faucet

The faucet design with mechanical linkage enables synchronized water temperature adjustment and display, solving the problem of existing faucets lacking intuitive temperature indication, improving adjustment accuracy and user safety, and making it suitable for humid environments.

CN224680254UActive Publication Date: 2026-08-25XIAMEN JIANLIN SMART HOME CO LTD
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Patent Information

Application Number
CN202522066891.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-08-25
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

Existing faucets lack real-time and intuitive indication of water temperature, which can easily lead to scalding or cold shock risks for users when adjusting the water temperature due to visual errors or misjudgments. In addition, electronic sensor solutions are complex in structure, difficult to manufacture, and have poor durability.

Method used

A faucet was designed, including a faucet body, a valve core assembly, a temperature display assembly, and a handle mechanism. Through mechanical linkage, the handle mechanism can adjust the water outlet temperature of the valve core assembly and simultaneously drive the rotating mechanism to display the water temperature. The relative positional changes of the fixed mechanism and the rotating mechanism, which adopt a compact layout, provide an intuitive temperature display.

Benefits of technology

It improves the accuracy and efficiency of water temperature regulation, reduces visual errors, avoids failures caused by circuit malfunctions, is suitable for humid environments, and enhances user safety and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a faucet belongs to bathroom device field. The faucet include: faucet body, valve core subassembly, temperature display subassembly and handset structure, and temperature display subassembly can include adjacent setting fixed establishment and rotating mechanism. The faucet can realize temperature regulation and temperature display through mechanical linkage synchronization, and when temperature regulation, the rotating mechanism in temperature display subassembly is synchronously driven to handset structure, makes its relative displacement relative to fixed establishment, and the change of fixed establishment and rotating mechanism relative position can provide intuitive, visual water temperature display, can promote the accuracy and efficiency of temperature regulation. Moreover, temperature display subassembly adopts compact layout, has shortened the interval of temperature mark and indicating mark, has reduced visual parallax, has guaranteed the accuracy of multi -angle reading. In addition, the structure of faucet is all mechanical structure, can avoid the failure caused by circuit fault, battery depletion or program error, promotes the applicability and reliability of faucet.
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Description

Technical Field

[0001] This utility model relates to the field of bathroom fixtures, and in particular to a faucet. Background Technology

[0002] As a basic water flow control device, faucets are widely used in kitchens, bathrooms, and other environments in homes and commercial spaces. Especially in bathing settings, users are highly sensitive to water temperature, and a comfortable water temperature significantly enhances the user experience. Currently, most mainstream faucets on the market typically consist of a faucet body, a valve core, and an operating handle. Their inlets are connected to both hot and cold water supply lines, and the mixing ratio of hot and cold water is controlled by adjusting the handle angle, thus outputting water at a suitable temperature.

[0003] However, most existing faucets only provide water dispensing functionality and lack real-time, intuitive indication of water temperature. Users often rely on static "cold" or "hot" indicators on the handle or habitual operation to judge the water temperature. In haste, visual errors or misjudgments can easily lead to misoperation, posing a safety risk of scalding or cold shock. Some products use electronic sensors and digital displays to provide temperature indications, but these solutions are complex in structure, difficult to manufacture, and have poor durability. Utility Model Content

[0004] This utility model embodiment provides a faucet, the technical solution of which is as follows: The faucet includes: a faucet body, a valve core assembly, a temperature display assembly, and a handle mechanism; The valve core assembly is disposed within the faucet body; The temperature display component includes a fixing mechanism and a rotating mechanism arranged adjacent to each other. The fixing mechanism is fixedly installed on the faucet body, and the rotating mechanism is movably installed on the faucet body. The handle mechanism is connected to the valve core assembly and the rotating mechanism. The handle mechanism can swing to adjust the outlet water temperature of the valve core assembly, and drive the rotating mechanism to rotate synchronously when swinging, so as to display the outlet water temperature through the relative position of the rotating mechanism and the fixed mechanism.

[0005] Optionally, the rotating mechanism has a temperature indicator, and the fixing mechanism has an indicator. Rotating the rotating mechanism switches the corresponding positions of the temperature indicator and the indicator.

[0006] Optionally, the rotating mechanism includes a rotating plate and an assembly, the rotating plate being located at one end of the faucet body, the assembly being connected to the handle mechanism, and the temperature markings including multiple color markings set on the rotating plate, the multiple color markings being used to represent multiple temperatures; The fixing mechanism includes a decorative cover, which is disposed on the outside of the rotating plate and fixedly connected to the faucet body. The indicator includes an observation window disposed on the decorative cover, which is used to read the corresponding color mark on the rotating plate.

[0007] Optionally, the handle mechanism includes a liner and a handle component; The liner kit is connected to the assembly, and the liner kit has a first mounting through hole; The handle is inserted into the first mounting hole and connected to the valve core assembly.

[0008] Optionally, the liner kit has a lever at one end near the assembly; The assembly has a slot that matches the lever, and at least a portion of the lever is fitted into the slot.

[0009] Optionally, the decorative cover includes a cover body and a connecting portion, the connecting portion being fixed to the side of the cover body facing the rotating plate; The rotating plate has a second mounting through hole, and the connecting part passes through the second mounting through hole and connects to the faucet body.

[0010] Optionally, the faucet body has an arc-shaped groove, the extension direction of which is parallel to the swing direction of the handle mechanism, and the fitting is inserted into the arc-shaped groove.

[0011] Optionally, the multiple color markings include a first color marking, a second color marking, and a third color marking arranged sequentially along the rotation direction of the rotating plate. The first color marking is used to indicate the hot water state, the second color marking is used to indicate the mixed water state, and the third color marking is used to indicate the cold water state. The second color identifier is a gradient color, the part of the second color identifier close to the first color identifier has a similar hue to the first color identifier, and the part of the second color identifier close to the third color identifier has a similar hue to the third color identifier.

[0012] Optionally, the two ends of the second color identifier are connected to the first color identifier and the third color identifier, respectively.

[0013] Optionally, the observation window includes a light-transmitting window disposed on the decorative cover, or the observation window includes a through hole disposed on the decorative cover.

[0014] The beneficial effects of the technical solution provided by this utility model embodiment include at least the following: A faucet is provided, comprising a faucet body, a valve core assembly, a temperature display assembly, and a handle mechanism. The temperature display assembly may include a fixed mechanism and a rotating mechanism arranged adjacent to each other. The handle mechanism is connected to the valve core assembly and the rotating mechanism. The handle mechanism can swing to adjust the water temperature of the valve core assembly and drives the rotating mechanism to rotate synchronously during swinging, displaying the water temperature through the relative position of the rotating mechanism and the fixed mechanism. Thus, the faucet can achieve temperature adjustment and display synchronously through mechanical linkage. During temperature adjustment, the handle mechanism synchronously drives the rotating mechanism in the temperature display assembly, causing it to move relative to the fixed mechanism. The change in the relative position of the fixed and rotating mechanisms provides an intuitive and visual display of the water temperature, improving the accuracy and efficiency of temperature adjustment. Furthermore, the temperature display assembly adopts a compact layout, shortening the distance between the temperature markings and indicator markings, reducing visual parallax, and ensuring accurate reading from multiple angles. In addition, the faucet structure is entirely mechanical, avoiding failures caused by circuit faults, battery depletion, or program errors, improving the faucet's applicability and reliability, making it suitable for humid environments such as bathrooms. Attached Figure Description

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

[0016] Figure 1 This is a schematic diagram of the structure of a faucet provided in an embodiment of the present utility model; Figure 2 yes Figure 1 The diagram shows an exploded structure of a dragon head. Figure 3 yes Figure 1 The diagram shows another exploded structure of the dragon head; Figure 4 This is a schematic diagram of a partially exploded structure of a faucet provided in an embodiment of this utility model; Figure 5 yes Figure 1 The diagram shows another exploded structure of the dragon head; Figure 6 This is a schematic diagram of a partial cross-sectional structure of a faucet provided in an embodiment of this utility model.

[0017] Explanation of reference numerals in the attached figures: Faucet body 11; cold water inlet pipe 21, hot water inlet pipe 22, arc-shaped slide c2, valve core assembly 12; temperature display assembly 13, fixing mechanism 131, indicator z1, decorative cover 1311, observation window 1312, cover body t1, connecting part t2, rotating mechanism 132, temperature indicator z2, rotating plate 1321, second mounting through hole k2, fitting 1322, strip groove c1; handle mechanism 14, bushing 141, lever 1411, first mounting through hole k1, handle part 142; decorative shell 15. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0019] Although the present invention can be readily embodied in various forms, only some specific embodiments are shown in the accompanying drawings and will be described in detail in this specification. It is understood that this specification should be regarded as an exemplary illustration of the principles of the present invention and is not intended to limit the present invention to what is described herein.

[0020] Therefore, a feature pointed out in this specification is used to describe one feature of one embodiment of the present invention, and does not imply that every embodiment of the present invention must have the described feature. Furthermore, it should be noted that this specification describes many features. Although certain features may be combined to illustrate possible system designs, these features may also be used in other combinations not explicitly stated. Therefore, unless otherwise stated, the described combinations are not intended to be limiting.

[0021] In the embodiments shown in the accompanying drawings, the directional indications (such as up, down, left, right, front, and back) used to explain the structure and movement of the various elements of this invention are relative rather than absolute. These descriptions are appropriate when these elements are in the positions shown in the drawings. If the descriptions of the positions of these elements change, these directional indications also change accordingly.

[0022] Please refer to Figure 1 , Figure 2 and Figure 3 , Figure 1 This is a schematic diagram of the structure of a faucet provided in an embodiment of the present utility model. Figure 2 yes Figure 1 The diagram shown is an exploded structural representation of a dragon head. Figure 3 yes Figure 1 The diagram shows another exploded view of the faucet, which may include: faucet body 11, valve core assembly 12, temperature display assembly 13 and handle mechanism 14.

[0023] The valve core assembly 12 is located inside the faucet body 11. The faucet body 11 has an installation chamber and cold water inlet channel, hot water inlet channel, and outlet channel communicating with the installation chamber. The valve core assembly 12 can be installed in the installation chamber. The valve core assembly 12 can adjust and control the inflow ratio and on / off state of the cold water inlet channel and the hot water inlet channel through the relative movement of the internal structure, and output the mixed water flow through the outlet channel, thereby achieving the purpose of adjusting the outlet water flow and outlet water temperature. The faucet can also be connected to two inlet pipes (cold water inlet pipe 21 and hot water inlet pipe 22), wherein the cold water inlet channel is connected to the cold water inlet pipe 21, and the hot water inlet channel is connected to the hot water inlet pipe 22.

[0024] The temperature display assembly 13 may include a fixed mechanism 131 and a rotating mechanism 132 arranged adjacent to each other. The fixed mechanism 131 is fixedly mounted on the faucet body 11, and the rotating mechanism 132 is movably mounted on the faucet body 11. Thus, the fixed mechanism is rigidly fixed to the faucet body 11 by mechanical connection (e.g., threaded fastening or snap-fit ​​installation), so that the fixed mechanism 131 can serve as a static reference, providing a stable display basis for the temperature display; the rotating mechanism is mounted on the faucet body by sliding connection or bearing engagement, so that the rotating mechanism 132 can serve as a dynamic unit, for example, allowing the rotating unit to rotate around the axis of the faucet body 11, thereby allowing the relative position between the rotating mechanism 132 and the fixed mechanism 131 to change. For example, the rotating mechanism 132 may have a temperature mark z2, which may include a scale value or a hot and cold range. The fixing mechanism 131 may have an indicator mark z1, or the fixing mechanism 131 may have a temperature mark z2 and the rotating mechanism 132 may have an indicator mark z1. The current outlet water temperature can be obtained by the relative position of the indicator mark z1 and the scale value or hot and cold range.

[0025] The handle mechanism 14 is connected to the valve core assembly 12 and the rotating mechanism 132. The handle mechanism 14 can swing to adjust the water outlet temperature of the valve core assembly 12, and drive the rotating mechanism 132 to rotate synchronously during swinging, so as to display the water temperature through the relative position of the rotating mechanism 132 and the fixed mechanism 131. The user can swing the handle mechanism 14 around the circumference of the faucet body to move the internal structure of the valve core assembly 12, thereby adjusting the water outlet temperature of the faucet body 11. In addition, the user can swing the handle mechanism 14 around the axial direction of the faucet body to adjust the water flow rate of the faucet body 11 by driving the valve core assembly 12, and can open or close the faucet.

[0026] When the user adjusts the water temperature of the faucet through the handle mechanism 14, the rotating mechanism 132 can be rotated simultaneously, causing the rotating mechanism 132 to move relative to the fixed mechanism 131. Thus, the user can intuitively obtain the current water temperature by observing the relative position change between the rotating mechanism 132 and the fixed mechanism 131.

[0027] In related technologies, static "cold" and "hot" indicators are typically set on the handle mechanism 14 to provide users with directional guidance for adjusting the temperature. However, this guidance method is inaccurate and is prone to misoperation due to visual errors or misjudgments. In this embodiment of the present invention, the relative positions of the rotating mechanism 132 and the fixed mechanism 131 form a directly readable, specific, and visual reference value for the outlet water temperature. This allows users to obtain a more accurate outlet water temperature without having to make vague guesses about the outlet water temperature during adjustment, thus improving the accuracy and efficiency of outlet water temperature adjustment and enhancing the user experience.

[0028] Furthermore, in this embodiment of the faucet, through mechanical linkage, the rotating mechanism 132 in the temperature display component 13 moves synchronously when the handle mechanism 14 swings, causing the relative positions of the rotating mechanism 132 and the fixed mechanism 131 to change synchronously. That is, the display content of the temperature display component 13 changes synchronously, providing users with predictive safety protection. Users can predict the water temperature before dispensing water based on the changes in the display content of the temperature display component 13, thereby actively avoiding unsafe temperature ranges and preventing scalding.

[0029] Furthermore, the fixed mechanism 131 and the rotating mechanism 132 are arranged in a compact, adjacent configuration, which shortens the distance between the temperature indicator z2 and the indicator z1, thereby reducing visual parallax and improving the accuracy of temperature display from different viewing angles. The structures on the faucet used for water temperature adjustment and display are all mechanical, requiring no electricity, electronic sensors, or software programs. This avoids the risk of failure due to circuit malfunctions, battery depletion, or program errors, improving the faucet's applicability and reliability, making it suitable for humid environments such as bathrooms.

[0030] In summary, this utility model embodiment provides a faucet including a faucet body 11, a valve core assembly 12, a temperature display assembly 13, and a handle mechanism 14. The temperature display assembly 13 may include a fixed mechanism 131 and a rotating mechanism 132 arranged adjacent to each other. The handle mechanism 14 is connected to the valve core assembly 12 and the rotating mechanism 132. The handle mechanism 14 can swing to adjust the outlet water temperature of the valve core assembly 12, and drive the rotating mechanism 132 to rotate synchronously during swinging, so as to display the water temperature through the relative position of the rotating mechanism 132 and the fixed mechanism 131. In this way, the faucet can realize temperature adjustment and temperature display synchronously through mechanical linkage. During temperature adjustment, the handle mechanism 14 synchronously drives the rotating mechanism 132 in the temperature display assembly 13, so that it produces a relative displacement with respect to the fixed mechanism 131. The change in the relative position of the fixed mechanism 131 and the rotating mechanism 132 can provide an intuitive and visual display of the outlet water temperature, which can improve the accuracy and efficiency of temperature adjustment. Furthermore, the temperature display assembly adopts a compact layout, shortening the distance between the temperature mark z2 and the indicator mark z1, reducing visual parallax, and ensuring the accuracy of multi-angle reading. In addition, all faucets are mechanical structures, which can prevent failures caused by circuit faults, battery depletion or program errors, thus improving the applicability and reliability of the faucets and making them suitable for humid environments such as bathrooms.

[0031] Please refer to Figure 2 , Figure 3 and Figure 4 , Figure 4 This is a partially exploded structural diagram of a faucet according to an embodiment of the present invention. In an optional embodiment, the rotating mechanism 132 may have a temperature indicator z2, and the fixing mechanism 131 may have an indicator z1. Rotating the rotating mechanism 132 switches the corresponding positions of the temperature indicator z2 and the indicator z1, thereby changing the temperature displayed on the temperature display component 13. When the user rotates the handle mechanism 14 to adjust the water temperature, the rotating mechanism 132 with the temperature indicator z2 rotates synchronously, producing a direct visual effect of temperature change. Thus, the dynamic feedback process allows the user to directly perceive the control of the water temperature, improving the user experience.

[0032] In one optional embodiment, the rotating mechanism 132 may include a rotating plate 1321 and a fitting 1322. The rotating plate 1321 is located at one end of the faucet body 11, and the fitting 1322 is connected to the handle mechanism 14. The temperature indicator z2 may include multiple color markings disposed on the rotating plate 1321 to represent multiple temperatures. For example, the multiple colors may include blue and red, where blue represents cold water and red represents hot water; or, the multiple colors may include blue, orange, and red, where orange represents warm water. The temperature indicator z2 may be formed on the surface of the rotating plate 1321 by a printing process or a composite material process.

[0033] The fixing mechanism 131 may include a decorative cover 1311, which covers the outside of the rotating plate 1321 and is fixedly connected to the faucet body. The indicator z1 includes an observation window 1312 provided on the decorative cover 1311, which is used to read the corresponding color mark on the rotating plate 1321.

[0034] Thus, through the cooperation of the observation window 1312 and the rotating plate 1321, users can directly read the color on the rotating plate 1321 exposed by the observation window 1312 to obtain water temperature information, without relying on memory or guesswork of the operating position. This enables intuitive and safe identification of the water temperature status. Color coding reduces the difficulty of visual discrimination, minimizes user errors caused by misreading or misjudgment, and improves the reliability of human-computer interaction.

[0035] The decorative cover 1311 acts as a physical barrier, protecting the rotating plate 1321 inside from damage such as dust, water stains, and bumps. It also allows the viewing window 1312 to precisely frame the visible area, guiding the user to focus on the key temperature information and preventing misreading. Furthermore, the decorative cover 1311 enhances the aesthetics of the faucet.

[0036] Please continue to refer to this. Figure 5 , Figure 5 yes Figure 1 The diagram shows another exploded view of the faucet. In one optional embodiment, the handle mechanism 14 may include a bushing 141 and a handle 142. The bushing 141 is connected to the mounting accessory 1322 and has a first mounting through hole k1. The handle 142 passes through the first mounting through hole k1 and is connected to the valve core assembly 12. During faucet assembly, the valve core assembly 12, the rotating mechanism 132, and the fixing mechanism 131 can be sequentially assembled onto the faucet body. Then, one end of the handle mechanism 14 is mounted on the valve core assembly 12. The bushing 141 is then fitted over the handle 142 through the first mounting through hole k1, and the bushing 141 and the mounting accessory 1322 of the rotating mechanism 132 are connected. During faucet use, the user can operate the handle 142 to swing it, and the handle 142 can move the rotating mechanism 132 via the bushing 141. The liner 141 and the fitting 1322 are fixedly connected in the circumferential direction of the faucet body 11 to achieve synchronous rotation. At the same time, the liner 141 and the fitting 1322 can retain the degree of freedom of movement of the faucet body 11 in the axial direction.

[0037] In an alternative embodiment, the end of the liner 141 near the fitting 1322 may have a lever 1411; the fitting 1322 has a slot c1 that matches the lever 1411, and at least a portion of the lever 1411 is fitted into the slot c1. This allows the lever 1411 to slide in connection with the fitting 1322. In the circumferential direction of the faucet body 11, the sidewall of the slot c1 provides rigid constraint on the lever 1411, enabling synchronous rotation of the liner 141 and the fitting 1322 in the circumferential direction of the faucet body 11. In the axial direction of the faucet body 11, when the user swings the handle mechanism 14 along the axial direction of the faucet body to adjust the water flow rate of the faucet body 11 by driving the valve core assembly 12, the lever 1411 can slide freely within the slot c1, which provides a guide path for the axial movement of the fitting 1322 relative to the liner 141.

[0038] Please refer to Figure 6 , Figure 6 This is a partial cross-sectional structural diagram of a faucet provided in an embodiment of the present invention. In an optional embodiment, the decorative cover 1311 may include a cover body t1 and a connecting part t2. The connecting part t2 is fixed to the side of the cover body t1 facing the rotating plate 1321. The rotating plate 1321 has a second mounting through hole k2, and the connecting part t2 passes through the second mounting through hole k2 and connects to the faucet body 11. The connecting part t2 can be snapped into the faucet body 11 through the second mounting through hole k2. For example, the end of the faucet body 11 near the connecting part t2 has a snap-fit ​​groove that matches the connecting part t2, and the connecting part t2 can be connected to the snap-fit ​​groove.

[0039] In an optional embodiment, the faucet body 11 may have an arc-shaped groove c2, the extension direction of which is parallel to the swing direction of the handle mechanism 14, and the fitting 1322 of the rotating mechanism 132 passes through the arc-shaped groove c2. The arc-shaped groove c2 guides the movement trajectory of the rotating mechanism 132. Furthermore, when the fitting 1322 swings with the handle mechanism 14 to either end of the arc-shaped groove c2, the groove c2 prevents it from continuing to move. Thus, the arc-shaped groove c2 also rigidly limits the fitting 1322 at both ends of its rotation trajectory, thereby controlling the working stroke of the handle mechanism 14 and preventing damage to internal components due to excessive rotation of the handle mechanism 14, thereby improving the faucet's durability and operational safety.

[0040] In one optional embodiment, the multiple color markings may include a first color marking, a second color marking, and a third color marking arranged sequentially along the rotation direction of the rotating plate 1321. The first color marking is used to indicate the hot water state, the second color marking is used to indicate the mixed water state, and the third color marking is used to indicate the cold water state.

[0041] The second color identifier is a gradient color. The portion of the second color identifier close to the first color identifier has a similar hue to the first color identifier, and the portion of the second color identifier close to the third color identifier has a similar hue to the third color identifier. For example, the first color can be red, the third color can be blue, the portion of the second color close to the first color has a blue-red gradient, and the portion of the second color close to the third color has a red-blue gradient.

[0042] In this embodiment of the utility model, the temperature display component 13 can identify the three water output states of "hot water - warm water - cold water" by using a red first color mark, a gradient second color mark, and a blue third color mark. Users can intuitively estimate the general trend of the current water temperature and the degree of mixing of hot and cold water by observing the specific position on the gradient band displayed in the observation window 1312, thereby obtaining more detailed display information.

[0043] The second color indicator uses a gradient, and its hue naturally connects with the cold and hot indicators on the spectrum, forming a continuous visual temperature scale. This visual temperature scale maps to the physical process of hot and cold water mixing during water temperature adjustment, ensuring that the mechanical rotation of the valve core assembly 12 is synchronized with the display result of the temperature display assembly 13. When the user operates the handle, the color in the observation window 1312 smoothly transitions, allowing for a direct perception of changes in the mixing ratio of hot and cold water, reducing the difficulty of judgment during operation.

[0044] Furthermore, by transitioning from gradient colors to solid colors, a tiered visual warning interface can be established. For example, solid red represents a danger sign, and the gradient color adjacent to red in the second color sign is a warning sign. This provides users with a transition prompt from warning to danger, allowing users more reaction time, reducing the risk of burns during adjustment, and improving product safety.

[0045] In an optional embodiment, the two ends of the second color mark can be connected to the first color mark and the third color mark, respectively. In this way, multiple color marks can form a continuous, uninterrupted color band on the rotating plate 1321, ensuring that the area of ​​the observation window 1312 is covered with color marks at any rotational position of the rotating plate 1321 relative to the observation window 1312. This eliminates any discontinuity in the content displayed on the observation window 1312 during the rotation of the rotating plate 1321, making the experience of reading real-time temperature smoother and more accurate. In one alternative embodiment, the observation window 1312 may include a light-transmitting window disposed on the decorative cover 1311, or the observation window 1312 may include a through hole disposed on the decorative cover 1311. The faucet may also include a decorative housing 15, which may be fitted over the outside of the faucet body 11 to enhance the overall aesthetics of the faucet. One end of the decorative housing 15 may be fitted over the outside of the decorative cover 1311, and the edge of the decorative cover 1311 and the decorative housing 15 have a sealing ring directly between them. Except for the light-transmitting window, the color and material of the decorative cover 1311 may be the same as those of the decorative housing 15. The material of the light-transmitting window on the decorative cover 1311 may be glass or other light-transmitting materials.

[0046] In addition, when a user turns the faucet off and then on again, the light-transmitting window on the display component can intuitively retain and indicate the previously set temperature status, avoiding the risk of sudden high or low temperatures due to forgetting the settings, thus improving the safety of the faucet.

[0047] It should be noted that the dimensions of the areas may have been exaggerated in the accompanying drawings for clarity. Furthermore, it is understood that when an element is referred to as "on top of" another element, it can be directly on the other element, or there may be intermediate elements. Additionally, it is understood that when an element is referred to as "below" another element, it can be directly below the other element, or there may be more than one intermediate element. Furthermore, it is also understood that when an element is referred to as "between" two elements, it can be the only layer between the two elements, or there may be more than one intermediate element. Similar reference numerals throughout indicate similar elements.

[0048] In this invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.

[0049] The above description is only an optional embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A faucet, characterized in that, The faucet includes: a faucet body, a valve core assembly, a temperature display assembly, and a handle mechanism; The valve core assembly is disposed within the faucet body; The temperature display component includes a fixing mechanism and a rotating mechanism arranged adjacent to each other. The fixing mechanism is fixedly installed on the faucet body, and the rotating mechanism is movably installed on the faucet body. The handle mechanism is connected to the valve core assembly and the rotating mechanism. The handle mechanism can swing to adjust the outlet water temperature of the valve core assembly, and drive the rotating mechanism to rotate synchronously when swinging, so as to display the outlet water temperature through the relative position of the rotating mechanism and the fixed mechanism.

2. The faucet according to claim 1, characterized in that, The rotating mechanism has a temperature indicator, and the fixing mechanism has an indicator. Rotating the rotating mechanism switches the corresponding positions of the temperature indicator and the indicator.

3. The faucet according to claim 2, characterized in that, The rotating mechanism includes a rotating plate and an assembly. The rotating plate is located at one end of the faucet body, and the assembly is connected to the handle mechanism. The temperature markings include multiple color markings set on the rotating plate, which are used to represent multiple temperatures. The fixing mechanism includes a decorative cover, which is disposed on the outside of the rotating plate and fixedly connected to the faucet body. The indicator includes an observation window disposed on the decorative cover, which is used to read the corresponding color mark on the rotating plate.

4. The faucet according to claim 3, characterized in that, The handle mechanism includes a liner and a handle component; The liner kit is connected to the assembly, and the liner kit has a first mounting through hole; The handle is inserted into the first mounting hole and connected to the valve core assembly.

5. The faucet according to claim 4, characterized in that, The liner kit has a lever at one end near the assembly; The assembly has a slot that matches the lever, and at least a portion of the lever is fitted into the slot.

6. The faucet according to claim 3, characterized in that, The decorative cover includes a cover plate body and a connecting part, wherein the connecting part is fixed to the side of the cover plate body facing the rotating plate; The rotating plate has a second mounting through hole, and the connecting part passes through the second mounting through hole and connects to the faucet body.

7. The faucet according to claim 3, characterized in that, The faucet body has an arc-shaped groove, the extension direction of which is parallel to the swing direction of the handle mechanism, and the fitting is inserted into the arc-shaped groove.

8. The faucet according to claim 3, characterized in that, The multiple color markings include a first color marking, a second color marking, and a third color marking arranged sequentially along the rotation direction of the rotating plate. The first color marking is used to indicate the hot water state, the second color marking is used to indicate the mixed water state, and the third color marking is used to indicate the cold water state. The second color identifier is a gradient color, the part of the second color identifier close to the first color identifier has a similar hue to the first color identifier, and the part of the second color identifier close to the third color identifier has a similar hue to the third color identifier.

9. The faucet according to claim 8, characterized in that, The two ends of the second color identifier are connected to the first color identifier and the third color identifier, respectively.

10. The faucet according to claim 3, characterized in that, The observation window includes a light-transmitting window disposed on the decorative cover, or the observation window includes a through hole disposed on the decorative cover.