Rotary water storage type faucet assembly and water tank assembly

By designing a rotating water storage faucet assembly, the problem of large size and inconsistent appearance caused by the separation of the water purifier faucet and kettle is solved, achieving a compact and integrated structure and optimized appearance, thus improving the user experience.

CN224199976UActive Publication Date: 2026-05-05YUHUAN DAFENG ENVIRONMENT EGIS EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUHUAN DAFENG ENVIRONMENT EGIS EQUIP CO LTD
Filing Date
2025-02-21
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing water purifiers have separate faucets and kettles, resulting in a large overall size, an unintegrated appearance, and inconvenience in use.

Method used

A rotating water storage faucet assembly is designed. By setting an installation part and a rotating support part on the installation body, the water storage container is detachably set on the rotating support part and rotated to fit against the installation part, thus achieving a compact integrated design of the water storage container and the installation part.

Benefits of technology

The faucet components have been made more compact, reducing the overall size and creating a unified appearance, thus improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary water storage type faucet assembly and a water tank assembly. The rotary water storage type faucet assembly comprises an installation main body, the installation main body is further provided with an installation part and a rotary supporting part, the rotary supporting part is rotatably arranged on the installation main body, and the installation part is fixedly arranged on the installation main body and extends upwards; the faucet pipe body is arranged on the mounting part; the water storage container is detachably arranged on the rotary supporting part; and after the water storage container is arranged on the rotary supporting part, the rotary supporting part is configured to rotate around the mounting part, so that the water storage container is attached to the mounting part.
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Description

Technical Field

[0001] This application relates to the field of faucet technology, and in particular to a rotating water storage faucet assembly and a sink assembly. Background Technology

[0002] Water purifiers are common household appliances, and the faucets used with them are for dispensing purified water. Users typically need to carry containers to the faucet to collect the water, which makes them inconvenient to use.

[0003] Chinese patent publication CN118327109A discloses a sink assembly that integrates a faucet and a kettle, allowing water to be collected using the kettle. Although the faucet and kettle are integrated into the sink, they are separate components, resulting in a poor overall design. Furthermore, the separate arrangement of the faucet and kettle contributes to the overall large size.

[0004] Therefore, the technical problem to be solved by this application is how to design a compact structure to reduce the overall volume and achieve an integrated overall appearance design. Summary of the Invention

[0005] The technical problem to be solved by this application is to provide a rotating water storage faucet assembly and a sink assembly, which achieves a compact structural design to reduce the overall volume of the faucet assembly and an integrated overall appearance design to improve the user experience.

[0006] The technical solution provided in this application is a rotary water storage faucet assembly, comprising:

[0007] The mounting body is further provided with a mounting part and a rotating support part. The rotating support part is rotatably mounted on the mounting body, and the mounting part is fixedly mounted on the mounting body and extends upward.

[0008] A faucet body, wherein the faucet body is disposed on the mounting portion;

[0009] A water storage container, which is detachably mounted on the rotating support;

[0010] Wherein, after the water storage container is placed on the rotating support, the rotating support is configured to rotate around the mounting part so that the water storage container is attached to the mounting part.

[0011] In one embodiment, the rotating support is arranged at the lower part of the mounting part, and the upper surface of the rotating support is configured to support the water storage container.

[0012] In one embodiment, the rotating support is arranged on the upper part of the mounting part, and a suspension part is provided on the lower surface of the rotating support, the suspension part being configured to suspend the water storage container.

[0013] In one embodiment, the mounting body further includes a positioning part, which is fixedly disposed on the mounting body;

[0014] After the water storage container is mounted on the rotating support and abuts against the mounting part, the water storage container is located between the rotating support and the positioning part.

[0015] In one embodiment, the portion of the mounting part that fits into the water storage container forms a first arc surface, and the portion of the water storage container that fits into the mounting part forms a second arc surface.

[0016] In one embodiment, the first arc surface is concave and the second arc surface is convex.

[0017] Alternatively, the first arc surface can be convex, and the second arc surface can be concave.

[0018] In one embodiment, after the water storage container is mounted on the rotating support, the first arc surface and the second arc surface are brought together so that the outer contour of the water storage container matches the outer contour of the mounting part.

[0019] In one embodiment, a first water outlet is provided at the top of the faucet body, the faucet body is rotatably mounted on the mounting part, and the first water outlet extends to the outside of the mounting part;

[0020] Alternatively, the top of the faucet body is provided with two second water outlets, which are arranged back to back and extend to the outside of the mounting part; after the water storage container is installed on the rotating support part, one of the second water outlets is located above the water storage container.

[0021] Alternatively, a fourth water outlet is provided on the mounting part, and the fourth water outlet is connected to the connecting water pipe; a water inlet is provided on the side wall of the water storage container; after the water storage container is mounted on the rotating support part, the fourth water outlet is connected to the water inlet.

[0022] In one embodiment, the rotating support is further provided with a first electric heating component, which is configured to heat the water in the water storage container.

[0023] Alternatively, the rotating support is provided with a power supply connector, the water storage container is provided with a power receiving connector, and the water storage container is also provided with a second electric heating component. The first electric heating component is configured to heat the water in the water storage container. After the water storage container is installed on the rotating support, the power receiving connector is electrically connected to the power supply connector.

[0024] In one embodiment, an ultraviolet sterilizer is also provided between the faucet body and the connecting water pipe.

[0025] An embodiment of this application also provides a sink assembly, including a sink body and the aforementioned rotating water storage faucet assembly, wherein the mounting body of the rotating water storage faucet assembly is disposed on the sink body.

[0026] By incorporating an installation section and a rotating support section on the main installation body, the installation section meets the installation requirements of the faucet pipe, while the rotating support section meets the installation requirements of the water storage container. The rotating support section can rotate and move to accommodate the placement and removal of the water storage container. Furthermore, after the water storage container is placed on the rotating support section, rotating the support section allows the container to be brought into close contact with the installation section, resulting in a more compact overall structure and reduced overall volume. Moreover, once the water storage container is in close contact with the installation section, it integrates into the overall design of the main installation body, achieving a unified design and optimizing the overall appearance to enhance the user experience. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 This is the fourth structural schematic diagram of an embodiment of the rotating water storage faucet assembly of this application;

[0029] Figure 2 for Figure 1 A schematic diagram of the water storage container in the separated state of the rotating water storage faucet assembly. Detailed Implementation

[0030] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0031] like Figure 1 and Figure 2 As shown, one embodiment of this application provides a rotary water storage faucet assembly, including:

[0032] Mounting body 1, the mounting body 1 is further provided with mounting part 12 and rotating support part 13, the rotating support part 13 is rotatably mounted on the mounting body 1, and the mounting part 12 is fixedly mounted on the mounting body 1 and extends upward.

[0033] Faucet body 2, which is disposed on the mounting part 12;

[0034] Water storage container 3, which is detachably mounted on the rotating support 13;

[0035] Wherein, after the water storage container 3 is placed on the rotating support part 13, the rotating support part 13 is configured to rotate around the mounting part 12 so that the water storage container 3 is attached to the mounting part 12.

[0036] Specifically, the faucet assembly is equipped with a faucet pipe body 2 that can be connected to water supply equipment (such as water purifiers and direct drinking water machines), and the water output from the water supply equipment is finally discharged through the faucet pipe body 2 and used by the user.

[0037] To diversify the water supply options for the faucet assembly, a water storage container 3 is also included. This container temporarily stores the water output from the water supply equipment. During use, since the water supply equipment has a limited output, when a user needs a certain amount of water, the water output can be temporarily stored in the water storage container 3. The user can then directly remove the water storage container 3 from the main installation unit 1 to use the required amount of water, thus achieving diverse water supply options for the faucet assembly.

[0038] In addition, in order to effectively reduce the overall volume to meet the requirements of compact structural design, the water storage container 3, which can be detached during use, is supported by a rotating support 13. After the water storage container 3 is installed with the rotating support 13, the rotating support 13 can drive the water storage container 3 to rotate so that the water storage container 3 is attached to the mounting part 12.

[0039] In this way, compared to existing technologies, the water storage container 3 and the mounting part 12 of the faucet pipe 2 can be closely attached together, reducing the distance between the faucet pipe 2 and the water storage container 3, thereby making the overall structure more compact and reducing the overall volume. In addition, after the water storage container 3 and the mounting part 12 are attached together, the water storage container 3 can be integrated into the overall appearance design of the mounting body 1, so that the faucet assembly can present a unified appearance design effect to the user, which is different from the conventional faucet and kettle being completely separate.

[0040] Compared with the prior art, the advantages and positive effects of this application are as follows: By providing an installation part 12 and a rotating support part 13 on the installation body 1, the installation part 12 can meet the installation requirements of the faucet pipe body 2, while the rotating support part 13 can meet the installation and use requirements of the water storage container 3. In this way, the faucet assembly can further have the function of water storage, so that users can use the water storage container 3 to obtain a sufficient amount of water at one time to meet the different water needs of users. More importantly, after the water storage container 3 is placed on the rotating support part 13, it can also be attached to the installation part 12, making the overall structure more compact and reducing the overall volume. Furthermore, since the water storage container 3 is attached to the installation part 12, the water storage container 3 can be integrated into the overall appearance design of the installation body 1, realizing the integrated design requirements of the overall appearance, optimizing the overall appearance effect, and improving the user experience.

[0041] In one embodiment, in order to facilitate the fixed installation of the mounting body 1 on the sink, a fixed connection part 11 is provided at the bottom of the mounting body 1, the fixed connection part 11 forms a through channel, and a connecting water pipe (not shown) is also provided on the mounting body 1, the connecting water pipe extending into the through channel; the fixed connection part 11 is configured to fix the mounting body 1 on the sink; the faucet pipe body 2 is connected to the connecting water pipe.

[0042] Specifically, the mounting body 1 is connected and fixed to the water tank via the fixed connection part 11. The fixed connection part 11 can be an externally threaded pipe to meet the requirements for fixed installation with the water tank. There are no restrictions on the physical form of the fixed connection part 11 or the specific installation structure with the water tank.

[0043] In one embodiment, the rotating support 13 is arranged at the lower part of the mounting part 12, and the upper surface of the rotating support 13 is configured to support the water storage container 3.

[0044] Specifically, the rotating support part 13 can adopt the structure of a rotating base. The rotating support part 13 can rotate at the bottom of the mounting part 12, and the water storage container 3 can be placed on the upper surface of the rotating support part 13 to support the water storage container 3.

[0045] In another embodiment, the rotating support 13 is arranged on the upper part of the mounting part 12, and a suspension part is provided on the lower surface of the rotating support 13, which is configured to suspend the water storage container 3.

[0046] Specifically, the rotating support 13 can adopt a rotating hanger structure. The rotating support 13 can rotate above the mounting part 12, and the water storage container 3 can be suspended on the rotating support 13 so as to suspend and support the water storage container 3 through the rotating support 13.

[0047] The water storage container 3 can be suspended from the rotating support 13 using conventional methods for suspending a kettle. For example, the top of the water storage container 3 may have an external thread, allowing it to be suspended from the rotating support 13 via a threaded connection; alternatively, the top of the water storage container 3 may have a tongue, and the rotating support 13 may have a slot, allowing the tongue to be inserted into the slot to suspend the water storage container 3 from the rotating support 13. No specific structural limitations are imposed on the arrangement of the water storage container 3 on the rotating support 13.

[0048] In another embodiment, the mounting body 1 further includes a positioning part 15, which is fixedly disposed on the mounting body 1;

[0049] After the water storage container 3 is mounted on the rotating support part 13 and abuts against the mounting part 12, the water storage container 3 is located between the rotating support part 13 and the positioning part 15.

[0050] Specifically, a positioning part 15 is added to the mounting body 1 to cooperate with the rotating support part 13 in positioning and installing the water storage container 3. After the water storage container 3 is attached to the mounting part 12, the positioning part 15 is arranged opposite to the rotating support part 13, so that the water storage container 3 is sandwiched between the positioning part 15 and the rotating support part 13. The positioning part 15 can be plate-shaped to meet the requirement of cooperating with the rotating support part 13 to position and install the water storage container 3.

[0051] In one embodiment, the water storage container 3 is further formed with a contour matching portion 31 that matches the shape of the mounting body 1;

[0052] Wherein, after the water storage container 3 is placed on the rotating support part 13, the contour matching part 31 is attached to the mounting part 12 so that the water storage container 3 matches the shape of the mounting body 1.

[0053] Specifically, the mounting part 12 is used to install the faucet pipe body 2. Normally, the mounting part 12 will protrude from the mounting body 1 and extend upward. In order to make the water storage container 3 closer to the faucet pipe body 2, the contour matching part 31 can be made to fit against the mounting part 12.

[0054] Since the contour matching part 31 can match the shape of the water storage container 3 with the mounting body 1, after the water storage container 3 is assembled onto the mounting body 1, the water storage container 3 and the mounting body 1 can present an integrated overall appearance design, thereby improving the appearance and enhancing the user experience.

[0055] The water storage container 3 has a corresponding contour matching part 31 to ensure that it can match the overall shape of the mounting body 1 after being placed on the rotating support part 13. This allows the water storage container 3 to be integrated into the overall appearance contour design of the mounting body 1, achieving the integrated design requirements of the overall appearance, optimizing the overall appearance effect, and improving the user experience.

[0056] As a household appliance in daily life, the aesthetics of a faucet are an important indicator affecting the user experience. Compared to the conventional faucet hose being completely separate from the kettle, the contour matching part on the water storage container allows the main body, faucet hose, and water storage container to match each other in appearance, achieving a unified visual effect. It also allows the faucet hose and water storage container to be replaced and placed close together, thus reducing the overall size.

[0057] In one embodiment, the mounting portion 12 has a column structure and extends upward toward the mounting body 1;

[0058] After the water storage container 3 is mounted on the rotating support part 13, the side wall of the water storage container 3 abuts against the mounting part 12.

[0059] Specifically, the side wall of the water storage container 3 is attached to the mounting part 12, so that the water storage container 3 can be attached tightly to the mounting part 12 to get as close as possible to the faucet pipe body 2, thereby reducing the distance between the water storage container 3 and the faucet pipe body 2.

[0060] After the water storage container 3 is installed on the rotating support part 13, the side wall of the water storage container 3 is tightly attached to the mounting part 12, making the overall structure of the faucet assembly more compact and realizing the compact design of the overall structure to reduce the volume.

[0061] Furthermore, the portion of the side wall of the water storage container 3 that abuts against the mounting part 12 will form a contour matching part 31. The contour matching part 31 can match the outer contour of the mounting part 12 to optimize the overall appearance. For example, after the mounting part 12 and the water storage container 3 are abutted together, the cross-section of the combined structure formed by the water storage container 3 and the mounting part 12 can be a conventional shape structure with an integrated appearance design, such as a circle, ellipse, or trapezoid.

[0062] Furthermore, in order to improve the installation reliability of the water storage container 3 onto the mounting body 1 and to meet the requirements of the rotating support 13 driving the water storage container 3 to rotate in coordination with the mounting part 12.

[0063] The portion of the mounting part 12 that is in contact with the water storage container 3 forms a first arc surface, and the portion of the water storage container 3 that is in contact with the mounting part 12 forms a second arc surface.

[0064] Specifically, the part of the water storage container 3 that fits into the mounting part 12 has an arc-shaped structure. In this way, as the water storage container 3 rotates with the rotating support part 13, it can be ensured that the first arc surface and the second arc surface do not interfere with each other, so as to ensure that the rotating support part 13 opens smoothly.

[0065] Wherein, the first arc surface is concave and the second arc surface is convex; or, the first arc surface is convex and the second arc surface is concave.

[0066] In addition, after the water storage container 3 is mounted on the rotating support 13, the first arc surface and the second arc surface are brought together so that the outer contour of the water storage container 3 matches the outer contour of the mounting part 12.

[0067] Specifically, taking the first arc surface as a convex surface and the second arc surface as a concave surface as an example, the second arc surface forms a recessed structure on the water storage container 3. This recessed structure matches the shape of the mounting part 12, so that after the water storage container 3 and the mounting part 12 are attached together, part of the structure of the mounting part 12 will be located in the recessed structure. In this way, on the one hand, the water storage container 3 is supported by the rotating support part 13, and on the other hand, the water storage container 3 is further positioned by the mounting part 12 to improve the installation reliability of the water storage container 3.

[0068] In another embodiment, to meet the water supply requirements of the water storage container 3, a first water outlet is provided at the top of the faucet body 2. The faucet body 2 is rotatably mounted on the mounting part 12, and the first water outlet extends outside the mounting part 12. Specifically, the faucet body 2 has a first water outlet at its top, and the faucet body 2 can rotate relative to the mounting part 12. Thus, when water needs to be supplied to the water storage container 3, the faucet body 2 is rotated so that the first water outlet is positioned above the water storage container 3, allowing water to be delivered to the water storage container 3 from the top through the first water outlet.

[0069] The faucet body 2 has two second water outlets at its top, arranged back-to-back, extending beyond the mounting portion 12. After the water storage container 3 is mounted on the rotating support portion 13, one of the second water outlets is positioned above the water storage container 3. Specifically, the faucet body 2 has two second water outlets at its top, arranged back-to-back. Both second water outlets can be independently controlled; for example, each second water outlet can be equipped with a corresponding water valve (manual or electrically controlled) to meet the requirement of independent water supply control. The second water outlet positioned above the water storage container 3 can also supply water from the top into the container 3.

[0070] Alternatively, the rotating support 13 has a third water outlet, which is connected to the connecting water pipe; the bottom of the water storage container 3 is provided with a water inlet valve; after the water storage container 3 is placed on the rotating support 13, the water inlet valve is connected to the third water outlet. Specifically, the bottom of the water storage container 3 is provided with a water inlet valve, and correspondingly, the rotating support 13 is provided with a third water outlet. During use, after the water storage container 3 is placed on the rotating support 13, the water inlet valve is connected to the third water outlet, at which time the water inlet valve will open, thereby satisfying the requirement of supplying water from the bottom of the water storage container 3 to the water storage container 3 through the third water outlet. The structure of the water inlet valve to achieve water supply from the bottom of the water storage container 3 can refer to the conventional water supply method of the bottom of a kettle, for example, the solution disclosed in Chinese Patent Publication No. CN 208510746 U, which will not be limited or elaborated here.

[0071] The mounting part 12 is provided with a fourth water outlet 23, which is connected to the connecting water pipe; the water storage container 3 has a water inlet on its side wall; after the water storage container 3 is placed on the rotating support part 13, the fourth water outlet 23 is connected to the water inlet. Specifically, the water inlet is located near the top of the side wall of the water storage container 3, and correspondingly, the fourth water outlet 23 is located in the upper area of ​​the mounting part 12. During use, after the water storage container 3 is placed on the rotating support part 13, the water inlet is connected to the fourth water outlet 23, thereby allowing water to be supplied to the water storage container 3 through the fourth water outlet 23.

[0072] In some embodiments, to allow for temperature regulation of the water in the water storage container 3, a first electric heating element is also provided on the rotating support 13. This first electric heating element is configured to heat the water in the water storage container 3. Specifically, after the water storage container 3 is placed on the rotating support 13, the first heating element on the rotating support 13 is energized to generate heat, thereby heating the water in the water storage container 3 to a set temperature. For example, if a user needs warm water, the first heating element can heat the water in the water storage container 3 to approximately 40 degrees Celsius, allowing the user to remove the water storage container 3 and obtain warm water for drinking.

[0073] Alternatively, the rotating support 13 may be equipped with a power supply connector (not shown), and the water storage container 3 may be equipped with a power receiving connector (not shown). The water storage container 3 may also be equipped with a second electric heating element, and the first electric heating element may be configured to heat the water in the water storage container 3. After the water storage container 3 is placed on the rotating support 13, the power receiving connector and the power supply connector are electrically connected. Specifically, the water storage container 3 may adopt a structure similar to a kettle, that is, the water storage container 3 itself is equipped with a second electric heating element. After the water storage container 3 is placed on the rotating support 13, the power supply connector and the power receiving connector are electrically connected to supply power to the second electric heating element, thereby using the second electric heating element to heat the water in the water storage container 3.

[0074] There are various physical manifestations of the electric heating component. For example, it can be represented by an electric heating tube, an electric heating plate, or a semiconductor cooling chip. When a semiconductor cooling chip is used, it can also be used to cool the water in the water storage container 3.

[0075] In some embodiments, the faucet body 2 and the connecting water pipe need to be sealed during assembly. Similarly, the connecting water pipe and the faucet body 2 in the installation body 1 can be made into an integral structure.

[0076] In some embodiments, an ultraviolet sterilizer is also provided between the faucet body 2 and the connecting water pipe.

[0077] Specifically, the ultraviolet (UV) sterilizer can sterilize the water flowing from the connecting water pipe into the faucet body 2, thereby improving the quality of drinking water. The UV sterilizer can be a device that uses conventional technology to sterilize flowing water with UV light; for example, a flow-through UV sterilizer can be used to sterilize the flowing water. Alternatively, the connecting water pipe can be a transparent quartz tube, and the UV sterilizer can be a UV LED, which irradiates the water flowing in the connecting water pipe with ultraviolet light from outside the pipe to achieve sterilization. No specific physical form of the UV sterilizer is limited here.

[0078] In addition, to achieve a dual purpose, the ultraviolet sterilizer can also irradiate the water in the water storage container 3 with ultraviolet light, thereby achieving a bactericidal effect. Specifically, the ultraviolet sterilizer can be installed on the mounting part 12, and in addition to irradiating the water transported through the connected water pipe, it can also irradiate some of the ultraviolet light into the water storage container 3, thus irradiating the water in the water storage container 3 with ultraviolet light.

[0079] Accordingly, to meet the requirements of ultraviolet irradiation, the water storage container 3 can be equipped with a quartz window (not shown). After the water storage container 3 is mounted on the rotating support 13, the quartz window is arranged opposite to the ultraviolet sterilizer. Meanwhile, to prevent ultraviolet radiation from the ultraviolet sterilizer 14 from damaging the user's eyes after the water storage container 3 leaves the support 13, the power supply to the ultraviolet sterilizer 14 can be controlled manually via a switch. Alternatively, a Hall effect switch can be configured on the support 13 in conjunction with a magnet on the water storage container 3 to automatically control the power supply to the ultraviolet sterilizer 14. In this case, if the ultraviolet sterilizer 14 is a flow-through type, a quartz window can be provided on the housing of the ultraviolet sterilizer 14 to cooperate with the quartz window of the water storage container 3 to meet the requirement of ultraviolet irradiation into the water storage container 3. If the ultraviolet sterilizer 14 is an ultraviolet light source (UVLED), a quartz window can be set on the faucet tube 2 to simultaneously perform ultraviolet sterilization on the faucet tube 2 and the water storage container 3. There are no restrictions on the specific structural design.

[0080] Meanwhile, to meet the requirement of ultraviolet light sterilization treatment of the water storage container 3, an independent ultraviolet light source (UVLED) can be configured to irradiate the water stored in the water storage container 3 with ultraviolet light. For example, an independent ultraviolet light source can be configured on the mounting part 12, and the ultraviolet light source irradiates the water in the water storage container 3 through a quartz window on the water storage container 3. Alternatively, the water storage container 3 itself is equipped with an ultraviolet light source, and after the water storage container 3 is placed on the rotating support part 13, the power supply connector configured on the rotating support part 13 is electrically connected to the power receiving connector configured on the water storage container 3 to meet the power supply requirements of the ultraviolet light source configured on the water storage container 3.

[0081] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.

Claims

1. A rotating water storage faucet assembly, characterized in that, include: The mounting body is further provided with a mounting part and a rotating support part. The rotating support part is rotatably mounted on the mounting body, and the mounting part is fixedly mounted on the mounting body and extends upward. A faucet body, wherein the faucet body is disposed on the mounting portion; A water storage container, which is detachably mounted on the rotating support; Wherein, after the water storage container is placed on the rotating support, the rotating support is configured to rotate around the mounting part so that the water storage container is attached to the mounting part.

2. The rotary water storage faucet assembly according to claim 1, characterized in that, The rotating support is arranged at the lower part of the mounting part, and the upper surface of the rotating support is configured to support the water storage container.

3. The rotary water storage faucet assembly according to claim 1, characterized in that, The rotating support is arranged on the upper part of the mounting part, and a suspension part is provided on the lower surface of the rotating support. The suspension part is configured to suspend the water storage container.

4. The rotary water storage faucet assembly according to claim 1, characterized in that, The mounting body also includes a positioning part, which is fixedly disposed on the mounting body; After the water storage container is mounted on the rotating support and abuts against the mounting part, the water storage container is located between the rotating support and the positioning part.

5. The rotary water storage faucet assembly according to claim 1, characterized in that, The portion of the mounting part that fits into the water storage container forms a first arc surface, and the portion of the water storage container that fits into the mounting part forms a second arc surface.

6. The rotary water storage faucet assembly according to claim 5, characterized in that, The first arc surface is concave, and the second arc surface is convex. Alternatively, the first arc surface can be convex, and the second arc surface can be concave.

7. The rotary water storage faucet assembly according to claim 5, characterized in that, After the water storage container is mounted on the rotating support, the first arc surface and the second arc surface are brought together so that the outer contour of the water storage container matches the outer contour of the mounting part.

8. The rotary water storage faucet assembly according to any one of claims 1-7, characterized in that, The rotating support is also provided with a first electric heating component, which is configured to heat the water in the water storage container. Alternatively, the rotating support is provided with a power supply connector, the water storage container is provided with a power receiving connector, and the water storage container is also provided with a second electric heating component. The first electric heating component is configured to heat the water in the water storage container. After the water storage container is installed on the rotating support, the power receiving connector is electrically connected to the power supply connector.

9. The rotary water storage faucet assembly according to any one of claims 1-7, characterized in that, An ultraviolet sterilizer is also installed between the faucet body and the connecting water pipe.

10. A water tank assembly, comprising a water tank body, characterized in that, It also includes a rotary water storage faucet assembly as described in any one of claims 1-9, wherein the mounting body of the rotary water storage faucet assembly is disposed on the water tank body.

Citation Information

Patent Citations

  • Sink assembly

    CN118327109A

  • Electromagnetism kettle

    CN208510746U