Face cleaning assembly and face cleaning instrument

By designing the foaming mechanism and driving components in the cleansing component to swing synchronously, combined with soft bristles and foam cleaning, the problem of insufficient cleaning effect of existing cleansing devices is solved, and a more efficient and comfortable skin cleansing effect is achieved.

CN120788431APending Publication Date: 2025-10-17GUANGDONG NEWDERMO BIOMEDICAL TECH CO LTD
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Patent Information

Application Number
CN202511027553.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

Existing facial cleansing devices have shortcomings in their cleaning effects. They mainly rely on the physical friction of the bristles or sponges, and the cleaning method is single, which cannot meet consumers' high demand for deep skin cleansing.

Method used

A facial cleansing component is designed, including a facial cleansing body, a foaming mechanism, a first facial cleansing component and a driving component. The driving component drives the foaming mechanism and the first facial cleansing component to swing relative to the facial cleansing body, thereby achieving synchronous swing of the foaming mechanism and the first facial cleansing component, and combining soft bristles and foam cleaning to simulate the massage effect of human hands.

Benefits of technology

It improves the efficiency and convenience of cleansing, increases the depth and comfort of cleansing, and achieves a more comprehensive skin cleansing effect.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120788431A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of beauty equipment, and provides a face cleaning assembly and a face cleaning instrument. The face cleaning assembly comprises a face cleaning main body, a bubble outlet mechanism, a first face cleaning part and a driving part, and the face cleaning main body is provided with a mounting opening; the bubble discharging mechanism is connected to the face cleaning main body; the first face cleaning part is connected to the face cleaning main body in a swinging manner, the first face cleaning part is connected to the foam discharging mechanism, the first face cleaning part is provided with a first avoiding hole, and the foam discharging mechanism sequentially penetrates through the mounting opening and the first avoiding hole; the driving part is connected to the face cleaning body, an output shaft of the driving part is connected to the bubble outlet mechanism, and the driving part is suitable for driving the bubble outlet mechanism to swing so as to drive the first face cleaning part to swing relative to the face cleaning body. According to the face cleaning assembly, the driving part drives the foam outlet mechanism to swing so as to drive the first face cleaning part to swing relative to the face cleaning body, the swing amplitude of the foam outlet mechanism and the swing amplitude of the first face cleaning part can be consistent in the rotating process, and therefore foam outlet in the swing process is achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cosmetic devices, in particular to a cleansing assembly and a cleansing device. BACKGROUND

[0002] With the increasing progress of cosmetic devices, cleansing devices as a modern skin care product have rapidly risen in the market in recent years and become a new darling of the beauty industry. However, the existing cleansing devices still have some deficiencies in cleaning effect. Traditional cleansing devices such as manual cleansing brushes or simple vibrating cleansing devices have relatively single cleaning methods, mainly relying on the physical friction of bristles or sponges to remove dirt, and the cleaning effect is single and inconvenient to use.

[0003] Therefore, the existing cleansing devices still need to be improved in cleaning effect. The market needs a cleansing device that can more efficiently and thoroughly clean the deep layers of the skin to meet the high demand of consumers for skin cleaning and beauty. SUMMARY

[0004] The present application aims to at least solve one of the technical problems in the related art. To this end, the present application proposes a cleansing assembly.

[0005] The present application also proposes a cleansing device.

[0006] According to the cleansing assembly proposed by the first aspect of the present application, comprising: a cleansing body provided with a mounting port; a bubble generating mechanism connected to the cleansing body; a first cleansing component, the first cleansing component is swingably connected to the cleansing body, the first cleansing component is connected to the bubble generating mechanism, the first cleansing component is provided with a first avoiding hole, and the bubble generating mechanism is sequentially arranged in the mounting port and the first avoiding hole; a driving component connected to the cleansing body, an output shaft of the driving component is connected to the bubble generating mechanism, and the driving component is adapted to drive the bubble generating mechanism to swing to drive the first cleansing component to swing relative to the cleansing body.

[0007] According to the cleansing assembly of the present application, the driving component drives the bubble generating mechanism to swing to drive the first cleansing component to swing relative to the cleansing body, so that the swing amplitude of the bubble generating mechanism and the first cleansing component is consistent during rotation, thereby realizing bubble generation during swinging.

[0008] According to one embodiment of the present application, the first cleansing component includes a first body and a third body, the first body is provided with a plurality of bristles, the first body is connected to the third body, the third body is provided with a mounting groove along the edge of the first avoiding hole, and the bubble generating mechanism is fixedly installed in the mounting groove.

[0009] According to one embodiment of the present application, the shape of the installation slot is one of a triangle, a quadrilateral, a pentagon, and a hexagon, and the bubble generating mechanism is arranged corresponding to the position of the installation slot.

[0010] According to one embodiment of the present application, the third body is provided with a plurality of elastic buckles, the elastic buckles are arranged at the edges of the installation port, and the elastic buckles and the installation slot form the limiting structure of the bubble generating mechanism.

[0011] According to one embodiment of the present application, one of the installation hole and the installation column is arranged on the side of the third body facing the first body, and the other of the installation column and the installation hole is arranged on the side of the first body facing the third body.

[0012] According to one embodiment of the second aspect of the present application, a facial cleaning instrument comprises: The facial cleaning assembly described above; A handheld assembly connected to the facial cleaning assembly.

[0013] According to one embodiment of the present application, the handheld assembly comprises a connecting part and a handheld part, the connecting part is connected to the facial cleaning assembly, the handheld part is connected to the connecting part, the connecting part is provided with a liquid storage cavity, the handheld part is provided with an installation cavity, a pump body is installed in the installation cavity, the pump body is provided with a first interface and a second interface, the first interface and the second interface are arranged on the side facing the connecting part, the liquid storage cavity is connected to the first interface through a first pipeline, and the second interface is connected to the installation port through a second pipeline.

[0014] According to one embodiment of the present application, the connecting part comprises a liquid storage bin and a first connecting piece, the first connecting piece is connected to the facial cleaning assembly, the liquid storage bin is connected to the first connecting piece, and the handheld part is connected to the liquid storage bin, the connecting part is provided with an avoiding channel, the avoiding channel is used for accommodating the driving part, the first connecting piece is internally hollow to form part of the avoiding channel, and the liquid storage bin is hollow to form part of the avoiding channel.

[0015] According to one embodiment of the present application, the handheld part and the connecting part are arranged at an angle; The included angle between the swing axis of the facial cleaning assembly and the central axis of the handheld part ranges from 90° to 120°.

[0016] According to one embodiment of the present application, a battery is installed in the installation cavity, the battery and the pump body are arranged side by side, and the battery is electrically connected to the pump body and the driving part of the facial cleaning assembly.

[0017] Additional aspects and advantages of the present application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0019] Figure 1 is an exploded structural schematic diagram of the facial cleanser provided by the embodiments of the present application.

[0020] Figure 2 is a structural schematic diagram of the facial cleanser provided by the embodiments of the present application.

[0021] Figure 3 is a sectional structural schematic diagram of the facial cleanser provided by the embodiments of the present application.

[0022] Figure 4 is a front structural schematic diagram of the third main body provided by the embodiments of the present application.

[0023] Figure 5 is a back structural schematic diagram of the third main body provided by the embodiments of the present application.

[0024] Figure 6 is a structural schematic diagram of the first main body provided by the embodiments of the present application.

[0025] Figure 7 is a structural schematic diagram of the bubble generating mechanism provided by the embodiments of the present application.

[0026] Figure 8 is an exploded structural schematic diagram of the bubble generating mechanism provided by the embodiments of the present application.

[0027] Figure 9 is a sectional structural schematic diagram of the bubble generating mechanism provided by the embodiments of the present application.

[0028] Reference signs: 100, facial cleansing assembly; 1100, facial cleansing main body; 1101, mounting port; 1200, first facial cleansing component; 1202, first avoiding hole; 1210, first main body; 1211, mounting column; 1240, third main body; 1241, mounting groove; 1243, mounting hole; 1300, driving component; 1500, second facial cleansing component; 1600, bubble generating mechanism; 1610, first bubble generating component; 1611, bubble inlet; 1612, bubble generating mounting cavity; 1613, connecting interface; 1620, second bubble generating component; 1621, bubble outlet; 1622, assembly part; 1623, bubble generating channel; 1624, channel inlet; 1625, channel outlet; 1630, limiting part; 1640, bubble generating rod; 1650, sealing ring; 1660, third bubble generating component; 1661, cover; 1662, protruding part; 1663, shunt rod; 1664, shunt outlet; 200, handheld assembly; 2100, connecting component; 2101, avoiding channel; 2110, liquid storage bin; 2111, liquid storage cavity; 2120, first connecting piece; 2200, handheld component; 2201, mounting cavity; 2300, pump body; 2310, first interface; 2320, second interface; 2400, battery; DETAILED DESCRIPTION

[0029] The embodiments of the present application will be further described in details below with reference to the drawings and embodiments. The following embodiments are used to illustrate the present application, but cannot be used to limit the scope of the present application.

[0030] In the description of the embodiments of the present application, it should be noted that the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the embodiments of the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance.

[0031] In the description of the embodiments of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, wherein the fixedly connected can include the manner of integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0032] In the embodiments of the present application, unless specifically defined and limited otherwise, a first feature is "on", "under", "above", or "over" a second feature can mean that the first and second features are in direct contact, or the first and second features are in indirect contact with an intermediate medium. Moreover, the first feature "above", "over", and "on" the second feature can mean that the first feature is directly above or obliquely above the second feature, or only means that the first feature is higher in horizontal height than the second feature. The first feature "below", "under", and "underneath" the second feature can mean that the first feature is directly below or obliquely below the second feature, or only means that the first feature is lower in horizontal height than the second feature.

[0033] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any suitable manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the present application and the features of the different embodiments or examples without contradiction.

[0034] The following will be described in detail Figures 1-9 The present application describes a cleansing assembly and a cleansing device.

[0035] According to the cleansing assembly 100 proposed in the embodiments of the present application, please refer to Figures 1 to 3 The cleansing assembly 100 includes a cleansing main body 1100, a bubble generating mechanism 1600, a first cleansing component 1200, and a driving component 1300. The cleansing main body 1100 is provided with a mounting opening 1101. The bubble generating mechanism 1600 is connected to the cleansing main body 1100. The first cleansing component 1200 is swingably connected to the cleansing main body 1100, and is connected to the bubble generating mechanism 1600. The first cleansing component 1200 is provided with a first avoiding hole 1202, and the bubble generating mechanism 1600 is sequentially arranged in the mounting opening 1101 and the first avoiding hole 1202. The driving component 1300 is connected to the cleansing main body 1100, and an output shaft of the driving component 1300 is connected to the bubble generating mechanism 1600. The driving component 1300 is adapted to drive the bubble generating mechanism 1600 to swing so as to drive the first cleansing component 1200 to swing relative to the cleansing main body 1100.

[0036] According to the cleansing assembly 100 of the embodiment of the present application, the oscillation of the foam generating mechanism 1600 is driven by the driving component 1300 to drive the first cleansing component 1200 to oscillate relative to the cleansing main body 1100, so that the oscillation amplitude of the foam generating mechanism 1600 and the first cleansing component 1200 is consistent during rotation, thereby realizing foam generation during oscillation.

[0037] The cleansing main body 1100 is the basic part of the entire cleansing assembly 100, and is provided with a mounting port 1101 for fixing the foam generating mechanism 1600 to avoid radial displacement of the foam generating mechanism 1600. This design ensures that the foam generating mechanism 1600 can be stably mounted on the cleansing main body 1100, providing a reliable basis for subsequent oscillation.

[0038] The foam generating mechanism 1600 is connected to the cleansing main body 1100 and sequentially passes through the mounting port 1101 of the cleansing main body 1100 and the first avoiding hole 1202 of the first cleansing component 1200. The foam generating mechanism 1600 is used to generate foam and deliver it to the cleansing area. The first avoiding hole 1202 provides sufficient space for the oscillation of the foam generating mechanism 1600, avoiding interference during oscillation.

[0039] The first cleansing component 1200 is connected to the cleansing main body 1100 by oscillation connection and is connected to the foam generating mechanism 1600. This design enables the first cleansing component 1200 to oscillate at the same amplitude as the foam generating mechanism 1600 under the drive of the driving component 1300. The first cleansing component 1200 has a soft material and a suitable shape for contacting and cleaning the skin during cleansing.

[0040] The driving component 1300 is connected to the cleansing main body 1100, and the output shaft is connected to the foam generating mechanism 1600. Through the drive of the driving component 1300, the foam generating mechanism 1600 can drive the first cleansing component 1200 to oscillate relative to the cleansing main body 1100. This design realizes automation and intelligentization during cleansing, improves the efficiency and convenience of cleansing.

[0041] In specific implementation, appropriate driving component 1300 and oscillation amplitude can be selected according to actual needs. For example, a motor with appropriate speed and torque can be selected as the driving component 1300 to ensure that the foam generating mechanism 1600 and the first cleansing component 1200 can oscillate smoothly. At the same time, the oscillation amplitude and frequency can be adjusted according to the size and shape of the cleansing area to achieve the best cleansing effect.

[0042] According to one embodiment of the present application, the first cleansing component 1200 comprises a first body 1210 and a third body 1240, the first body 1210 is provided with a plurality of bristles, the first body 1210 is connected to the third body 1240, the third body 1240 is provided with a mounting groove 1241 along the edge of the first escape hole 1202, and the bubble generating mechanism 1600 is fixedly installed in the mounting groove 1241.

[0043] In one embodiment of the present application, the first cleansing component 1200 comprises two parts: a first body 1210 and a third body 1240. The first body 1210 is provided with a plurality of bristles made of soft and durable material, which can directly contact the skin and play a cleaning and massaging role. The shape and density of the bristles can be selected according to different cleansing needs and skin types to meet the individual needs of users. For example, for oily skin, bristles with higher density and moderate hardness can be selected; for dry skin, soft and delicate bristles can be selected.

[0044] The first body 1210 is connected to the third body 1240, which ensures the stability and reliability between the first body 1210 and the third body 1240. At the same time, it also provides sufficient support for the bristles on the first body 1210, so that the bristles can maintain a certain hardness and elasticity during cleansing.

[0045] The third body 1240 is provided with a mounting groove 1241 along the edge of the first escape hole 1202, and the bubble generating mechanism 1600 is fixedly installed in the mounting groove 1241. The design of the mounting groove 1241 ensures that the bubble generating mechanism 1600 can be stably fixed on the cleansing assembly 100, avoiding shaking and falling during swinging. At the same time, the mounting groove 1241 also provides sufficient support and protection for the bubble generating mechanism 1600, prolonging its service life.

[0046] In specific implementation, appropriate bristle material, shape and density, as well as appropriate mounting groove 1241 size and shape can be selected according to actual needs. For example, bristle material with antibacterial function can be selected to improve the hygiene of cleansing; the size and shape of the mounting groove 1241 can be selected to match the shape of the bubble generating mechanism 1600, so as to ensure that the bubble generating mechanism 1600 can be stably fixed in the mounting groove 1241.

[0047] According to one embodiment of the present application, the shape of the mounting groove 1241 is one of triangle, quadrilateral, pentagon and hexagon, and the bubble generating mechanism 1600 is provided at a position corresponding to the mounting groove 1241.

[0048] In specific implementation, the shape and size of the mounting groove 1241 can be selected according to actual needs. For example, for the face washing assembly 100 requiring higher stability and carrying capacity, a pentagonal or hexagonal shaped mounting groove 1241 can be selected; for the face washing assembly 100 pursuing simplicity and beauty, a quadrilateral shaped mounting groove 1241 can be selected.

[0049] The shape and size of the bubble generating mechanism 1600 need to match the mounting groove 1241, ensuring that the bubble generating mechanism 1600 can be stably installed in the mounting groove 1241, avoiding shaking and falling during installation.

[0050] According to an embodiment of the present application, the third body 1240 is provided with a plurality of elastic buckles, which are arranged at the edge of the mounting port 1101, and the elastic buckles and the mounting groove 1241 form the limiting structure of the bubble generating mechanism 1600.

[0051] The third body 1240 is additionally provided with a plurality of elastic buckles, which together with the mounting groove 1241 form the limiting structure of the bubble generating mechanism 1600. The elastic buckles are arranged at the edge of the mounting port 1101 of the third body 1240 and have a certain elasticity and restoring force. When the bubble generating mechanism 1600 is placed in the mounting groove 1241, the elastic buckles can automatically clamp the bubble generating mechanism 1600, ensuring that it will not fall off or shake during use.

[0052] In specific implementation, the number and position of the elastic buckles can be selected according to actual needs. For example, a plurality of elastic buckles can be evenly arranged around the mounting port 1101 to ensure that the bubble generating mechanism 1600 can be stably fixed in all directions.

[0053] According to an embodiment of the present application, one of the mounting hole 1243 and the mounting column 1211 is arranged on the side of the third body 1240 facing the first body 1210, and the other of the mounting hole 1243 and the mounting column 1211 is arranged on the side of the first body 1210 facing the third body 1240.

[0054] Specifically, the side of the third body 1240 facing the first body 1210 is provided with the mounting hole 1243 or the mounting column 1211, and the side of the first body 1210 facing the third body 1240 is provided with the mounting column 1211 or the mounting hole 1243 corresponding thereto. In actual application, different connection modes can be selected according to actual needs. For example, when the mounting hole 1243 is arranged on the third body 1240, the mounting column 1211 corresponding thereto should be arranged on the first body 1210; vice versa.

[0055] According to the face washing assembly 100 provided in the embodiment of the present application, please refer to Figures 1 to 6The face cleaning assembly 100 comprises a face cleaning main body 1100, a bubble generating mechanism 1600, a first face cleaning component 1200, a second face cleaning component 1500 and a driving component 1300. The face cleaning main body 1100 is provided with a mounting opening 1101. The bubble generating mechanism 1600 is connected to the face cleaning main body 1100. The first face cleaning component 1200 is swingably connected to the face cleaning main body 1100, and is provided with a first avoiding hole 1202. The second face cleaning component 1500 is connected to the face cleaning main body 1100, and is arranged between the face cleaning main body 1100 and the first face cleaning component 1200. The second face cleaning component 1500 is provided with a second avoiding hole 1501. The bubble generating mechanism 1600 is sequentially arranged in the mounting opening 1101, the first avoiding hole 1202 and the second avoiding hole 1501. The driving component 1300 is connected to the face cleaning main body 1100, and is adapted to drive the first face cleaning component 1200 to swing relative to the second face cleaning component 1500.

[0056] According to the face cleaning assembly 100, the bubble generating mechanism 1600 directly acts on the first face cleaning component 1200 by sequentially penetrating through the mounting opening 1101, the first avoiding hole 1202 and the second avoiding hole 1501, so that the foam is rich and uniformly distributed, and the cleaning efficiency is improved. The swing of the first face cleaning component 1200 simulates the massage effect of human hands, and the comfort of the face cleaning process can be improved.

[0057] It can be understood that the face cleaning main body 1100 is the main supporting structure of the face cleaning assembly 100. The face cleaning main body 1100 can be made of a firm and durable material to ensure stability during long-term use.

[0058] The bubble generating mechanism 1600 is a component for generating foam. The bubble generating mechanism 1600 is connected to the face cleaning main body 1100. The bubble generating mechanism 1600 can sequentially penetrate through the mounting opening 1101 of the face cleaning main body 1100, the first avoiding hole 1202 of the first face cleaning component 1200 and the second avoiding hole 1501 of the second face cleaning component 1500, so that the foam can directly act on the first face cleaning component 1200, and the cleaning efficiency is improved.

[0059] The first face cleaning component 1200 is a face cleaning component swingably connected to the face cleaning main body 1100, and is used for directly contacting the face for cleaning. The first face cleaning component 1200 can be made of a soft and skin-friendly material. The swing design can increase the flexibility during the face cleaning process, and better adapt to different face contours. The first avoiding hole 1202 can allow the bubble generating mechanism 1600 to pass through smoothly, and ensure that the first face cleaning component 1200 is not hindered during the swing process.

[0060] The second cleansing component 1500 is a cleansing component connected to the cleansing main body 1100 and located between the cleansing main body 1100 and the first cleansing component 1200, used to increase the cleaning area. The second cleansing component 1500 can be made of soft and skin-friendly materials. Similarly, the second avoiding hole 1501 can allow the bubble mechanism 1600 to pass through smoothly, ensuring that the first cleansing component 1200 will not be hindered during the swinging process.

[0061] The driving component 1300 is connected to the cleansing main body 1100, used to drive the first cleansing component 1200 to swing relative to the second cleansing component 1500. This swinging motion can simulate the effect of hand massage, improving the comfort and cleaning effect of the cleansing process. The driving component 1300 is a component for driving the movement of the cleansing component, such as a motor, a transmission mechanism, etc.

[0062] According to one embodiment of the present application, the second cleansing component 1500 comprises a second body 1510 and a second bristle 1520, the second body 1510 is mounted on the cleansing main body 1100, and the second bristle 1520 is arranged on the second body 1510, the second bristle 1520 is arranged around the first cleansing component 1200, and the second body 1510 is provided with the second avoiding hole 1501.

[0063] It can be understood that the second cleansing component 1500 comprises a second body 1510 and a second bristle 1520. The second body 1510 is mounted on the cleansing main body 1100. The second bristle 1520 is arranged on the second body 1510 and made of soft and skin-friendly materials, and arranged around the first cleansing component 1200. This design can ensure that the facial skin can be brushed from different directions during the cleaning process, thereby improving the comprehensiveness and uniformity of cleaning. The second body 1510 is provided with the second avoiding hole 1501 for allowing the bubble mechanism 1600 to pass through smoothly.

[0064] In one embodiment, the second body 1510 and the second bristle 1520 are integrally formed, which can be realized by injection molding, stamping, etc.

[0065] According to one embodiment of the present application, the first cleansing component 1200 comprises a first body 1210 and a first bristle 1220, the first body 1210 is swingably connected to the cleansing main body 1100, the first bristle 1220 is arranged on the first body 1210, and the first body 1210 is provided with the first avoiding hole 1202.

[0066] It can be understood that the first cleansing component 1200 comprises a first body 1210 and first bristles 1220. The first body 1210 is swingably connected to the cleansing body 1100, and a first avoiding hole 1202 is arranged on the first body 1210. The first bristles 1220 are arranged on the first body 1210, and the first bristles 1220 can be made of soft and skin-friendly materials, such as soft nylon fibers or natural plant fibers, to ensure that the skin is not irritated or damaged during cleaning.

[0067] In one embodiment, the first body 1210 and the first bristles 1220 are integrally formed, which can be realized by injection molding, stamping or the like.

[0068] According to one embodiment of the present application, the first cleansing component 1200 is connected to the bubble generating mechanism 1600, and the driving component 1300 is adapted to drive the bubble generating mechanism 1600 to swing to drive the first cleansing component 1200 to swing relative to the cleansing body 1100.

[0069] The first cleansing component 1200 is directly connected to the bubble generating mechanism 1600, so that their swing paths will remain consistent, ensuring that the foam can be uniformly distributed on the first cleansing component 1200 during cleaning and the face can be washed all around.

[0070] According to one embodiment of the present application, the first cleansing component 1200 comprises a third body 1240, the first body 1210 is connected to the third body 1240, the third body 1240 is provided with a mounting groove 1241 along the edge of the first avoiding hole 1202, and the bubble generating mechanism 1600 is fixedly mounted in the mounting groove 1241.

[0071] It can be understood that the third body 1240 is used for connecting and supporting the first body 1210, the third body 1240 is provided with a mounting groove 1241 along the edge of the first avoiding hole 1202, and the bubble generating mechanism 1600 is fixedly mounted in the mounting groove 1241 provided along the edge of the first avoiding hole 1202 of the third body 1240. The connection between the bubble generating mechanism 1600 and the mounting groove 1241 can be screw connection, buckle connection, adhesion or the like.

[0072] According to one embodiment of the present application, please refer to Figures 7 to 9 , the bubble generating mechanism 1600 comprises a first bubble generating component 1610 and a second bubble generating component 1620, the first bubble generating component 1610 is connected to the second bubble generating component 1620, the first bubble generating component 1610 is provided with a bubble inlet 1611, the second bubble generating component 1620 is provided with a bubble outlet 1621, the second bubble generating component 1620 comprises an assembly part 1622, and the assembly part 1622 is fixedly mounted in the mounting groove 1241.

[0073] The first bubble outlet component 1610 is provided with a bubble inlet 1611 for receiving the foam from the cleansing liquid or foam generating device. The shape, size and position of the bubble inlet 1611 can be designed according to the flowability and generating amount of the foam to ensure that the foam can smoothly enter the first bubble outlet component 1610.

[0074] The second bubble outlet component 1620 is provided with a bubble outlet 1621 for uniformly spraying the refined foam on the user's facial skin. The shape, size and number of the bubble outlet 1621 should be designed according to the facial contour and cleaning needs of the user to ensure that the foam can uniformly cover the entire face.

[0075] The second bubble outlet component 1620 includes a fitting part 1622 for fixedly mounting the second bubble outlet component 1620 in the mounting groove 1241. The shape, size and position of the fitting part 1622 should match the mounting groove 1241 to ensure that the second bubble outlet component 1620 can be stably mounted on the third main body 1240.

[0076] According to one embodiment of the present application, the first bubble outlet component 1610 is provided with a bubble outlet mounting cavity 1612, and the bubble inlet 1611 communicates with the bubble outlet mounting cavity 1612; the second bubble outlet component 1620 is mounted in the bubble outlet mounting cavity 1612, and the second bubble outlet component 1620 is provided with a bubble outlet channel 1623, a channel inlet 1624 and a channel outlet 1625, the channel outlet 1625 communicates with the bubble outlet 1621, the channel inlet 1624 communicates with the bubble inlet 1611 and the bubble outlet channel 1623, the channel outlet 1625 is located at the top of the bubble outlet channel 1623, and the channel outlet 1625 communicates with the bubble outlet channel 1623.

[0077] It can be understood that the bubble outlet mounting cavity 1612 is a cavity inside the first bubble outlet component 1610, which is used to accommodate the second bubble outlet component 1620 and provide a stable mounting environment. The bubble outlet channel 1623 is a channel inside the second bubble outlet component 1620, which is used to transmit the foam from the channel inlet 1624 to the channel outlet 1625. The channel inlet 1624 communicates with the bubble inlet 1611 and the bubble outlet channel 1623 to ensure that the foam can smoothly enter the bubble outlet channel 1623, and the channel outlet 1625 is located at the top of the bubble outlet channel 1623 and communicates with the bubble outlet channel 1623 to ensure that the foam can be uniformly sprayed on the facial skin.

[0078] The foam generated by the cleansing liquid or foam generating device enters the first foam outlet component 1610 through the foam inlet 1611, then enters the foam outlet channel 1623 of the second foam outlet component 1620 through the channel inlet 1624, continues to flow in the foam outlet channel 1623, and finally exits through the channel outlet 1625 and finally exits from the foam outlet 1621.

[0079] According to an embodiment of the present application, a sealing ring 1650 is arranged between the second foam outlet component 1620 and the first foam outlet component 1610.

[0080] In this embodiment, the sealing ring 1650 is arranged between the second foam outlet component 1620 and the first foam outlet component 1610 to fill the tiny gap between them and prevent the foam from leaking out of the gap during generation and discharge.

[0081] According to an embodiment of the present application, a third foam outlet component 1660 is included, which is arranged on the foam outlet to adjust the foam outlet angle.

[0082] According to an embodiment of the present application, a light therapy component 1400 is included, and a lamp strip mounting cavity 1102 is formed between the second cleansing component 1500 and the cleansing main body 1100, which is arranged on the outer periphery of the first cleansing component 1200, and the light therapy component 1400 is arranged in the lamp strip mounting cavity 1102.

[0083] It can be understood that the light therapy component 1400 can emit light of different wavelengths, which can penetrate the skin surface and have effects such as sterilization, anti-inflammatory, and collagen production promotion. A lamp strip mounting cavity 1102 is formed between the second cleansing component 1500 and the cleansing main body 1100, which provides a mounting space for the lamp strip and the light therapy component 1400.

[0084] The lamp strip mounting cavity 1102 is located on the outer periphery of the first cleansing component 1200, i.e., the lamp strip mounting cavity 1102 surrounds the first cleansing component 1200, and the lamp strip can emit soft light to provide illumination for the cleansing process, while the light therapy component 1400 emits specific spectrum light to care for the skin.

[0085] The cleansing device using the cleansing assembly 100 of the present application not only has a cleaning function, but also combines light therapy and illumination functions, providing users with a more comprehensive skin care experience.

[0086] According to an embodiment of the present application, the second cleansing component 1500 is provided with a lamp strip end plate, which is arranged on the side of the lamp strip mounting cavity 1102 facing the user, and the lamp strip end plate is a transparent end plate.

[0087] It can be understood that the lamp strip end plate is a transparent end plate, so that the light emitted by the lamp strip can directly irradiate the skin of the user, thereby achieving the effect of phototherapy or illumination.

[0088] According to the foam outlet mechanism 1600 provided in the embodiment of the present application, referring to Figures 7 to 9 , the foam outlet mechanism 1600 comprises a first foam outlet component 1610 and a second foam outlet component 1620. The first foam outlet component 1610 is provided with a foam outlet mounting cavity 1612 and a foam inlet 1611, and the foam inlet 1611 is communicated with the foam outlet mounting cavity 1612. The second foam outlet component 1620 is mounted in the foam outlet mounting cavity 1612, and is provided with a foam outlet channel 1623, a channel inlet 1624 and a channel outlet 1625. The channel inlet 1624 is communicated with the foam inlet 1611 and the foam outlet channel 1623, the channel outlet 1625 is arranged at the top of the foam outlet channel 1623, and the channel outlet 1625 is communicated with the foam outlet channel 1623.

[0089] According to the foam outlet mechanism 1600 of the embodiment of the present application, it is suitable for a cleansing instrument which needs to accurately control the generation and discharge of foam. The stable connection between the first foam outlet component 1610 and the second foam outlet component 1620 is realized by arranging the first foam outlet component 1610 and the foam outlet mounting cavity 1612, so as to ensure the stable foam generation during the operation of the cleansing instrument.

[0090] The first foam outlet component 1610 is provided with one foam outlet mounting cavity 1612 and one foam inlet 1611. The foam outlet mounting cavity 1612 is used for mounting and fixing the second foam outlet component 1620 to ensure its stable operation. The foam inlet 1611 is communicated with the foam outlet mounting cavity 1612, and is used for introducing foam raw materials or pre-mixed foam liquid.

[0091] The second foam outlet component 1620 is mounted in the foam outlet mounting cavity 1612. The second foam outlet component 1620 is internally provided with a foam outlet channel 1623, and the channel has a channel inlet 1624 and a channel outlet 1625. The channel inlet 1624 is communicated with the foam inlet 1611 and the foam outlet channel 1623, and is used for introducing foam raw materials into the foam outlet channel 1623. The channel outlet 1625 is arranged at the top of the foam outlet channel 1623, and is communicated with the foam outlet channel 1623, and is used for discharging the generated foam.

[0092] According to one embodiment of the present application, the first foam outlet component 1610 is provided with a connecting interface 1613, which extends in a direction away from the first foam outlet component 1610.

[0093] The connecting interface 1613 can be used for connecting external devices or pipelines, such as foam raw material supply devices (liquid storage cavity 2111, foaming mechanism) and the like, so as to realize the continuous supply and discharge of foam.

[0094] According to an embodiment of the present application, the second frothing component 1620 comprises a limiting portion 1630 and a frothing rod 1640, the frothing rod 1640 is connected to the limiting portion 1630, the frothing rod 1640 and the limiting portion 1630 are hollow to form a frothing channel 1623, the frothing rod 1640 is arranged in the frothing mounting cavity 1612, the frothing rod 1640 is provided with a channel inlet 1624, the limiting portion 1630 is located outside the frothing mounting cavity 1612, and the limiting portion 1630 is provided with a channel outlet 1625.

[0095] In the embodiment, the limiting portion 1630 is located outside the frothing mounting cavity 1612, and functions to fix and support the frothing rod 1640; the frothing rod 1640 is connected to the limiting portion 1630 and extends into the frothing mounting cavity 1612, and is used to form the frothing channel 1623.

[0096] According to an embodiment of the present application, a sealing ring 1650 is arranged between the limiting portion 1630 and the first frothing component 1610.

[0097] In the embodiment, the sealing ring 1650 is arranged between the limiting portion 1630 and the first frothing component 1610, and is used to fill the tiny gap therebetween and prevent the foam from leaking out of the gap during the generation and discharge of the foam.

[0098] According to an embodiment of the present application, the frothing mounting cavity 1612 is in one of a triangle, a quadrilateral, a pentagon, and a hexagon, and the second frothing component 1620 is arranged in correspondence with the shape of the frothing mounting cavity 1612.

[0099] The second frothing component 1620 is designed to have a shape matching that of the frothing mounting cavity 1612. For example, if the frothing mounting cavity 1612 is a quadrilateral, the limiting portion 1630 and the frothing rod 1640 of the second frothing component 1620 are also designed to have a quadrilateral shape, so as to ensure that they can be closely fitted in the frothing mounting cavity 1612.

[0100] In the case that the first frothing component 1610 is driven to rotate, the second frothing component 1620 can also rotate synchronously.

[0101] According to an embodiment of the present application, a third frothing component 1660 is included, the third frothing component 1660 comprises a cover 1661, a protruding portion 1662, and a shunt rod 1663, the shunt rod 1663 and the protruding portion 1662 are connected to the same side of the cover 1661, the cover 1661 is located above the channel outlet 1625, the protruding portion 1662 abuts against the outer edge of the frothing rod 1640, the shunt rod 1663 is arranged at the channel outlet 1625, and the cover 1661, the protruding portion 1662, the shunt rod 1663, and the second frothing component 1620 form a plurality of shunt openings 1664.

[0102] It can be understood that the cover 1661 part of the third foam outlet component 1660 is located above the channel outlet 1625 for shielding and guiding the discharge direction of the foam. The shape and size of the cover 1661 are designed to match the channel outlet 1625 to ensure that the foam can pass smoothly and be properly guided.

[0103] The protrusion 1662 is connected to one side of the cover 1661 and abuts the outer edge of the foam outlet rod 1640 at the channel outlet 1625. The shape of the protrusion 1662 causes the cover 1661 and the foam outlet rod 1640 to be spaced apart to form an opening, which further guides and adjusts the discharge direction of the foam.

[0104] The shunt rod 1663 is connected to the same side of the cover 1661 as the protrusion 1662 and extends into the channel outlet 1625. The shape and number of shunt rods 1663 can be designed according to actual needs to achieve the refinement, shunting, and uniform distribution of the foam. By adjusting the position, length, and inclination angle of the shunt rod 1663, the discharge mode and distribution range of the foam can be flexibly controlled.

[0105] According to one embodiment of the present application, the number of shunt rods 1663 is multiple, and the shunt rods 1663 are spaced apart. In this embodiment, the number of shunt rods 1663 is three.

[0106] According to one embodiment of the present application, the second foam outlet component 1620 is provided with a boss protruding towards the foam outlet channel 1623, and two shunt rods 1663 are embedded in the boss. Through the guidance and support of the boss, the shunt rod 1663 can be more accurately positioned above the foam outlet channel 1623, thereby achieving more precise foam control and discharge.

[0107] According to one embodiment of the present application, a cleansing assembly 100 comprises: A cleansing main body 1100, the cleansing main body 1100 is provided with a mounting port 1101; A first cleansing component 1200, swingably connected to the cleansing main body 1100; The above-mentioned foam outlet mechanism 1600, the foam outlet mechanism 1600 is arranged in the mounting port 1101; A driving component 1300, connected to the cleansing main body 1100, adapted to drive the first cleansing component 1200 to rotate relative to the cleansing main body 1100.

[0108] The cleansing main body 1100 is the main part of the cleansing assembly 100, and one or more mounting ports 1101 are provided on the cleansing main body 1100 for mounting the foam outlet mechanism 1600. The shape and size of the mounting port 1101 match the shape of the foam outlet mechanism 1600 to ensure that the foam outlet mechanism 1600 can be stably fixed on the cleansing main body 1100.

[0109] The first cleansing component 1200 is the actual component that contacts the face, and the driving component 1300 is responsible for driving the first cleansing component 1200 to oscillate. The oscillation of the first cleansing component 1200 is a kind of reciprocating rotary motion.

[0110] The driving component 1300 is connected to the cleansing main body 1100, and is usually located inside or outside the cleansing main body 1100. It provides power for the first cleansing component 1200 in an electric, pneumatic or manual manner, so that the first cleansing component 1200 can rotate relative to the cleansing main body 1100.

[0111] According to an embodiment of the present application, the first foam generating structure is provided with a rotating interface 1614 connected to the output shaft of the driving component 1300. The connection between the driving component 1300 and the first foam generating structure is tight to ensure that there is no loosening or falling off during rotation.

[0112] When the user starts the cleansing assembly 100, the driving component 1300 starts to work and drives the first cleansing component 1200 to rotate relative to the cleansing main body 1100. At the same time, the foam generating mechanism 1600 starts to generate foam, and the foam is evenly applied to the skin through the guidance of the shunt rod 1663 and the boss. With the rotation of the first cleansing component 1200, the foam can clean the skin more deeply, achieving the effect of efficient cleansing.

[0113] According to an embodiment of the present application, a cleansing instrument comprises the cleansing assembly 100 and the handheld assembly 200. Figures 1 to 3

[0114] It should be noted that the cleansing instrument of the present application comprises the above-mentioned cleansing assembly 100, so the cleansing instrument can have one or more of the technical effects of the embodiments of the above-mentioned cleansing assembly 100, which will not be described here.

[0115] The handheld assembly 200 is the operation and control part of the cleansing instrument, which is connected to the cleansing assembly 100, so that the user can conveniently hold and operate the cleansing instrument.

[0116] In one embodiment, the handheld assembly 200 comprises a power button and a control button. The power button provides the function of turning on and off the cleansing instrument, and the control button provides the function of adjusting the power of the driving component 1300 or the light therapy intensity of the first light therapy component 1400. The user can start or stop the cleansing instrument and adjust its working mode as needed through these buttons.

[0117] ​According to an embodiment of the present application, the handheld assembly 200 comprises a connecting component 2100 connected to the cleansing assembly 100 and a handheld component 2200 connected to the connecting component 2100, the connecting component 2100 is provided with a liquid storage cavity 2111, the handheld component 2200 is provided with a mounting cavity 2201, the mounting cavity 2201 is mounted 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 cavity 2111 is connected to the first interface 2310 through a first pipeline, and the second interface 2320 is connected to the mounting port 1101 through a second pipeline.

[0118] According to the cleansing instrument provided by the embodiment of the present application, the liquid storage cavity 2111 is arranged in the connecting component 2100, the path between the liquid storage cavity 2111 and the foam generating mechanism 1600 is shortened, the foam generating time is reduced, and the use experience of the user is improved. In addition, the liquid storage cavity 2111 is arranged in the connecting component 2100, so that the gravity center of the whole cleansing instrument is closer to the cleansing assembly 100, that is, the part held by the user during use. The first interface 2310 and the second interface 2320 of the pump body 2300 are located on the side facing the connecting component 2100, so that the first pipeline and the second pipeline can be directly and smoothly connected without additional turning or bending.

[0119] In the traditional cleansing instrument design, the liquid storage cavity 2111 is usually located at the end of the handheld component 2200 away from the cleansing assembly 100, so that the liquid needs to pass through a long pipeline to reach the foam generating mechanism 1600. The present application arranges the liquid storage cavity 2111 in the connecting component 2100, that is, close to the cleansing assembly 100, which significantly shortens the flow path of the liquid from the liquid storage cavity 2111 to the foam generating mechanism 1600.

[0120] The cleansing instrument provided by the present application aims to improve the cleansing experience of the user. The cleansing instrument mainly comprises two parts of a cleansing assembly 100 and a handheld assembly 200. Among them, the cleansing assembly 100 is a component directly contacting the skin, responsible for performing the cleaning task, and the foam generating mechanism 1600 is responsible for converting the cleansing liquid in the liquid storage cavity 2111 into fine and rich foam to enhance the cleaning effect.

[0121] The handheld assembly 200 is the holding and operating part of the facial cleanser, which is composed of a connecting component 2100 and a handheld component 2200. The connecting component 2100 not only serves as a bridge connecting the facial cleansing assembly 100 and the handheld component 2200, but also has a liquid storage cavity 2111 built-in, which is used to store facial cleansing liquid. By placing the liquid storage cavity 2111 in the connecting component 2100, the center of gravity of the entire facial cleanser is closer to the facial cleansing assembly 100, i.e. the part held by the user during use. This enhances the stability of the facial cleanser during use, reduces the risk of shaking or falling due to unstable center of gravity, and improves the safety and comfort of use.

[0122] The handheld component 2200 is installed with a pump body 2300 and other components. The pump body 2300 is a device capable of generating pressure, which is connected to the liquid storage cavity 2111 and the bubble generating mechanism 1600 through two interfaces, i.e. a first interface 2310 and a second interface 2320. It is worth noting that both interfaces are located on the side facing the connecting component 2100. Such a layout allows the first pipeline and the second pipeline to be directly and smoothly connected without additional turns or bends, thus simplifying the internal structure of the facial cleanser.

[0123] According to an embodiment of the present application, the connecting component 2100 includes a liquid storage compartment 2110 and a first connecting piece 2120, the first connecting piece 2120 is connected to the facial cleansing assembly 100, the liquid storage compartment 2110 is connected to the first connecting piece 2120, the handheld component 2200 is connected to the liquid storage compartment 2110, the connecting component 2100 is provided with an avoiding passage 2101 for accommodating the driving component 1300, the first connecting piece 2120 is hollow inside to form the avoiding passage 2101, and the liquid storage compartment 2110 is hollow to form the avoiding passage 2101.

[0124] Specifically, the first connecting piece 2120 is directly connected to the facial cleansing assembly 100, ensuring that the facial cleansing assembly 100 can be stably installed on the connecting component 2100. The liquid storage compartment 2110 is connected to the other end of the first connecting piece 2120, forming the main part of the connecting component 2100. The handheld component 2200 is connected to the other side of the liquid storage compartment 2110.

[0125] It can be understood that the liquid storage bin 2110 as a key component for storing cleansing liquid is internally provided with a liquid storage cavity 2111 for accommodating sufficient cleansing liquid for use by the user. The first connecting piece 2120 plays an important role in connecting the liquid storage bin 2110 and the cleansing assembly 100. The smooth transition connection between the first connecting piece 2120 and the liquid storage bin 2110 not only makes the overall contour of the connecting component 2100 more smooth and beautiful, but also effectively reduces stress concentration at the connection, thereby enhancing the overall strength and stability of the connecting component 2100, and the smooth transition connection facilitates the user to hold the cleansing device.

[0126] By providing the avoidance channel 2101 in the connecting component 2100, the internal space of the connecting component 2100 can be fully utilized, and interference between the driving component 1300 of the cleansing assembly 100 and the connecting component 2100 can be avoided, so as to ensure that the driving component 1300 of the cleansing assembly 100 can be smoothly installed and normally work.

[0127] Specifically, the avoidance channel 2101 is formed by the hollow part inside the first connecting piece 2120 and the hollow part of the liquid storage bin 2110. The first connecting piece 2120 as a bridge connecting the liquid storage bin 2110 and the cleansing assembly 100 is internally hollow designed, which not only reduces the weight, but also provides sufficient installation space for the driving component 1300. The hollow design of the liquid storage bin 2110 further expands the space range of the avoidance channel 2101, ensuring that the driving component 1300 can be completely accommodated inside the connecting component 2100.

[0128] During the working process of the cleansing device, the driving component 1300 is connected to the first cleansing component 1200 (mentioned later) of the cleansing assembly 100 through the avoidance channel 2101, and drives it to perform reciprocating swing movement or rotary movement, thereby realizing the cleansing effect. The design of the avoidance channel 2101 not only ensures the normal work of the driving component 1300, but also improves the stability and durability of the cleansing device.

[0129] According to an embodiment of the present application, the handheld component 2200 and the connecting component 2100 are arranged at an angle; wherein the included angle between the swing axis of the cleansing assembly 100 and the central axis of the handheld component 2200 ranges from 90° to 120°.

[0130] According to the cleansing device of the embodiment of the present application, the included angle between the swing axis of the cleansing assembly 100 and the central axis of the handheld component 2200 ranges from 90° to 120°, which makes the user hold the handheld component 2200 more naturally during use, and the cleansing assembly 100 can cover more areas of the face, without the user frequently adjusting the holding posture or the angle of the cleansing device, thereby freeing the user's hands and improving the convenience of use.

[0131] And because the angle between the oscillation axis of the cleansing assembly 100 and the central axis of the handheld component 2200 is 90° to 120°, when the cleansing device is placed stably on the washstand, the user can directly place the face close to the first cleansing component 1200 to achieve facial cleaning, thereby completely freeing the hands, and at this time the user can use the hands to do other things.

[0132] The cleansing assembly 100 is the main part of the cleansing device, including a cleansing main body 1100, a first cleansing component 1200, and a driving component 1300. The cleansing main body 1100 is the support structure of the cleansing device, the first cleansing component 1200 is the cleaning component that actually contacts the face, and the driving component 1300 is responsible for driving the first cleansing component 1200 to oscillate. Among them, the oscillation of the first cleansing component 1200 is a kind of reciprocating rotary motion.

[0133] The handheld assembly 200 includes a connecting component 2100 and a handheld component 2200. The connecting component 2100 is used to connect the cleansing assembly 100 and the handheld component 2200, and the handheld component 2200 is the part actually held by the user. Among them, the geometric center line of the handheld component 2200 is the central axis of the handheld component 2200.

[0134] It can be understood that the liquid storage bin 2110 is used to store cleaning liquid, and the liquid storage bin 2110 is located between the handheld component 2200 and the cleansing assembly 100 of the cleansing device. The liquid storage bin 2110 has sufficient capacity and sealing performance to ensure that the cleaning liquid will not leak or volatilize.

[0135] The angle between the central axis of the handheld component 2200 and the oscillation axis of the cleansing assembly 100 ranges from 90° to 120°, which makes it more convenient for the user to operate the cleansing device, while reducing the fatigue of the wrist and arm.

[0136] It should be noted that the angle between the oscillation axis of the cleansing assembly 100 and the central axis of the handheld component 2200 can be 90°, 100°, 110°, 120°, which is not specifically limited here.

[0137] According to an embodiment of the present application, the mounting cavity 2201 is mounted with a battery 2400, and the battery 2400 and the pump body 2300 are arranged side by side, and the battery 2400 is electrically connected to the pump body 2300 and the driving component 1300 of the cleansing assembly 100.

[0138] It can be understood that the battery 2400 is installed in the mounting cavity 2201 and arranged side by side with the pump body 2300. This layout makes the internal structure of the cleansing device more compact, reducing unnecessary space waste. The battery 2400 provides stable and lasting power supply for the pump body 2300 and the cleansing assembly 100.

[0139] Specifically, the battery 2400 can be one of a disposable battery 2400 and a rechargeable battery 2400.

[0140] Finally, it should be noted that the above examples are only used to illustrate the technical solutions of the present application, and are not intended to limit the same. Although the present application has been described in detail with reference to the foregoing examples, those of ordinary skill in the art will understand that they can still modify the technical solutions described in the foregoing examples, or make equivalent replacements for some of the technical features. Such modifications or replacements 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 the present application.

Claims

1. A facial cleansing assembly (100), characterized in that: include: The face cleaning body (1100) is provided with a mounting opening (1101); A foaming mechanism (1600) connected to the face-cleansing body (1100); A first cleansing component (1200), the first cleansing component (1200) being swingably connected to the cleansing body (1100), the first cleansing component (1200) being connected to the foaming mechanism (1600), the first cleansing component (1200) being provided with a first avoidance hole (1202), the foaming mechanism (1600) being sequentially passed through the mounting opening (1101) and the first avoidance hole (1202); The driving component (1300) is connected to the face-cleansing body (1100), and the output shaft of the driving component (1300) is connected to the foaming mechanism (1600). The driving component (1300) is suitable for driving the foaming mechanism (1600) to swing so as to drive the first face-cleansing component (1200) to swing relative to the face-cleansing body (1100).

2. The face cleaning assembly (100) according to claim 1, characterized in that: The first cleansing component (1200) comprises a first main body (1210) and a third main body (1240), the first main body (1210) being provided with a plurality of bristles, the first main body (1210) being connected to the third main body (1240), the third main body (1240) being provided with a mounting groove (1241) along the edge of the first avoidance hole (1202), and the foaming mechanism (1600) being fixedly mounted in the mounting groove (1241).

3. The face cleaning assembly (100) according to claim 2, characterized in that: The shape of the installation groove (1241) is one of a triangle, a quadrilateral, a pentagon, and a hexagon, and the bubble outlet mechanism (1600) is arranged corresponding to the position of the installation groove (1241).

4. The face cleaning assembly (100) according to claim 2, characterized in that: The third body (1240) is provided with a plurality of elastic clips, the elastic clips being arranged at the edge of the installation opening (1101), and the elastic clips and the installation groove (1241) forming a limiting structure of the bubble outlet mechanism (1600).

5. The face cleaning assembly (100) according to claim 2, characterized in that: The third body (1240) is provided with one of the mounting hole (1243) and the mounting column (1211) on a side facing the first body (1210), and the first body (1210) is provided with the other of the mounting column (1211) and the mounting hole (1243) on a side facing the third body (1240).

6. A facial cleansing device, characterized in that: include: The facial cleansing assembly (100) according to any one of claims 1 to 5; The handheld component (200) is connected to the face cleaning component (100).

7. The facial cleansing device according to claim 6, characterized in that: The handheld component (200) comprises a connecting component (2100) and a handheld component (2200), wherein the connecting component (2100) is connected to the face cleaning 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 a mounting chamber (2201), wherein a pump body (2300) is mounted in the mounting chamber (2201), and wherein the pump body (2300) is provided with a first interface (2310) and a second interface (2320), wherein the first interface (2310) and the second interface (2320) are arranged on a side facing the connecting component (2100), wherein the liquid storage chamber (2111) is connected to the first interface (2310) via a first pipeline, and wherein the second interface (2320) is connected to the mounting port (1101) via a second pipeline.

8. The facial cleansing device according to claim 7, characterized in that: The connecting component (2100) comprises a liquid storage tank (2110) and a first connecting component (2120), wherein the first connecting component (2120) is connected to the face cleaning component (100), the liquid storage tank (2110) is connected to the first connecting component (2120), and the handheld component (2200) is connected to the liquid storage tank (2110). The connecting component (2100) is provided with an escape channel (2101), and the escape channel (2101) is used to accommodate the driving component (1300). The first connecting component (2120) is hollow inside to form a portion of the escape channel (2101), and the liquid storage tank (2110) is hollow inside to form a portion of the escape channel (2101).

9. The facial cleansing device according to claim 7, characterized in that: The handheld component (2200) and the connecting component (2100) are arranged at an angle; The angle between the swing axis of the face cleansing component (100) and the central axis of the handheld component (2200) ranges from 90° to 120°.

10. The facial cleansing device according to claim 7, characterized in that: The installation cavity (2201) is provided with a battery (2400), the battery (2400) and the pump body (2300) are arranged side by side, and the battery (2400) is electrically connected to the pump body (2300) and the driving component (1300) of the cleansing assembly (100).

Citation Information

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