faucet

CN224756387UActive Publication Date: 2026-09-15XIAMEN JIANLIN SMART HOME CO LTD
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Patent Information

Application Number
CN202522053781.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-09-15
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

[0004]本申请的目的在于提供一种龙头,旨在解决如何避免用户误碰调温旋钮导致的安全隐患的问题或者避免特定用户操作调温旋钮的问题

Benefits of technology

本申请实施例提供了一种龙头,包括龙头主体、调温阀以及调温件,通过在龙头主体内设置安装腔,将调温阀和调温件设于安装腔内,且使得调温件连接在调温阀上且可在外力作用下旋转并联动调温阀,从而可以调整经调温阀流出的水的温度,实现龙头的恒温功能以及调温功能等,以满足用户的使用需求。同时,龙头主体的外壁面设置有与安装腔连通的开口,调温件的部分经开口显露在外,从而使得龙头本体内的调温件可以经开口显露出以后,供用户旋转调温件进行调温操作。相比于相关技术中将调温件设置在龙头本体的显眼位置处,比如直接设置在龙头本体的外观面上的方式而言,本实用新型实施例提供的龙头,将调温件设于安装腔内以此实现隐藏式设计,如此可以在一定程度上防止调温件被用户轻易误碰而导致的安全隐患或者避免特定用户轻易操作调温件的问题出现,以满足特定场景需求。

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Abstract

The embodiment of the present application provides a faucet, which comprises a faucet body, a temperature regulating valve and a temperature regulating piece, a mounting cavity is arranged in the faucet body, the temperature regulating valve and the temperature regulating piece are arranged in the mounting cavity, the temperature regulating piece is connected to the temperature regulating valve and can rotate and drive the temperature regulating valve under the action of external force, so as to adjust the temperature of water flowing out of the temperature regulating valve, and realize the constant temperature function and the temperature regulating function of the faucet. Meanwhile, the outer wall surface of the faucet body is provided with an opening which is in communication with the mounting cavity, and part of the temperature regulating piece is exposed outside through the opening, so that the temperature regulating piece in the faucet body can be exposed outside through the opening, and the user can rotate the temperature regulating piece to perform temperature regulating operation. Compared with the related art that the temperature regulating piece is arranged at the conspicuous position of the faucet body, the temperature regulating piece is arranged in the mounting cavity in the present application to realize the hidden design, so that the safety hazard caused by the temperature regulating piece being easily touched by the user or the problem that the temperature regulating piece is easily operated by specific users can be avoided.
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Description

Technical Field

[0001] This application relates to the field of leading technology, and in particular to a leading technology. Background Technology

[0002] A thermostatic faucet (also called a thermostatic water tap or thermostatic shower head) is a type of faucet that automatically mixes cold and hot water and maintains it at a preset temperature. Specifically, a thermostatic faucet includes a faucet body, a temperature control valve located within the faucet body, and a temperature control knob. When the water temperature needs to be adjusted, the temperature control knob is turned to activate the temperature control valve, thereby adjusting the temperature of the water flowing out of the valve.

[0003] In practical use, safety issues frequently arise due to users accidentally touching the temperature control knob, or in certain scenarios, it is necessary to prevent specific users from easily operating the temperature control knob. Therefore, how to prevent users from accidentally touching the temperature control knob or prevent specific users from easily operating the temperature control knob is a problem that this application urgently needs to solve. Utility Model Content

[0004] The purpose of this application is to provide a tap that addresses the safety hazards caused by users accidentally touching the temperature control knob or to prevent specific users from operating the temperature control knob.

[0005] This application provides a faucet, including a faucet body, a temperature regulating valve, and a temperature regulating component; The faucet body has an installation cavity, and the temperature control valve and the temperature control component are disposed in the installation cavity. The temperature control component is connected to the temperature control valve and can rotate and link with the temperature control valve under the action of external force to adjust the temperature of the water flowing out through the temperature control valve. The outer wall of the faucet body is provided with an opening communicating with the installation cavity, and part of the temperature control component is exposed to the outside through the opening.

[0006] In some embodiments, the temperature regulating element is provided with a plurality of rotating operating structures, the plurality of rotating operating structures are spaced apart along the rotation direction of the temperature regulating element, and at least one of the rotating operating structures is exposed through the opening.

[0007] In some embodiments, the size of the opening along the rotation direction of the temperature control element is not less than the distance between the far ends of two adjacent rotating operating structures.

[0008] In some embodiments, the rotary operating structure includes an operating slot provided on the outer wall of the temperature regulating element.

[0009] In some embodiments, the operating slot is provided through the outer wall of the temperature regulating element in the radial direction of the temperature regulating valve; And / or, the temperature control element includes a temperature control knob; And / or, the temperature regulating element includes a top wall and a side wall, the side wall being connected to the side of the top wall opposite to the opening of the mounting cavity, the operating slot being provided on the side wall, and the operating slot extending from the side of the side wall away from the top wall toward the side wall, and the size of the operating slot being smaller than the size of the side wall in the direction along the side wall to the top wall.

[0010] In some embodiments, the faucet further includes a cover that covers the opening to conceal the temperature control element.

[0011] In some embodiments, a disassembly port for inserting an external tool is provided between the outer edge of the cover and the wall of the opening.

[0012] In some embodiments, there are at least two disassembly ports, and the at least two disassembly ports are arranged circumferentially spaced along the opening; And / or, the cap is a soft stopper; And / or, the outer edge of the cover is provided with a recessed hole in the direction opposite to the opening wall, the recessed hole forming the disassembly port.

[0013] In some embodiments, the faucet body includes a body and a handle, the inner cavity of the body and the inner cavity of the handle together form the mounting cavity, and an operating lever is provided on one outer wall of the handle; the opening is provided on the handle and is located on the side of the handle opposite to the operating lever. And / or, the faucet further includes a decorative cap that covers the opening of the mounting cavity.

[0014] In some embodiments, the temperature regulating component is provided with a perforation, one end of the temperature regulating valve passes through the perforation, one end of the temperature regulating valve is provided with a connection hole, a connector is provided in the connection hole, and a portion of the connector abuts against the side of the temperature regulating component away from the temperature regulating valve. And / or, the temperature control valve is keyed to the temperature control element.

[0015] The beneficial effects of this utility model are: This application provides a faucet, including a faucet body, a thermostatic valve, and a thermostatic adjustment component. An installation cavity is provided within the faucet body, and the thermostatic valve and adjustment component are housed within this cavity. The adjustment component is connected to the thermostatic valve and can rotate under external force, thus adjusting the temperature of the water flowing through the valve. This achieves the faucet's thermostatic and temperature-regulating functions to meet user needs. Simultaneously, an opening communicating with the installation cavity is provided on the outer wall of the faucet body, exposing a portion of the thermostatic adjustment component. This allows the user to rotate the adjustment component to adjust the temperature, as is done in related technologies where the thermostatic adjustment component is placed in a prominent position on the faucet body, such as directly on its surface. The faucet provided in this embodiment conceals the thermostatic adjustment component within the installation cavity, thus preventing accidental contact and potential safety hazards, or avoiding easy operation of the component by a specific user, meeting specific scenario requirements. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this application, 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 application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is an exploded structural diagram of the faucet shown in the embodiment of this application; Figure 2 This is a schematic diagram of the structure of the temperature control valve of the faucet shown in the embodiment of this application; Figure 3a This is a schematic diagram of a faucet with the cap removed, as shown in an embodiment of this application. Figure 3b for Figure 3a Partial structural diagram; Figure 4a This is a schematic diagram of the external structure of the faucet shown in an embodiment of this application; Figure 4b for Figure 4a Partial structural diagram; Figure 5 This is a schematic diagram of the structure of the temperature regulating component of the faucet shown in the embodiment of this application; Figure 6 This is a cross-sectional view of the faucet shown in the embodiment of this application.

[0018] Figure label: 100. Faucet body; 110. Mounting cavity; 120. Opening; 130. Body; 140. Handle; 141. Operating lever; 200. Thermostatic valve; 210. Connecting hole; 220. Connector; 230. Keyway; 240. Knob; 300. Thermostatic component; 310. Rotary operating structure; 311. Operating slot; 320. Top wall; 330. Side wall; 340. Perforation; 400. Cover; 500. Disassembly port; 600. Decorative cover. Detailed Implementation

[0019] In the embodiments of this application, the terms "first," "second," "third," "fourth," "fifth," and "sixth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first," "second," "third," "fourth," "fifth," and "sixth" may explicitly or implicitly include one or more of that feature.

[0020] In embodiments of this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0021] Reference Figures 1 to 6 As shown in the figure, this application embodiment provides a faucet, including a faucet body 100, a temperature regulating valve 200, and a temperature regulating component 300.

[0022] The faucet body 100 has a mounting cavity 110, in which a temperature regulating valve 200 and a temperature regulating component 300 are disposed. The temperature regulating component 300 is connected to the temperature regulating valve 200 and can rotate under external force, thereby adjusting the temperature of the water flowing out through the temperature regulating valve 200. The outer wall of the faucet body 100 has an opening 120 communicating with the mounting cavity 110, through which part of the temperature regulating component 300 is exposed.

[0023] In specific implementation, refer to Figure 1 As shown, the faucet body 100 is provided with an installation cavity 110. The installation cavity 110 can be a top-open structure. The temperature control valve 200 and the temperature control component 300 are placed in the installation cavity 110 through the opening. The temperature control component 300 is connected to the temperature control valve 200, so that the temperature control valve 200 can be linked when the temperature control component 300 is rotated to adjust the temperature of the water flowing out of the temperature control valve 200.

[0024] For example, the temperature control valve 200 can be a coaxial dual-control valve core. Specifically, a coaxial dual-control valve core refers to a valve body in which two independent valve stems move back and forth along the same axis without interfering with each other, controlling two separate fluid paths. That is, a coaxial dual-control valve core can include an outer valve stem, an inner valve stem, an anti-cross-flow structure, and a sealing pair. The specific temperature control process is as follows: a moving plate is provided on the outer valve stem, used to rotate with the outer valve stem. A stationary plate is provided on the inner valve stem, used to slide axially with the inner valve stem. When the outer valve stem rotates under external force, it drives the moving plate to rotate. The overlap area between the hot and cold holes on the moving plate and the hot and cold holes on the stationary plate changes, thereby changing the mixing ratio of cold and hot water. However, the inner valve stem remains stationary, thus achieving the function of regulating water temperature.

[0025] Specifically, a knob 240 can be installed on the outer valve stem of the temperature control valve 200. The knob 240 is connected to the temperature control component 300, so that when the temperature control component 300 rotates under the action of external force, the knob 240 drives the outer valve stem to rotate, which in turn drives the moving plate to rotate, thereby changing the overlap area between the hot and cold holes on the moving plate and the hot and cold holes on the stationary plate, thus realizing the temperature control operation.

[0026] Furthermore, the outer wall of the faucet body 100 is provided with an opening 120 communicating with the mounting cavity 110, and part of the temperature regulating component 300 is exposed through the opening 120. This design allows professional or specialized personnel to use tools or their hands to reach through the opening 120 and rotate the temperature regulating component 300 to achieve temperature adjustment. The design of placing the temperature regulating component 300 within the mounting cavity 110 prevents it from being easily manipulated, allowing professional personnel to adjust it. This, in turn, helps to prevent safety hazards caused by accidental contact with the temperature regulating component 300 by users, or avoids problems caused by users easily manipulating the temperature regulating component 300, thus meeting the usage needs of specific scenarios.

[0027] For example, medical faucets require the use of thermostatic valve cores, and users cannot adjust the water temperature themselves. Hospitals are special environments where some patients may lose their ability to sense temperature, and doctors sometimes can only use their elbows to turn on and off the water, making it inconvenient to adjust the temperature. Therefore, the water temperature of medical faucets cannot be adjusted arbitrarily. This embodiment of the faucet meets the usage requirements of this scenario.

[0028] The faucet in this embodiment includes a faucet body 100, a thermostatic valve 200, and a thermostatic element 300. An installation cavity 110 is provided within the faucet body 100, and the thermostatic valve 200 and thermostatic element 300 are housed within the cavity. The thermostatic element 300 is connected to the thermostatic valve 200 and can rotate under external force, thus adjusting the temperature of the water flowing through the thermostatic valve 200. This achieves the faucet's constant temperature and temperature control functions to meet user needs. Simultaneously, the outer wall of the faucet body 100 has an opening 120 communicating with the installation cavity 110. A portion of the thermostatic element 300 is exposed through the opening 120, allowing the thermostatic element 300 within the faucet body 130 to be visible through the opening 120, enabling the user to rotate the thermostatic element 300 for temperature adjustment. Compared to related technologies where the thermostat 300 is placed in a conspicuous position on the faucet body 130, such as directly on the surface of the faucet body 130, the faucet provided in this embodiment places the thermostat 300 inside the mounting cavity 110 to achieve a hidden design. This can, to a certain extent, prevent the thermostat 300 from being easily touched by the user, thus avoiding safety hazards or the problem of certain users easily operating the thermostat 300, in order to meet the needs of specific scenarios.

[0029] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, the temperature regulating element 300 is provided with a plurality of rotating operating structures 310, the plurality of rotating operating structures 310 are arranged at intervals along the rotation direction of the temperature regulating element 300, and at least one rotating operating structure 310 is exposed through the opening 120.

[0030] In practice, to facilitate the operation of professionals by inserting their fingers through the opening 120 and rotating the temperature control component 300, multiple rotating operation structures 310 spaced apart along the rotation direction can be provided on the temperature control component 300. This allows professionals to apply external force to the rotating operation structure 310 to rotate the temperature control component 300, thereby improving the ease of operation.

[0031] In addition, to ensure that the temperature control element 300 can be rotated by applying a rotational force to the rotational operation structure 310 exposed through the opening 120, regardless of the angle or position to which the temperature control element 300 is rotated, at least one rotational operation structure 310 can be provided to be exposed through the opening 120.

[0032] For example, see reference Figure 3bIn the extreme position scenario shown (i.e., when one of the rotation operation structures 310 is close to or coincides with the opening wall of the opening 120 at its downstream edge along the rotation direction), two or more rotation operation structures 310 can be exposed through the opening 120 to ensure that at least one rotation operation structure 310 can still be exposed during the continued rotation process, so as to facilitate rotation operation.

[0033] For example, in the rotation direction of the temperature control element 300, when one of the rotating operating structures 310 rotates to the middle region of the opening 120, only one rotating operating structure 310 may be exposed, or two or more rotating operating structures 310 may be exposed.

[0034] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, the size of the opening 120 along the rotation direction of the temperature control element 300 is not less than the distance between the far ends of two adjacent rotating operating structures 310.

[0035] To further ensure that the temperature regulating component rotates to 300 degrees... Figure 3b In the extreme position scenario shown, at least two rotating operating structures 310 can be exposed through the opening 120. In this case, the opening 120 can be set along the rotation direction of the temperature regulating element 300, and the size of the opening 120 is not less than the distance between the far ends of the two adjacent rotating operating structures 310.

[0036] That is, in the rotation direction of the temperature regulating member 300, the distance S1 between the downstream edge of the downstream rotating operation structure 310 and the upstream edge of the upstream rotating operation structure 310 can be equal to or less than the size S2 of the opening 120.

[0037] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, the rotary operation structure 310 includes an operation slot 311 provided on the outer side wall 330 of the temperature control element 300.

[0038] In practice, when temperature adjustment is required, a professional can use a tool or their hand to reach into the operating slot 311 to move the slot wall of the operating slot 311, thereby applying a rotational force to the temperature regulating component 300, and finally linking the temperature regulating valve 200 to achieve temperature regulation.

[0039] For example, the tool could be a thin lever or similar device.

[0040] For example, the operating slot 311 can be as follows: Figure 1 The U-shaped slot shown can also be a circular slot or a diamond-shaped slot, etc.

[0041] Alternatively, in other implementations, the rotation operation structure 310 can also be a protrusion provided on the outer wall 330 of the temperature regulating element 300, which drives the temperature regulating element 300 to rotate by moving the protrusion.

[0042] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, the operating slot 311 is provided through the outer wall of the temperature control element 300 in the radial direction along the temperature control valve 200.

[0043] Compared to the non-through blind hole 311, the operation slot 311 is designed as a through structure, which makes it easier for professional or specific personnel to reliably insert tools into the operation slot 311 to apply rotational external force to the temperature regulating component 300, so as to ensure that the adjustment operation can be completed smoothly.

[0044] For example, the temperature control element 300 may include a temperature control knob or may be a temperature control sleeve.

[0045] Reference Figure 1 , Figure 5 As shown, in some embodiments, the temperature regulating element 300 includes a top wall 320 and a side wall 330. The side wall 330 is connected to the side of the top wall 320 away from the cavity opening of the mounting cavity 110. An operation slot 311 is provided on the side wall 330, and the operation slot 311 extends from the side of the side wall 330 away from the top wall 320 toward the side wall 320. In the direction along the side wall 330 to the top wall 320, the size of the operation slot 311 is smaller than the size of the side wall 330.

[0046] For example, the top wall 320 is positioned above the side wall 330. In this case, the operating slot 311 extends from the bottom edge of the side wall 330 toward the top wall 320 but does not extend to the top wall 320. The purpose of this design is to ensure that the temperature regulating component 300 has sufficient structural strength while making it easy for the operator to reliably insert tools into the operating slot 311 to apply rotational force to the temperature regulating component 300.

[0047] Reference Figure 1 , Figure 6 As shown, in some embodiments, the faucet also includes a cover 400, which covers the opening 120 to cover the thermostat 300.

[0048] In practice, after the temperature adjustment operation is completed, the temperature adjustment component 300 can be covered by the cover 400 at the opening 120. This ensures the integrity of the entire faucet's appearance and allows for a hidden design of the temperature adjustment component 300.

[0049] For example, the outer contour shape of the cover 400 is adapted to the outer contour shape of the opening 120 so that the cover 400 can be fully installed at the opening 120 without easily falling off, while making the overall appearance more complete and beautiful.

[0050] For example, the cap 400 can be a soft stopper, such as a rubber stopper or a silicone stopper, and the soft stopper and the opening 120 can be interference-fitted to achieve a tight connection.

[0051] Alternatively, in other implementations, the cover 400 can also be a rigid cover, which can be fixed inside the opening 120 by means of snap-fit ​​or other methods.

[0052] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, a disassembly port 500 for inserting external tools is provided between the outer edge of the cover 400 and the wall of the opening 120.

[0053] In practice, when temperature adjustment is required, to facilitate the removal of the cover 400 from the opening 120, a small disassembly opening 500 can be formed between the outer edge of the cover 400 and the wall of the opening 120. This allows a thin external tool to be inserted to remove the cover 400. The external tool could be, for example, a thin wire or a thin rod.

[0054] For example, the outline shape of the disassembly port 500 can be circular, semi-circular, or other regular or irregular shapes.

[0055] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, there are at least two disassembly ports 500, which are arranged circumferentially at intervals along the opening 120, so as to allow the cap 400 to be quickly pried up by inserting an external tool through the at least two disassembly ports 500 at the same time, thereby realizing the disassembly operation of the cap 400.

[0056] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a and Figure 4b As shown, in some embodiments, the outer edge of the cap 400 is provided with a recessed hole that is recessed in the direction away from the opening wall of the opening 120. The recessed hole forms a disassembly opening 500. Providing a recessed hole on the cap 400 can simplify the processing operation.

[0057] Alternatively, in other implementations, a recessed hole can be provided on the wall of the opening 120, facing away from the sealing member 400, forming a disassembly opening 500. Alternatively, the outer edge of the sealing member 400 can be provided with a recessed hole facing away from the wall of the opening 120, and the wall of the opening 120 can also be provided with a recessed hole facing away from the sealing member 400, with the two recessed holes connected and jointly forming the disassembly opening 500.

[0058] Reference Figure 1 , Figure 3a , Figure 3b , Figure 4a , Figure 4b and Figure 6 As shown, in some embodiments, the faucet body 100 includes a body 130 and a handle 140. The inner cavity of the body 130 and the inner cavity of the handle 140 together form an installation cavity 110. An operating lever 141 is provided on one outer wall of the handle 140. An opening 120 is provided on the handle 140 and is located on the side of the handle 140 away from the operating lever 141. That is, the operating lever 141 is provided on the front of the handle 140 and the opening 120 is provided on the back of the handle 140. This allows the opening 120 to be placed in a non-obvious position, which is more conducive to the hidden design of the temperature regulating component 300.

[0059] For example, the operating lever 141 is the lever that allows the user to turn the tap on and off.

[0060] Reference Figure 1 , Figure 6 As shown, in some embodiments, the faucet also includes a decorative cover 600, which covers the opening of the mounting cavity 110 to seal the opening after the thermostat 300 and thermostat valve 200 are installed, ensuring the integrity and aesthetics of the entire appearance.

[0061] For example, the decorative cover 600 and the cavity can be a snap-fit ​​or an interference fit.

[0062] Reference Figure 1 , Figure 5 As shown, in some embodiments, the temperature regulating component 300 is provided with a through hole 340, one end of the temperature regulating valve 200 is inserted into the through hole 340, one end of the temperature regulating valve 200 is provided with a connection hole 210, a connector 220 is provided in the connection hole 210, and part of the connector 220 abuts against the other end of the temperature regulating component 300 away from the temperature regulating valve 200.

[0063] In practice, after one end of the temperature control valve 200 is inserted into the through hole 340 of the temperature control component 300, the connecting hole 210 at one end of the temperature control valve 200 can be a threaded hole, and the connecting component 220 can be a screw. The screw is threadedly engaged with the threaded hole, and the head of the screw abuts against the upper surface of the temperature control component 300, so as to achieve a reliable connection between the temperature control valve 200 and the temperature control component 300.

[0064] Furthermore, the temperature control valve 200 and the temperature control component 300 are connected by a key. That is, the outer wall of the temperature control valve 200 can be provided with multiple keyways 230 distributed circumferentially, and the temperature control component 300 can be provided with multiple connecting keys that correspond one-to-one with the keyways 230. The reliable connection between the temperature control valve 200 and the temperature control component 300 is achieved through the cooperation of the connecting keys and the keyways 230, so as to further improve the stability and reliability of the connection.

[0065] In the description of the embodiments of this application, specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments or examples.

[0066] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A faucet, characterized in that, Includes the faucet body (100), the temperature control valve (200), and the temperature control component (300); The faucet body (100) has an installation cavity (110), the temperature control valve (200) and the temperature control component (300) are located in the installation cavity (110), the temperature control component (300) is connected to the temperature control valve (200) and can rotate and link with the temperature control valve (200) under the action of external force to adjust the temperature of the water flowing out through the temperature control valve (200); The outer wall of the faucet body (100) is provided with an opening (120) that communicates with the mounting cavity (110), and part of the temperature regulating component (300) is exposed through the opening (120).

2. The faucet according to claim 1, characterized in that, The temperature regulating component (300) is provided with a plurality of rotating operating structures (310), the plurality of rotating operating structures (310) are spaced apart along the rotation direction of the temperature regulating component (300), and at least one of the rotating operating structures (310) is exposed through the opening (120).

3. The faucet according to claim 2, characterized in that, In the rotational direction of the temperature control element (300), the size of the opening (120) is not less than the distance between the far ends of two adjacent rotational operation structures (310).

4. The faucet according to claim 2, characterized in that, The rotary operating structure (310) includes an operating slot (311) provided on the outer wall (330) of the temperature regulating element (300).

5. The faucet according to claim 4, characterized in that, The operating slot (311) is provided through the outer wall of the temperature regulating element (300) in the radial direction of the temperature regulating valve (200); And / or, the temperature control element (300) includes a temperature control knob; And / or, the temperature regulating element (300) includes a top wall (320) and a side wall (330), the side wall (330) being connected to the side of the top wall (320) away from the opening of the mounting cavity (110), the operating slot (311) being provided on the side wall (330), and the operating slot (311) extending from the side of the side wall (330) away from the top wall (320) toward the side wall (320), and the size of the operating slot (311) being smaller than the size of the side wall (330) in the direction from the side wall (330) to the top wall (320).

6. The faucet according to any one of claims 1 to 5, characterized in that, The faucet also includes a cover (400) which covers the opening (120) to cover the temperature control element (300).

7. The faucet according to claim 6, characterized in that, A disassembly port (500) for inserting external tools is provided between the outer edge of the cover (400) and the wall of the opening (120).

8. The faucet according to claim 7, characterized in that, There are at least two disassembly ports (500), and at least two disassembly ports (500) are arranged at circumferential intervals along the opening (120); And / or, the cap (400) is a soft plug; And / or, the outer edge of the cover (400) is provided with a recessed hole in the direction opposite to the opening wall of the opening (120), the recessed hole forming the disassembly port (500).

9. The faucet according to any one of claims 1 to 5, characterized in that, The faucet body (100) includes a body (130) and a handle (140). The inner cavity of the body (130) and the inner cavity of the handle (140) together form the mounting cavity (110). An operating lever (141) is provided on one outer wall of the handle (140). The opening (120) is provided on the handle (140) and is located on the side of the handle (140) away from the operating lever (141). And / or, the faucet also includes a decorative cap (600) that covers the opening of the mounting cavity (110).

10. The faucet according to any one of claims 1 to 5, characterized in that, The temperature regulating component (300) is provided with a perforation (340), one end of the temperature regulating valve (200) is inserted through the perforation (340), one end of the temperature regulating valve (200) is provided with a connection hole (210), a connector (220) is provided in the connection hole (210), and a portion of the connector (220) abuts against the side of the temperature regulating component (300) away from the other end of the temperature regulating valve (200); And / or, the temperature control valve (200) is keyed to the temperature control element (300).