cavity, and the photomask 17 and the head shell 3 are fixed by the cover plate 16. This design can quickly realize the installation of the cover plate 16 and the photomask 17 on the second side of the head shell 3. A mating cavity 20 is opened at the center of the side of the photomask 17 away from the head shell 3. The actuator is installed inside the mating cavity 20. The mating cavity 20 of the photomask 17 is used to support and protect the actuator, and the movement of the actuator is restricted by the mating cavity 20.
[0052] Understandably, the design of the head shell 3, cover plate 16, and light cover 17 forms a compact installation structure, which enables the action component, skin care component substrate 10, and first skin care component 13 to be stably installed and facilitates skin care use.
[0053] In one embodiment, a secondary face 8 is provided on the second side of the head shell 3 at an angle of 120°-160° to the main panel 15, and a second skin care component 9 is installed on the secondary face 8.
[0054] The second skin care component 9 has a structure consisting of one of a radio frequency unit, a phototherapy unit, or a microcurrent unit. When in use, the second skin care component 9 can complement the first skin care component 13. On some facial edges, bridge of the nose, and other areas, the user can use the first skin care component 13 for beauty and skin care, ensuring that the adaptive skin care beauty energy device has stronger practicality.
[0055] In one embodiment, a secondary face 8 is provided on the second side of the head shell 3 at an angle of 120°-160° to the main panel 15. A non-contact detection element is installed on the secondary face 8. The non-contact detection element uses an optical measuring element to measure the condition of the user's face. Based on the specific situation of the face detection, an adaptive control drive unit can be set up to control the light-emitting element 13a to operate within a suitable power range.
[0056] In one embodiment, the actuator includes a reciprocating moving member and a contact head 19. The contact head 19 is located inside the second mounting cavity. The reciprocating moving member is used to drive the contact head 19 to perform reciprocating linear movement. An elastic pad 24 is provided between the contact head 19 and the inner end of the second mounting cavity. The elasticity of the pad 24 can prevent the contact head 19 from having a destructive impact with the inner end of the second mounting cavity.
[0057] The reciprocating moving part includes a connecting tube 21 and an elastic element 23. The first end of the connecting tube 21 is connected to an adapter 12 fixedly installed on the skin care substrate 10. The adapter 12 is a sleeve that penetrates the skin care substrate 10 and has an annular sealing elastic ring inside. Quick installation can be achieved by directly inserting the first end of the connecting tube 21 into the adapter 12. The second end of the connecting tube 21 passes through a first through hole 14 on the main panel 15 and a second through hole 18 on the photomask 17. The first through hole 14 and the second through hole 18 are designed to meet the installation requirements of the connecting tube 21. The second end of the connecting tube 21 extends into the interior of the mating cavity 20. An vent hole 22 is provided on the side of the connecting tube 21 between the skin care substrate 10 and the main panel 15. The gas overflowing from the vent hole 22 can directly reach the space between the skin care substrate 10 and the main panel 15. Effective heat dissipation is implemented around the skin care component substrate 10 to ensure its long-term and stable operation. A circular groove is provided on the side of the contact head 19 facing the photomask 17. A central tube 25 is fixedly connected to the inner end of the circular groove. One end of the central tube 25 is located inside the connecting tube 21. A positioning groove 26 is provided in the annular area inside the circular groove and outside the central tube 25. The positioning groove 26 is used to position the elastic element 23. One end of the elastic element 23 is fixedly connected to the positioning groove 26, and the other end of the elastic element 23 is fixedly connected to the end of the connecting tube 21. The two ends of the elastic element 23 are generally fixed by adhesive. In the above design process, the length of the central tube 25 needs to be precisely designed so that the connecting tube 21 is configured such that the vent hole 22 is blocked when the elastic element 23 is in its natural state, and the vent hole 22 is opened when the elastic element 23 is in its extended state.
[0058] Understandably, the micro pump 7 supplies gas with a certain pressure, such as 3-12 kPa, to the adapter 12 through a pipe. The compressed gas enters the interior of the connecting pipe 21 through the adapter 12. Since the central pipe 25 blocks the vent 22 of the connecting pipe 21, the air pressure pushes the central pipe 25 and the contact head 19 outward, while overcoming the elastic force of the elastic element 23, causing the elastic element 23 to be in an extended state. This causes the central pipe 25 to slide relative to the connecting pipe 21, opening the vent 22. At this time, the gas is discharged from the vent 22. This gas effectively dissipates heat around the skin care substrate 10, ensuring that the skin care substrate 10 can operate stably for a long time. After the air pressure decreases, the elastic force of the elastic element 23 causes the central pipe 25 and the contact head 19 to return to their original positions, and then the next movement cycle begins. This achieves 1-5 reciprocations per second, forming a soothing and deep massage rhythm, rather than a high-frequency, painful vibration.
[0059] In one embodiment, a handle main shell is also designed, and a first source component and a second source component are provided inside the handle main shell. The first source component corresponds to the first skin care component 13, and the second source component corresponds to the action component.
[0060] The handle shell serves two purposes: it houses the first and second source components and it also acts as a handle for users to hold while performing facial rejuvenation. The first source component includes a charging component 5, a battery component 4, and a circuit board 6. The second source component includes a micro pump 7. The charging component 5 is electrically connected to the battery component 4 and has an external interface for charging. The battery component 4 is electrically connected to the circuit board 6, which is also electrically connected to the micro pump 7, the first skincare component 13, and the second skincare component 9. The control module on the circuit board 6 provides adaptive control for the micro pump 7, the first skincare component 13, and the second skincare component 9.
[0061] The charging component 5, battery component 4, circuit board 6, and micro pump 7 all adopt standard modules currently used in the industry to provide energy or power source for the first skin care component 13 and the action component.
[0062] In one embodiment, the handle main shell includes: a middle shell 1 and a main body shell 2. The middle shell 1 includes an integrally formed drag portion 101 and a head 102. The head 102 is fixedly connected to the first side of the head shell 3. The main body shell 2 is installed above the drag portion 101, and an inner cavity is formed between the main body shell 2 and the upper part of the drag portion 101.
[0063] The head 102 of the middle shell 1 corresponds to the head shell 3. The trailing part 101 of the middle shell 1 is used to install the circuit board 6. In particular, the corresponding power switch and control key on the circuit board 6 are concentrated in the trailing part 101 of the middle shell 1.
[0064] Example 2:
[0065] This invention provides a method for controlling an adaptive skincare beauty energy device. Using any of the adaptive skincare beauty energy devices in Embodiment 1, the control actuator is synchronized with the first skincare component 13 for skincare. The actuator works first (or works synchronously with the first skincare component 13). The central mechanical massage can first promote subcutaneous blood circulation and relax the myofascia, preparing for the action of the ring-distributed unit components. Then, the unit components of the first skincare component 13 work in a predetermined manner to perform beauty skincare on the user's face.
[0066] In one case, non-contact detection devices are installed at 8 locations on the sub-face. These non-contact detection devices use optical measuring devices to measure the condition of the user's face. Based on the specific situation of the face detection, an adaptive control drive unit can be used to control the light-emitting element 13a to operate within an appropriate power range.
[0067] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A beauty energy device for adaptive skincare, characterized in that, include: Skin care component substrate (10); The first skin care component (13) is mounted on the skin care component substrate (10). The first skin care component (13) includes a plurality of unit components for skin care, and the plurality of unit components are arranged in a ring. The actuator is located in the central region surrounded by the annularly distributed unit members and is configured to reciprocate in a direction perpendicular to the plane of the skin care substrate (10).
2. The beauty energy device for adaptive skincare according to claim 1, characterized in that: The unit is one or a combination of radio frequency unit, phototherapy unit, and microcurrent unit.
3. The beauty energy device for adaptive skincare according to claim 1, characterized in that, The first skin care component (13) includes: a driving unit mounted on the skin care component substrate (10) away from the user's skin care area and a light-emitting component (13a) mounted on the skin care component substrate (10) facing the user's skin care area. The unit component is a light-emitting component (13a).
4. The adaptive skincare beauty energy device according to claim 3, characterized in that, It also includes: head shell (3), cover plate (16), and photomask (17); The first side of the head shell (3) forms a first mounting cavity, and the skin care component substrate (10) is fixedly installed inside the first mounting cavity. The second side of the head shell (3) forms a main panel (15), and the main panel (15) is recessed inward to form a second mounting cavity. The cover plate (16) is annular, and the photomask (17) is fitted at the center ring of the cover plate (16). The cover plate (16) is installed in the second mounting cavity, and the photomask (17) and the head shell (3) are fixed by the cover plate (16). The photomask (17) has a mating cavity (20) at the center of its side away from the head shell (3), and the actuator is installed inside the mating cavity (20); The main panel (15) has a receiving hole (11) corresponding to the unit component.
5. The adaptive skincare beauty energy device according to claim 4, characterized in that: The second side of the head shell (3) is provided with a secondary face (8) at an angle of 120°-160° to the main panel (15), and a second skin care component (9) or a non-contact detection component is installed on the secondary face (8).
6. The adaptive skincare beauty energy device according to claim 4, characterized in that, The actuator includes a reciprocating moving part and a contact head (19). The contact head (19) is located inside the second mounting cavity, and an elastic pad (24) is provided between the contact head (19) and the inner end of the second mounting cavity. The reciprocating moving component includes a connecting tube (21) and an elastic element (23). The first end of the connecting tube (21) is connected to an adapter (12) fixedly disposed on the skin care substrate (10). The second end of the connecting tube (21) passes through a first through hole (14) on the main panel (15) and a second through hole (18) on the photomask (17) in sequence, and extends into the interior of the mating cavity (20). The side of the connecting tube (21) is located between the skin care substrate (10) and the main panel (15). An air vent (22) is provided. A circular groove is provided on one side of the contact head (19) facing the photomask (17). A central tube (25) is fixedly connected to the inner end of the circular groove. One end of the central tube (25) is located inside the connecting tube (21). A positioning groove (26) is provided in the annular area inside the circular groove and outside the central tube (25). One end of the elastic element (23) is fixedly connected to the positioning groove (26), and the other end of the elastic element (23) is fixedly connected to the end of the connecting tube (21). The central tube (25) is configured to: block the vent (22) when the elastic element (23) is in its natural state, and open the vent (22) when the elastic element (23) is in its extended state.
7. The adaptive skincare beauty energy device according to claim 4, characterized in that, Also includes: The handle main shell has a first source component and a second source component inside. The first source component corresponds to the first skin care component (13), and the second source component corresponds to the action component.
8. The adaptive skincare beauty energy device according to claim 7, characterized in that, The handle main shell includes: a middle shell (1) and a main shell (2). The middle shell (1) includes an integrally formed drag section (101) and a head (102). The head (102) is fixedly connected to the first side of the head shell (3). The main shell (2) is installed above the drag section (101), and an inner cavity is formed between the main shell (2) and the upper part of the drag section (101).
9. The beauty energy device for adaptive skincare according to claim 8, characterized in that: The first source component includes a charging component (5), a battery component (4), and a circuit board (6). The second source component includes a micro pump (7). The charging component (5) is electrically connected to the battery component (4), the battery component (4) is electrically connected to the circuit board (6), and the circuit board (6) is electrically connected to the micro pump (7), the first skin care component (13), and the second skin care component (9).
10. A method for controlling an adaptive skincare beauty energy device, characterized in that, The beauty energy device for adaptive skin care according to any one of claims 1-9 is used, and the action is synchronized with the first skin care component (13) for skin care.
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