Facial cleanser
By fixing the pump body inside the mounting cavity of the handheld component in the facial cleansing device, and using a pump bracket to reduce vibration and noise, the problem of vibration during the use of the facial cleansing device is solved, improving user comfort and device lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG NEWDERMO BIOMEDICAL TECH CO LTD
- Filing Date
- 2025-07-24
- Publication Date
- 2026-07-24
AI Technical Summary
The noticeable vibration and noise caused by the pump body during the use of facial cleansing devices affect the comfort of use.
The pump body is placed inside the mounting cavity of the handheld component and fixed by the pump bracket to reduce vibration and noise, and the center of gravity is close to the handheld component to improve user comfort.
It reduces pump vibration and noise, providing a quieter and more comfortable operating environment, extending the service life of the equipment and reducing maintenance costs.
Smart Images

Figure CN224540084U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beauty equipment technology, and in particular to a facial cleansing device. Background Technology
[0002] In the current booming development of the beauty device industry, consumers' demands for skincare products are becoming increasingly sophisticated and efficient, and various modern skincare products are constantly being updated to meet market expectations. Facial cleansing devices, as a highly representative product, have rapidly captured the market in recent years, becoming a rising star in the beauty industry, thanks to their unique design and efficacy.
[0003] Facial cleansing devices are typically equipped with a dedicated pump structure, whose core function is to accurately and stably extract the cleansing liquid and deliver it to the cleansing components through specific channels. However, because the pump needs to generate a certain amount of power to extract the liquid during operation, it causes noticeable vibrations to be transmitted throughout the entire facial cleansing device.
[0004] This vibration causes many negative experiences for users. From a comfort perspective, noticeable vibration can cause users to feel strong shaking in their hands or face during use, leading to a decreased user experience. Utility Model Content
[0005] This application aims to solve at least one of the technical problems existing in the related art. To this end, this application proposes a facial cleansing device.
[0006] The facial cleansing device according to the embodiments of this application includes:
[0007] A facial cleansing component includes a facial cleansing body and a foaming mechanism, wherein the facial cleansing body is provided with an installation port and the foaming mechanism is installed in the installation port;
[0008] A handheld assembly includes a connecting component and a handheld component. The connecting component is connected to the facial cleansing assembly, and the handheld component is connected to the connecting component. The connecting component has a liquid storage cavity, and the handheld component has an installation cavity.
[0009] A pump bracket, at least partially mounted in the mounting cavity;
[0010] The pump body is mounted on the pump bracket.
[0011] According to the embodiments of this application, the facial cleansing device has a pump body placed inside the mounting cavity of the handheld component, and the center of gravity of the facial cleansing device is close to the handheld component, so that the user can easily and comfortably hold the facial cleansing device. The pump bracket fixes the pump body, reducing the possibility of vibration of the pump body in the mounting cavity, so that the pump body can work stably and reduce the noise generated by the vibration of the pump body, providing the user with a quieter and more comfortable use environment.
[0012] According to one embodiment of this application, the pump bracket is provided with a plurality of first fixing structures on the side facing the connecting component, and the connecting component is provided with a corresponding second fixing structure, wherein the first fixing structures are fixedly connected to the second fixing structures.
[0013] According to one embodiment of this application, the pump bracket is provided with a plurality of third fixing structures facing the inner wall or bottom wall of the mounting cavity, and the inner wall or bottom wall of the mounting cavity is provided with a corresponding fourth fixing structure, and the third fixing structures are fixedly connected to the fourth fixing structures.
[0014] According to one embodiment of this application, the first fixing structure and the third fixing structure are disposed on opposite sides of the pump bracket.
[0015] According to one embodiment of this application, a battery is included. The pump bracket has a first receiving cavity and a second receiving cavity inside. The first receiving cavity and the second receiving cavity are arranged side by side. The first receiving cavity is used to install the pump body, and the second receiving cavity is used to install the battery. The battery is electrically connected to the pump body and the drive component of the facial cleansing assembly.
[0016] According to one embodiment of this application, the pump body is provided with a first interface and a second interface, the first interface and the second interface are located on the side facing the connecting component, the liquid storage chamber is connected to the first interface through a first pipe, and the second interface is connected to the foaming mechanism through a second pipe.
[0017] According to one embodiment of this application, the connecting component includes a liquid storage tank and a first connector. The liquid storage tank has a liquid storage cavity inside. The liquid storage tank and the first connector are smoothly connected to form the outer contour of the connecting component. The first connector is connected to the facial cleansing component, the liquid storage tank is connected to the first connector, and the handheld component is connected to the liquid storage tank.
[0018] According to one embodiment of this application, a facial cleansing body is included, a first facial cleansing component and a driving component. The first facial cleansing component is oscillatingly connected to the facial cleansing body, and the driving component is connected to the facial cleansing body and is adapted to drive the first facial cleansing component to oscillate relative to the facial cleansing body.
[0019] According to one embodiment of this application, the connecting component is hollow and provided with a clearance channel, the clearance channel being used to accommodate the driving component of the facial cleansing assembly.
[0020] According to one embodiment of this application, the facial cleansing component includes a first phototherapy component connected to the facial cleansing body. The first facial cleansing component is provided with a first light-transmitting hole, and the light from the first phototherapy component is adapted to shine on the user through the first light-transmitting hole.
[0021] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0023] Figure 1 This is an exploded structural diagram of the facial cleansing device provided in the embodiments of this application.
[0024] Figure 2 This is one of the structural schematic diagrams of the pump bracket provided in the embodiments of this application.
[0025] Figure 3 This is the second schematic diagram of the pump bracket provided in the embodiments of this application.
[0026] Figure 4 This is one of the structural schematic diagrams of the liquid storage tank provided in the embodiments of this application.
[0027] Figure 5 This is the second schematic diagram of the liquid storage tank provided in the embodiments of this application.
[0028] Figure 6 This is one of the structural schematic diagrams of the handheld component provided in the embodiments of this application.
[0029] Figure 7 This is the second structural schematic diagram of the handheld component provided in the embodiments of this application.
[0030] Figure 8 This is a schematic diagram of the structure of the facial cleansing device provided in the embodiments of this application.
[0031] Figure 9 This is one of the cross-sectional structural schematic diagrams of the facial cleansing device provided in the embodiments of this application.
[0032] Figure 10 This is the second cross-sectional structural schematic diagram of the facial cleansing device provided in the embodiments of this application.
[0033] Figure 11 This is a schematic diagram showing the angle between the swing axis of the facial cleansing component and the central axis of the handheld component of the facial cleansing device provided in this application embodiment.
[0034] Figure 12 This is a schematic diagram showing the included angle between the first end and the second end of the liquid storage tank of the facial cleansing device provided in this application embodiment.
[0035] Figure 13 This is a schematic diagram showing the included angle between the first end and the second end of the first connector of the facial cleansing device provided in this application embodiment.
[0036] Figure 14 This is a schematic diagram of the structure of the facial cleansing device provided in the embodiments of this application.
[0037] Figure 15 This is one of the cross-sectional structural schematic diagrams of the facial cleansing device provided in the embodiments of this application.
[0038] Figure 16 This is the second cross-sectional structural schematic diagram of the facial cleansing device provided in the embodiments of this application.
[0039] Figure 17 This is an exploded structural diagram of the facial cleansing device provided in the embodiments of this application.
[0040] Figure 18 This is a schematic diagram of the structure of the second facial cleansing component provided in the embodiments of this application.
[0041] Figure 19 This is a schematic diagram of the structure of the first facial cleansing component provided in the embodiments of this application.
[0042] Figure 20 This is a schematic diagram of the structure of the facial cleansing body provided in the embodiments of this application.
[0043] Figure label:
[0044] 100. Facial cleansing components;
[0045] 1100. Cleansing body; 1101. Mounting port; 1103. First through hole; 1104. Second through hole;
[0046] 1200, First cleansing component; 1202, First clearance hole; 1203, First light-transmitting hole; 1210, First body; 1220, First bristles;
[0047] 1300. Drive components;
[0048] 1400, First phototherapy component; 1401, Third clearance hole; 1410, First lamp post;
[0049] 1500, Second cleansing component; 1501, Second clearance hole; 1502, Second light-transmitting hole; 1503, Cleansing mounting cavity; 1510, Second main body; 1520, Second bristles;
[0050] 1600, Bubble-generating mechanism;
[0051] 1700, Second phototherapy component; 1710, Second lamp post;
[0052] 1800, First shielding cover;
[0053] 1900, Second cover;
[0054] 200. Handheld components;
[0055] 2100. Connecting component; 2101. Clearance passage; 2110. Liquid storage tank; 2111. Liquid storage cavity; 2112. Base plate; 2113. Side wall; 2114. Outer wall; 2115. Inner wall; 2118. Feed port; 2119. Liquid outlet; 2120. First connecting component; 2140. Liquid storage cover; 2150. Second fixing structure;
[0056] 2200, Handheld component; 2201, Mounting cavity; 2220, Fourth fixing structure;
[0057] 2300, Pump body; 2310, First interface; 2320, Second interface;
[0058] 2400, battery;
[0059] 300, Pump bracket; 301, First receiving cavity; 302, Second receiving cavity; 3100, First fixing structure; 3200, Third fixing structure; Detailed Implementation
[0060] The embodiments of this application will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this application, but should not be used to limit the scope of this application.
[0061] In the description of the embodiments of this application, it should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0062] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to fixed connections or detachable connections, wherein a fixed connection can include an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application based on the specific circumstances.
[0063] In the embodiments of this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0064] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the embodiments of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0065] The following is combined Figures 1-20 This invention describes a facial cleansing device.
[0066] Please refer to the facial cleansing device proposed in the embodiments of this application. Figures 1 to 7 The device includes: a facial cleansing component 100, comprising a facial cleansing body 1100 and a foaming mechanism 1600, wherein the facial cleansing body 1100 is provided with an installation port 1101 and the foaming mechanism 1600 is installed in the installation port 1101; a handheld component 200, comprising a connecting component 2100 and a handheld component 2200, wherein the connecting component 2100 is connected to the facial cleansing component 100 and the handheld component 2200 is connected to the connecting component 2100, wherein the connecting component 2100 is provided with a liquid storage chamber 2111 and the handheld component 2200 is provided with an installation cavity 2201; a pump bracket 300, wherein the pump bracket 300 is at least partially installed in the installation cavity 2201; and a pump body 2300, which is installed in the pump bracket 300.
[0067] Understandably, the facial cleansing component 100 is the core part of the facial cleansing device that enables its cleansing function. It includes the cleansing body 1100 and the foaming mechanism 1600. The cleansing body 1100, as the main structure of the facial cleansing component 100, provides a stable mounting base for the foaming mechanism 1600. A dedicated mounting port 1101 is provided on the cleansing body 1100, through which the foaming mechanism 1600 is securely mounted. The foaming mechanism 1600 can transform liquids such as cleansing liquids into fine foam. This foam has a larger surface area, allowing for more even coverage of the facial skin and deep cleaning of dirt and oil from pores. Compared to using liquid cleansing products directly, the cleansing effect is more significant, and it is gentler and more comfortable to use, without causing excessive irritation to the skin.
[0068] The handheld component 200 includes a connecting part 2100 and a handheld part 2200. The connecting part 2100 connects the facial cleansing component 100 and the handheld part 2200 to ensure the structural stability of the entire facial cleansing device. Furthermore, the connecting part 2100 has a liquid storage chamber 2111 inside, which can store a certain amount of facial cleansing liquid to provide a continuous liquid supply to the foaming mechanism 1600, ensuring that frequent addition of facial cleansing liquid is not required during use, thus facilitating user operation. The handheld part 2200 is the part directly held by the user, allowing the user to easily and comfortably hold the facial cleansing device. An installation cavity 2201 is provided inside the handheld part 2200, which provides space for the subsequent installation of other components.
[0069] The pump bracket 300 is at least partially installed within the mounting cavity 2201 of the handheld component 2200. The primary function of the pump bracket 300 is to secure the pump body 2300. The pump body 2300 is a key component of the facial cleansing device, enabling the circulation and foaming of the cleansing liquid. It extracts the cleansing liquid from the storage chamber 2111 and delivers it to the foaming mechanism 1600. During operation, the pump body 2300 generates vibrations. Without proper securing, these vibrations would be transmitted throughout the entire facial cleansing device. The securing function of the pump bracket 300 effectively reduces the likelihood of vibration within the mounting cavity 2201, ensuring stable operation of the pump body 2300 and reducing noise generated by its vibration. This not only improves the overall performance of the facial cleansing device and reduces vibration-induced noise, providing a quieter and more comfortable user environment, but also extends the service life of the pump body 2300 and other related components, reducing equipment maintenance costs.
[0070] According to one embodiment of this application, the pump bracket 300 is provided with a plurality of first fixing structures 3100 on the side facing the connecting component 2100, and the connecting component 2100 is provided with a corresponding second fixing structure 2150, wherein the first fixing structure 3100 is fixedly connected to the second fixing structure 2150.
[0071] Understandably, the first fixing structure 3100 can adopt different shapes and forms according to actual needs and design requirements, such as a snap-fit, a protrusion, or a threaded hole. Its design purpose is to achieve a tight fit with the corresponding second fixing structure 2150 on the connecting component 2100, thereby firmly fixing the pump bracket 300 to the connecting component 2100. The position and shape of the second fixing structure 2150 match the first fixing structure 3100. For example, if the first fixing structure 3100 is a snap-fit, then the second fixing structure 2150 is a corresponding slot; if the first fixing structure 3100 is a protrusion, the second fixing structure 2150 is a groove.
[0072] During actual installation, the pump bracket 300 is brought close to the connecting component 2100 to accurately align the first fixing structure 3100 with the second fixing structure 2150. Then, through a certain operation (such as pressing or rotating), the first fixing structure 3100 is fixedly connected to the second fixing structure 2150. This fixed connection method can withstand various forces generated by the pump body 2300 during operation, including vibration and impact, ensuring that the pump bracket 300 will not easily loosen or fall off.
[0073] According to one embodiment of this application, the pump bracket 300 is provided with a plurality of third fixing structures 3200 facing the inner wall 2115 or bottom wall of the mounting cavity 2201, and the inner wall 2115 or bottom wall of the mounting cavity 2201 is provided with a corresponding fourth fixing structure 2220, and the third fixing structure 3200 is fixedly connected to the fourth fixing structure 2220.
[0074] Understandably, the third fixing structure 3200 can adopt different shapes and forms according to actual needs and design requirements, such as snap-fit, protrusion, threaded hole, etc. Its design purpose is to achieve a tight fit with the corresponding fourth fixing structure 2220 on the inner wall 2115 or bottom wall of the mounting cavity 2201, thereby firmly fixing the pump bracket 300 to the inner wall 2115 or bottom wall of the mounting cavity 2201. The position and shape of the fourth fixing structure 2220 match the third fixing structure 3200. For example, if the third fixing structure 3200 is a snap-fit, then the fourth fixing structure 2220 is a corresponding slot; if the third fixing structure 3200 is a protrusion, the fourth fixing structure 2220 is a groove.
[0075] During actual installation, the pump bracket 300 is positioned close to the inner wall 2115 or bottom wall of the mounting cavity 2201, ensuring accurate alignment between the third fixing structure 3200 and the fourth fixing structure 2220. Then, through a specific operation (such as pressing or rotating), the third fixing structure 3200 is securely connected to the fourth fixing structure 2220. This secure connection method can withstand various forces generated by the pump body 2300 during operation, including vibration and impact, ensuring that the pump bracket 300 will not easily loosen or fall off.
[0076] In one embodiment, the number of first fixing structures 3100 is three.
[0077] In one embodiment, the number of third fixing structures 3200 is three.
[0078] According to one embodiment of this application, the first fixing structure 3100 and the third fixing structure 3200 are disposed on opposite sides of the pump bracket 300.
[0079] The first fixing structure 3100 is located on the side of the pump bracket 300 facing the connecting component 2100, and it fits tightly with the corresponding second fixing structure 2150 on the connecting component 2100. During installation, the pump bracket 300 is brought close to the connecting component 2100, so that the first fixing structure 3100 is accurately aligned with the second fixing structure 2150, and then the two are firmly connected together using a specific connection method (such as snap-fit connection, threaded connection, etc.). This connection on one side provides an upward support force for the pump bracket 300, ensuring that the pump bracket 300 will not fall downward in the vertical direction.
[0080] The third fixing structure 3200 is located on the other side of the pump bracket 300 facing the inner wall 2115 or bottom wall of the mounting cavity 2201, corresponding to the fourth fixing structure 2220 on the inner wall 2115 or bottom wall of the mounting cavity 2201. After the first fixing structure 3100 is connected to the connecting component 2100, the pump bracket 300 is placed into the mounting cavity 2201, aligning the third fixing structure 3200 with the fourth fixing structure 2220, and fixing them through the corresponding connection method. This connection on one side provides a downward fixing force to the pump bracket 300, which balances the upward supporting force generated by the first fixing structure 3100, working together to keep the pump bracket 300 stable in both the horizontal and vertical directions.
[0081] According to one embodiment of this application, a battery 2400 is included. A pump bracket 300 has a first receiving cavity 301 and a second receiving cavity 302 inside. The first receiving cavity 301 and the second receiving cavity 302 are arranged side by side. The first receiving cavity 301 is used to install the pump body 2300, and the second receiving cavity 302 is used to install the battery 2400. The battery 2400 is electrically connected to the pump body 2300 and the drive component 1300 of the facial cleansing assembly 100.
[0082] The first receiving cavity 301 provides a stable and safe installation environment for the pump body 2300. During installation, the pump body 2300 is accurately placed into the first receiving cavity 301 and securely fixed in the cavity using appropriate fixing methods (such as snap-fit connections, bolt connections, etc.). Thus, when the pump body 2300 is working, even if vibration and impact occur, it can remain relatively stable under the constraint of the first receiving cavity 301, and its normal operation will not be affected by shaking. This ensures that the facial cleanser can be stably and continuously delivered to the foaming mechanism 1600, providing users with a good facial cleansing experience.
[0083] The second receiving cavity 302 is used to install the battery 2400. The battery 2400 is the power supply center of the facial cleansing device, providing the electrical energy required for the operation of the pump body 2300 and the drive component 1300 of the facial cleansing assembly 100.
[0084] The battery 2400 is electrically connected to the pump body 2300 and the drive component 1300 of the facial cleansing assembly 100 via wires, forming a complete power supply and transmission system. When the user turns on the facial cleansing device, the battery 2400 begins to supply power to the pump body 2300 and the drive component 1300. Driven by electrical energy, the pump body 2300 begins to work, drawing the facial cleansing liquid from the reservoir 2111 and delivering it to the foaming mechanism 1600; the drive component 1300 of the facial cleansing assembly 100 also drives the facial cleansing brush head to rotate or vibrate under the action of electrical energy, thereby achieving the function of cleansing the skin.
[0085] According to one embodiment of this application, please refer to Figures 8 to 11The facial cleansing device includes a cleansing component 100 and a handheld component 200. The cleansing component 100 includes a cleansing body 1100 and a foaming mechanism 1600. The cleansing body 1100 has an installation port 1101; the foaming mechanism 1600 is installed in the installation port 1101. The handheld component 200 includes a connecting part 2100 and a handheld component 2200. The connecting part 2100 is connected to the cleansing component 100, and the handheld component 2200 is connected to the connecting part 2100. 2100 is provided with a liquid storage chamber 2111, and the handheld component 2200 is provided with a mounting cavity 2201. The mounting cavity 2201 is equipped with a pump body 2300. The pump body 2300 is provided with a first interface 2310 and a second interface 2320. The first interface 2310 and the second interface 2320 are located on the side facing the connecting component 2100. The liquid storage chamber 2111 is connected to the first interface 2310 through a first pipe, and the second interface 2320 is connected to the foaming mechanism 1600 through a second pipe.
[0086] According to the facial cleansing device of this application embodiment, the liquid storage chamber 2111 is disposed in the connecting component 2100, shortening the path between the liquid storage tank 2110 and the foaming mechanism 1600, thereby reducing foaming time and improving the user experience. Furthermore, placing the liquid storage chamber 2111 in the connecting component 2100 makes the center of gravity of the entire facial cleansing device closer to the cleansing component 100, i.e., the part held by the user during use. The first interface 2310 and the second interface 2320 of the pump body 2300 are both located on the side facing the connecting component 2100, allowing the first and second pipes to be directly and smoothly connected without additional bends or turns.
[0087] In traditional facial cleansing device designs, the liquid reservoir 2110 is typically located at the end of the handheld component 2200 furthest from the cleansing assembly 100, causing the liquid to travel a relatively long distance through tubing to reach the foaming mechanism 1600. This design places the liquid reservoir 2111 within the connecting component 2100, close to the cleansing assembly 100, significantly shortening the liquid flow path from the reservoir 2111 to the foaming mechanism 1600.
[0088] The facial cleansing device proposed in this invention aims to enhance the user's facial cleansing experience. The device mainly comprises two parts: a cleansing component 100 and a handheld component 200. The cleansing component 100, as the part that directly contacts the skin, is responsible for performing the cleansing task. The foaming mechanism 1600 is responsible for transforming the cleansing liquid in the reservoir 2111 into fine and rich foam to enhance the cleansing effect.
[0089] The handheld component 200 is the gripping and operating part of the facial cleansing device, consisting of a connecting component 2100 and a handheld component 2200. The connecting component 2100 not only acts as a bridge connecting the facial cleansing component 100 and the handheld component 2200, but also incorporates a liquid reservoir 2111 for storing cleansing liquid. Placing the liquid reservoir 2111 within the connecting component 2100 shifts the center of gravity of the entire facial cleansing device closer to the facial cleansing component 100, i.e., the part the user holds. This enhances the stability of the facial cleansing device during use, reduces the risk of wobbling or slipping due to instability, and improves safety and comfort.
[0090] The handheld component 2200 is equipped with components such as the pump body 2300. The pump body 2300 is a pressure-generating device that is connected to the liquid storage chamber 2111 and the foaming mechanism 1600 via two interfaces (i.e., the first interface 2310 and the second interface 2320), respectively. It is worth noting that both interfaces are located on the side facing the connecting component 2100. This layout allows the first and second pipelines to be directly and smoothly connected without additional bends or turns, thus simplifying the internal structure of the facial cleansing device.
[0091] It should be noted that the foaming mechanism 1600 is installed at the installation port 1101. Specifically, the foaming mechanism 1600 can be rotatably installed at the installation port 1101, or the foaming mechanism 1600 can be fixedly installed at the installation port 1101. No specific restrictions are made here.
[0092] According to one embodiment of this application, the connecting component 2100 includes a liquid storage tank 2110 and a first connector 2120. The liquid storage tank 2110 has a liquid storage cavity 2111 inside. The liquid storage tank 2110 and the first connector 2120 are smoothly connected to form the outer contour of the connecting component 2100. The first connector 2120 is connected to the facial cleansing component 100. The liquid storage tank 2110 is connected to the first connector 2120. The handheld component 2200 is connected to the liquid storage tank 2110.
[0093] Specifically, the first connector 2120 is directly connected to the facial cleansing component 100, ensuring that the facial cleansing component 100 can be securely installed on the connector 2100. The liquid reservoir 2110 is connected to the other end of the first connector 2120, forming the main body of the connector 2100. The handheld component 2200 is connected to the other side of the liquid reservoir 2110.
[0094] Understandably, the liquid reservoir 2110, as a key component for storing facial cleansing liquid, has an internal liquid storage chamber 2111 to hold sufficient cleansing liquid for user use. The first connector 2120 plays a crucial role in connecting the liquid reservoir 2110 and the facial cleansing component 100. The first connector 2120 and the liquid reservoir 2110 employ a smooth transition connection. This connection method not only makes the overall outline of the connecting component 2100 smoother and more aesthetically pleasing, but also effectively reduces stress concentration at the connection point, thereby enhancing the overall strength and stability of the connecting component 2100. Furthermore, the smooth transition connection facilitates the user's handling of the facial cleansing device.
[0095] According to one embodiment of this application, the connecting member 2100 is provided with a clearance channel 2101, which is used to accommodate the driving member 1300 of the facial cleansing component 100. The first connecting member 2120 is hollow to form a partial clearance channel 2101, and the liquid storage tank 2110 is hollow to form a partial clearance channel 2101.
[0096] By providing an avoidance channel 2101 in the connecting component 2100, the internal space of the connecting component 2100 can be fully utilized to avoid interference between the driving component 1300 of the facial cleansing assembly 100 and the connecting component 2100, thereby ensuring that the driving component 1300 of the facial cleansing assembly 100 can be installed smoothly and work normally.
[0097] Specifically, the clearance channel 2101 is formed by the hollow portion inside the first connector 2120 and the hollow portion inside the liquid reservoir 2110. The first connector 2120, acting as a bridge connecting the liquid reservoir 2110 and the facial cleansing component 100, has a hollow design that not only reduces weight but also provides sufficient installation space for the drive component 1300. The hollow design of the liquid reservoir 2110 further expands the spatial range of the clearance channel 2101, ensuring that the drive component 1300 can be completely accommodated inside the connector 2100.
[0098] During the operation of the facial cleansing device, the drive component 1300 is connected to the first cleansing component 1200 (mentioned later) of the facial cleansing assembly 100 through the clearance channel 2101, and drives it to perform reciprocating oscillating motion or rotational motion, thereby achieving the facial cleansing effect. The design of the clearance channel 2101 not only ensures the normal operation of the drive component 1300, but also improves the stability and durability of the facial cleansing device.
[0099] According to one embodiment of this application, the liquid storage tank 2110 has a ring structure, and a partial clearance channel 2101 is provided in the inner ring of the ring structure.
[0100] Understandably, the annular liquid storage tank 2110 makes full use of the space. By setting part of the clearance channel 2101 in the inner ring of the annular structure, we have successfully integrated the installation space of the drive component 1300 with the liquid storage space, making the structure of the entire facial cleansing device more compact and reasonable.
[0101] According to one embodiment of this application, the liquid storage tank 2110 has a notched annular structure, and a partial clearance channel 2101 is provided at the notch of the notched annular structure.
[0102] Understandably, the design of the notched annular structure allows the liquid storage tank 2110 to maintain the stability of the annular structure while also releasing some space through the notch, which facilitates the setting of the avoidance channel 2101.
[0103] In addition, the notched annular structure facilitates the demolding of the curved liquid storage tank 2110, thereby reducing manufacturing costs.
[0104] According to one embodiment of this application, the liquid storage tank 2110 includes a bottom plate 2112, an outer wall 2114, and an inner wall 2115. The outer wall 2114 and the inner wall 2115 are integrally connected. The bottom plate 2112 is detachably connected to the outer wall 2114 and the inner wall 2115. The bottom plate 2112, the outer wall 2114, and the inner wall 2115 form a liquid storage cavity 2111. The bottom plate 2112 is installed on the handheld component 2200. The outer wall 2114 forms part of the outer contour of the connecting component 2100. The side of the inner wall 2115 away from the outer wall 2114 forms part of the clearance channel 2101.
[0105] Understandably, the liquid storage chamber 2110 consists of three main parts: a base plate 2112, an outer wall 2114, and an inner wall 2115. The base plate 2112, serving as the bottom of the liquid storage chamber 2111, is detachably connected to the outer wall 2114 and the inner wall 2115. This design facilitates the cleaning and maintenance of the liquid storage chamber 2111. Simultaneously, the base plate 2112 also serves as a connection point to the handheld component 2200 or other components, ensuring the stability and reliability of the entire facial cleansing device structure.
[0106] The outer wall 2114 is the outer structure of the liquid storage chamber 2110. It not only serves to store liquid, but also acts as part of the connecting component 2100, connecting with the handheld component 2200 and the facial cleansing component 100, making the entire facial cleansing device more unified and coordinated in appearance.
[0107] The inner wall 2115 is the inner structure of the liquid storage tank 2110, opposite to the outer wall 2114. The design of the inner wall 2115 makes full use of the internal space of the liquid storage tank 2110, providing the necessary space for the clearance channel 2101. The clearance channel 2101 is located on the side of the inner wall 2115 away from the outer wall 2114, ensuring the smooth installation and operation of the facial cleansing component 100 drive unit 1300.
[0108] According to one embodiment of this application, the connecting component 2100 includes a liquid storage cap 2140, and an outer wall 2114 is provided with a feeding port 2118. The feeding port 2118 is connected to the liquid storage chamber 2111, and the liquid storage cap 2140 is openable and closable and connected to the feeding port 2118.
[0109] The filling port 2118 on the outer wall 2114 is connected to the liquid storage chamber 2111, allowing users to easily add facial cleanser or other liquids into the liquid storage chamber 2111. The liquid storage cap 2140 is designed to be openable and closable and connected to the filling port 2118. This design ensures the sealing of the liquid storage chamber 2111 when closed, preventing leakage of facial cleanser or other liquids.
[0110] According to one embodiment of this application, the base plate 2112 is provided with a liquid outlet 2119, which is connected to the first interface 2310 of the pump body 2300.
[0111] According to one embodiment of this application, the inner wall 2115 is a frosted inner wall, and the outer wall 2114 is a transparent outer wall.
[0112] According to one embodiment of this application, a sealing and waterproof component is provided between the inner wall 2115 and the bottom plate 2112, and / or, a sealing and waterproof component is provided between the outer wall 2114 and the bottom plate 2112.
[0113] According to one embodiment of this application, a battery 2400 is installed in the mounting cavity 2201. The battery 2400 and the pump body 2300 are arranged side by side. The battery 2400 is electrically connected to the pump body 2300 and the drive component 1300 of the facial cleansing assembly 100.
[0114] Understandably, the battery 2400 is installed within the mounting cavity 2201, positioned side-by-side with the pump body 2300. This layout makes the internal structure of the facial cleansing device more compact, reducing unnecessary space waste. The battery 2400 provides a stable and long-lasting power supply to the pump body 2300 and the facial cleansing component 100.
[0115] Specifically, the battery 2400 can be either a disposable battery 2400 or a rechargeable battery 2400.
[0116] According to an embodiment of this application, a facial cleansing device is provided. Please refer to... Figure 9 and Figure 11 The device includes a facial cleansing assembly 100 and a handheld assembly 200. The facial cleansing assembly 100 includes a facial cleansing body 1100, a first facial cleansing component 1200, and a driving component 1300. The first facial cleansing component 1200 is oscillatingly connected to the facial cleansing body 1100, and the driving component 1300 is connected to the facial cleansing body 1100 and adapted to drive the first facial cleansing component 1200 to oscillate relative to the facial cleansing body 1100. The handheld assembly 200 includes a connecting component 2100 and a handheld component 2200. The connecting component 2100 is connected to the facial cleansing assembly 100, and the handheld component 2200 is connected to the connecting component 2100. The handheld component 2200 and the connecting component 2100 are arranged at an angle. The angle between the oscillation axis of the facial cleansing assembly 100 and the central axis of the handheld component 2200 is in the range of 90° to 150°.
[0117] According to the embodiments of this application, the angle between the swing axis of the facial cleansing component 100 and the central axis of the handheld component 2200 is 90° to 150°. This design allows the user to hold the handheld component 2200 more naturally during use, while the facial cleansing component 100 can cover more areas of the face. Users do not need to frequently adjust their hand posture or the angle of the facial cleansing device, thereby freeing up the user's hands and improving the convenience of use.
[0118] Furthermore, since the angle between the swing axis of the facial cleansing component 100 and the central axis of the handheld component 2200 is 90° to 150°, when the facial cleansing device is placed stably on the washbasin, the user can directly bring their face close to the first facial cleansing component 1200 to clean their face, thus completely freeing their hands. At this time, the user can use their hands to do other things.
[0119] The facial cleansing component 100 is the main body of the facial cleansing device, including a cleansing body 1100, a first cleansing component 1200, and a drive component 1300. The cleansing body 1100 is the supporting structure of the facial cleansing device, the first cleansing component 1200 is the cleansing component that actually contacts the face, and the drive component 1300 is responsible for driving the first cleansing component 1200 to oscillate. The oscillation of the first cleansing component 1200 is a reciprocating rotational motion.
[0120] The handheld component 200 includes a connecting part 2100 and a handheld component 2200. The connecting part 2100 is used to connect the facial cleansing component 100 to the handheld component 2200, which is the part that the user actually holds. The geometric center line of the handheld component 2200 is its central axis.
[0121] Understandably, the reservoir 2110 is used to store the cleansing fluid, and it is located between the handheld part 2200 and the cleansing component 100 of the facial cleansing device. The reservoir 2110 has sufficient capacity and is airtight to ensure that the cleansing fluid does not leak or evaporate.
[0122] The angle between the central axis of the handheld component 2200 and the swing axis of the facial cleansing component 100 ranges from 90° to 150°. This design makes it easier for users to operate the facial cleansing device while reducing fatigue in the wrists and arms.
[0123] It should be noted that the angle between the swing axis of the facial cleansing component 100 and the central axis of the handheld component 2200 can be 90°, 100°, 110°, 120°, 130°, 140°, or 150°, and no specific limitation is made here.
[0124] According to one embodiment of this application, the connecting component 2100 includes a liquid reservoir 2110 and a first connector 2120. The first end of the liquid reservoir 2110 is connected to the handheld component 2200, and the second end of the liquid reservoir 2110 is connected to the first end of the first connector 2120. The second end of the first connector 2120 is connected to the facial cleansing component 100. The first end and the second end of the liquid reservoir 2110 are opposite to each other and are set at an angle. The first end and the second end of the first connector 2120 are opposite to each other.
[0125] The first and second ends of the liquid reservoir 2110 are angled to allow the facial cleansing device to better conform to the facial contours during use, thereby improving the cleansing effect. At the same time, the angle setting also takes into account the user's hand comfort, reducing fatigue during prolonged use.
[0126] The first connector 2120 is a component that connects the liquid reservoir 2110 and the facial cleansing assembly 100. It ensures that other components remain stable during the oscillation of the facial cleansing assembly 100.
[0127] According to one embodiment of this application, please refer to Figure 12 The angle between the first end and the second end of the liquid storage tank 2110 is 20° to 60°.
[0128] It should be noted that the included angle between the first end and the second end of the liquid storage tank 2110 can be 20°, 30°, 40°, 50°, or 60°, and no specific limitation is made here.
[0129] According to one embodiment of this application, the liquid storage tank 2110 has a liquid storage cavity 2111 inside. The liquid storage tank 2110 includes a bottom plate 2112 and a side wall 2113, which form the liquid storage cavity 2111. The bottom plate 2112 is located at the first end of the liquid storage tank 2110, and the side wall 2113 is perpendicular to the bottom plate 2112. The side wall 2113 has a distal side and a proximal side. The position where the distance between the first end and the second end of the liquid storage tank 2110 is the smallest is the proximal side of the liquid storage tank 2110, and the position where the distance between the first end and the second end of the liquid storage tank 2110 is the largest is the distal side of the liquid storage tank 2110. The bottom plate 2112 has a liquid outlet 2119, which is located on the side of the bottom plate 2112 near the distal side.
[0130] The liquid storage tank 2110 has a liquid storage cavity 2111 inside for storing cleaning fluid. The liquid storage cavity 2111 is formed by a bottom plate 2112 and a side wall 2113, creating a closed liquid storage space. The side wall 2113 is located at the first end of the liquid storage tank 2110, serving as the bottom support for the liquid storage cavity 2111. The side wall 2113 is perpendicular to the bottom plate 2112, forming the liquid storage cavity 2111 around the bottom plate 2112. The proximal side refers to the position where the distance between the first and second ends of the liquid storage tank 2110 is the smallest. The distal side refers to the position where the distance between the first and second ends of the liquid storage tank 2110 is larger. In the embodiments of this application, the liquid storage cavity 2111 forms a structure similar to a beveled cylinder, with the proximal side being the side with a shorter generatrix of the beveled cylinder and the distal side being the side with a longer generatrix of the beveled cylinder.
[0131] The near-side and far-side design of the liquid storage chamber 2110 allows the liquid storage cavity 2111 to store more cleaning fluid within a limited space, improving space utilization. The liquid outlet 2119 is located on the far-side side of the base plate 2112, which reduces the possibility of the liquid outlet 2119 being blocked, ensuring that the facial cleansing component 100 always receives sufficient cleaning fluid during the cleaning process, thereby improving the cleaning effect.
[0132] According to one embodiment of this application, the connecting component 2100 includes a liquid storage cap 2140, the liquid storage chamber 2110 is provided with a feeding port 2118, the feeding port 2118 is connected to the liquid storage cavity 2111, the feeding port 2118 is located on the side of the side wall 2113 near the far side, and the liquid storage cap 2140 is openable and closable connected to the feeding port 2118.
[0133] The main function of the liquid reservoir cap 2140 is to seal the filling port 2118 of the liquid reservoir 2110 to prevent cleaning fluid leakage. At the same time, the liquid reservoir cap 2140 also makes it easy for the user to open it to add cleaning fluid. The filling port 2118 is located on the side wall 2113 of the liquid reservoir 2110 near the far side. This design allows the user to easily add cleaning fluid into the liquid reservoir 2111 without tilting the liquid reservoir 2110.
[0134] According to one embodiment of this application, the connecting component 2100 is provided with a clearance channel 2101 for accommodating the driving component 1300. The first connecting component 2120 is hollow to form a partial clearance channel 2101. The side wall 2113 includes an outer wall 2114 and an inner wall 2115, which are integrally connected. The bottom plate 2112 is detachably connected to the outer wall 2114 and the inner wall 2115. The bottom plate 2112, the outer wall 2114, and the inner wall 2115 form a liquid storage cavity 2111. The side of the inner wall 2115 facing away from the outer wall 2114 forms a partial clearance channel 2101.
[0135] The main function of the clearance channel 2101 is to provide sufficient space to accommodate the drive component 1300 of the facial cleansing component 100 (such as a motor, transmission mechanism, etc.), thereby avoiding interference or collision when the drive component 1300 drives the first facial cleansing component 1200 to swing.
[0136] The first connector 2120 serves to connect the liquid storage tank 2110 and the facial cleansing component 100, ensuring the overall structural stability and reliable operation of the facial cleansing device. Furthermore, the first connector 2120 is hollow inside, forming a partial clearance channel 2101.
[0137] The sidewall 2113 includes an outer wall 2114 and an inner wall 2115, which are integrally connected to form the side boundary of the liquid storage cavity 2111. The outer wall 2114 is in contact with other components of the facial cleansing device (such as the outer shell) and serves to support and protect the liquid storage cavity 2111. The inner wall 2115 is away from the outer wall 2114 and extends into the liquid storage cavity 2111, forming part of the clearance channel 2101.
[0138] According to one embodiment of this application, the liquid storage tank 2110 and the first connector 2120 are smoothly connected to form the outer contour of the connecting member 2100.
[0139] Specifically, the first connector 2120 is directly connected to the facial cleansing component 100, ensuring that the facial cleansing component 100 can be securely installed on the connector 2100. The liquid reservoir 2110 is connected to the other end of the first connector 2120, forming the main body of the connector 2100. The handheld component 2200 is connected to the other side of the liquid reservoir 2110.
[0140] Understandably, the liquid reservoir 2110, as a key component for storing facial cleansing liquid, has an internal liquid storage chamber 2111 to hold sufficient cleansing liquid for user use. The first connector 2120 plays a crucial role in connecting the liquid reservoir 2110 and the facial cleansing component 100. The first connector 2120 and the liquid reservoir 2110 employ a smooth transition connection. This connection method not only makes the overall outline of the connecting component 2100 smoother and more aesthetically pleasing, but also effectively reduces stress concentration at the connection point, thereby enhancing the overall strength and stability of the connecting component 2100. Furthermore, the smooth transition connection facilitates the user's handling of the facial cleansing device.
[0141] According to one embodiment of this application, please refer to Figure 13 The included angle between the first end of the first connector 2120 and the second end of the first connector 2120 is 10° to 60°.
[0142] It should be noted that the included angle between the first end of the first connector 2120 and the second end of the first connector 2120 can be 20°, 30°, 40°, 50°, or 60°, and no specific limitation is made here.
[0143] According to one embodiment of this application, the first connector 2120 includes a narrowed section and a widened section, the narrowed section being connected to the widened section, the narrowed section being connected to the liquid storage tank 2110, and the widened section being connected to the facial cleansing component 100.
[0144] In one embodiment, the constriction section and the flaring section are integrally formed, which can be achieved through injection molding, stamping, or other methods.
[0145] Understandably, the structure, which is wider on both sides and narrower in the middle, created by the constricted and expanded sections, makes it easier for users to clean their faces using the facial cleansing component 100.
[0146] According to one embodiment of this application, a facial cleansing body 1100, a first facial cleansing component 1200, and a driving component 1300 are included. The first facial cleansing component 1200 is oscillatingly connected to the facial cleansing body 1100, and the driving component 1300 is connected to the facial cleansing body 1100 and is adapted to drive the first facial cleansing component 1200 to oscillate relative to the facial cleansing body 1100.
[0147] According to the embodiments of this application, the facial cleansing component 100 combines two motion modes: the swinging motion of the first facial cleansing component 1200 and the vibration of the second facial cleansing component 1500, thereby diversifying and increasing the efficiency of facial cleansing methods and improving the user experience.
[0148] Understandably, the first cleansing component 1200 is oscillatingly connected to the cleansing body 1100, and can be connected via a mechanism such as a pivot. Through its oscillating motion, the first cleansing component 1200 can more effectively remove dirt and oil from the skin's surface while reducing friction damage. The second cleansing component 1500 is fixedly connected to the cleansing body 1100 and will not move with the oscillating motion of the first cleansing component 1200. Through vibration, the second cleansing component 1500 can effectively remove dirt and oil from the skin's surface while also reducing friction damage.
[0149] Specifically, when a user places the cleansing component on the facial skin that needs to be cleaned, the first cleansing component 1200 can clean the skin located in the middle of the cleansing component 100 by oscillating, while the second cleansing component 1500 can clean the skin at the edges by vibrating.
[0150] According to one embodiment of this application, please refer to Figures 14 to 20 The facial cleansing component 100 includes a facial cleansing body 1100, a first facial cleansing component 1200, a second facial cleansing component 1500, a driving component 1300, a first phototherapy component 1400, and a second phototherapy component 1700. The first facial cleansing component 1200 is connected to the facial cleansing body 1100; the second facial cleansing component 1500 is connected to the facial cleansing body 1100 and is disposed between the facial cleansing body 1100 and the first facial cleansing component 1200, with the first facial cleansing component 1200 located in the middle of the second facial cleansing component 1500; the driving component 1300 is connected to the facial cleansing body 1100. 00, the driving component 1300 is adapted to drive the first facial cleansing component 1200 to swing relative to the facial cleansing body 1100; the first phototherapy component 1400 is connected to the facial cleansing body 1100, the first facial cleansing component 1200 is provided with a first light-transmitting hole 1203, and the light from the first phototherapy component 1400 is adapted to shine on the user through the first light-transmitting hole 1203; the second phototherapy component 1700 is connected to the facial cleansing body 1100, the second facial cleansing component 1500 is provided with a second light-transmitting hole 1502, and the light from the second phototherapy component 1700 is adapted to shine on the user through the second light-transmitting hole 1502.
[0151] The facial cleansing component 100 according to the embodiments of this application combines phototherapy and physical massage to enhance the user's facial cleansing experience.
[0152] The main body of the facial cleanser, 1100, is responsible for connecting and supporting other components.
[0153] The first cleansing component 1200 is connected to the cleansing body 1100 and is located in the middle of the second cleansing component 1500. The first cleansing component 1200 may be made of a soft and elastic material to ensure that it will not cause any damage to the user's skin during the cleansing process.
[0154] The second cleansing component 1500 is connected to the cleansing body 1100 and is located between the cleansing body 1100 and the first cleansing component 1200. The second cleansing component 1500 has a wide coverage area, which can improve cleaning efficiency. At the same time, it can also support the first cleansing component 1200 and distribute pressure, ensuring the comfort and stability of the entire cleansing process.
[0155] The drive component 1300 is connected to the cleansing body 1100 and is responsible for driving the first cleansing component 1200 to oscillate relative to the cleansing body 1100. This oscillation design not only enhances the cleansing effect but also simulates the feeling of a human hand massage, allowing users to enjoy a more comfortable cleansing experience during use.
[0156] The first phototherapy component 1400 and the second phototherapy component 1700 are respectively connected to the facial cleansing body 1100, and emit light to the user's face through the first light-transmitting hole 1203 and the second light-transmitting hole 1502 provided on the first facial cleansing component 1200 and the second facial cleansing component 1500. The phototherapy components can emit light of specific wavelengths to perform phototherapy treatment on the skin. This treatment method can improve skin condition, such as reducing acne and fading pigmentation, allowing users to enjoy beauty and skincare effects while cleansing.
[0157] According to one embodiment of this application, the second facial cleansing component 1500 has a recessed facial cleansing mounting cavity 1503 in the middle, the first facial cleansing component 1200 is disposed in the facial cleansing mounting cavity 1503, the first facial cleansing component 1200 is adapted to swing within the facial cleansing mounting cavity 1503, the facial cleansing mounting cavity 1503 is provided with a second clearance hole 1501, and the first facial cleansing component 1200 is adapted to connect to the output shaft of the drive component 1300 through the second clearance hole 1501.
[0158] The facial cleansing mounting cavity 1503 provides a stable swing space for the first facial cleansing component 1200. Inside the facial cleansing mounting cavity 1503, the first facial cleansing component 1200 is connected to the output shaft of the drive component 1300 through the second clearance hole 1501, which ensures that the first facial cleansing component 1200 can swing smoothly and avoids interference with the facial cleansing mounting cavity 1503 or other components.
[0159] According to one embodiment of this application, the first phototherapy component 1400 is disposed on the side of the facial cleansing body 1100 opposite to the second facial cleansing component 1500, and the first phototherapy component 1400 is provided with a third clearance hole 1401, which is used to avoid the output shaft of the drive component 1300.
[0160] In this embodiment, the first phototherapy component 1400 is located on the side of the facial cleansing body 1100 opposite to the second facial cleansing component 1500. This avoids direct interference between the phototherapy component and the facial cleansing component and also ensures that the phototherapy light can be evenly irradiated onto the user's face.
[0161] To ensure that the output shaft of the drive component 1300 can be smoothly connected to the first facial cleansing component 1200 without affecting the normal operation of the first phototherapy component 1400, this embodiment provides a third clearance hole 1401 on the first phototherapy component 1400. This not only meets the clearance requirements but also maximizes the use of the internal space of the facial cleansing body 1100. The positional relationship between the various components is more reasonable, and the cooperation between functions is closer, thereby improving the cleaning effect and user experience of the entire facial cleansing assembly 100.
[0162] According to one embodiment of this application, the facial cleansing body 1100 is provided with a first through hole 1103, and the first phototherapy component 1400 is provided with a plurality of first lamp posts 1410, the first lamp posts 1410 passing through the first through hole 1103.
[0163] It should be noted that the number and distribution of the first through holes 1103 are not specifically limited here, as long as the number and distribution of the first through holes 1103 correspond to the number and distribution of the first lamp posts 1410.
[0164] In this embodiment, the shape and size of the first through hole 1103 match the first lamp post 1410 to ensure that the first lamp post 1410 can be smoothly inserted therein and form a good seal and fixation with the facial cleansing body 1100. The first lamp post 1410 can be made of a high-transmittance, high-strength material, such as glass or plastic, and has LED beads or other light sources inside.
[0165] According to one embodiment of this application, a first cover 1800 is included, the first cover 1800 being adapted to cover the first through hole 1103, and the first cover 1800 being a transparent cover.
[0166] Understandably, the first shielding cover 1800 not only protects the first through-hole 1103 and the first lamp post 1410, but also prevents the user from accidentally touching the first lamp post 1410 during use, ensuring safety. The transparent material allows light to pass through the shielding cover smoothly without affecting phototherapy. Specifically, the first shielding cover 1800 can be made of a transparent, high-transmittance material, such as glass or transparent plastic, ensuring smooth light transmission and resisting aging and deformation over long-term use.
[0167] The shape and size of the first cover 1800 match the first through hole 1103, allowing it to fit tightly over the first through hole 1103, forming an effective seal and fixation. Simultaneously, the edges of the cover can be designed with appropriate sealing strips or sealant to enhance the sealing effect and prevent moisture, dust, and other impurities from entering the interior of the first through hole 1103.
[0168] According to one embodiment of this application, the second phototherapy component 1700 is disposed on the outer periphery of the facial cleansing mounting cavity 1503, the facial cleansing body 1100 is provided with a second through hole 1104, and the second phototherapy component 1700 is provided with a plurality of second lamp posts 1710, the second lamp posts 1710 passing through the second through hole 1104.
[0169] The second phototherapy component 1700 is disposed on the outer periphery of the cleansing mounting cavity 1503, improving the phototherapy effect of the second cleansing component 1500. The second through hole 1104 is located on the cleansing body 1100, corresponding to the second lamp post 1710 of the second phototherapy component 1700. It should be noted that the number and distribution of the second through holes 1104 are not specifically limited here, as long as the number and distribution of the second through holes 1104 correspond to the number and distribution of the second lamp posts 1710.
[0170] In this embodiment, the shape and size of the second through hole 1104 match the second lamp post 1710 to ensure that the second lamp post 1710 can be smoothly inserted therein and form a good seal and fixation with the facial cleansing body 1100. The second lamp post 1710 can be made of a high-transmittance, high-strength material, such as glass or plastic, and has LED beads or other light sources inside.
[0171] According to one embodiment of this application, a second cover 1900 is included, the second cover 1900 is disposed over the second through hole 1104, and the second cover 1900 is a transparent cover.
[0172] Understandably, the second shielding cover 1900 not only protects the second through-hole 1104 and the second lamp post 1710, but also prevents the user from accidentally touching the second lamp post 1710 during use, ensuring safety. The transparent material allows light to pass through the shielding cover smoothly without affecting phototherapy. Specifically, the second shielding cover 1900 can be made of transparent, high-transmittance materials, such as glass or transparent plastic, ensuring smooth light transmission and resisting aging and deformation over long-term use.
[0173] The shape and size of the second cover 1900 match the second through hole 1104, allowing it to fit tightly over the second through hole 1104, forming an effective seal and fixation. Simultaneously, the edges of the cover can be designed with appropriate sealing strips or sealant to enhance the sealing effect and prevent moisture, dust, and other impurities from entering the interior of the second through hole 1104.
[0174] According to one embodiment of this application, the first facial cleansing component 1200 includes a first body 1210 and a first bristle 1220, the first bristle 1220 being disposed on the first body 1210; the second facial cleansing component 1500 includes a second body 1510 and a second bristle 1520, the second body 1510 being mounted on the facial cleansing body 1100, the second bristle 1520 being disposed on the second body 1510, and the second bristle 1520 being disposed around the first facial cleansing component 1200.
[0175] Understandably, the second cleansing component 1500 includes a second body 1510 and a second brush bristle 1520. The second body 1510 is mounted on the cleansing body 1100. The second brush bristle 1520 is disposed on the second body 1510 and is made of a soft and skin-friendly material, such as fine nylon fibers or natural plant fibers. The second brush bristle 1520 surrounds the first cleansing component 1200. This design ensures that the facial skin can be brushed from different directions during the cleansing process, thereby improving the thoroughness and evenness of the cleansing. The second body 1510 is provided with a second clearance hole 1501 to allow the foaming mechanism 1600 to pass smoothly.
[0176] In one embodiment, the second body 1510 and the second bristles 1520 are integrally formed, which can be achieved by injection molding, stamping or other methods.
[0177] Understandably, the first facial cleansing component 1200 includes a first body 1210 and a first bristle 1220. The first body 1210 is pivotally connected to the facial cleansing body 1100, and a first clearance hole 1202 is located on the first body 1210. The first bristle 1220 is disposed on the first body 1210, and the first bristle 1220 may be made of a soft and skin-friendly material, such as fine nylon fibers or natural plant fibers, to ensure that it will not cause irritation or damage to the skin during the cleansing process.
[0178] In one embodiment, the first body 1210 and the first bristles 1220 are integrally formed, which can be achieved by injection molding, stamping or other methods.
[0179] According to one embodiment of this application, the cleansing body 1100 includes a foaming mechanism 1600, the cleansing body 1100 is provided with an installation port 1101, the first cleansing component 1200 is provided with a first clearance hole 1202, the second cleansing component 1500 is provided with a second clearance hole 1501, the foaming mechanism 1600 is sequentially disposed through the installation port 1101, the first clearance hole 1202 and the second clearance hole 1501 and connected to the first cleansing component 1200, and the driving component 1300 is adapted to drive the foaming mechanism 1600 to swing so as to drive the first cleansing component 1200 to swing relative to the cleansing body 1100.
[0180] According to the facial cleansing component 100 of the present application embodiment, the foaming mechanism 1600 passes through the mounting port 1101, the first clearance hole 1202 and the second clearance hole 1501 in sequence and acts directly on the first facial cleansing component 1200 to ensure rich and evenly distributed foam and improve cleaning efficiency. The oscillation of the first facial cleansing component 1200 simulates the effect of human hand massage, which can increase the comfort of the facial cleansing process.
[0181] Understandably, the cleansing body 1100 is the main support structure of the cleansing component 100. The cleansing body 1100 can be made of sturdy and durable materials to ensure stability under long-term use.
[0182] The foaming mechanism 1600 is a component that generates foam. The foaming mechanism 1600 is connected to the facial cleansing body 1100. The foaming mechanism 1600 can pass through the mounting port 1101 of the facial cleansing body 1100, the first clearance hole 1202 of the first facial cleansing component 1200, and the second clearance hole 1501 of the second facial cleansing component 1500 in sequence, ensuring that the foam can directly act on the first facial cleansing component 1200 and improve cleaning efficiency.
[0183] The first cleansing component 1200 is a cleansing component that is oscillatingly connected to the cleansing body 1100 and is used for direct contact with the face for cleansing. The first cleansing component 1200 can be made of a soft and skin-friendly material. This oscillating design increases flexibility during the cleansing process and better adapts to different facial contours. The first clearance hole 1202 allows the foaming mechanism 1600 to pass through smoothly while ensuring that the first cleansing component 1200 is not obstructed during oscillation.
[0184] The second cleansing component 1500 is connected to the cleansing body 1100 and located between the cleansing body 1100 and the first cleansing component 1200. It is used to increase the cleansing area and can be made of a soft and skin-friendly material. Similarly, the second clearance hole 1501 allows the foaming mechanism 1600 to pass through smoothly, ensuring that the first cleansing component 1200 is not obstructed during its oscillation.
[0185] The drive component 1300 is connected to the facial cleansing body 1100 and is used to drive the first facial cleansing component 1200 to oscillate relative to the second facial cleansing component 1500. This oscillating motion can simulate the effect of human hand massage, improving the comfort and cleansing effect of the facial cleansing process. The drive component 1300 is a component used to drive the movement of the facial cleansing components, such as a motor, transmission mechanism, etc.
[0186] The first facial cleansing component 1200 is directly connected to the foaming mechanism 1600, so their oscillation paths will be consistent, ensuring that the foam can be evenly distributed on the first facial cleansing component 1200 during the cleansing process and that the face can be thoroughly cleansed.
[0187] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A facial cleansing device, characterized in that, include: A facial cleansing assembly (100) includes a facial cleansing body (1100) and a foaming mechanism (1600). The facial cleansing body (1100) is provided with an installation port (1101), and the foaming mechanism (1600) is installed in the installation port (1101). A handheld component (200) includes a connecting component (2100) and a handheld component (2200). The connecting component (2100) is connected to the facial cleansing component (100), and the handheld component (2200) is connected to the connecting component (2100). The connecting component (2100) has a liquid storage cavity (2111), and the handheld component (2200) has an installation cavity (2201). Pump bracket (300), which is at least partially mounted in the mounting cavity (2201); The pump body (2300) is mounted on the pump bracket (300).
2. The facial cleansing device according to claim 1, characterized in that, The pump bracket (300) is provided with a plurality of first fixing structures (3100) on the side facing the connecting component (2100), and the connecting component (2100) is provided with a corresponding second fixing structure (2150). The first fixing structure (3100) is fixedly connected to the second fixing structure (2150).
3. The facial cleansing device according to claim 2, characterized in that, The pump bracket (300) is provided with a plurality of third fixing structures (3200) facing the inner wall (2115) or bottom wall of the mounting cavity (2201), and the inner wall (2115) or bottom wall of the mounting cavity (2201) is provided with a corresponding fourth fixing structure (2220), and the third fixing structure (3200) is fixedly connected to the fourth fixing structure (2220).
4. The facial cleansing device according to claim 3, characterized in that, The first fixing structure (3100) and the third fixing structure (3200) are located on opposite sides of the pump bracket (300).
5. The facial cleansing device according to claim 1, characterized in that, Includes a battery (2400), and the pump bracket (300) has a first receiving cavity (301) and a second receiving cavity (302) inside. The first receiving cavity (301) and the second receiving cavity (302) are arranged side by side. The first receiving cavity (301) is used to install the pump body (2300), and the second receiving cavity (302) is used to install the battery (2400). The battery (2400) is electrically connected to the pump body (2300) and the drive component (1300) of the facial cleansing component (100).
6. The facial cleansing device according to claim 1, characterized in that, The pump body (2300) is provided with a first interface (2310) and a second interface (2320). The first interface (2310) and the second interface (2320) are located on the side facing the connecting component (2100). The liquid storage chamber (2111) is connected to the first interface (2310) through a first pipeline, and the second interface (2320) is connected to the foaming mechanism (1600) through a second pipeline.
7. The facial cleansing device according to claim 6, characterized in that, The connecting component (2100) includes a liquid storage tank (2110) and a first connector (2120). The liquid storage tank (2110) has a liquid storage cavity (2111) inside. The liquid storage tank (2110) and the first connector (2120) are smoothly connected to form the outer contour of the connecting component (2100). The first connector (2120) is connected to the facial cleansing component (100). The liquid storage tank (2110) is connected to the first connector (2120). The handheld component (2200) is connected to the liquid storage tank (2110).
8. The facial cleansing device according to claim 1, characterized in that, The device includes a facial cleansing body (1100), a first facial cleansing component (1200), and a driving component (1300). The first facial cleansing component (1200) is oscillatingly connected to the facial cleansing body (1100), and the driving component (1300) is connected to the facial cleansing body (1100) and is adapted to drive the first facial cleansing component (1200) to oscillate relative to the facial cleansing body (1100).
9. The facial cleansing device according to claim 8, characterized in that, The connecting component (2100) is hollow and has a clearance channel (2101) for accommodating the drive component (1300) of the facial cleansing component (100).
10. The facial cleansing device according to claim 8, characterized in that, The facial cleansing component (100) includes a first phototherapy component (1400), which is connected to the facial cleansing body (1100). The first facial cleansing component (1200) is provided with a first light-transmitting hole (1203), and the light from the first phototherapy component (1400) is suitable for shining on the user through the first light-transmitting hole (1203).