A water outlet device

By designing a detachable liquid storage component and mounting base in the water outlet device, combined with a pump and gas channel, the system integrates water output with beauty treatments during showering, solving the inconvenience of using existing devices and providing a convenient, safe, and aesthetically pleasing beauty solution.

CN119114302BActive Publication Date: 2026-05-19JOMOO KITCHEN & BATHROOM
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JOMOO KITCHEN & BATHROOM
Filing Date
2024-10-24
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing water dispensing device requires users to move around after cleaning or showering to get the beauty serum for beauty treatments, which is inconvenient.

Method used

Design a water dispensing device comprising a main body and a liquid storage component. The main body has a water outlet channel and a liquid outlet channel that are not interconnected. The liquid storage component is detachably connected to the main body, allowing the liquid storage chamber to communicate with the liquid outlet channel. The connection between the liquid outlet channel and the liquid storage chamber is achieved by the movement of the mounting base. Combined with a pump and a gas channel, it atomizes the beauty liquid for convenient beauty treatment.

Benefits of technology

It combines water output with beauty treatments during showering or cleaning, features a removable and replaceable liquid reservoir to prevent product contamination, is aesthetically pleasing and convenient, atomizes the beauty serum for easy absorption, prevents leakage and vacuum, and has convenient power management for easy portability.

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Abstract

The application discloses a water outlet device, which comprises a main body and a liquid storage part. The main body is provided with a water outlet channel and a liquid outlet channel which are not communicated with each other, so that the two channels will not be contaminated with each other. The liquid storage part is provided with a liquid storage cavity, and a beauty liquid is stored in the liquid storage cavity. The liquid storage part is detachably connected with the main body, and the liquid storage cavity is communicated with the liquid outlet channel, so that the liquid outlet channel can flow out the beauty liquid. When the use of the beauty liquid is completed, the liquid storage part is detached to replace the liquid storage part. Therefore, in some embodiments, the liquid storage part can be relatively small, and the single small package design can avoid product contamination caused by repeated opening of the bottle, so that the addition of a preservative is omitted, the activity of the original liquid composition of the product can be better ensured, and the product is safer and healthier. When used, water is discharged through the water outlet channel during showering or cleaning, and liquid is discharged through the liquid outlet channel after the completion of the showering or cleaning, so that the beauty can be realized. The structure combines the showering or cleaning with the beauty, and the use is more convenient.
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Description

Technical Field

[0001] This invention relates to the field of aquatic products, and more specifically to an aquatic dispensing device. Background Technology

[0002] Existing water dispensing devices typically only have a water dispensing function. When users want to use a beauty treatment after cleaning or showering, they usually need to move around to get the beauty serum, which is rather inconvenient. Summary of the Invention

[0003] The purpose of this invention is to overcome the above-mentioned defects or problems in the prior art and to provide a water outlet device.

[0004] To achieve the above objectives, the present invention and its preferred embodiments employ the following technical solutions, but the embodiments are not limited to the following solutions:

[0005] Option 1: A water outlet device, including...

[0006] The main body is equipped with water outlet channels and liquid outlet channels that are not interconnected;

[0007] A liquid storage component is provided with a liquid storage chamber, which stores beauty essence. The liquid storage component is detachably connected to the main body and the liquid storage chamber is connected to the liquid outlet channel.

[0008] Option 2, based on Option 1, includes a main body and a mounting base. The main body has a water outlet channel, a liquid outlet channel, and a mounting groove. The mounting base has a connecting channel, and the mounting base is detachably connected to the liquid storage component, with one end of the connecting channel communicating with the liquid storage cavity. The mounting base is adapted to move relative to the main body to a first position and a second position. In the first position, the mounting base and the liquid storage component are adapted to be placed into the mounting groove, with the other end of the connecting channel communicating with the liquid outlet channel. In the second position, at least a portion of the liquid storage component extends out of the mounting groove.

[0009] Option 3, based on Option 2, involves rotatably connecting the mounting base to the main body at a first position and a second position.

[0010] Option 4, based on Option 3, further includes an elastic element and a positioning element; one of the body and the mounting base is provided with a positioning groove, and the other is provided with an elastic groove; the positioning element is adapted to enter and exit the positioning groove; the two ends of the elastic element act on the bottom of the positioning element and the elastic groove respectively, so that the positioning element extends into the positioning groove when the mounting base is in the second position.

[0011] Option 5, based on Option 2, when the mounting base is in the first position, an operating gap is formed between the side of the liquid storage component away from the mounting base and the wall of the mounting groove.

[0012] Option 6, based on Option 2, has a sharp protrusion on the mounting base and a sealing membrane on the liquid storage component to seal the liquid storage cavity. When the mounting base and the liquid storage component are detachably connected, the sharp protrusion is adapted to pierce the sealing membrane so that one end of the connecting channel communicates with the liquid storage cavity.

[0013] Option 7, based on Option 6, further includes a protective cover, which is detachably connected to the liquid storage component and is adapted to cover the sealing membrane.

[0014] Option 8, based on Option 6, the sharp protrusion includes a plurality of connected and radially arranged acute-angled protrusions, and at least one of the acute-angled protrusions has a flow hole through the acute-angled protrusion on its sidewall, the flow hole being adapted to communicate with the liquid storage chamber and the connecting channel.

[0015] Option 9, based on Options 2 to 8, involves connecting the liquid storage component to the mounting base via one of the following methods: rotational snap-fit, threaded connection, magnetic engagement, or adhesive bonding.

[0016] Option 10, based on Option 1, further includes a pump and a control unit. The liquid outlet channel is provided with liquid outlet micropores. The main body is also provided with a first air inlet channel, a second air inlet channel, and an air outlet. One end of the first air inlet channel is connected to the atmosphere, and the other end is connected to the liquid storage chamber. One end of the second air inlet channel is connected to the atmosphere, and the other end is connected to the air outlet through the pump. The air outlet is directed towards the liquid outlet direction of the liquid outlet micropores and is adapted to allow the gas to collide with the beauty liquid. The control unit is adapted to control the pump to turn on, so that the second air inlet channel and the air outlet are connected, and a negative pressure is formed at the liquid outlet micropores. The air outlet surrounds the outside of the liquid outlet channel.

[0017] Option 11, based on Option 10, further includes a valve, the other end of the first air intake channel being connected to the liquid storage chamber through the valve, the vent of the valve being normally closed and adapted to open when the pump is turned on.

[0018] Option 12, based on Option 10, further includes an energy storage device, a display device, and a power management device. The energy storage device is electrically connected to the power management device and is adapted to discharge to the control device through the power management device. The power management device is adapted to connect to an external charging device and allow the external charging device to charge the energy storage device through the power management device. The power management device is adapted to detect the voltage value of the energy storage device. When the detected voltage value of the energy storage device is less than a first predetermined value, the power management device is adapted to issue a power shortage signal. The control device is adapted to receive the power shortage signal and control the display device to display. During the charging process of the energy storage device, when the power management device detects that the voltage value of the energy storage device is equal to a second predetermined value, the charging is stopped. The second predetermined value is greater than the first predetermined value.

[0019] Option 13, based on Option 1, the main body includes a water outlet component and a liquid outlet component. The water outlet component is provided with a water outlet channel, and the liquid outlet component is provided with a liquid outlet channel and is detachably connected to the liquid storage component and the water outlet component.

[0020] As can be seen from the above description of the present invention and its preferred embodiments, compared with the prior art, the technical solution of the present invention and its preferred embodiments have the following beneficial effects due to the adoption of the following technical means:

[0021] 1. In Scheme 1 and its preferred embodiments, a water outlet device includes a main body and a liquid storage component. The main body is provided with a water outlet channel and a liquid outlet channel that are not interconnected, so that the two will not contaminate each other.

[0022] The liquid reservoir has a storage chamber containing beauty essence. The reservoir is detachably connected to the main body, and the storage chamber communicates with the dispensing channel, allowing the beauty essence to flow out. The reservoir can be removed for replacement when the beauty essence is finished. Therefore, in some embodiments, the reservoir can be made smaller, and the single-use packaging design avoids product contamination caused by repeated opening, thus reducing the need for preservatives and better preserving the activity of the product's original ingredients, making it safer and healthier. During use, water is dispensed through the dispensing channel during showering or cleansing, and the essence is dispensed through the dispensing channel afterward to achieve the desired beauty effect. This structure combines showering or cleansing with beauty treatments, making it more convenient to use.

[0023] 2. In Scheme 2 and its preferred embodiments, the main body includes a body and a mounting base. The body has a water outlet channel, a liquid outlet channel, and a mounting groove. The mounting base has a connecting channel, and the mounting base is detachably connected to the liquid storage component, with one end of the connecting channel communicating with the liquid storage cavity. The mounting base is adapted to move relative to the body in a first position and a second position. In the first position, the mounting base and the liquid storage component are adapted to be placed in the mounting groove, and the other end of the connecting channel is connected to the liquid outlet channel, thereby realizing the communication between the liquid outlet channel and the liquid storage cavity. This also allows the mounting base and the liquid storage component to be hidden in the mounting groove, which is more aesthetically pleasing and less likely to cause damage to the liquid storage component during use. In the second position, at least a portion of the liquid storage component extends out of the mounting groove, making the liquid storage component easier to operate and disassemble. Simultaneously, the communication between the liquid outlet channel and the liquid storage cavity is disconnected to prevent leakage and waste.

[0024] 3. In Scheme 3 and its preferred embodiments, the mounting base and the main body are rotatably connected at the first position and the second position. The rotatable connection is simple and convenient. In some embodiments, it is easy to form a force-saving lever between the force applied to the liquid storage component and the rotation axis, which facilitates the rotation of the mounting base through the liquid storage component.

[0025] 4. In Scheme 4 and its preferred embodiments, the main body further includes an elastic element and a positioning element; one of the main body and the mounting base is provided with a positioning groove, and the other is provided with an elastic groove; the positioning element is adapted to enter and exit the positioning groove; the two ends of the elastic element act on the bottom of the positioning element and the elastic groove respectively, so that when the mounting base is in the second position, the positioning element extends into the positioning groove. On the one hand, the connection between the connecting channel and the liquid outlet channel is not visible, and the tactile or auditory feedback of the positioning element entering the positioning groove can indicate that it has been rotated into place, indicating that the connecting channel and the liquid outlet channel are connected. On the other hand, in some water outlet devices, such as showerheads, the opening of the mounting groove is often facing downwards. The cooperation between the positioning element and the positioning groove can prevent the mounting base and the liquid storage component from rotating due to their own gravity, which would cause the liquid storage chamber and the liquid outlet channel to become disconnected.

[0026] 5. In Scheme 5 and its preferred embodiments, when the mounting base is in the first position, an operating gap is formed between the side of the liquid storage component away from the mounting base and the wall of the mounting groove, which makes it easy for the user to operate the liquid storage component by hand, so that the liquid storage component and the mounting base can rotate. In addition, the operating gap is located on the side away from the mounting base, and the lever arm is longer, so it is easier to apply force to the liquid storage component on this side.

[0027] 6. In Scheme 6 and its preferred embodiments, the mounting base is provided with a sharp protrusion, and the liquid storage component is provided with a sealing membrane to seal the liquid storage cavity. When the mounting base and the liquid storage component are detachably connected, the sharp protrusion is suitable for piercing the sealing membrane so that one end of the connecting channel is connected to the liquid storage cavity. During the assembly of the liquid storage component, the action of piercing the sealing membrane is realized at the same time. The user does not need to find other tools to remove or pierce the sealing membrane, which makes the operation more convenient.

[0028] 7. In Scheme 7 and its preferred embodiments, the protective cover is detachably connected to the liquid storage component and is suitable for covering the sealing film, thereby preventing damage to the sealing film during transportation. At the same time, during use, the protective cover can be removed to expose the sealing film.

[0029] 8. In Scheme 8 and its preferred embodiments, to ensure that the sealing membrane can be completely pierced without obstructing the connecting channel and affecting the liquid discharge effect, the sharp protrusions are designed as several interconnected and radially arranged acute-angled protrusions. When the sealing membrane is completely pierced, the sealing membrane unfolds towards the periphery (away from the tips of each sharp protrusion). A flow hole is provided on the sidewall of at least one acute-angled protrusion, penetrating the protrusion. The flow hole communicates with the connecting channel, so that the flow hole and / or the connecting channel are located in the recessed position of the acute-angled protrusion (close to the tips of each sharp protrusion), facilitating communication between the connecting channel and the liquid storage chamber and preventing the sealing membrane from obstructing the flow hole. The flow hole allows the connecting channel to be closer to the tips of each sharp protrusion and can be processed to a larger size, facilitating liquid discharge.

[0030] 9. In Scheme 9 and its preferred embodiments, the liquid storage component is connected to the mounting base by one of the following methods: rotation snap-fit, threaded connection, magnetic attraction, or adhesive bonding. The above methods can achieve quick disassembly and assembly, making it convenient for users to operate. Among them, the rotation snap-fit ​​and threaded connection are assembly methods that use rotation. After the sharp protrusion pierces the sealing membrane, rotating the liquid storage component can also increase the piercing area (the sharp protrusion is irregular in shape or has a distance relative to the axis of rotation), so that more beauty liquid can flow out of the liquid storage cavity and it is less likely to cause blockage.

[0031] 10. In Scheme 10 and its preferred embodiments, the pump and control components include a liquid outlet channel with liquid outlet micropores to granulate the beauty essence for subsequent atomization; the main body also includes a first air inlet channel, a second air inlet channel, and an air outlet; one end of the first air inlet channel is connected to the atmosphere, and the other end is connected to the liquid storage chamber; one end of the second air inlet channel is connected to the atmosphere, and the other end is connected to the air outlet via the pump, which can accelerate the airflow, thereby easily forming a negative pressure; the air outlet is directed towards the liquid outlet direction of the liquid outlet micropores, and is adapted to allow the gas to collide with the beauty essence, atomizing the beauty essence for direct absorption by the user; the control components are adapted to control the pump to open, so that the second air inlet channel and the air outlet are connected, and a negative pressure is formed at the liquid outlet micropores, so that the air in the first air inlet channel pushes the beauty essence in the liquid storage chamber into the liquid outlet channel, realizing liquid outlet, and preventing a vacuum from forming at the liquid storage chamber after liquid outlet, which would prevent subsequent liquid outlet.

[0032] Furthermore, the air outlet surrounds the outside of the liquid outlet channel to facilitate the formation of negative pressure and contain the beauty essence, making it easier for the beauty essence to be atomized and thus easier for the user to absorb.

[0033] 11. In Scheme Eleven and its preferred embodiments, the other end of the first air intake channel is connected to the liquid storage chamber via a valve. The vent of the valve is normally closed to reduce the inappropriate entry of air into the liquid storage chamber through the first air intake channel, which could lead to leakage or contamination. The vent of the valve is adapted to open when the pump is turned on to prevent vacuum.

[0034] 12. In Scheme Twelve and its preferred embodiments, the energy storage device is electrically connected to the power management device and is adapted to discharge to the control device through the power management device; the power management device is adapted to connect to an external charging device and allows the external charging device to charge the energy storage device through the power management device, facilitating wireless use and making it more convenient for situations where the water outlet device frequently needs to be pulled out or moved. The power management device is adapted to detect the voltage value of the energy storage device. When the detected voltage value of the energy storage device is less than a first predetermined value, the power management device is adapted to issue a power shortage signal. The control device is adapted to receive the power shortage signal and control the display device to display a prompt. During the charging process of the energy storage device, when the power management device detects that the voltage value of the energy storage device is equal to a second predetermined value, it stops charging to protect the energy storage device. The second predetermined value is greater than the first predetermined value.

[0035] 13. In Scheme Thirteen and its preferred embodiments, the main body includes a water outlet component and a liquid outlet component. The water outlet component is provided with a water outlet channel, and the liquid outlet component is provided with a liquid outlet channel and is detachably connected to the liquid storage component and the water outlet component. When the user is too far away from the water outlet area and needs beauty treatment, the user can remove the liquid storage component and the liquid outlet component together and use the liquid outlet function independently, which is more convenient. Attached Figure Description

[0036] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments are briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0037] Figure 1 This is a schematic diagram of the water outlet device in Example 1;

[0038] Figure 2 This is a schematic diagram showing the relationship between the components of the water outlet device in Example 1;

[0039] Figure 3 This is a perspective view of the water outlet device in Embodiment 1, where the mounting base is in the first position;

[0040] Figure 4 This is a perspective view of the water outlet device in Embodiment 1, where the mounting base is in the second position;

[0041] Figure 5 This is an exploded view of the water outlet device in Example 1;

[0042] Figure 6 This is a perspective view of the water outlet component in the water outlet device of Embodiment 1;

[0043] Figure 7 This is a perspective view of the liquid outlet component in the water outlet device of Embodiment 1;

[0044] Figure 8 This is a schematic diagram of the assembly of the mounting base, the liquid storage component, and the main body in Example 1;

[0045] Figure 9 This is a schematic diagram of the structure at the liquid outlet in Example 1;

[0046] Figure 10 This is a schematic diagram of the assembly of the liquid storage component and the protective cap in Example 1;

[0047] Figure 11 This is an exploded view of the liquid storage component and protective cap in Example 1;

[0048] Figure 12 A perspective view of the mounting base having three acute-angled protrusions;

[0049] Figure 13 A top view of the mounting base with three acute-angled protrusions;

[0050] Figure 14 A perspective view of the mounting base having four acute-angled protrusions;

[0051] Figure 15 A perspective view of the mounting base with five acute-angled protrusions.

[0052] Explanation of key figure labels:

[0053] Main body 1; Body 11; Water outlet 111; Water outlet channel 1111; Through hole 1112; First groove 1113; Liquid outlet 112; Liquid outlet channel 1121; Mounting groove 1122; First air inlet channel 1123; Second air inlet channel 1124; Air outlet 1125; Elastic groove 1126; Mounting base 12; Connecting channel 121; Sharp protrusion 122; Acute angle protrusion 1221; Flow hole 1222; Air passage 123; Positioning groove 124; Operating gap 13; Liquid storage component 2; Liquid storage chamber 21; Sealing membrane 22; Positioning component 3; Elastic component 4; Pump 5; Valve 6; Energy storage component 71; Power management device 72; Display component 73; Control component 74; Rear cover 8; Protective cover 9; Sealing ring 10. Detailed Implementation

[0054] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are preferred embodiments of the present invention and should not be considered as excluding other embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0055] Unless otherwise expressly defined, the use of terms such as "first," "second," or "third" in the claims, description, and accompanying drawings of this invention is for distinguishing different objects and not for describing a specific order.

[0056] Unless otherwise expressly defined, in the claims, description, and accompanying drawings of this invention, the use of directional terms such as "center," "lateral," "longitudinal," "horizontal," "vertical," "top," "bottom," "inner," "outer," "upper," "lower," "front," "rear," "left," "right," "clockwise," and "counterclockwise" to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing the invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific scope of protection of this invention.

[0057] Unless otherwise expressly defined, the terms "fixed connection" or "fixed connection" used in the claims, description and drawings of this invention should be interpreted broadly to refer to any connection in which there is no displacement or relative rotation relationship between the two parties, including non-removable fixed connection, detachable fixed connection, integral connection and fixed connection by other means or components.

[0058] In the claims, description and accompanying drawings of this invention, the terms "comprising," "having," and variations thereof are used to mean "including but not limited to."

[0059] refer to Figures 1-11 A water outlet device, reference Figure 1 It includes a main body 1, a liquid storage component 2, a pump 5, a valve 6, a positioning component 3, an elastic component 4, a control component 74, an energy storage component 71, a power management device 72, and a display component 73. In this embodiment, the water outlet device is a shower head, but in other embodiments, it can also be a faucet, etc.

[0060] refer to Figure 3 The main body 1 has two separate, non-communicating water outlets 1111 and liquid outlets 1121, meaning the solutions within them will not mix. Water flows from water outlet 1111, while beauty essence flows from liquid outlet 1121. The beauty essence can be a serum or moisturizing lotion, or other liquid used for beauty purposes. (Reference) Figure 4 Specifically, the main body 1 includes the body 11 and the mounting base 12.

[0061] refer to Figure 5 The main body 11 includes a water outlet 111 and a liquid outlet 112. The water outlet 111 has a water outlet channel 1111. In this embodiment, the water outlet channel 1111 can discharge shower water. The opening and closing of the water outlet channel 1111 can be controlled by a switch on the water outlet 111, or by a switch on an external waterway connected to the water outlet device. (Reference) Figure 2 , Figure 7 , Figure 9 The liquid outlet 112 is equipped with a liquid outlet channel 1121, an installation groove 1122, a first air inlet channel 1123, a second air inlet channel 1124, and an air outlet 1125; the liquid outlet channel 1121 is provided with micropores to cut the beauty essence into small particles. (Reference) Figure 2 and Figure 8 The first air intake channel 1123 is connected to the atmosphere at one end and to the liquid storage chamber 21 of the liquid storage device 2 at the other end via valve 6; the second air intake channel 1124 is connected to the atmosphere at one end and to the air outlet 1125 at the other end via pump 5; (Reference) Figure 9 The air outlet 1125 surrounds the outside of the liquid outlet channel 1121. The air outlet 1125 is directed in the direction of liquid outlet micropores and is adapted to allow the gas to collide with the beauty liquid, thereby further dispersing the particulate beauty liquid and achieving atomization.

[0062] refer to Figure 8 The mounting base 12 is provided with a connecting channel 121, and the mounting base 12 is detachably connected to the liquid storage component 2, with one end of the connecting channel 121 communicating with the liquid storage chamber 21. The detachable connection between the mounting base 12 and the liquid storage component 2 is preferably a quick-release structure, such as a rotary snap-fit, threaded connection, magnetic engagement, or adhesive bonding, to achieve quick installation and disassembly. In this embodiment, a rotary snap-fit ​​connection is used. The rotation axis of the mounting base 12 and the liquid storage component 2 is perpendicular to the rotation axis of the mounting base 12 and the body 11. A rotary snap-fit ​​is a method where, after insertion and rotation, it cannot be directly disengaged in the opposite direction of the insertion direction. (Reference) Figure 3 , Figure 4 The mounting base 12 is adapted to move relative to the liquid outlet 112 of the main body 11 in a first position and a second position. In the first position, the mounting base 12 and the liquid storage component 2 are adapted to be placed into the mounting groove 1122, and the other end of the connecting channel 121 is connected to the liquid outlet channel 1121. The mounting base 12 and the liquid storage component 2 being placed into the mounting groove 1122 includes being completely placed into the mounting groove 1122 to maximize aesthetics, or being partially placed into the mounting groove 1122 to reduce the size of the mounting groove 1122, thereby reducing the size of the main body 1. In this embodiment, after the mounting base 12 and the liquid storage component 2 are placed into the mounting groove 1122, the centerline of the mounting base 12 and the liquid storage component 2 is parallel to the opening of the mounting groove 1122. Of course, in other embodiments, the centerline of the mounting base 12 and the liquid storage component 2 may be inclined or perpendicular to the opening of the mounting groove 1122.

[0063] Preferably, when the mounting base 12 and the liquid reservoir 2 are placed into the mounting groove 1122, there is an operating gap 13 between the side of the liquid reservoir 2 away from the mounting base 12 and the groove wall of the mounting groove 1122, which is suitable for inserting fingers or corresponding tools to apply force to the liquid reservoir 2, thereby achieving disassembly; the mounting base 12 is in a second position, so that at least a portion of the liquid reservoir 2 extends out of the mounting groove 1122, so as to facilitate the removal of the liquid reservoir 2 from the mounting base 12. (Reference) Figure 8 The mounting base 12 has sharp protrusions 122, the size of which gradually increases to increase the piercing area. Each sharp protrusion 122 includes an acute-angled protrusion 1221. (Reference) Figures 12-15Preferably, the sharp protrusion 122 may include a plurality of connected acute-angle protrusions 1221, such as two, three or more acute-angle protrusions 1221, each acute-angle protrusion 1221 being radially arranged, and at least one acute-angle protrusion 1221 having a flow hole 1222 penetrating through the acute-angle protrusion 1221 on its sidewall. The flow hole 1222 is adapted to communicate with the liquid storage chamber 21 and the connecting channel 121. In this embodiment, two adjacent acute-angle protrusions 1221 are each provided with a flow hole 1222, the two flow holes 1222 are interconnected and are both connected to the connecting channel 121. During processing, the flow hole 1222 and the connecting channel 121 can be injection molded together using a core.

[0064] The mounting base 12 is also provided with an air passage 123 that connects the first air intake channel 1123 and the liquid storage chamber 21, and a sealing ring 10 is provided between the air passage 123 and the connecting channel 121.

[0065] In this embodiment, the mounting base 12 and the liquid outlet 112 of the body 11 are rotatably connected at a first position and a second position. In other embodiments, the mounting base 12 and the body 11 may also be slidably connected at a first position and a second position.

[0066] Further reference Figure 8 The body 11 has a positioning groove 124 on one of its liquid outlet 112 and mounting base 12, and an elastic groove 1126 on the other. The positioning member 3 is adapted to enter and exit the positioning groove 124. The two ends of the elastic member 4 act on the bottom of the positioning member 3 and the elastic groove 1126 respectively, so that when the mounting base 12 is in the second position, the positioning member 3 extends into the positioning groove 124 under the energy release of the elastic member 4 to achieve positioning. When the mounting base 12 is rotated, the positioning member 3 exits the positioning groove 124, and the elastic member 4 stores energy.

[0067] refer to Figure 8 The liquid storage component 2 is provided with a liquid storage chamber 21, which stores beauty essence. The liquid storage component 2 is detachably connected to the mounting base 12 of the main body 1, and the liquid storage chamber 21 is connected to the liquid outlet channel 1121. (Reference) Figure 10 , Figure 11 Preferably, the liquid storage component 2 is provided with a sealing membrane 22 to seal the liquid storage cavity 21. When the mounting base 12 is detachably connected to the liquid storage component 2, the sharp protrusion 122 is adapted to pierce the sealing membrane 22 so that one end of the connecting channel 121 communicates with the liquid storage cavity 21. To prevent damage to the sealing membrane 22 during transportation, preferably, the protective cover 9 is detachably connected to the liquid storage component 2 and is adapted to cover the sealing membrane 22 to protect the sealing membrane 22. When it is needed, the protective cover 9 is removed to expose the sealing membrane 22.

[0068] refer to Figure 2Pump 5 is used to connect the second air inlet channel 1124 and the air outlet 1125 and accelerate the air flow speed. Since the water outlet surrounds the outside of the liquid outlet channel 1121 and is close to the liquid outlet channel 1121, the air flow speed at the liquid outlet micro-hole increases, so a negative pressure will be formed at the liquid outlet micro-hole.

[0069] refer to Figure 2 The vent passage of valve 6 is normally closed to reduce the inappropriate entry of air into the liquid storage chamber 21 through the first air inlet passage 1123, which could lead to leakage. The vent passage of valve 6 is adapted to open when the pump 5 is turned on to prevent a vacuum from forming in the liquid storage chamber 21.

[0070] refer to Figure 1 , Figure 2 The energy storage device 71 is used to supply power to components such as the pump 5, control device 74, power management device 72, valve 6, and display device 73. The energy storage device 71 is electrically connected to the power management device 72 and is adapted to discharge to the control device 74 through the power management device 72, and then to other components through the control device 74. Of course, in other embodiments, the energy storage device 71 can also discharge to other components independently.

[0071] The power management device 72 is adapted to connect to an external charging device and allow the external charging device to charge the energy storage device 71 through the power management device 72. The power management device 72 is adapted to detect the voltage value of the energy storage device 71. When the detected voltage value of the energy storage device 71 is less than a first predetermined value, the power management device 72 issues a low-power signal, and the control unit 74 is adapted to receive the low-power signal and control the display unit 73 to display low-power information. During the charging process of the energy storage device 71, when the power management device 72 detects that the voltage value of the energy storage device 71 is equal to a second predetermined value, charging is stopped, where the second predetermined value is greater than the first predetermined value. Furthermore, when the power management device 72 detects that the voltage value of the energy storage device 71 is equal to the second predetermined value, it issues a full-charge signal, and the control unit 74 is adapted to receive the low-power signal and control the display unit 73 to display full-charge information. The display unit 73 can display numerical values ​​or emit different lights to indicate the corresponding status.

[0072] In this embodiment, reference Figure 5 The main body 1 can be considered as consisting of three parts: a water outlet assembly, a liquid outlet assembly, and a rear cover 8. The water outlet body 111 forms the water outlet assembly. The liquid outlet assembly consists of a liquid outlet 112, a mounting base 12, a pump 5, a valve 6, a positioning element 3, an elastic element 4, a control element 74, an energy storage element 71, a power management device 72, and a display element 73. The liquid outlet assembly is detachably connected to the liquid storage element 2 and the water outlet assembly. In this embodiment, other components of the liquid outlet assembly can be mounted on the liquid outlet 112, and the liquid outlet 112 is detachably connected to the water outlet assembly, thus allowing the liquid outlet assembly and the water outlet assembly to be detachably connected. (Reference) Figure 6The water outlet 111 has a first groove 1113 and a through hole 1112. The through hole 1112 connects to the bottom of the first groove 1113, and the size of the through hole 1112 is smaller than the size of the bottom of the first groove 1113. The liquid outlet 112 is magnetically connected to the water outlet 111 (or other methods may be used), and the liquid outlet channel 1121, the mounting base 12, and the mounting groove 1122 are exposed through the through hole 1112 for user convenience. In specific implementation, such as... Figure 8 As shown, the liquid outlet 112 has a magnetic connecting surface and a protrusion protruding from the magnetic connecting surface. The liquid outlet channel 1121, the mounting base 12, and the mounting groove 1122 are all on the surface of the protrusion. The protrusion extends into the through hole 1112 so that the liquid outlet channel 1121, the mounting base 12, and the mounting groove 1122 are exposed from the through hole 1112. The rear cover 8 is placed on the water outlet body 111 and seals the opening of the first groove 1113, thereby preventing the liquid outlet 112 from falling out.

[0073] When using, refer to Figure 2 After the water outlet 111 has finished its water dispensing function, the water dispensing is turned off. By pressing the button (or by other means, such as rotating the button, or by voice, the control component 74 controls the pump 5 and valve 6 to open, the second air intake channel 1124 takes in air, and the air outlet blows out air at a relatively high speed, creating a negative pressure at the liquid outlet channel 1121. Under the action of atmospheric pressure, the first air intake channel 1123 takes in air and pushes the beauty liquid in the liquid storage chamber 21 to the liquid outlet channel 1121. The beauty liquid is cut into particles by the liquid outlet micropores and flows out. The air blown out of the air outlet collides with the particles of beauty liquid, causing the beauty liquid to atomize and be absorbed by the user.

[0074] Compared with the prior art, this embodiment has the following beneficial effects:

[0075] In one exemplary embodiment, a water outlet device includes a main body 1 and a liquid storage component 2. The main body 1 is provided with a water outlet channel 1111 and a liquid outlet channel 1121 that are not interconnected, so that the two will not contaminate each other.

[0076] The liquid storage component 2 has a liquid storage chamber 21, which stores beauty essence. The liquid storage component 2 is detachably connected to the main body 1, and the liquid storage chamber 21 is connected to the liquid outlet 1121, allowing beauty essence to flow out of the liquid outlet 1121. The liquid storage component 2 can be removed for replacement when the beauty essence is used up. Therefore, in some embodiments, the liquid storage component 2 can be made smaller. The single-use packaging design avoids product contamination caused by repeated opening, thus reducing the need for preservatives and better preserving the activity of the original product components, making it safer and healthier. During use, water is dispensed through the water outlet 1111 during showering or cleaning, and afterward, the liquid is dispensed through the liquid outlet 1121 to achieve beauty treatment. This structure combines showering or cleaning with beauty treatment, making it more convenient to use.

[0077] In one exemplary embodiment, the main body 1 includes a body 11 and a mounting base 12. The body 11 is provided with a water outlet 1111, a liquid outlet 1121, and a mounting groove 1122. The mounting base 12 is provided with a connecting channel 121, and the mounting base 12 is detachably connected to the liquid storage component 2, with one end of the connecting channel 121 communicating with the liquid storage chamber 21. The mounting base 12 is adapted to move relative to the body 11 to a first position and a second position. In the first position, the mounting base 12 and the liquid storage component 2 are adapted to be placed into the mounting groove 1122, and the other end of the connecting channel 121 is connected to the liquid storage chamber 21. The liquid outlet channel 1121 is connected to the liquid storage chamber 21, thereby enabling the liquid outlet channel 1121 and the liquid storage chamber 21 to be connected. This also allows the mounting base 12 and the liquid storage component 2 to be hidden in the mounting groove 1122, which is more aesthetically pleasing and less likely to cause damage to the liquid storage component 2 during use. When the mounting base 12 is in the second position, at least a part of the liquid storage component 2 extends out of the mounting groove 1122, making the liquid storage component 2 easier to operate and disassemble. At the same time, the connection between the liquid outlet channel 1121 and the liquid storage chamber 21 is disconnected to prevent leakage and waste.

[0078] In one exemplary embodiment, the mounting base 12 is rotatably connected to the body 11 at a first position and a second position. The rotatable connection is simple and convenient. In some embodiments, it is easy to form a force-saving lever between the force applied to the liquid storage component 2 and the rotation axis, which facilitates the rotation of the mounting base 12 through the liquid storage component 2.

[0079] In one exemplary embodiment, the main body 1 further includes an elastic element 4 and a positioning element 3; one of the main body 11 and the mounting base 12 is provided with a positioning groove 124, and the other is provided with an elastic groove 1126; the positioning element 3 is adapted to enter and exit the positioning groove 124; the two ends of the elastic element 4 act on the bottom of the positioning element 3 and the elastic groove 1126 respectively, so that when the mounting base 12 is in the second position, the positioning element 3 extends into the positioning groove 124. On the one hand, the connection between the connecting channel 121 and the liquid outlet channel 1121 is not visible, and the tactile or auditory feedback of the positioning element 3 entering the positioning groove 124 can indicate that it has been rotated into place, indicating that the connecting channel 121 and the liquid outlet channel 1121 are connected. On the other hand, in some water outlet devices, such as showerheads, the opening of the mounting groove 1122 is often facing downwards. The cooperation between the positioning element 3 and the positioning groove 124 can prevent the mounting base 12 and the liquid storage component 2 from rotating due to their own gravity, which would cause the liquid storage chamber 21 and the liquid outlet channel 1121 to be disconnected.

[0080] In one exemplary embodiment, when the mounting base 12 is in the first position, an operating gap 13 is formed between the side of the liquid storage component 2 away from the mounting base 12 and the wall of the mounting groove 1122, which makes it easy for the user to operate the liquid storage component 2 by hand, so that the liquid storage component 2 and the mounting base 12 can rotate. Furthermore, the operating gap 13 is located on the side away from the mounting base 12, and the lever arm is longer, so it is easier to apply force to the liquid storage component 2 on this side.

[0081] In one exemplary embodiment, the mounting base 12 is provided with a sharp protrusion 122, and the liquid storage component 2 is provided with a sealing membrane 22 to seal the liquid storage cavity 21. When the mounting base 12 and the liquid storage component 2 are detachably connected, the sharp protrusion 122 is suitable for piercing the sealing membrane 22 so that one end of the connecting channel 121 is connected to the liquid storage cavity 21. During the assembly of the liquid storage component 2, the action of piercing the sealing membrane 22 is realized at the same time, so that the user does not need to find another tool to remove or pierce the sealing membrane 22, making the operation more convenient.

[0082] In one exemplary embodiment, the protective cover 9 is detachably connected to the liquid storage component 2 and is adapted to cover the sealing film 22, thereby preventing damage to the sealing film 22 during transportation. At the same time, during use, the protective cover 9 can be removed to expose the sealing film 22.

[0083] In one exemplary embodiment, to ensure that the sealing membrane 22 can be completely pierced without obstructing the connecting channel 121 and affecting the liquid discharge effect, the sharp protrusions 122 are designed as a plurality of interconnected and radially arranged acute-angled protrusions 1221. When the sealing membrane 22 is completely pierced, the sealing membrane 22 expands towards the periphery (away from the tip of each sharp protrusion 122). At least one acute-angled protrusion 1221 has a flow hole 1222 on its side wall, which is adapted to communicate with the liquid storage chamber 21 and the connecting channel 121, so that the flow hole 1222 and / or the connecting channel 121 are located in the recessed position of the acute-angled protrusion 1221 (close to the tip of each sharp protrusion 122), so that the connecting channel 121 can communicate with the liquid storage chamber 21 and prevent the sealing membrane 22 from obstructing the flow hole 1222. The flow hole 1222 allows the connecting channel 121 to be closer to the tip of each sharp protrusion 122, and its size can be machined to be larger, which facilitates liquid discharge.

[0084] In one exemplary embodiment, the liquid reservoir 2 is connected to the mounting base 12 by one of the following methods: rotational snap-fit, threaded connection, magnetic engagement, or adhesive bonding. These methods enable quick disassembly and assembly, facilitating user operation. Among them, the rotational snap-fit ​​and threaded connection, which are assembly methods that involve rotation, can increase the puncture area of ​​the liquid reservoir 2 after the sharp protrusion 122 punctures the sealing membrane 22 (the sharp protrusion is irregular in shape or has a distance relative to the axis of rotation), thereby allowing more beauty liquid to flow out of the liquid reservoir 21 and reducing the likelihood of blockage.

[0085] In one exemplary embodiment, the pump 5 and the control unit 74 have micropores in the liquid outlet channel 1121 to granulate the beauty essence for subsequent atomization. The main body 1 also has a first air inlet channel 1123, a second air inlet channel 1124, and an air outlet 1125. One end of the first air inlet channel 1123 is connected to the atmosphere, and the other end is connected to the liquid storage chamber 21. One end of the second air inlet channel 1124 is connected to the atmosphere, and the other end is connected to the air outlet 1125 through the pump 5. The pump 5 can accelerate the airflow, thereby facilitating the formation of negative pressure. The air outlet 1125 is oriented in the direction of liquid outlet micropores and is adapted to allow the gas to collide with the beauty liquid, thus atomizing the beauty liquid for direct absorption by the user. The control component 74 is adapted to control the pump 5 to open, so that the second air inlet channel 1124 and the air outlet 1125 are connected, and a negative pressure is formed at the liquid outlet micropores. This allows the air inlet channel 1123 to push the beauty liquid in the storage chamber 21 into the liquid outlet channel 1121, thus achieving liquid outlet and preventing a vacuum from forming at the storage chamber 21 after liquid outlet, which would prevent subsequent liquid outlet.

[0086] Furthermore, the air outlet 1125 surrounds the outside of the liquid outlet 1121, so as to be close to the liquid outlet 1121, which facilitates the formation of negative pressure and contains the beauty liquid to facilitate the atomization of the beauty liquid, thereby making it easier for the user to absorb.

[0087] In one exemplary embodiment, the other end of the first air intake channel 1123 is connected to the liquid storage chamber 21 via a valve 6. The vent of the valve 6 is normally closed to reduce the inappropriate entry of air into the liquid storage chamber 21 through the first air intake channel 1123, which could lead to leakage or contamination. The vent of the valve 6 is adapted to open when the pump 5 is turned on to prevent vacuum.

[0088] In one exemplary embodiment, the energy storage device 71 is electrically connected to the power management device 72 and is adapted to discharge to the control device 74 through the power management device 72. The power management device 72 is adapted to connect to an external charging device and allow the external charging device to charge the energy storage device 71 through the power management device 72, facilitating wireless use and making it more convenient for situations where the water outlet device frequently needs to be pulled out or moved. The power management device 72 is adapted to detect the voltage value of the energy storage device 71. When the detected voltage value of the energy storage device 71 is less than a first predetermined value, the power management device 72 is adapted to issue a power shortage signal. The control device 74 is adapted to receive the power shortage signal and control the display device 73 to display a prompt. During the charging process of the energy storage device 71, when the power management device 72 detects that the voltage value of the energy storage device 71 is equal to a second predetermined value, the charging is stopped, thereby protecting the energy storage device 71. The second predetermined value is greater than the first predetermined value.

[0089] In one exemplary embodiment, the main body 1 includes a water outlet component and a liquid outlet component. The water outlet component is provided with a water outlet channel 1111, and the liquid outlet component is provided with a liquid outlet channel 1121 and is detachably connected to the liquid storage component 2 and the water outlet component. When the user is too far away from the water outlet area and needs beauty treatment, the user can remove the liquid storage component and the liquid outlet component together and use the liquid outlet function independently, which is more convenient.

[0090] The descriptions of the foregoing specification and embodiments are used to explain the scope of protection of the present invention, but do not constitute a limitation on the scope of protection of the present invention. Modifications, equivalent substitutions, or other improvements to the embodiments of the present invention or some of its technical features that can be obtained by those skilled in the art through logical analysis, reasoning, or limited experimentation, based on the teachings of the present invention or the foregoing embodiments, in conjunction with common general knowledge, ordinary technical knowledge in the art, and / or existing technology, should all be included within the scope of protection of the present invention.

Claims

1. A water outlet device, characterized in that: include The main body (1) is provided with a water outlet channel (1111) and a liquid outlet channel (1121) that are not connected to each other; the main body (1) includes a water outlet assembly, a liquid outlet assembly and a rear cover (8); the water outlet body (111) forms the water outlet assembly, the water outlet channel (1111) is formed in the water outlet body (111), the water outlet body (111) is provided with a first groove (1113) and a through hole (1112), the through hole (1112) is connected to the bottom of the first groove (1113), and the size of the through hole (1112) is smaller than the size of the bottom of the first groove (1113); The liquid outlet assembly includes a mounting base (12) and a liquid outlet (112). The liquid outlet (112) is provided with a liquid outlet channel (1121). The mounting base (12) is rotatably connected to the liquid outlet (112) and is provided with a connecting channel (121). The liquid outlet (112) is magnetically connected to the water outlet body (111), and the liquid outlet channel (1121) and the mounting base (12) are exposed from the through hole (1112). The liquid outlet (112) is installed in the through hole (1112). The rear cover (8) is placed on the water outlet (111) and seals the opening of the first groove (1113); The liquid storage component (2) is provided with a liquid storage chamber (21) containing beauty liquid. The liquid storage component (2) is detachably connected to the mounting base (12), and one end of the connecting channel (121) is connected to the liquid storage chamber (21), and the other end of the connecting channel (121) is connected to the liquid outlet channel (1121).

2. The water outlet device as described in claim 1, characterized in that: The liquid outlet (112) is provided with an installation groove (1122); the mounting base (12) is adapted to rotate relative to the liquid outlet (112) in a first position and a second position. In the first position, the mounting base (12) and the liquid storage component (2) are adapted to be placed in the installation groove (1122) and the other end of the connecting channel (121) is connected to the liquid outlet channel (1121); in the second position, at least a portion of the liquid storage component (2) extends out of the installation groove (1122).

3. The water outlet device as described in claim 2, characterized in that: The liquid dispensing assembly further includes an elastic element (4) and a positioning element (3); one of the liquid dispensing component (112) and the mounting base (12) is provided with a positioning groove (124), and the other is provided with an elastic groove (1126); the positioning element (3) is adapted to enter and exit the positioning groove (124); the two ends of the elastic element (4) act on the bottom of the positioning element (3) and the elastic groove (1126) respectively, so that the positioning element (3) extends into the positioning groove (124) when the mounting base (12) is in the second position.

4. A water outlet device as described in claim 2, characterized in that: When the mounting base (12) is in the first position, the liquid storage component (2) forms an operating gap (13) between the side of the mounting base (12) away from the liquid storage component (2) and the wall of the mounting groove (1122).

5. A water outlet device as described in claim 2, characterized in that: The mounting base (12) is provided with a sharp protrusion (122), and the liquid storage component (2) is provided with a sealing membrane (22) to seal the liquid storage cavity (21). When the mounting base (12) and the liquid storage component (2) are detachably connected, the sharp protrusion (122) is adapted to pierce the sealing membrane (22) so that one end of the connecting channel (121) communicates with the liquid storage cavity (21).

6. A water outlet device as described in claim 5, characterized in that: It also includes a protective cap (9), which is detachably connected to the liquid reservoir (2) and is adapted to cover the sealing membrane (22).

7. A water outlet device as described in claim 5, characterized in that: The sharp protrusion (122) includes a plurality of connected and radially arranged acute-angle protrusions (1221), and at least one of the acute-angle protrusions (1221) has a flow hole (1222) through the acute-angle protrusion (1221) on its side wall. The flow hole (1222) is adapted to communicate with the liquid storage cavity (21) and the connecting channel (121).

8. A water outlet device as described in any one of claims 2-7, characterized in that: The liquid storage component (2) is connected to the mounting base (12) by one of the following methods: rotational snap-fit, threaded connection, magnetic attraction, or adhesive bonding.

9. A water outlet device as described in claim 1, characterized in that: The liquid dispensing assembly also includes a pump (5) and a control unit (74). The liquid dispensing channel (1121) is provided with liquid dispensing micropores. The liquid dispensing (112) is also provided with a first air inlet channel (1123), a second air inlet channel (1124), and an air outlet (1125). One end of the first air inlet channel (1123) is connected to the atmosphere, and the other end is connected to the liquid storage chamber (21). One end of the second air inlet channel (1124) is connected to the atmosphere, and the other end is connected to the air outlet (1125) through the pump (5). The air outlet (1125) is directed to the liquid dispensing direction of the liquid dispensing micropores and is adapted to allow the gas to collide with the beauty liquid. The control unit (74) is adapted to control the pump (5) to open so that the second air inlet channel (1124) and the air outlet (1125) are connected and a negative pressure is formed at the liquid dispensing micropores. The air outlet (1125) surrounds the outside of the liquid dispensing channel (1121).

10. A water outlet device as described in claim 9, characterized in that: The liquid outlet assembly also includes a valve (6), the other end of the first air inlet channel (1123) is connected to the liquid storage chamber (21) through the valve (6), the air passage of the valve (6) is normally closed and is adapted to be opened when the pump (5) is turned on.

11. A water outlet device as described in claim 9, characterized in that: The liquid dispensing assembly further includes an energy storage device (71), a display device (73), and a power management device (72). The energy storage device (71) is electrically connected to the power management device (72) and is adapted to discharge to the control device (74) through the power management device (72). The power management device (72) is adapted to connect to an external charging device and allow the external charging device to charge the energy storage device (71) through the power management device (72). The power management device (72) is adapted to detect the voltage value of the energy storage device (71). When the voltage value of the energy storage device (71) is detected to be less than a first predetermined value, the power management device (72) is adapted to issue a power shortage signal. The control device (74) is adapted to receive the power shortage signal and control the display device (73) to display. During the charging process of the energy storage device (71), when the power management device (72) detects that the voltage value of the energy storage device (71) is equal to a second predetermined value, the charging is stopped. The second predetermined value is greater than the first predetermined value.