A physiotherapy device

CN224821328UActive Publication Date: 2026-10-09SHENZHEN NOEN MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202522272715.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-10-09
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0003]本申请的实施例提供了一种理疗装置,可以解决用户需要分别从不同位置取出护肤品和理疗仪,操作繁琐的技术问题

Benefits of technology

本申请实施例中的理疗装置包括容器瓶、保护壳和理疗仪,容器瓶包括瓶体和盖体,瓶体用于存放护肤品,盖体可拆卸地固定于瓶体的瓶口处以遮盖瓶口,盖体形成了一个物理屏障,可以有效阻挡灰尘、毛发等杂质落入瓶内的护肤品中,同时,在运输、携带或存放护肤品时,盖体使得瓶内的液体或膏体不易泄漏出来,保护壳与瓶体可拆卸连接,保护壳设置于盖体的外周并与盖体共同限定出一容纳腔室。理疗仪与保护壳可拆卸连接,理疗仪上设有理疗头,理疗头用于刺激皮肤以对皮肤进行理疗,理疗头限位于所述容纳腔室中,保护壳可以对理疗头提供保护作用,减少理疗头与外部器物发生磕碰的风险。本实施例中的理疗装置将理疗仪、容器瓶和保护壳集成在一起,理疗装置可以为护肤品和和理疗仪提供容纳空间,护肤品和和理疗仪可以集中收纳于理疗装置中,理疗仪与护肤品配套使用时,用户无需分别从不同的地方取出护肤品和理疗仪,简化操作,提高用户使用理疗仪和护肤品的便利性。

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Abstract

The application provides a physiotherapy device, which comprises a container bottle, a protective shell and a physiotherapy instrument. The container bottle comprises a bottle body and a cover body. The bottle body is used for storing skin care products. The cover body is detachably fixed at the bottle opening of the bottle body to cover the bottle opening. The protective shell is detachably connected with the bottle body. The protective shell is arranged at the outer periphery of the cover body and cooperates with the cover body to define a containing cavity. The physiotherapy instrument is detachably connected with the protective shell. The physiotherapy instrument is provided with a physiotherapy head. The physiotherapy head is used for stimulating the skin to perform physiotherapy on the skin. The physiotherapy head is limited in the containing cavity. The physiotherapy device in the embodiment integrates the physiotherapy instrument, the container bottle and the protective shell together. The physiotherapy device can provide containing space for the skin care products and the physiotherapy instrument. The skin care products and the physiotherapy instrument can be centrally stored in the physiotherapy device. When the physiotherapy instrument is used together with the skin care products, the user does not need to take out the skin care products and the physiotherapy instrument from different places. The operation is simplified. The convenience of using the physiotherapy instrument and the skin care products by the user is improved.
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Description

Technical Field

[0001] This application relates to the field of beauty and skincare technology, specifically to a physiotherapy device. Background Technology

[0002] In related technologies, when users apply skincare products such as lip masks, face creams, essential oils, and serums, they often use them in conjunction with a physiotherapy device to enhance absorption. However, skincare products and physiotherapy devices are usually stored separately, requiring users to retrieve them from different locations, which is cumbersome and negatively impacts the skincare experience. Utility Model Content

[0003] The embodiments of this application provide a physiotherapy device that can solve the technical problem of users having to remove skin care products and physiotherapy devices from different locations, which is cumbersome to operate.

[0004] Embodiments of this application provide a physiotherapy device, comprising: A container bottle includes a bottle body and a cap, the bottle body being used to store skincare products, and the cap being detachably fixed to the bottle opening to cover the bottle opening; A protective shell is detachably connected to the bottle body. The protective shell is disposed on the outer periphery of the cap and together with the cap body defines a receiving chamber. The physiotherapy device is detachably connected to the protective shell. The physiotherapy device is equipped with a physiotherapy head, which is used to stimulate the skin to perform physiotherapy. The physiotherapy head is located within the receiving chamber.

[0005] In one embodiment, the protective shell has an access window that connects the outside world to the receiving chamber; The physiotherapy device also includes an operating unit electrically connected to the physiotherapy head. The operating unit is capable of controlling the operation of the physiotherapy head. The operating unit is oriented toward the access window so that the user can apply external force to the operating unit through the access window.

[0006] In one embodiment, the protective shell includes a surrounding wall and a baffle wall. One end of the surrounding wall is provided with a connection hole for the physiotherapy device to enter and exit, and the other end of the surrounding wall is fixedly connected to the baffle wall. The cover is disposed in the connecting hole, and the wall of the connecting hole is detachably connected to the bottle body. The surrounding wall, the cover, and the baffle wall together enclose the receiving chamber. The baffle, the physiotherapy device, and the cover are arranged sequentially along the axial direction of the protective shell. The baffle and the cover confine at least part of the physiotherapy device within the enclosure. The access window is provided on the baffle.

[0007] In one embodiment, the physiotherapy device further includes a handle and a detection unit, the detection unit being used to detect skin parameters; The detection unit and the therapy head are respectively disposed on opposite sides of the handle. The operation unit is electrically connected to the detection unit to control the operation of the detection unit. Or, the detection unit and the operation unit are disposed on the same side of the handle. At least a portion of the detection end of the detection unit exposes the protective shell through the access window.

[0008] In one embodiment, the detection end includes a first circuit board electrically connected to the sensor and at least two electrode probes for detecting the skin's oil and water balance. The operating unit is electrically connected to the first circuit board, and the electrode probes are exposed through the access window to the protective housing; and / or The detection end includes a second circuit board and a camera that are electrically connected. The operation unit is electrically connected to the second circuit board. The camera is used to capture images of the user's skin. The camera exposes the protective case through the access window.

[0009] In one embodiment, the physiotherapy device further includes a handle, one end of which is fixedly connected to the physiotherapy head, and the other end of which protrudes from the protective shell after passing through the access window. The operating unit is located on the side of the handle away from the physiotherapy head, and the physiotherapy head can be detached from or inserted into the protective shell through the access window.

[0010] In one embodiment, the therapy head and the access window are arranged sequentially along the axial direction of the protective shell. The inner wall surface of the protective shell is provided with a guide groove and a limiting groove that communicate with each other. The guide groove extends from the access window along the axial direction of the protective shell, and the limiting groove extends along the circumferential direction of the protective shell. The physiotherapy device also includes a limiting protrusion fixed to the outer wall of the physiotherapy head. The limiting protrusion can engage with the guide groove and the limiting groove to allow the limiting protrusion to move between the guide groove and the limiting groove.

[0011] In one embodiment, the handle includes a connecting portion and a gripping portion, one end of the connecting portion is fixedly connected to the therapy head, and the other end is fixedly connected to the gripping portion; A clearance notch for finger insertion is formed between the connecting portion and the grip portion, and / or, the grip portion has an operating surface and an arc-shaped surface on the side away from the connecting portion, the arc-shaped surface surrounds the outer periphery of the operating surface, the operating surface is concave inward than the arc-shaped surface, and the operating unit is disposed on the operating surface.

[0012] In one embodiment, the physiotherapy device further includes a first magnetic attractor and a second magnetic attractor that are magnetically attracted to each other. The first magnetic attractor is fixed to the cavity wall of the receiving chamber, and the second magnetic attractor is fixed to the physiotherapy head. The physiotherapy head and the cavity wall are magnetically attracted to each other by the first magnetic attractor and the second magnetic attractor.

[0013] In one embodiment, the physiotherapy device further includes an electrically connected main circuit board and a stimulation element disposed on the physiotherapy head; The stimulation element includes a phototherapy lamp, and the outer wall surface of the therapy head is provided with a light-transmitting area. The phototherapy lamp is positioned towards the light-transmitting area, and / or, the stimulation element includes a conductive electrode, and a portion of the conductive electrode protrudes outward from the outer wall surface of the therapy head.

[0014] The beneficial effects of the embodiments of this application are as follows: The physiotherapy device in this embodiment includes a container bottle, a protective shell, and a physiotherapy instrument. The container bottle includes a bottle body and a cap. The bottle body is used to store skincare products, and the cap is detachably fixed to the bottle opening to cover it. The cap forms a physical barrier, effectively preventing dust, hair, and other impurities from falling into the skincare products inside the bottle. Simultaneously, during transportation, carrying, or storage of the skincare products, the cap prevents leakage of liquids or creams from the bottle. The protective shell is detachably connected to the bottle body and is disposed on the outer periphery of the cap, together defining a receiving chamber. The physiotherapy instrument is detachably connected to the protective shell and is equipped with a physiotherapy head. The physiotherapy head is used to stimulate the skin for physiotherapy. The physiotherapy head is confined within the receiving chamber, and the protective shell provides protection for the physiotherapy head, reducing the risk of collision between the physiotherapy head and external objects. The physiotherapy device in this embodiment integrates the physiotherapy instrument, container bottle, and protective shell together. The physiotherapy device can provide storage space for skin care products and the physiotherapy instrument. The skin care products and the physiotherapy instrument can be stored together in the physiotherapy device. When the physiotherapy instrument and skin care products are used together, the user does not need to take out the skin care products and the physiotherapy instrument from different places, which simplifies the operation and improves the convenience of the user in using the physiotherapy instrument and skin care products. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a three-dimensional structural schematic diagram of a physiotherapy device according to an embodiment of this application; Figure 2 yes Figure 1 An exploded view of the physiotherapy device in the embodiment shown; Figure 3 yes Figure 1 A cross-sectional view of the physiotherapy device of the illustrated embodiment; Figure 4 This is a three-dimensional structural schematic diagram of a physiotherapy device according to another embodiment of this application; Figure 5 yes Figure 4 An exploded view of the physiotherapy device in the embodiment shown; Figure 6 yes Figure 4 A cross-sectional view of the physiotherapy device in the physiotherapy apparatus of the illustrated embodiment.

[0017] Figure label: 100. Physiotherapy device; 10. Container bottle; 11. Bottle body; 12. Cap; 13. Bottle mouth; 20. Protective shell; 21. Receiving chamber; 22. Access window; 23. Enclosure; 24. Baffle; 25. Connecting hole; 26. Guide groove; 27. Limiting groove; 30. Physiotherapy instrument; 31. Physiotherapy head; 311. Phototherapy lamp; 312. Light-transmitting area; 313. Conductive electrode; 32. Operating unit; 33. Handle; 331. Connecting part; 332. Grip part; 333. Avoidance notch; 334. Operating surface; 335. Curved surface; 336. Battery; 34. Detection unit; 35. Detection end; 351. Second circuit board; 352. Camera; 36. Limiting protrusion; 37. First magnetic chuck; 38. Second magnetic chuck; 39. Main circuit board; 310. Display screen. Detailed Implementation

[0018] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application. In addition, it should be understood that the specific embodiments described herein are only for illustration and explanation of this application and are not intended to limit this application. In this application, unless otherwise stated, directional terms such as "upper" and "lower" generally refer to the upper and lower positions of the device in actual use or operation, specifically the drawing directions in the accompanying drawings; while "inner" and "outer" refer to the outline of the device.

[0019] Please refer to Figures 1-5The physiotherapy device 100 of this application includes a container bottle 10, a protective shell 20, and a physiotherapy instrument 30. The container bottle 10 includes a bottle body 11 and a cap 12. The bottle body 11 is used to store skin care products. The cap 12 is detachably fixed to the bottle opening 13 of the bottle body 11 to cover the bottle opening 13. The cap 12 forms a physical barrier that can effectively prevent dust, hair, and other impurities from falling into the skin care products inside the bottle. At the same time, when transporting, carrying, or storing skin care products, the cap 12 makes it difficult for the skin care products inside the bottle to leak out. The protective shell 20 is detachably connected to the bottle body 11. The protective shell 20 is disposed on the outer periphery of the cap 12 and together with the cap 12 defines a receiving chamber 21. The physiotherapy device 30 is detachably connected to the protective shell 20. The physiotherapy device 30 is equipped with a physiotherapy head 31, which is used to stimulate the skin for physiotherapy. The physiotherapy head 31 is confined within the receiving chamber 21. The protective shell 20 provides protection for the physiotherapy head 31, reducing the risk of collision between the physiotherapy head 31 and external objects. In this embodiment, the physiotherapy device 100 integrates the physiotherapy device 30, the container bottle 10, and the protective shell 20. The physiotherapy device 100 provides storage space for skincare products and the physiotherapy device 30. Both can be centrally stored within the physiotherapy device 100. When the physiotherapy device 30 is used in conjunction with skincare products, the user does not need to remove the skincare products and the physiotherapy device 30 separately, simplifying operation and improving the convenience of using the physiotherapy device 30 and skincare products.

[0020] In this embodiment, the cap 12 can be detachably fixed to the bottle opening 13 of the bottle body 11 via magnetic connection, interference fit, or plug-in connection, while covering the bottle opening 13, allowing the user to easily remove the cap 12 to open the bottle opening 13. The protective shell 20 is detachably connected to the bottle body 11, allowing the user to easily remove the bottle body 11 and add skincare products to it. The protective shell 20 can be detachably connected to the bottle body 11 via threaded connection, magnetic connection, or snap-fit ​​connection, etc., which are not limited here. The physiotherapy device 30 is detachably connected to the protective shell 20, allowing the user to easily remove the physiotherapy device 30 for independent use. The physiotherapy device 30 can be detachably connected to the protective shell 20 via threaded connection, magnetic connection, or snap-fit ​​connection, etc., which are not limited here.

[0021] In this embodiment, the therapy head 31 is used to stimulate the skin to provide physiotherapy for the skin of the lips, face, nose or other areas; the form of physiotherapy is not limited, and the therapy head 31 may include one or more combinations of rollers, hot compress modules, cold compress modules, microcurrent electrodes, phototherapy modules, and vibration modules.

[0022] In this embodiment, the treatment head 31 may include a roller. When in use, the roller can apply pressure to the skin through physical rolling, thereby widening the gaps between the stratum corneum and promoting the transdermal absorption of active ingredients.

[0023] In this embodiment, the therapy head 31 may include a heat therapy module. When in use, the heat therapy module can transfer heat to the skin to achieve physiological effects such as dilating blood vessels and promoting repair, thereby promoting the absorption of active ingredients through the skin.

[0024] In this embodiment, the physiotherapy head 31 may include a cold compress module. When the surface of the cold compress module comes into contact with the skin, the epidermal temperature is lowered through direct heat conduction, thereby achieving a physiotherapy effect.

[0025] In this embodiment, the physiotherapy head 31 may include a microcurrent electrode, which can emit a microcurrent to stimulate the skin, thereby achieving a physiotherapy effect.

[0026] In this embodiment, the therapy head 31 may include a phototherapy module. When in use, the light emitted by the phototherapy module can be used to irradiate the skin to achieve a phototherapy effect.

[0027] In this embodiment, the therapy head 31 may include a vibration module, which can gently stimulate the skin through vibration while applying skin care products, thereby promoting blood circulation, accelerating the penetration and absorption of skin care products, and enhancing the skin care effect.

[0028] In one embodiment, reference Figure 2 and Figure 5 The protective shell 20 has an access window 22 that connects the outside world to the receiving chamber 21. The physiotherapy device 30 also includes an operation unit 32, which is electrically connected to the physiotherapy head 31. The operation unit 32 can control the operation of the physiotherapy head 31. The operation unit 32 is positioned facing the access window 22 so that the user can apply external force to the operation unit 32 through the access window 22. When the user needs to adjust the operation of the physiotherapy head 31, they can directly press, flick, rotate, or touch the operation unit 32 through the access window 22 to control the operation of the physiotherapy head 31 without disassembling the shell, which simplifies the operation.

[0029] In this embodiment, the operation unit 32 may include one or more of the following: buttons, knobs, touch screen, etc.; the operation unit 32 can control the power-off, power-on, parameter adjustment, etc. of the therapy head 31. The operation unit 32 may protrude from the protective shell 20 through the access window 22, or the operation unit 32 may be completely located within the protective shell 20, which is not limited here.

[0030] In this embodiment, the shape of the access window 22 is not limited; the access window 22 can be circular, square, triangular, or other shapes. The access window 22 can be disposed on the side wall of the protective shell 20 or on the top wall of the protective shell 20.

[0031] In one embodiment, reference Figures 1-3The protective shell 20 includes a surrounding wall 23 and a baffle wall 24. One end of the surrounding wall 23 has a connecting hole 25 for the physiotherapy device 30 to enter and exit, and the other end of the surrounding wall 23 is fixedly connected to the baffle wall 24. The cover 12 is disposed in the connecting hole 25, and the wall of the connecting hole 25 is detachably connected to the bottle body 11. The surrounding wall 23, the cover 12, and the baffle wall 24 together enclose the receiving chamber 21. The baffle wall 24, the physiotherapy device 30, and the cover 12 are arranged sequentially along the axial direction of the protective shell 20. The baffle wall 24 and the cover 12 confine at least part of the physiotherapy device 30 within the surrounding wall 23. An access window 22 is provided on the baffle wall 24. The surrounding wall 23 can provide radial confinement for the physiotherapy device 30, and the cover 12 and the baffle wall 24 can provide axial confinement for the physiotherapy device 30, so that the physiotherapy device 30 can be confined in the receiving chamber 21 without the need for fasteners.

[0032] In one specific embodiment, reference Figure 3 The cover 12 overlaps and covers the edge of the bottle mouth 13. The outer wall of the bottle mouth 13 is provided with external threads, and the wall of the connecting hole 25 is provided with internal threads that mate with the external threads. The bottle mouth 13 is threadedly connected to the wall of the connecting hole 25. When assembling the physiotherapy device 100, the cover 12 can be first overlapped and covered by the edge of the bottle mouth 13, and then the physiotherapy device 30 can be placed on the cover 12. The cover 12 provides support for the physiotherapy device 30. Then, the protective shell 20 is placed over the physiotherapy device 30, so that the bottle mouth 13 is threadedly connected to the wall of the connecting hole 25. The operating unit 32 of the physiotherapy device 30 is positioned facing the access window 22. In this way, the cover 12 and the protective shell 20 can limit the physiotherapy device 30 in the receiving chamber 21. When taking out the physiotherapy device 30, the protective shell 20 can be unscrewed from the bottle opening 13. The physiotherapy device 30, the bottle cap, and the bottle body 11 can be detached from the protective shell 20 through the connection port. Then, the user can directly take out the physiotherapy device 30 from the cap 12.

[0033] In one embodiment, reference Figures 1-3 The physiotherapy device 30 also includes a handle 33 and a detection unit 34. The detection unit 34 is used to detect skin parameters, which enriches the functions of the physiotherapy device 30. The skin parameters may include water and oil content, skin pH, wrinkles, spots, etc., which are not limited here. The detection unit 34 and the physiotherapy head 31 are respectively set on opposite sides of the handle 33, which can reduce the interference of electronic components in the physiotherapy head 31 to the detection unit 34. The operation unit 32 is electrically connected to the detection unit 34 to control the operation of the detection unit 34. The user can control the operation of the detection unit 34 through the access window 22 without removing the physiotherapy device 30 from the protective shell 20, which simplifies the operation.

[0034] In one embodiment, reference Figures 1-3The detection unit 34 and the operation unit 32 are located on the same side of the handle 33, and at least a portion of the detection end 35 of the detection unit 34 is exposed through the access window 22 to the protective shell 20. Thus, when the physiotherapy device 30 is housed in the receiving chamber 21, the user can bring the detection end 35 into contact with the skin without removing the device. The user can hold the entire physiotherapy device 100 to perform skin detection, or the user can remove the physiotherapy device 30 from the protective shell 20 and then hold it to perform skin detection. This provides multiple usage methods, improving the convenience and flexibility of the physiotherapy device 100.

[0035] In an embodiment not shown, the detection end 35 includes a first circuit board electrically connected to the sensor and at least two electrode probes for detecting the skin's water and oil content. Both the electrode probes and the operating unit 32 are electrically connected to the first circuit board. The electrode probes are exposed through the access window 22, which exposes the protective housing 20, facilitating contact between the electrode probes and the skin. When both electrode probes are in contact with the skin simultaneously, an electrical circuit is formed between the first circuit board, the two electrode probes, and the skin between them. A weak current is applied to this electrical circuit through the first circuit board. By utilizing the current flowing through the skin between the two electrode probes, the current value or resistance value flowing through the skin can be measured. Utilizing the characteristic that higher skin water content leads to higher conductivity, the skin's water content can be detected. Similarly, utilizing the characteristic that higher skin oil content leads to higher skin resistance, the skin's oil content can be detected. The electrode probes can be selected from commercially available electrode probes such as CM 825 and SM 815.

[0036] In one embodiment, reference Figure 3 The detection end 35 includes a second circuit board 351 and a camera 352 electrically connected to each other. The operation unit 32 is electrically connected to the second circuit board 351. The camera 352 is used to capture images of the user's skin. The camera 352 is exposed through the access window 22 to the protective shell 20, which does not easily block the light path of the camera 352. The camera 352 can acquire skin images and then analyze whether there are red areas, wrinkles, or spots on the skin. The camera 352 can be selected from commercially available cameras such as OVM7251, OVM6211, MX415, and IMX585.

[0037] In one embodiment, reference Figures 4-5 The physiotherapy device 30 also includes a handle 33, one end of which is fixedly connected to the physiotherapy head, and the other end protrudes from the protective shell 20 after passing through the access window 22. The operating unit 32 is located on the side of the handle 33 away from the physiotherapy head. The physiotherapy head 31 can be detached from or inserted into the protective shell 20 through the access window 22. In this embodiment, the handle 33 is fixedly connected to the physiotherapy head, and the handle 33 protrudes from the protective shell 20, making it convenient for the user to hold the handle 33 to pick up and put down the physiotherapy head 31.

[0038] In one embodiment, reference Figure 5 The physiotherapy head and access window 22 are arranged sequentially along the axial direction of the protective shell 20. The inner wall of the protective shell 20 is provided with a guide groove 26 and a limiting groove 27 that communicate with each other. The guide groove 26 extends from the access window 22 along the axial direction of the protective shell 20, and the limiting groove 27 extends circumferentially along the protective shell 20. The physiotherapy device 100 also includes a limiting protrusion 36 fixed to the outer wall of the physiotherapy head. The limiting protrusion 36 can engage with the guide groove 26 and the limiting groove 27 to allow the limiting protrusion 36 to move between the guide groove 26 and the limiting groove 27. The guide groove 26 provides a guiding function for the limiting protrusion 36, guiding it into the limiting groove 27. The limiting groove 27 provides an axial limiting function. After the limiting protrusion 36 is inserted into the limiting groove 27, it can prevent the physiotherapy head 31 from detaching from the protective shell 20.

[0039] Specifically, the therapy head can extend into the protective shell 20 through the access window 22. The limiting protrusion 36 can be inserted into the guide groove 26 and move along the guide groove 26. When the limiting protrusion 36 moves to the entrance of the limiting groove 27, the therapy head can be rotated by turning the handle 33. When the therapy head rotates, it can drive the limiting protrusion 36 to rotate, so that the limiting protrusion 36 is screwed into the limiting groove 27. The limiting groove 27 provides a limiting effect on the limiting protrusion 36 to limit the therapy head 31 in the protective shell 20. When it is necessary to remove the therapy head, the handle 33 can be turned in the opposite direction. The handle 33 drives the limiting protrusion 36 on the therapy head 31 to rotate along the limiting groove 27. When the limiting protrusion 36 moves to the entrance of the guide groove 26, the handle 33 is pulled along the axis of the protective shell 20, so that the limiting protrusion 36 moves along the guide groove 26 to the access window 22. At this time, the therapy head 31 can be removed from the protective shell 20 through the access window 22.

[0040] In one embodiment, reference Figure 6 The handle 33 includes a connecting part 331 and a gripping part 332. One end of the connecting part 331 is fixedly connected to the therapy head 31, and the other end is fixedly connected to the gripping part 332. A clearance notch 333 is formed between the connecting part 331 and the gripping part 332 to allow fingers to enter. The clearance notch 333 provides natural bending space for the fingers, making it easy for the user to grip the gripping part 332.

[0041] In one embodiment, reference Figure 6The handle 33 includes a connecting part 331 and a gripping part 332. One end of the connecting part 331 is fixedly connected to the therapy head 31, and the other end is fixedly connected to the gripping part 332. The gripping part 332 has an operating surface 334 and an arc-shaped surface 335 on the side away from the connecting part 331. The arc-shaped surface 335 surrounds the outer periphery of the operating surface 334, and the operating surface 334 is more concave than the arc-shaped surface 335. The operating unit 32 is disposed on the operating surface 334. When the user grips the gripping part 332, the fingers can naturally bend along the arc-shaped surface 335, which can improve the comfort of gripping. The arc-shaped surface 335 surrounds the outer periphery of the operating surface 334, and the operating surface 334 is more concave than the arc-shaped surface 335. The operating unit 32 is disposed on the operating surface 334, so that when the user grips the gripping surface, the distance between the operating surface 334 and the palm is large, and the hand is less likely to touch the operating unit 32 on the operating surface 334, reducing the risk of the user accidentally touching the operating unit 32.

[0042] In one embodiment, reference Figure 3 The physiotherapy device 100 also includes a first magnetic attractor 37 and a second magnetic attractor 38 that are magnetically attracted to each other. The first magnetic attractor 37 is fixed to the cavity wall of the receiving chamber 21, and the second magnetic attractor 38 is fixed to the physiotherapy head 31. The physiotherapy head 31 and the cavity wall are magnetically attracted to each other by the first magnetic attractor 37 and the second magnetic attractor 38. In this embodiment, the first magnetic attractor 37 and the second magnetic attractor 38 can both be magnets; or, the first magnetic attractor 37 can be a magnet and the second magnetic attractor 38 can be an iron sheet, which is not limited here.

[0043] In one embodiment, reference Figure 3 and Figure 6 The physiotherapy device 100 also includes an electrically connected main circuit board 39 and a stimulation element, which is disposed on the physiotherapy head 31. The stimulation element includes a phototherapy lamp 311. A light-transmitting area 312 is provided on the outer wall of the physiotherapy head 31. The phototherapy lamp 311 is positioned facing the light-transmitting area 312, and the light emitted by the phototherapy lamp 311 can pass through the light-transmitting area 312 and irradiate the human skin to perform physiotherapy on the human skin. The phototherapy lamp 311 can be a white light lamp, red light lamp, blue light lamp, ultraviolet light lamp, or infrared light lamp, etc., and can be set as needed. There can be one or more phototherapy lamps 311. When there are multiple phototherapy lamps 311, the multiple phototherapy lamps 311 can emit the same light or emit different light.

[0044] In one embodiment, reference Figure 3 and Figure 6The physiotherapy device 100 also includes an electrically connected main circuit board 39 and a stimulation element. The stimulation element is disposed on the physiotherapy head 31 and includes a conductive electrode 313. Part of the conductive electrode 313 protrudes outward from the outer wall of the physiotherapy head 31 to facilitate contact between the conductive electrode 313 and human skin. The conductive electrode 313 can be made of conductive metal materials such as stainless steel or silver.

[0045] The number of conductive electrodes 313 is not limited. For example, there can be two conductive electrodes 313, spaced apart. The handle 33 can be made of electrically insulating materials such as plastic or silicone. During operation, a microcurrent circuit can be formed between the main circuit board 39, the skin, and the conductive electrodes 313. The microcurrent circuit is configured to form a microcurrent loop when the two conductive electrodes 313 are in contact with the skin, allowing the conductive electrodes 313 to apply alternating current to the skin surface to stimulate skin cells. Alternatively, there can be one conductive electrode 313. Both the conductive electrode 313 and the handle 33 can be made of conductive metal materials such as stainless steel or silver. During operation, a microcurrent circuit can be formed between the handle 33, the main circuit board 39, the conductive electrode 313, and the skin. The microcurrent circuit is configured to form a microcurrent loop when the human hand grips the handle 33 and the conductive electrode 313 is in contact with the skin, allowing the conductive electrode 313 to apply alternating current to the skin surface to stimulate skin cells. For example, the conductive electrode 313 can be used as an iontophoresis electrode. There can be two conductive electrodes 313. The conductive electrodes 313 can apply a direct current to the skin. The direct current can penetrate the skin barrier and deliver specific components to the target tissue.

[0046] In one embodiment, reference Figure 2 and Figure 3 The physiotherapy device 100 also includes a display screen 310 and a battery 336. The display screen 310 and the operation unit 32 are located on the same side of the conductive electrode 313. The operation unit 32 can be seen through the access window 22, allowing the user to see the display screen without removing the protective shell 20. The battery 336 is located inside the physiotherapy head 31 and is used to power the main circuit board 39.

[0047] The embodiments of this application have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A physiotherapy device, characterized in that, include: A container bottle includes a bottle body and a cap, the bottle body being used to store skincare products, and the cap being detachably fixed to the bottle opening to cover the bottle opening; A protective shell is detachably connected to the bottle body. The protective shell is disposed on the outer periphery of the cap and together with the cap body defines a receiving chamber. The physiotherapy device is detachably connected to the protective shell. The physiotherapy device is equipped with a physiotherapy head, which is used to stimulate the skin to perform physiotherapy. The physiotherapy head is located within the receiving chamber.

2. The physiotherapy device according to claim 1, characterized in that, The protective shell has an access window that connects the outside world to the receiving chamber; The physiotherapy device also includes an operating unit electrically connected to the physiotherapy head. The operating unit is capable of controlling the operation of the physiotherapy head. The operating unit is oriented toward the access window so that the user can apply external force to the operating unit through the access window.

3. The physiotherapy device according to claim 2, characterized in that, The protective shell includes a surrounding wall and a baffle wall. One end of the surrounding wall is provided with a connection hole for the physiotherapy device to enter and exit, and the other end of the surrounding wall is fixedly connected to the baffle wall. The cover is disposed in the connecting hole, and the wall of the connecting hole is detachably connected to the bottle body. The surrounding wall, the cover, and the baffle wall together enclose the receiving chamber. The baffle, the physiotherapy device, and the cover are arranged sequentially along the axial direction of the protective shell. The baffle and the cover confine at least part of the physiotherapy device within the enclosure. The access window is provided on the baffle.

4. The physiotherapy device according to claim 2, characterized in that, The physiotherapy device also includes a handle and a detection unit, the detection unit being used to detect skin parameters; The detection unit and the therapy head are respectively disposed on opposite sides of the handle. The operation unit is electrically connected to the detection unit to control the operation of the detection unit. Or, the detection unit and the operation unit are disposed on the same side of the handle. At least a portion of the detection end of the detection unit exposes the protective shell through the access window.

5. The physiotherapy device according to claim 4, characterized in that, The detection end includes an electrically connected first circuit board and at least two electrode probes for detecting the skin's oil and water balance. The operating unit is electrically connected to the first circuit board, and the electrode probes are exposed through the access window to the protective housing; and / or The detection end includes a second circuit board and a camera that are electrically connected. The operation unit is electrically connected to the second circuit board. The camera is used to capture images of the user's skin. The camera exposes the protective case through the access window.

6. The physiotherapy device according to claim 2, characterized in that, The physiotherapy device also includes a handle, one end of which is fixedly connected to the physiotherapy head, and the other end of which protrudes from the protective shell after passing through the access window. The operating unit is located on the side of the handle away from the physiotherapy head, and the physiotherapy head can be detached from or inserted into the protective shell through the access window.

7. The physiotherapy device according to claim 6, characterized in that, The therapy head and the access window are arranged sequentially along the axial direction of the protective shell. The inner wall of the protective shell is provided with a guide groove and a limiting groove that communicate with each other. The guide groove extends from the access window along the axial direction of the protective shell, and the limiting groove extends along the circumference of the protective shell. The physiotherapy device also includes a limiting protrusion fixed to the outer wall of the physiotherapy head. The limiting protrusion can engage with the guide groove and the limiting groove to allow the limiting protrusion to move between the guide groove and the limiting groove.

8. The physiotherapy device according to claim 6, characterized in that, The handle includes a connecting part and a gripping part. One end of the connecting part is fixedly connected to the physiotherapy head, and the other end is fixedly connected to the gripping part. A clearance notch for finger insertion is formed between the connecting portion and the grip portion, and / or, the grip portion has an operating surface and an arc-shaped surface on the side away from the connecting portion, the arc-shaped surface surrounds the outer periphery of the operating surface, the operating surface is concave inward than the arc-shaped surface, and the operating unit is disposed on the operating surface.

9. The physiotherapy device according to any one of claims 1-8, characterized in that, The physiotherapy device further includes a first magnetic attractor and a second magnetic attractor that are magnetically attracted to each other. The first magnetic attractor is fixed to the cavity wall of the receiving chamber, and the second magnetic attractor is fixed to the physiotherapy head. The physiotherapy head and the cavity wall are magnetically attracted to each other by the first magnetic attractor and the second magnetic attractor.

10. The physiotherapy device according to any one of claims 1-8, characterized in that, The physiotherapy device also includes an electrically connected main circuit board and a stimulation element, the stimulation element being disposed on the physiotherapy head; The stimulation element includes a phototherapy lamp, and the outer wall surface of the therapy head is provided with a light-transmitting area. The phototherapy lamp is positioned towards the light-transmitting area, and / or, the stimulation element includes a conductive electrode, and a portion of the conductive electrode protrudes outward from the outer wall surface of the therapy head.