Beauty therapy device

By designing a multi-functional beauty and therapy device, combining mechanical wave components and multiple functional components, 4D stereoscopic surround treatment is achieved, which solves the high cost and low efficiency problems caused by the single function of existing equipment, and improves the user experience and treatment effect.

WO2025123188A1PCT designated stage expired Publication Date: 2025-06-19SHENZHEN YUYI ELECTRONICS TECH CO LTD
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Patent Information

Application Number
PCT/CN2023/137959
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-12-11
Publication Date
2025-06-19

AI Technical Summary

Technical Problem

Due to the single functionality of existing beauty and treatment equipment, the cost of purchase, large storage space, inconvenient use, poor timeliness and experience.

Method used

Design a multifunctional beauty and therapy device, combining mechanical wave components and multiple functional components (such as light energy, thermal energy, sound waves, electromagnetic field, and refrigeration) to achieve 4D three-dimensional surround treatment.

Benefits of technology

It realizes the multi-functional and integrated aesthetic therapy effect, shortens usage time, improves experience and treatment effects, and solves the high cost and low efficiency problems brought by a single functional device.

✦ Generated by Eureka AI based on patent content.

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Abstract

A beauty therapy device, comprising a first functional assembly and a second functional assembly. The first functional assembly is a mechanical wave assembly, the second functional assembly is at least any one of a light energy assembly, a thermal energy assembly, an acoustic wave assembly, an electromagnetic field assembly, and a cooling assembly, and the second functional assembly is integrally mounted on the first functional assembly. The present application solves the problems of high purchase cost, large storage space required, inconvenience in use, poor timeliness and user experience caused by single functions of current beauty therapy apparatuses, greatly shortens the instrument usage time, and effectively improves the user experience and therapy effect.
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Description

Beauty therapy devices Technical Field

[0001] The present application relates to the field of beauty, and in particular to a multifunctional beauty and treatment device. Background Art

[0002] Due to the constant pressures of life, work, and study, most people experience sub-healthy skin, body, and mind. This leads to obesity, aging, metabolic problems, fatigue, skin pigmentation, dull skin, wrinkles, and other adverse effects. To address these skin and health issues, a wide range of beauty, skincare, physical therapy, and exercise products (such as skin rejuvenation devices, whitening devices, fascia massage devices, and external physiotherapy devices) have emerged. However, since most products currently on the market serve a single function, such as beauty, skincare, or physical therapy, these single functions require users to spend a significant amount of time using different devices for different issues. This increases user workload and purchase costs, requires significant storage space, and consumes significant rest time, making it extremely unsuitable in terms of timeliness, user experience, and effectiveness.

[0003] Therefore, it is necessary to provide a multifunctional beauty therapy device that combines various beauty, skin care, physical therapy and the like. Technical issues

[0004] The purpose of this application is to provide a beauty therapy device. Technical Solutions

[0005] To achieve the purpose of this application, the following technical solutions are provided:

[0006] The present application provides a beauty and treatment device, including a first functional component and a second functional component, wherein the first functional component is a mechanical wave component, and the second functional component is at least any one of a light energy component, a thermal energy component, an acoustic wave component, an electromagnetic field component, and a refrigeration component, and the second functional component is installed in combination with the first functional component.

[0007] In some embodiments, the mechanical wave assembly includes a drive device, a transmission member, and a movable main support. The drive output of the drive device is connected through the transmission member to drive the movable main support to move relative to each other in a first direction. The first direction is the direction in which the mechanical wave assembly achieves reciprocating motion, thereby generating a hammering / slapping force on the human body surface. For ease of description, it can be referred to as the up-down direction.

[0008] In some embodiments, the driving device is an outer rotor motor, the transmission member is a driven disc, the driving shaft of the outer rotor motor is connected to a motor gear disc, the output surface of the motor gear disc is provided with wavy teeth, the driven disc is provided with a wavy surface matching the wavy teeth of the motor gear disc, and the driven disc is circumferentially fixedly mounted on the movable main bracket.

[0009] In other embodiments, the driving device is an electromagnetic motor, the transmission member is a motor coupling, the driving shaft of the electromagnetic motor is connected to the motor coupling, and the motor coupling is fixedly connected to the movable main bracket.

[0010] In some embodiments, the second functional component includes a light energy component, which is arranged in the movable main bracket, and includes a light source, a dimming component, and a dimming bracket. The dimming component is installed on the dimming bracket, and the dimming bracket is arranged on the movable main bracket. The light emitted by the light source is emitted to the outside of the movable main bracket through the dimming component.

[0011] In some embodiments, the light source is at least any one of an IPL, a carbon lamp, and a tungsten lamp, and the number of the light source is at least one.

[0012] In some embodiments, the light modulator may be any one of a fly-eye lens, a convex mirror, and a concave mirror.

[0013] In some embodiments, the light energy assembly further includes a stroke adjustment member, the inner wall of the stroke adjustment member is provided with a spirally distributed track, and the dimming bracket is disposed in the stroke adjustment member and can move relatively along the track.

[0014] In some embodiments, the light energy assembly further includes a limiting bracket, the dimming bracket is installed in the limiting bracket, the limiting bracket is installed in the movable main bracket, and the stroke adjustment member is sleeved on the limiting bracket.

[0015] In some embodiments, the second functional component includes an acoustic wave component, which is disposed in the movable overall support and includes an ultrasonic generator.

[0016] In some embodiments, the second functional component includes an electromagnetic field component, which is arranged in the movable main support and includes at least any one of an EMS biological microcurrent device, an RF electromagnetic field device, and a PEMF pulse electromagnetic field device.

[0017] In some embodiments, the electromagnetic field component includes an EMS biological microcurrent device or an RF electromagnetic field device, and the EMS biological microcurrent device or the RF electromagnetic field device is provided with an electrode block exposed from the movable main support; or, the electromagnetic field component includes an RF electromagnetic field device or a PEMF pulsed electromagnetic field device, and the RF electromagnetic field device or the PEMF pulsed electromagnetic field device uses a single-pole electric field to generate a corresponding electromagnetic field.

[0018] In some embodiments, the second functional component includes a refrigeration component, which is disposed in the movable main bracket and includes a light-transmissive semiconductor refrigeration element and a connected temperature sensor. Beneficial effects

[0019] Compared with the existing technology, this application has the following advantages:

[0020] This application, comprising a first and second functional components, addresses the issues currently faced by single-function beauty and treatment devices, such as high purchase costs, large storage space requirements, inconvenience, and poor timeliness and user experience. The second functional component can be selected from a variety of functional combinations, or it can be integrated into a single device. Six functional combinations (light energy, heat energy, sound waves, magnetic fields, temperature fields, and mechanical waves) are available. These components deliver 4D surround sound treatments across four layers of the body (epidermis, dermis, subcutaneous fascia, and subcutaneous muscle). This single device achieves multi-layered treatment, improving skin and body functions while simultaneously whitening and rejuvenating the skin and soothing the muscles and fascia, achieving both skin beautification and therapeutic benefits. This solution significantly shortens device usage time and effectively enhances the user experience and therapeutic effectiveness. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] FIG1 is a perspective schematic diagram of one embodiment of the beauty therapy device of the present application;

[0022] FIG2 is a schematic diagram of the interior of a housing of an embodiment of a beauty therapy device of the present application;

[0023] FIG3 is a cross-sectional view of an embodiment of the beauty therapy device of the present application;

[0024] FIG4 is a second cross-sectional view of an embodiment of the beauty therapy device of the present application;

[0025] FIG5 is a schematic diagram of the overall assembly of the bracket of one embodiment of the beauty and treatment device of the present application;

[0026] FIG6 is an exploded schematic diagram of the overall support assembly of one embodiment of the beauty therapy device of the present application;

[0027] FIG7 is a cross-sectional view of a bracket assembly according to an embodiment of the beauty therapy device of the present application;

[0028] FIG8 is a second cross-sectional view of the overall support assembly of one embodiment of the beauty therapy device of the present application;

[0029] FIG9 is a third cross-sectional view of the overall support assembly of one embodiment of the beauty therapy device of the present application;

[0030] FIG10 is a fourth cross-sectional view of the overall support assembly of one embodiment of the beauty therapy device of the present application;

[0031] FIG11 is an exploded schematic diagram of an embodiment of the beauty therapy device of the present application;

[0032] FIG12 is a second exploded schematic diagram of an embodiment of the beauty therapy device of the present application;

[0033] FIG13 is a third exploded schematic diagram of one embodiment of the beauty therapy device of the present application;

[0034] FIG14 is a fourth exploded schematic diagram of one embodiment of the beauty therapy device of the present application;

[0035] FIG15 is an exploded schematic diagram of the overall assembly of the bracket of the second embodiment of the beauty therapy device of the present application;

[0036] FIG16 is a cross-sectional view of the second embodiment of the beauty and treatment device of the present application;

[0037] FIG17 is a second cross-sectional view of the overall support assembly of the second embodiment of the beauty therapy device of the present application;

[0038] FIG18 is a third cross-sectional view of the overall assembly of the bracket of the second embodiment of the beauty therapy device of the present application;

[0039] FIG19 is a fourth cross-sectional view of the overall assembly of the bracket of the second embodiment of the beauty therapy device of the present application;

[0040] FIG20 is a fifth cross-sectional view of the overall assembly of the bracket of the second embodiment of the beauty therapy device of the present application;

[0041] FIG21 is a sixth cross-sectional view of the overall assembly of the bracket of the second embodiment of the beauty therapy device of the present application;

[0042] FIG22 is a first exploded schematic diagram of the second embodiment of the beauty therapy device of the present application;

[0043] FIG23 is a second exploded schematic diagram of the second embodiment of the beauty therapy device of the present application;

[0044] FIG24 is a third exploded schematic diagram of the second embodiment of the beauty therapy device of the present application;

[0045] FIG. 25 is a fourth exploded schematic diagram of the second embodiment of the beauty therapy device of the present application. Modes for Carrying Out the Invention

[0046] Please refer to Figures 1-14, which include various variations of individual components of one embodiment. In a specific embodiment, the beauty and treatment device of the present application includes a first functional component and a second functional component, wherein the first functional component is a mechanical wave component, and the second functional component is at least one of a light energy component, a thermal energy component, an acoustic wave component, an electromagnetic field component, and a refrigeration component, and the second functional component is installed in conjunction with the first functional component.

[0047] Please refer to Figures 1 to 4. The beauty and treatment device includes a shell, which includes a first shell 901 for accommodating functional components and a second shell 902 for accommodating a battery 903. The first shell 901 contains functional components. In this embodiment, it includes a first functional component and a second functional component. The first functional component is a mechanical wave component, and the second functional component is at least any one of a light energy component, a thermal energy component, an acoustic wave component, an electromagnetic field component, and a refrigeration component.

[0048] The mechanical wave assembly includes a drive device, a transmission member, and a movable main support 200, which constitute a main support assembly. The drive output of the drive device is connected through the transmission member and drives the movable main support 200 to move relative to each other along a first direction. The first direction is the direction in which the mechanical wave assembly achieves reciprocating motion, thereby generating a force that strikes / slaps the surface of the human body, that is, the longitudinal axis direction of the first shell 901 in the figure, which is also the X direction in Figure 2. For convenience of description, it can be referred to as the up and down direction, but the "up and down" description is only for convenience of understanding and does not limit the scope of the rights of this application.

[0049] Referring to Figures 5-8 , in the first embodiment, the drive device is an outer rotor motor 100, and the transmission member is a driven disc 210. The drive shaft of the outer rotor motor 100 is connected to a motor geared disc 110. The output surface of the motor geared disc 110 is provided with wavy teeth 111. The driven disc 210 is provided with a wavy surface 211 that mates with the wavy teeth 111 of the motor geared disc 110. The driven disc 210 is mounted in conjunction with the movable main support 200 and is prevented from relative movement in the circumferential direction. In other embodiments, the driven disc may be integrally provided with the movable main support 200, or the wavy surface 211 that mates with the wavy teeth 111 of the motor geared disc 110 may be directly provided on the movable main support 200.

[0050] Specifically, the driven disk 210 includes a main body 212 and an upper edge 213, the wavy surface 211 is arranged on the upper edge 213, the outer diameter of the upper edge 213 protrudes from the main body 212, and the lower surface of the upper edge 213 abuts against the upper end of the movable main bracket 200, the main body 212 is inserted into the movable main bracket 200, and the outer periphery of the main body 212 is provided with a ridge 214, and the movable main bracket 200 is correspondingly provided with a guide groove 203 inside, so that the driven disk 210 can push the movable main bracket 200 when it moves downward, and it is limited that the two cannot move relative to each other in the circumferential direction.

[0051] Furthermore, a return member is provided on the movable main bracket 200. The return member stores energy when the motor gear plate 110 causes the driven plate 210 to move downward, and releases energy to drive the driven plate 210 upward. Specifically, the return member is a spring 201 sleeved on the movable main bracket 200.

[0052] The outer rotor motor 100 is rotated by electronic control, and the motor gear disc 110 fixed on the motor drive shaft rotates synchronously when the motor rotates. At the same time, the wave teeth 111 on the motor gear disc 110 engage with the wave surface 211 of the driven disc 210 on the movable bracket assembly. When the motor gear disc 110 rotates, the gear disc and the driven disc 210 generate a tangential force that causes the driven disc 210 to be pressed downward in the axial direction. At this time, the front spring 201 is compressed. When the gear disc rotates to the trough, the rebound force of the spring 201 causes the movable bracket assembly to rise as a whole. Such repeated movement causes the movable bracket to produce reciprocating motion, thereby generating a force that beats / pats the human body surface, so that the human fascia and muscles are relaxed and have a massage effect. A beating massage head can be connected to the bottom of the movable main bracket 200 and can be extended from the bottom of the first shell 901; or the movable main bracket 200 can directly serve as a beating massage, with the lower end extending from the bottom of the first shell 901. A contact surface or soft pad suitable for beating massage can also be set at the bottom of the movable main bracket.

[0053] The teeth of the motor gear plate 110 and the driven plate 210 can be set to the same number or designed to be different numbers, and can be designed as a pair or more than one pair. When the number of the two is a pair, the movable bracket group makes one forward movement when the motor rotates one circle, and when there are more than one pair, the movable bracket group can make more than one reciprocating motion when the motor rotates one circle, thereby achieving the purpose of speed change; it can also be understood that the number of reciprocating motions (hammering / slapping) generated by the movable bracket when the motor rotates one circle is equal to or greater than one.

[0054] The mechanical wave assembly drives the movable main frame 200 up and down through a driving device. A treatment head is mounted on the movable main frame 200 to physically drive the treatment head up and down. The treatment head is a device that can be used to perform a beating or massage on the human body. It can also be used to perform other functional treatments, such as beating and massaging the skin and muscles, soothing the muscle and fascia layers and achieving a therapeutic effect to alleviate fatigue.

[0055] Please refer to Figures 9 to 14. The second functional component includes a light energy component. The light energy component is arranged in the movable main bracket 200 and includes a light source 301, a dimming component 302, a dimming bracket 310, and a stroke adjustment component 320. The dimming component 302 is mounted on the dimming bracket 310. The dimming component 302 and the dimming bracket 310 are fixedly mounted relative to each other. The movement of the dimming bracket 310 can drive the dimming component 302 to move together. The dimming bracket 310 is arranged on the movable main bracket 200. The light emitted by the light source 301 is emitted to the outside of the movable main bracket 200 through the dimming component 302. The movable main bracket 200 is a vertically through-structure, and the light emitted by the light source 301 can be emitted to the outside.

[0056] Furthermore, the inner wall of the stroke adjustment member 320 is provided with a spirally distributed track 321, and the outer side of the dimming bracket 310 is provided with a protrusion 311 that can be embedded in the track 321 and can slide along the track 321. The dimming bracket 310 is arranged in the stroke adjustment member 320 and can move relative to the track 321.

[0057] The light energy assembly further includes a limiting bracket 330, the dimming bracket 310 is mounted within the limiting bracket 330, the limiting bracket 330 is mounted within the movable main bracket 200, and the stroke adjustment member 320 is sleeved on the limiting bracket 330. The limiting bracket 330 is provided with a longitudinal limiting groove 331, and the protrusion 311 on the outer side of the dimming bracket 310 passes through the limiting groove 331 and cooperates with the track 321. Therefore, when the limiting bracket 330 rotates relative to the dimming bracket 310, the protrusion 311 moves along the track because the track 321 is spirally arranged, but at the same time is restricted by the limiting groove 331 and cannot rotate. Therefore, the protrusion 311 moves up and down along the limiting groove 331. Therefore, by adjusting the limiting bracket 330 to rotate circumferentially, the axial up and down movement of the dimming member 320 can be adjusted.

[0058] Specifically, the stroke adjustment member 320 is arranged in the movable main bracket 200, and a lever 322 is provided on the outside of the stroke adjustment member 320. A circumferential opening 202 is provided on the movable main bracket 200, and the lever 322 passes through the circumferential opening 202. Furthermore, a corresponding operating opening 9011 is also provided on the first shell 901. The lever 322 can extend out of the shell, so that the user can adjust the dimming member 302 through the lever 322, thereby adjusting the output light of the light energy component to meet the usage requirements.

[0059] Specifically, a flange 332 is provided on the outer periphery of the limiting bracket 330 near the lower end, and a groove or receiving platform is provided on the inner wall of the movable main bracket 200. The two cooperate to ensure that the limiting bracket 330 is stably installed in the movable main bracket 200. The driven disk 210 is sleeved on the outside of the limiting bracket 330 and abuts against the flange 332, so that when the driven disk 210 moves downward, it can push the flange 332 to move the driven disk 210 downward. Specifically, the outer periphery of the movable main bracket 200 is also provided with a mounting flange, which cooperates with the corresponding mounting groove or receiving platform structure of the first shell 901 for installation.

[0060] In a specific embodiment, the light source 301 is at least one of an IPL, a carbon lamp, and a tungsten lamp, and there is at least one light source 301. That is, the light source 301 can be a single light source, as shown in Figures 3, 7, 12, and 14, wherein at least one of an IPL, a carbon lamp, and a tungsten lamp can be used. The light source 301 can also be a dual light source, as shown in Figures 4, 8-11, and 13, wherein an IPL + carbon lamp, an IPL + tungsten lamp, or a carbon lamp + tungsten lamp can be used.

[0061] The light energy component utilizes light energy to achieve cosmetic and therapeutic effects. It utilizes relevant wavelengths within visible light to treat the epidermis. For example, light in the 500-600nm wavelength range can act on epidermal pigments and remove red blood streaks. Near-infrared light (900-2500nm) can penetrate the epidermis directly into the dermis, causing water molecules to vibrate at high frequencies, generating internal heat that accelerates collagen regeneration, tightens the skin, and improves wrinkles. Far-infrared light waves improve vascular tone, promote blood circulation, increase metabolism, reduce inflammatory responses, and relieve pain. (This has been documented in major hospitals, literature, and journals.)

[0062] In a specific embodiment, the dimming element 302 can be any one of a compound eye lens, a convex mirror, and a concave mirror. The compound eye lens has a light-homogenizing effect, so that the light is evenly distributed and emitted in parallel, so that the light energy can be evenly distributed in the treatment area; the convex mirror has a light-focusing effect, which can be used for remote irradiation, and can concentrate energy on concentrated areas such as spots and red blood vessels to quickly decompose and ablate pigment deposits; the concave mirror has a light-astigmatizing effect, which can be used for remote irradiation, and can act on spots, dark and shallow areas of the skin, or areas that require large-scale anti-inflammatory treatment, and swollen areas and blood stasis areas for large-area auxiliary treatment.

[0063] The light energy assembly further includes a light source PCB board 303, which provides a power circuit for the light source 301. A reflector 304 is provided on the side of the light source 301 facing away from the dimming element 302, so as to focus the light source outward.

[0064] Please refer to Figures 9 and 10. In some embodiments, the second functional component includes an electromagnetic field component, which is arranged in the movable main bracket 200 and includes at least any one of an EMS biological microcurrent device, an RF electromagnetic field device, and a PEMF pulse electromagnetic field device.

[0065] In some embodiments, the electromagnetic field component includes an EMS biological microcurrent device or an RF electromagnetic field device, and the EMS biological microcurrent device or the RF electromagnetic field device is provided with an electrode block exposed from the movable main support 200; or, the electromagnetic field component includes an RF electromagnetic field device or a PEMF pulsed electromagnetic field device, and the RF electromagnetic field device or the PEMF pulsed electromagnetic field device uses a single-pole electric field to generate a corresponding electromagnetic field.

[0066] EMS bio-microcurrent: EMS bio-current is an electrical signal that simulates the natural bio-current of the human body. It stimulates the muscles and nerves of the human body through weak currents, stimulates the contraction and relaxation of the thigh muscles, improves muscle strength, improves facial muscle relaxation, promotes blood circulation, and relieves joint and local pain to achieve a therapeutic effect.

[0067] RF electromagnetic field: It is an electromagnetic field generated by RF radiation. The electric field and magnetic field appear alternately in the form of electromagnetic waves, acting on the fibroblasts in the human dermis. At the same time, it creates a thermal effect on the skin, increasing the temperature of the dermis, promoting blood circulation, enhancing skin metabolism, and promoting collagen regeneration, thereby eliminating wrinkles and tightening the skin.

[0068] PEMF: It is a physical therapy based on the principle of electromagnetic fields. It stimulates human cells and tissues through pulsed electromagnetic fields of specific frequency and intensity, causing charged particles (such as ions, electrons and molecules) in cells and tissues to move. Under the action of the electromagnetic field, the potential of cells and tissues is changed, and the opening and closing of ion channels are adjusted, thereby affecting the exchange and metabolism of substances inside and outside cells, thereby producing biological effects on cells and tissues, promoting cell production and repair, improving acne scars and skin inflammation, reducing pain, promoting tissue regeneration, and achieving the skin beautification effect of eliminating acne scars.

[0069] Referring to Figures 9, 11, and 12, the EMS biological microcurrent device or RF electromagnetic field device includes an electrode block 352 exposed from the movable main support 200 and electrically connected to an electrode point PCBA 351. The cooling element 340 includes a through slot (not shown) for accommodating the electrode block 352.

[0070] Please refer to Figures 10, 13 and 14 in combination, which shows another evolution of the first embodiment, using a deep source heat PEMF pulse electromagnetic field, in which the electric field conductive block 353 is not exposed and is located on the side close to the user's body.

[0071] Please refer to 11-14. In some embodiments, the second functional component includes an acoustic wave component, which is disposed within the movable main support 200 and includes an ultrasonic generator. Specifically, the ultrasonic wave component is disposed within the movable main support 200, and an ultrasonic sealing silicone 361 is also provided on the side closest to the user's body.

[0072] The sonic energy can directly reach the subcutaneous tissues, including the dermis, superficial fat layer, and SAMS fascia. The "cavitation effect" generated by ultrasound causes tiny bubbles to form within each layer of water molecules and tissue cells. These particles vibrate and generate localized high temperature and high pressure, causing the bubbles to expand, contract, and collapse. The internal heat effect generated by the body can improve fine lines on the face, reduce deep lines, and lift and tighten the fascia layer to improve facial contours and provide deep anti-aging. When combined with ultrasound energy and light energy, they can act on the dermis together with near-infrared radiation, accelerating the internal heating effect. This speeds up the treatment while increasing the temperature difference between the epidermal and dermal temperatures, reducing the surface heat sensation and thus enhancing the skin's experience during treatment.

[0073] In some embodiments, the second functional component includes a cooling assembly, which is disposed within the movable main support 200 and includes a light-transmissive semiconductor cooling element 340 and an associated temperature sensor. The cooling element 340 can be exposed to the user's body to provide thermal beauty / aesthetic treatment. Specifically, the cooling element 340 is disposed below the movable main support 200, on the light-emitting side of the dimming element 302.

[0074] The temperature-controlled and light-transmitting refrigeration component uses semiconductor refrigeration combined with a temperature sensor (NTC) to accurately control the epidermal temperature, increasing the temperature difference between the epidermis and dermis during treatment, reducing the epidermal burning sensation while accelerating the temperature difference effect, enabling it to play a protective and auxiliary therapeutic role in the internal heat effect.

[0075] Figures 11 to 14 are respectively more specific embodiment decomposition diagrams showing the transformation of some components of the driving device using the external rotor motor 100 in one of the embodiments, wherein Figure 11 is an embodiment transformation in which the light source of the light energy component uses a double lamp tube and the electromagnetic field component uses RF / EMS; Figure 12 is an embodiment transformation in which the light source of the light energy component uses a single lamp tube and the electromagnetic field component uses RF / EMS; Figure 13 is an embodiment transformation in which the light source of the light energy component uses a double lamp tube and the electromagnetic field component uses a deep-source thermoelectric field conductive block that is not exposed; Figure 14 is an embodiment transformation in which the light source of the light energy component uses a single lamp tube and the electromagnetic field component uses a deep-source thermoelectric field conductive block that is not exposed.

[0076] All six functions can be integrated into the same device, freely switchable and combined via electronic control. Two or more functions can be combined and configured on the device, with electronic control controlling the combination and switching of these functions. Similarly, similar functions can be combined and combined, with electronic control controlling the combination and switching of these functions. This design aims to accelerate treatment outcomes, shorten treatment time, and provide consumers with a better experience in terms of device cost, time cost, and overall effectiveness.

[0077] Please refer to Figures 15-23, which include various variations of individual components of the second embodiment. Unlike the aforementioned embodiment, in some other embodiments, the drive device is an electromagnetic motor 400, the transmission member is a motor coupling 410, the drive shaft of the electromagnetic motor 400 is connected to the motor coupling 410, and the motor coupling 410 is fixedly connected to the movable main support 200. The mechanical wave assembly drives the movable main support 200 up and down via the drive device. A treatment head is mounted on the movable main support 200, which can then drive the treatment head to achieve physical up and down motion. The treatment head is a device that can be used to perform a beating or massage on the human body. As shown in Figure 16, the electromagnetic motor 400 drives the motor coupling 410 up and down. The distance A of travel A is consistent with the distance A of the treatment head up and down. This can be used to achieve a beating massage of the skin and muscles during other functional treatments, soothing the muscle and fascia layers and achieving a therapeutic effect that alleviates fatigue.

[0078] In a specific embodiment, the light source 301 is at least one of an IPL, a carbon lamp, and a tungsten lamp, and there is at least one light source 301. That is, the light source 301 can be a single light source, as shown in Figures 16, 17, 20, 23, and 25, wherein at least one of an IPL, a carbon lamp, and a tungsten lamp can be used; or the light source 301 can be a dual light source, as shown in Figures 18, 19, 21, 22, and 24, wherein an IPL + carbon lamp, an IPL + tungsten lamp, or a carbon lamp + tungsten lamp can be used.

[0079] As shown in Figures 19-21, in a specific embodiment, the light modulator 302 can be any one of a fly-eye lens 3021, a convex mirror 302, and a concave mirror 3022. The fly-eye lens has a light-homing effect, which evenly distributes and parallelizes the light, thus evenly distributing the light energy over the treatment area. The convex mirror has a light-concentrating effect, which can be used for remote irradiation, focusing energy on concentrated areas such as spots and red blood vessels to quickly decompose and ablate pigment deposits. The concave mirror has a light-scattering effect, which can be used for remote irradiation, and can be used for large-scale auxiliary treatment of spots, dark spots, shallow skin areas, areas requiring large-scale anti-inflammatory treatment, and areas of swelling and blood congestion.

[0080] In the embodiment using an electromagnetic motor 400 and motor coupling 410 to achieve motion of the mechanical energy component, any one or more of the aforementioned functions can be selected and configured in the second functional component of the device, and the combination and switching of functions can be controlled electronically. This design aims to accelerate treatment effects, shorten treatment time, and provide consumers with a better experience in terms of device cost, time cost, and user experience.

[0081] Figures 22 to 25 are respectively more specific embodiment decomposition diagrams showing the transformation of some components of the driving device using the electromagnetic motor 400 in the second embodiment, wherein Figure 22 is an embodiment transformation in which the light source of the light energy component adopts a double lamp tube and the electromagnetic field component adopts RF / EMS; Figure 23 is an embodiment transformation in which the light source of the light energy component adopts a single lamp tube and the electromagnetic field component adopts RF / EMS; Figure 24 is an embodiment transformation in which the light source of the light energy component adopts a double lamp tube and the electromagnetic field component adopts a deep-source thermoelectric field conductive block that is not exposed; Figure 25 is an embodiment transformation in which the light source of the light energy component adopts a single lamp tube and the electromagnetic field component adopts a deep-source thermoelectric field conductive block that is not exposed.

[0082] This application, comprising a first and second functional components, addresses the issues currently faced by single-function beauty and treatment devices, such as high purchase costs, large storage space requirements, inconvenience, and poor timeliness and user experience. The second functional component can be selected from a variety of functional combinations, or it can be integrated into a single device. It includes six functional combinations (light energy, heat energy, sound waves, magnetic fields, temperature fields, and mechanical waves), providing 4D surround sound from four layers of the body (epidermis, dermis, subcutaneous fascia, and subcutaneous muscle). This device achieves multi-layered treatment, improving skin and body functions while simultaneously whitening and rejuvenating the skin and soothing the muscles and fascia, achieving a dual effect of skin beauty and physical therapy. This solution significantly shortens device usage time and effectively enhances the user experience and therapeutic effectiveness.

[0083] The above description is only a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto. Any equivalent transformation based on the technical solution of the present application falls within the protection scope of the present application.

Claims

1. A beauty treatment device, characterized in that, It includes a first functional component and a second functional component. The first functional component is a mechanical wave component, and the second functional component is at least any one of a light energy component, a heat energy component, a sound wave component, an electromagnetic field component, and a refrigeration component. The second functional component is integrally installed in combination with the first functional component.

2. The beauty treatment device according to claim 1, characterized in that, The mechanical wave component includes a driving device, a transmission member, and a movable general support. The driving output of the driving device is connected to and drives the movable general support to move relatively in a first direction through the transmission member.

3. The beauty treatment device according to claim 2, characterized in that, The driving device is an outer rotor motor, and the transmission member is a driven disk. The driving shaft of the outer rotor motor is connected with a motor gear disk. The output surface of the motor gear disk is provided with wave teeth, and the driven disk is provided with a wave surface that cooperates with the wave teeth of the motor gear disk. The driven disk is fixedly and circumferentially installed in cooperation with the movable general support. Alternatively, the driving device is an electromagnetic motor, the transmission member is a motor coupling, the driving shaft of the electromagnetic motor is connected to the motor coupling, and the motor coupling is fixedly connected to the movable general support.

4. The beauty treatment device according to claim 2, characterized in that, The second functional component includes a light energy component. The light energy component is arranged in the movable general support and includes a light source, a light regulator, and a light regulating support. The light regulator is installed on the light regulating support, the light regulating support is arranged on the movable general support, and the light emitted by the light source is emitted out of the movable general support through the light regulator.

5. The beauty treatment device according to claim 4, characterized in that, The light energy component further includes a stroke adjusting member. The inner wall of the stroke adjusting member is provided with a spirally distributed track, and the light regulating support is arranged in the stroke adjusting member and can move relatively along the track.

6. The beauty treatment device according to claim 5, characterized in that, The light energy component further includes a limiting support. The light regulating support is installed in the limiting support, the limiting support is installed in the movable general support, and the stroke adjusting member is sleeved on the limiting support.

7. The beauty treatment device according to claim 2, characterized in that, The second functional component includes a sound wave component. The sound wave component is arranged in the movable general support and includes an ultrasonic generator.

8. The beauty treatment device according to claim 2, characterized in that, The second functional component includes an electromagnetic field component. The electromagnetic field component is arranged in the movable general support and includes at least any one of an EMS bio-microcurrent device, an RF electromagnetic field device, and a PEMF pulsed electromagnetic field device.

9. The beauty treatment device according to claim 8, characterized in that, The electromagnetic field component includes an EMS bio-microcurrent device or an RF electromagnetic field device, and the EMS bio-microcurrent device or the RF electromagnetic field device is provided with an electrode block exposed outside the movable general support; or, the electromagnetic field component includes an RF electromagnetic field device or a PEMF pulsed electromagnetic field device, and the RF electromagnetic field device or the PEMF pulsed electromagnetic field device uses a single-stage electric field to generate a high-frequency pulsed electromagnetic field.

10. The beauty treatment device according to claim 2, characterized in that, The second functional component includes a refrigeration component. The refrigeration component is arranged in the movable general support and includes a light-transmissive semiconductor refrigeration element and a connected temperature sensor.

Citation Information

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