A faucet device

CN224622256UActive Publication Date: 2026-08-11NANCHANG KOHLER
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]第一出水部通过转轴装配在壳体的前侧开口中,用户不能用握持的方式来调节第一出水部的角度,用户只能用手指去压第一出水部的上下边缘,以使其朝向不同方向转动,操作不便

Benefits of technology

[0042]本实用新型提供的水龙头装置包括龙头固定座、手柄和侧部出水机构,手柄和侧部出水机构连接在龙头固定座的相对两侧。

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Abstract

This utility model discloses a faucet device, including a faucet base and handles and a side water outlet mechanism connected to opposite sides of the faucet base. The faucet base contains a converter valve core with a water passage. The side water outlet mechanism includes a housing assembly connected to the faucet base and rotatable relative to it, a water outlet component connected to the housing assembly and rotatable integrally with it, and a control component connected to the housing assembly for controlling the water outlet of the water outlet component. The housing assembly has a water cavity, with its inlet communicating with the water passage and its outlet communicating with the water outlet component. When adjusting the water outlet angle, the user can simply hold and rotate the housing assembly, making operation convenient and preventing splashing, thus improving the user experience.
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Description

Technical Field

[0001] This utility model relates to the field of water tap technology, and in particular to a water tap device. Background Technology

[0002] In addition to the standard gooseneck faucet, many multi-functional kitchen faucets on the market also feature a side-spray design. This side-spray design, also known as a rain shower, offers a columnar spray pattern and / or a waterfall spray pattern, suitable for high-pressure rinsing of localized or small areas.

[0003] Chinese utility model patent with announcement number CN219954315U discloses a multi-functional faucet, the housing of which is used to install a gooseneck faucet. The housing is equipped with a valve body, and a first water outlet is pivotally connected to the front opening of the valve body. The first water outlet can rotate relative to the housing to adjust the angle.

[0004] The shortcomings of the aforementioned prior art are:

[0005] The first water outlet is mounted in the front opening of the housing via a pivot. Users cannot adjust the angle of the first water outlet by holding it; they can only adjust it by pressing the upper and lower edges with their fingers, making it inconvenient to operate. When the first water outlet is in the dispensing state, adjusting its angle with fingers will obstruct the water flow, causing splashing. This splashing water will wet the user and may also seep into the housing through the front opening, making it prone to mold and bacteria growth, difficult to clean, and negatively impacting the user experience. Utility Model Content

[0006] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a faucet device in which the housing assembly of the side water outlet mechanism is connected to the faucet fixing seat and can rotate relative to the faucet fixing seat, and the water outlet assembly of the side water outlet mechanism is connected to the housing assembly and can rotate as a whole with the housing assembly. When the user needs to adjust the water outlet angle of the water outlet assembly, he / she can directly hold the housing assembly and rotate to adjust it, which is convenient to operate and will not cause water splashing, thus improving the user experience.

[0007] This utility model provides a faucet device, including a faucet fixing seat, a handle connected to one side of the faucet fixing seat, and a side water outlet mechanism connected to the other side of the faucet fixing seat;

[0008] The faucet mounting base is provided with a transfer valve core having a water passage and a control valve core pivotally mounted on one side of the transfer valve core for controlling the water passage; the handle is connected to the control valve core.

[0009] The side water outlet mechanism includes a housing assembly connected to the faucet mounting base and rotatable relative to the faucet mounting base, a water outlet assembly connected to the housing assembly and rotatable integrally with the housing assembly, and a control assembly connected to the housing assembly for controlling the water outlet assembly to outlet water.

[0010] The housing assembly has a water cavity, the water cavity inlet is connected to the water passage, and the water cavity outlet is connected to the water outlet assembly.

[0011] The control component works in conjunction with the water inlet and / or the water outlet of the water chamber to control the opening and closing of the water inlet and / or the water outlet of the water chamber.

[0012] In one alternative embodiment, the housing assembly includes a sleeve-shaped inner housing and an outer housing pivotally mounted on the inner housing, one end of the inner housing being connected to the faucet mounting base;

[0013] The water chamber is located in the inner shell, the control component is connected to the inner shell, and the water outlet component is connected to the outer shell.

[0014] In one of the alternative technical solutions, the inner shell has a shell opening on one side, and the water outlet of the water cavity is located on one end wall of the shell opening;

[0015] The water outlet assembly is connected to the water outlet of the water chamber via an adapter;

[0016] The water inlet of the adapter is pivotally connected to the water outlet of the water chamber, and the water outlet of the adapter is detachably connected to the water inlet of the water outlet assembly. The adapter passes through the opening of the housing and is detachably connected to the outer housing, and can rotate integrally with the outer housing.

[0017] In one of the alternative technical solutions, a bracket is fitted into the housing opening, and the bracket is capable of swinging within the housing opening;

[0018] The adapter is mounted on the bracket, which is detachably connected to the outer shell via a connector.

[0019] In one of the alternative technical solutions, a limiting structure is assembled between the bracket and the wall surface.

[0020] In one of the optional technical solutions, the limiting structure includes a telescopic limiting pin disposed at one end of the bracket and two limiting grooves disposed on the wall surface;

[0021] The two limiting grooves extend radially along the inner shell and are spaced apart circumferentially along the inner shell.

[0022] In one of the alternative technical solutions, one end of the adapter is provided with a positioning plate, and the bracket is correspondingly provided with a positioning groove;

[0023] The positioning plate is inserted into the positioning slot.

[0024] In one of the alternative technical solutions, an elastic sleeve is fitted onto the inner shell, and the outer shell is fitted onto the elastic sleeve.

[0025] In one of the alternative technical solutions, the outer shell includes an outer shell body sleeved on the inner shell, an outer shell cover disposed on one side of the outer shell body, and an outer shell bottom cover detachably installed at the bottom of the outer shell cover;

[0026] An installation cavity is formed between the bottom cover of the outer casing and the outer casing cover, and the bottom cover of the outer casing has a bottom cover opening;

[0027] The water outlet assembly is installed inside the mounting cavity, and the water outlet end of the water outlet assembly is fitted into the bottom cover opening.

[0028] In one of the alternative technical solutions, the bottom cover of the outer casing and the outer casing cover are connected by a snap-fit.

[0029] In one alternative technical solution, the distance between the upper and lower surfaces of the housing cover gradually decreases along the radial direction of the housing body.

[0030] In one of the alternative technical solutions, the water outlet assembly includes an upper cover with a water inlet connector, a water distribution baffle with multiple water distribution holes, and a lower cover with multiple nozzles.

[0031] The water distribution baffle is installed in the cavity of the upper cover, and the lower cover is detachably connected to the upper cover;

[0032] The water inlet connector is connected to the water outlet of the water chamber.

[0033] In one of the alternative technical solutions, a water distribution bracket is connected to the bottom of each of the water distribution holes;

[0034] The water distribution support includes multiple connecting rods and water-blocking heads connected to the lower ends of the multiple connecting rods;

[0035] The upper end of the connecting rod is connected to the water distribution baffle, and the water baffle head is suspended below the water distribution hole;

[0036] A lateral water distribution port is formed between any two adjacent connecting rods.

[0037] In one of the alternative technical solutions, the control component includes a sliding valve core slidably mounted in the water cavity and used to control the opening and closing of the water cavity outlet, a button cooperating with the sliding valve core and used to press the sliding valve core, and an elastic element connected between the housing assembly and the sliding valve core and used to drive the sliding valve core to reset.

[0038] The button is slidably mounted on the end of the housing assembly away from the faucet mounting base.

[0039] In one of the optional technical solutions, the water channel includes a cold water channel, a hot water channel, and a mixing water channel;

[0040] The water inlet of the water chamber is connected to the cold water channel.

[0041] The above technical solution has the following beneficial effects:

[0042] The faucet device provided by this utility model includes a faucet fixing seat, a handle, and a side water outlet mechanism, with the handle and the side water outlet mechanism connected to opposite sides of the faucet fixing seat.

[0043] The faucet mounting base contains a transfer valve core and a control valve core. The transfer valve core has a water passage, and the control valve core is mounted on one side of the transfer valve core and connected to the handle. Operating the handle to rotate the control valve core controls the opening and closing of the water passage.

[0044] The side water outlet mechanism includes a housing assembly, a water outlet assembly, and a control assembly. The housing assembly is connected to the faucet mounting base and can rotate relative to the faucet mounting base. The water outlet assembly of the side water outlet mechanism is connected to the housing assembly and can rotate as a whole with the housing assembly. The control assembly is used to control the water outlet assembly to dispense water.

[0045] When users need to adjust the water outlet angle, they can simply hold the housing and rotate it to adjust the angle. This is convenient to operate and will not cause splashing, thus improving the user experience. Attached Figure Description

[0046] The disclosure of this utility model will become more readily understood by referring to the accompanying drawings. It should be understood that these drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings:

[0047] Figure 1 A perspective view of a faucet device provided in an embodiment of the present invention;

[0048] Figure 2 A perspective view of a faucet device provided in an embodiment of the present invention from another angle;

[0049] Figure 3An exploded view of a faucet device provided in an embodiment of this utility model;

[0050] Figure 4 A three-dimensional view of the adapter valve core from one perspective;

[0051] Figure 5 A three-dimensional view of the adapter valve core from another perspective;

[0052] Figure 6 A three-dimensional view of the side water outlet mechanism from one perspective;

[0053] Figure 7 This is a three-dimensional view of the side water outlet mechanism from another perspective.

[0054] Figure 8 Exploded view of the side water outlet mechanism;

[0055] Figure 9 This is a perspective view of the outer shell body and the outer shell cover portion;

[0056] Figure 10 This is a perspective view of the bottom cover portion of the outer shell.

[0057] Figure 11 An exploded diagram showing the connection between the water outlet assembly and the inner shell via an adapter.

[0058] Figure 12 Exploded view of the control components, inner housing, elastic sleeve, adapter, and bracket;

[0059] Figure 13 This is a three-dimensional view of the inner shell.

[0060] Figure 14 This is a 3D view of the adapter;

[0061] Figure 15 A three-dimensional view of the bracket;

[0062] Figure 16 A 3D view of the adapter mounted on the bracket;

[0063] Figure 17 A 3D view of the water outlet assembly;

[0064] Figure 18 This is an exploded view of the water outlet assembly from one perspective.

[0065] Figure 19 An exploded view of the water outlet assembly from another perspective;

[0066] Figure 20 An enlarged schematic diagram showing that the bottom of each water distribution hole is connected to a water distribution bracket;

[0067] Figure 21This is a cross-sectional view of the housing assembly along the horizontal direction.

[0068] Figure 22 A cross-sectional view along the horizontal direction of a faucet device provided in an embodiment of the present invention. Detailed Implementation

[0069] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. Identical components are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0070] like Figure 1-8 and Figure 21-22 As shown, an embodiment of the present invention provides a faucet device, including a faucet fixing seat 1, a handle 2 connected to one side of the faucet fixing seat 1, and a side water outlet mechanism 3 connected to the other side of the faucet fixing seat 1.

[0071] The faucet mounting base 1 is provided with a transfer valve core 13 having a water passage 131 and a control valve core 14 pivotally mounted on one side of the transfer valve core 13 for controlling the water passage 131. The handle 2 is connected to the control valve core 14.

[0072] The side water outlet mechanism 3 includes a housing assembly 31 connected to the faucet mounting base 1 and rotatable relative to the faucet mounting base 1, a water outlet assembly 32 connected to the housing assembly 31 and rotatable as part of the housing assembly 31, and a control assembly 33 connected to the housing assembly 31 and used to control the water outlet of the water outlet assembly 32.

[0073] The housing assembly 31 has a water cavity 3121. The water cavity inlet 3122 of the water cavity 3121 is connected to the water channel 131, and the water cavity outlet 3123 of the water cavity 3121 is connected to the water outlet assembly 32.

[0074] The control component 33 cooperates with the water inlet 3122 and / or the water outlet 3123 of the water chamber to control the opening and closing of the water inlet 3122 and / or the water outlet 3123 of the water chamber.

[0075] The faucet device provided by this utility model includes a faucet fixing seat 1, a handle 2, and a side water outlet mechanism 3, etc.

[0076] The faucet holder 1 is used to install the handle 2, the side water outlet mechanism 3, and the faucet 4. The faucet 4 is connected to the top of the faucet holder 1, and the handle 2 and the side water outlet mechanism 3 are installed on the left and right sides of the faucet holder 1.

[0077] Specifically, the faucet holder 1 includes a vertical pipe 11 and a horizontal pipe 12, with the horizontal pipe 12 connecting the upper and lower ends of the vertical pipe 11. The faucet 4 is connected to the upper end of the vertical pipe 11, and the handle 2 and the side water outlet mechanism 3 are connected to the left and right ends of the horizontal pipe 12.

[0078] The faucet mounting base 1 is equipped with a transfer valve core 13 and a control valve core 14. Specifically, the transfer valve core 13 and the control valve core 14 are located in the horizontal pipe 12.

[0079] The adapter valve core 13 has a water passage 131. The number of water passages 131 can be set as needed. For example, only a cold water passage can be set, or both a cold water passage and a hot water passage can be set at the same time, or a warm water passage can be set.

[0080] The control valve core 14 is mounted on one side of the adapter valve core 13 and connected to the handle 2. By operating the handle 2 to rotate the control valve core 14, the water passage 131 can be opened or closed to control the water supply to the faucet 4.

[0081] During assembly, the hot / cold water pipes are inserted upwards from the lower end of the vertical pipe 11 and then connected to the water passage 131 of the adapter valve core 13. The lower end of the faucet hose is connected to the water outlet passage of the control valve core 14 or the adapter valve core 13, the faucet hose passes through the vertical pipe 11, and the upper end of the faucet hose is connected to the faucet 4.

[0082] The side water outlet mechanism 3, also known as "flying rain," is suitable for high-pressure flushing of localized or small areas.

[0083] The side water outlet mechanism 3 includes a housing assembly 31, a water outlet assembly 32, and a control assembly 33, etc.

[0084] The housing assembly 31 is connected to the faucet mounting base 1 in a pivotal manner, allowing the housing assembly 31 to rotate relative to the faucet mounting base 1. Specifically, the housing assembly 31 is connected to one end of the transverse pipe 12.

[0085] The cross-sectional shape of the housing assembly 31 can be rectangular, circular, trapezoidal, triangular, etc. The housing assembly 31 contains a water cavity 3121. The water cavity 3121 has a water inlet 3122 and a water outlet 3123. The water inlet 3122 is connected to a water channel 131, through which water can flow into the water cavity 3121. Specifically, a flow channel 3124 can be provided in the housing assembly 31, which connects to the outlet of the water channel 131. The water outlet 3123 of the water cavity 3121 is connected to the water outlet assembly 32, and is used to supply water to the water outlet assembly 32. Specifically, the inlet of the water outlet assembly 32 can be connected to the water outlet 3123 via a hose, flow channel, etc.

[0086] The water outlet assembly 32 is used for spraying water to perform high-pressure rinsing of localized or small areas.

[0087] The water outlet component 32 is connected to the housing component 31 via a connecting structure, which can be a first bolt 3212, a clip, or the like. Therefore, the water outlet component 32 can rotate as a unit with the housing component 31, thereby adjusting its spray angle.

[0088] The water outlet assembly 32 can be located on the outside of the housing assembly 31 or on the inside of the housing assembly 31, with only its nozzle exposed.

[0089] The control component 33 is used to control the water output of the water outlet component 32. The control component 33 may be a mechanical valve or a solenoid valve, which is at least partially assembled in the water chamber 3121.

[0090] The control component 33 can cooperate with the water inlet 3122 of the water chamber to control the opening and closing of the water inlet 3122. When the water inlet 3122 of the water chamber is closed, the water in the water chamber 3121 flows out, and the water outlet component 32 stops spraying water.

[0091] Preferably, the control component 33 cooperates with the water outlet 3123 to control the opening and closing of the water outlet 3123. When the control component 33 closes the water outlet 3123, the water outlet component 32 immediately stops spraying water.

[0092] When users need to adjust the water outlet angle of the water outlet component 32, they can simply hold the housing component 31 and rotate it for easy operation. Even when the water outlet component 32 is in spray mode, the user's hand will not obstruct the water spray, thus preventing splashing and improving the user experience.

[0093] As needed, a limiting structure can be provided between the housing assembly 31 and the faucet fixing seat 1 to limit the angle range of the water outlet assembly 32 swinging or rotating driven by the housing assembly 31.

[0094] The "pivotable connection" involved in this utility model refers to a connection method in which two components can rotate or swing relative to each other.

[0095] In one embodiment, such as Figure 8 and Figure 21-22 As shown, the housing assembly 31 includes a sleeve-shaped inner housing 312 and an outer housing 311 pivotally mounted on the inner housing 312, with one end of the inner housing 312 connected to the faucet mounting base 1.

[0096] The water chamber 3121 is located in the inner shell 312, the control component 33 is connected to the inner shell 312, and the water outlet component 32 is connected to the outer shell 311.

[0097] In this embodiment, the housing assembly 31 adopts a double-layer structure, which includes an outer housing 311 and an inner housing 312. The inner housing 312 is sleeve-shaped, with one end connected to the faucet fixing seat 1, specifically connected to the transverse pipe 12. The other end of the inner housing 312 is used to assemble the control assembly 33.

[0098] A water cavity 3121 is located within the inner shell 312. Specifically, the water inlet 3122 is located on the cylindrical wall of the inner shell 312, and the water outlet 3123 is located at the bottom of the water cavity 3121. The bottom of the cavity is either a partition located in the central hole of the inner shell 312 or the wall surface 3126 described in subsequent embodiments. A flow channel 3124 is located within the cylindrical wall of the inner shell 312.

[0099] The water outlet assembly 32 is connected to the outer shell 311. The water outlet assembly 32 can be located on the outside of the outer shell 311 or on the inside of the outer shell 311, with only its nozzle exposed. The cross-sectional shape of the outer shell 311 can be rectangular, circular, trapezoidal, triangular, etc. The outer shell 311 is fitted onto the inner shell 312, so the outer shell 311 can rotate relative to the inner shell 312, thereby driving the water outlet assembly 32 to rotate as a whole. The outer shell 311 is provided with a plurality of first internal threaded holes 3116, and the water outlet assembly 32 is correspondingly provided with a plurality of first bolts 3212, which are connected to the first internal threaded holes 3116.

[0100] When users need to adjust the water outlet angle of the water outlet component 32, they only need to hold the outer shell 311 and rotate it to adjust it. There is no need to rotate the entire shell component 31. This helps to maintain the assembly stability of the inner shell 312 and the faucet fixing seat 1, and also helps to maintain the assembly stability of the control component 33 and the inner shell 312.

[0101] As needed, a limiting structure can be provided between the outer shell 311 and the inner shell 312 to limit the angle range of the water outlet assembly 32 that is driven by the outer shell 311 to swing or rotate.

[0102] In one embodiment, such as Figure 11-12 As shown, the inner shell 312 has a shell opening 3125 on one side, and the water outlet 3123 is located on one end wall 3126 of the shell opening 3125.

[0103] The water outlet assembly 32 is connected to the water outlet 3123 of the water chamber via an adapter 314.

[0104] The water inlet of the adapter 314 is pivotally connected to the water outlet 3123 of the water chamber, the water outlet of the adapter 314 is detachably connected to the water inlet of the water outlet assembly 32, the adapter 314 passes through the housing opening 3125 and is detachably connected to the outer housing 311, and can rotate as a whole with the outer housing 311.

[0105] In this embodiment, the water outlet component 32 is located on one side of the inner shell 312. The inner shell 312 has a shell opening 3125 on the side facing the water outlet component 32. The shell opening 3125 is adjacent to the bottom or wall surface 3126 of the water cavity 3121. The water outlet 3123 of the water cavity is located in the approximate central area of ​​the wall surface 3126.

[0106] The water outlet assembly 32 is connected to the water outlet 3123 of the water chamber via an adapter 314. The adapter 314 includes an inlet end 3141 and an outlet end 3142, which are arranged approximately perpendicularly.

[0107] The size of the housing opening 3125 is larger than the size of the adapter 314. The adapter 314 passes through the housing opening 3125 and can swing up and down or rotate within the housing opening 3125. The adapter 314 is connected to the outer housing 311 via a connector or snap-fit, and the outer housing 311 drives the adapter 314 to swing up and down or rotate.

[0108] The water inlet 3141 of the adapter 314 is pivotally connected to and sealed with the water outlet 3123 of the water chamber. Therefore, the water inlet 3141 of the adapter 314 can rotate relative to the water outlet 3123 of the water chamber to adapt to the up-and-down swing or rotation of the adapter 314.

[0109] The outlet end 3142 of the adapter 314 is detachably connected to and sealed with the inlet end of the water outlet assembly 32. During the up-and-down swinging of the outer shell 311, the water outlet assembly 32 will move synchronously, and the adapter 314 will also move synchronously. Therefore, the outlet end 3142 of the adapter 314 and the inlet end of the water outlet assembly 32 can be kept relatively fixed, which is conducive to maintaining the stability and sealing of the connection between the two.

[0110] In one embodiment, such as Figure 11-16 As shown, a bracket 315 is fitted in the housing opening 3125, and the bracket 315 is able to swing in the housing opening 3125.

[0111] The adapter 314 is mounted on the bracket 315, and the bracket 315 is detachably connected to the outer housing 311 via the connector 3154.

[0112] In this embodiment, the adapter 314 is installed and driven to move by the bracket 315, eliminating the need to directly connect the adapter 314 to the outer shell 311. This simplifies the structure of the adapter 314 and reduces the motion load on the adapter 314.

[0113] The top surface of the bracket 315 has a slot 3151, in which the main body of the adapter 314 is engaged. The bracket 315 is located in the housing opening 3125 and can swing up and down within the housing opening 3125. The bracket 315 is connected to the outer housing 311 via a connector 3154. The connector 3154 can be a snap-fit, a second bolt, etc. For example, the outer housing 311 has several second internal threaded holes 3117, and the second bolt is connected to the second internal threaded holes 3117.

[0114] Therefore, the outer shell 311 can drive the bracket 315 to move synchronously, and the bracket 315 can drive the adapter 314 to move synchronously.

[0115] In one embodiment, a limiting structure is fitted between the bracket 315 and the wall surface 3126 to limit the swing amplitude or angle of the bracket 315, thereby limiting the adjustment angle of the water outlet assembly 32.

[0116] The limiting structure can be a combination of limiting pins and limiting grooves, or other limiting methods.

[0117] Generally, the adjustment angle of the water outlet component 32 is within the range of 25°.

[0118] In one embodiment, such as Figure 13 and Figure 15-16 As shown, the limiting structure includes a telescopic limiting pin 3152 located at one end of the bracket 315 and two limiting grooves 3127 located on the wall surface 3126.

[0119] Two limiting grooves 3127 extend radially along the inner shell 312 and are arranged at intervals circumferentially along the inner shell 312.

[0120] In this embodiment, the limiting structure adopts a combination of a telescopic limiting pin 3152 and two limiting grooves 3127.

[0121] The telescopic limit pin 3152 is located on the side of the bracket 315 facing the wall surface 3126 and is driven to extend and retract by a spring. Specifically, a mounting hole is provided on the side of the bracket 315 facing the wall surface 3126, and the spring is installed in the mounting hole. One end of the telescopic limit pin 3152 is slidably fitted in the mounting hole, and the spring is sleeved on the telescopic limit pin 3152.

[0122] Two limiting grooves 3127 extend radially along the inner shell 312 and are arranged circumferentially at intervals along the inner shell 312. The two limiting grooves 3127 are roughly located in the middle region between the upper and lower edges of the shell opening 3125, and the central angle between the two limiting grooves 3127 is about 25°.

[0123] When the end of the telescopic limit pin 3152 is engaged in the lower limit groove 3127, it indicates that the water outlet assembly 32 is adjusted to the lower limit position; when the end of the telescopic limit pin 3152 is engaged in the upper limit groove 3127, it indicates that the water outlet assembly 32 is adjusted to the upper limit position.

[0124] The water outlet assembly 32 can be adjusted arbitrarily between its lower and upper limit positions. The head of the telescopic limit pin 3152 is hemispherical and can slide out of the limit groove 3127. When the water outlet assembly 32 can be adjusted between its lower and upper limit positions, the head of the telescopic limit pin 3152 abuts against the wall surface 3126, providing a damping effect and keeping the outer shell 311 and the water outlet assembly 32 stationary in the designated position.

[0125] In one embodiment, such as Figure 14-16 As shown, one end of the adapter 314 is provided with a positioning plate 3143, and the bracket 315 is correspondingly provided with a positioning groove 3153. The positioning plate 3143 is inserted into the positioning groove 3153.

[0126] In this embodiment, a positioning plate 3143 is provided at the end of the adapter 314 away from the water outlet 3123, and a positioning groove 3153 is provided on the bracket 315. Both the positioning plate 3143 and the positioning groove 3153 extend along the axial direction of the inner shell 312.

[0127] During assembly, the positioning plate 3143 is inserted into the positioning groove 3153. On the one hand, it serves to position the two, and on the other hand, when the bracket 315 rotates or swings, the positioning groove 3153 can act on the positioning plate 3143, which helps to make the adapter 314 and the bracket 315 move synchronously.

[0128] In one embodiment, such as Figure 11-12 and Figure 21-22 As shown, an elastic sleeve 313 is fitted onto the inner shell 312, and the outer shell 311 is fitted onto the elastic sleeve 313.

[0129] The elastic sleeve 313 can be made of rubber or plastic. If the elastic sleeve 313 is made of plastic, a gap can be provided on one side of the plastic sleeve to allow for elastic deformation. On the one hand, the elastic sleeve 313 is used to fill the gap between the outer shell 311 and the inner shell 312 to prevent shaking; on the other hand, when the outer shell 311 is rotated, the elastic sleeve 313 acts as a buffer to prevent noise.

[0130] The elastic sleeve 313 has a sleeve opening at a position corresponding to the housing opening 3125. The sleeve opening is adapted to the contour of the housing opening 3125 and is used for the assembly of the adapter 314 and the bracket 315.

[0131] In one embodiment, such as Figure 6-10 As shown, the outer shell 311 includes an outer shell body 3111 sleeved on the inner shell 312, an outer shell cover 3112 disposed on one side of the outer shell body 3111, and an outer shell bottom cover 3113 detachably installed on the bottom of the outer shell cover 3112.

[0132] An installation cavity is formed between the bottom cover 3113 and the cover 3112, and the bottom cover 3113 has a bottom cover opening 3114.

[0133] The water outlet assembly 32 is installed inside the mounting cavity, and the water outlet end of the water outlet assembly 32 is fitted into the bottom cover opening 3114.

[0134] In this embodiment, the outer shell 311 includes an outer shell body 3111, an outer shell cover 3112, and an outer shell bottom cover 3113. The outer shell body 3111 is sleeve-shaped so as to fit onto the inner shell 312. The outer shell cover 3112 is integrally connected to one side of the outer shell body 3111. The outer shell cover 3112 has a mounting cavity with a bottom opening, which communicates with the central hole of the outer shell body 3111. The aforementioned first internal threaded hole and second internal threaded hole are both provided on the cover plate of the outer shell cover 3112.

[0135] The bottom cover 3113 is detachably mounted on the bottom of the cover 3112 or installed in the bottom opening of the cover 3112. The bottom cover 3113 can be connected to the cover 3112 by pins, clips, etc.

[0136] The bottom cover 3113 has a bottom cover opening 3114 for the water outlet end or spray end of the water outlet assembly 32 to be exposed.

[0137] During assembly, remove the bottom cover 3113 of the outer casing, install the water outlet component 32 in the mounting cavity, and then assemble the bottom cover 3113 of the outer casing onto the bottom of the outer casing cover 3112. The water outlet end or spray end of the water outlet component 32 is exposed from the bottom cover opening 3114, which facilitates assembly, disassembly and maintenance.

[0138] In one embodiment, such as Figure 9-10 As shown, the bottom cover 3113 and the outer cover 3112 are connected by a snap fastener 3115, which facilitates the detachable connection of the bottom cover 3113 and the outer cover 3112.

[0139] Specifically, the buckle 3115 is integrally provided on the top surface of the bottom cover 3113 of the outer shell, and the outer cover 3112 is provided with corresponding holes or slots. The buckle 3115 engages with the holes or slots to assemble the bottom cover 3113 and the outer cover 3112 together.

[0140] In one embodiment, such as Figure 6-9As shown, the distance between the upper and lower surfaces of the housing cover 3112 gradually decreases along the radial direction of the housing body 3111. The assembled housing cover 3112 and housing bottom cover 3113 have a triangular cross section, preferably an isosceles triangle.

[0141] When the tip of the outer cover 3112 and the bottom cover 3113 are in the same horizontal plane as the central axis of the outer body 3111, the bottom cover 3113 gradually tilts upward from the outer body 3111 towards the tip, which can realize downward water spraying and is convenient to use.

[0142] In one embodiment, such as Figure 17-19 As shown, the water outlet assembly 32 includes an upper cover 321 with a water inlet connector 3211, a water distribution baffle 322 with multiple water distribution holes 3221, and a lower cover 323 with multiple nozzles 3231.

[0143] The water distribution baffle 322 is installed in the cavity of the upper cover 321, and the lower cover 323 is detachably connected to the upper cover 321.

[0144] The water inlet connector 3211 is connected to the water outlet 3123 of the water chamber.

[0145] In this embodiment, the water outlet assembly 32 includes an upper cover 321, a water distribution baffle 322, and a lower cover 323. A water inlet connector 3211 is provided on the back side of the upper cover 321, serving as the water inlet end of the water outlet assembly 32. The water inlet connector 3211 communicates with the water outlet 3123 of the water chamber, and the two can be connected using a flexible hose, a flow channel, or the aforementioned adapter 314. When using the adapter 314, the water outlet end of the adapter 314 is sealed to the water inlet of the water inlet connector 3211.

[0146] The top cover 321 has a cavity, and the outlet of the water inlet connector 3211 is connected to the cavity of the top cover 321, allowing water to flow into the cavity of the top cover 321.

[0147] A water distribution baffle 322 is disposed in the cavity of the upper cover 321, and its perimeter is sealed to the cavity wall. Several water distribution holes 3221 are distributed on the water distribution baffle 322 for downward water distribution, which can increase water pressure.

[0148] The lower cover 323 and the upper cover 321 are detachably connected, for example by using pin connection or buckle connection, to facilitate assembly and disassembly.

[0149] The lower cover 323 has multiple nozzles 3231 for spraying water for rinsing. The nozzles 3231 are the water outlet ends of the water outlet assembly 32.

[0150] In one embodiment, such as Figure 20 As shown, a water distribution bracket 324 is connected to the bottom of each water distribution hole 3221.

[0151] The water distribution bracket 324 includes multiple connecting rods 3242 and a water baffle head 3241 connected to the lower end of the multiple connecting rods 3242.

[0152] The upper end of the connecting rod 3242 is connected to the water distribution baffle 322, and the water baffle head 3241 is suspended below the water distribution hole 3221.

[0153] A lateral water distribution port 3243 is formed between any two adjacent connecting rods 3242.

[0154] In this embodiment, in order to achieve uniform water distribution to multiple nozzles 3231, a water distribution bracket 324 is connected to the bottom of each water distribution hole 3221.

[0155] The water distribution bracket 324 includes multiple connecting rods 3242 and a water baffle 3241. The water baffle 3241 is connected between the lower ends of the multiple connecting rods 3242, which are arranged around the water baffle 3241. The upper ends of the connecting rods 3242 are connected to the water distribution baffle 322, thereby suspending the water baffle 3241 below the water distribution hole 3221, and forming a lateral water distribution port 3243 between any two adjacent connecting rods 3242.

[0156] When water flows down from the water distribution hole 3221, it is blocked by the water baffle head 3241 and flows out from the side water distribution ports 3243 around the perimeter, so as to achieve uniform water distribution on the top surface of the lower cover 323 and facilitate the even distribution of water among multiple nozzles 3231.

[0157] In one embodiment, such as Figure 6 , Figure 8 , Figure 11-12 and Figure 22 As shown, the control component 33 includes a sliding valve core 332 slidably mounted in the water chamber 3121 and used to control the opening and closing of the water outlet 3123 of the water chamber, a button 331 that cooperates with the sliding valve core 332 and is used to press the sliding valve core 332, and an elastic element connected between the housing component 31 and the sliding valve core 332 and used to drive the sliding valve core 332 to reset.

[0158] Button 331 is slidably mounted on the end of housing assembly 31 away from faucet mounting base 1.

[0159] In this embodiment, the control component 33 adopts a mechanical control valve, which includes a button 331, a sliding valve core 332, and an elastic element.

[0160] Button 331 is mounted on the end of housing assembly 31 away from faucet mounting base 1. Specifically, it is mounted on the end of inner housing 312 and protrudes from the end opening of outer housing 311 so that the user can press to operate button 331.

[0161] At least a portion of the sliding valve core 332 is slidably mounted in the water chamber 3121, which is used to control the opening and closing of the water chamber outlet 3123. One end of the button 331 cooperates with the sliding valve core 332, thereby driving the sliding valve core 332 to move axially along the inner housing 312, thereby closing the water chamber outlet 3123.

[0162] An elastic element is connected between the housing assembly 31 and the sliding valve core 332, which is used to drive the sliding valve core 332 to reset after being pressed.

[0163] In this embodiment, the button valve core structure adopts a PUSH-PUSH switch structure or a ballpoint pen refill bounce structure. Pressing button 331 once closes the water outlet 3123 of the water chamber with sliding valve core 332, and pressing button 331 again opens the water outlet 3123 of the water chamber with sliding valve core 332.

[0164] In one embodiment, such as Figure 4-5 and Figure 22 As shown, the water channel 131 includes a cold water channel 1311, a hot water channel 1312, and a mixing water channel 1313. The water inlet 3122 is connected to the cold water channel 1311.

[0165] In this embodiment, the water channel 131 includes a cold water channel 1311, a hot water channel 1312, and a mixing water channel 1313.

[0166] The cold water in water channel 131 is divided into two paths: one path flows from the water inlet 3122 to the water chamber 3121, and the other path flows to the control valve core 14. The hot water in hot water channel 1312 flows to the control valve core 14. The user can operate the handle 2 to rotate the control valve core 14, thus mixing the cold and hot water to form mixed water or warm water. The mixed water or warm water flows into the mixing channel 1313 and then through the faucet hose to the faucet 4.

[0167] In this embodiment, the water sprayed from the water outlet assembly 32 is cold water. In this way, the faucet 4 and the water outlet assembly 32 can produce water independently of each other.

[0168] As needed, the above technical solutions can be combined to achieve the best technical effect.

[0169] The above are merely the principles and preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several other modifications can be made based on the principles of this utility model, and these modifications should also be considered within the scope of protection of this utility model.

Claims

1. A faucet device, characterized in that, It includes a faucet holder (1), a handle (2) connected to one side of the faucet holder (1), and a side water outlet mechanism (3) connected to the other side of the faucet holder (1); The faucet mounting base (1) is provided with a transfer valve core (13) having a water passage (131) and a control valve core (14) pivotally mounted on one side of the transfer valve core (13) and used to control the water passage (131). The handle (2) is connected to the control valve core (14). The side water outlet mechanism (3) includes a housing assembly (31) connected to the faucet fixing seat (1) and rotatable relative to the faucet fixing seat (1), a water outlet assembly (32) connected to the housing assembly (31) and rotatable integrally with the housing assembly (31), and a control assembly (33) connected to the housing assembly (31) and used to control the water outlet of the water outlet assembly (32). The housing assembly (31) has a water cavity (3121) inside, the water cavity inlet (3122) of the water cavity (3121) is connected to the water channel (131), and the water cavity outlet (3123) of the water cavity (3121) is connected to the water outlet assembly (32); The control component (33) cooperates with the water inlet (3122) and / or the water outlet (3123) of the water cavity to control the opening and closing of the water inlet (3122) and / or the water outlet (3123).

2. The faucet device according to claim 1, characterized in that, The housing assembly (31) includes a sleeve-shaped inner housing (312) and an outer housing (311) pivotally mounted on the inner housing (312), one end of the inner housing (312) being connected to the faucet holder (1); The water chamber (3121) is located in the inner shell (312), the control component (33) is connected to the inner shell (312), and the water outlet component (32) is connected to the outer shell (311).

3. The faucet device according to claim 2, characterized in that, The inner shell (312) has a shell opening (3125) on one side, and the water outlet (3123) is located on one end wall (3126) of the shell opening (3125); The water outlet assembly (32) is connected to the water outlet (3123) of the water chamber via an adapter (314); The water inlet of the adapter (314) is pivotally connected to the water outlet (3123) of the water chamber, the water outlet of the adapter (314) is detachably connected to the water inlet of the water outlet assembly (32), the adapter (314) passes through the opening (3125) of the housing and is detachably connected to the outer housing (311), and can rotate as a whole with the outer housing (311).

4. The faucet device according to claim 3, characterized in that, A bracket (315) is fitted into the housing opening (3125), and the bracket (315) is able to swing within the housing opening (3125); The adapter (314) is mounted on the bracket (315), and the bracket (315) is detachably connected to the outer shell (311) via a connector (3154).

5. The faucet device according to claim 4, characterized in that, A limiting structure is assembled between the bracket (315) and the wall surface (3126).

6. The faucet device according to claim 5, characterized in that, The limiting structure includes a telescopic limiting pin (3152) provided at one end of the bracket (315) and two limiting grooves (3127) provided on the wall surface (3126); The two limiting grooves (3127) extend radially along the inner shell (312) and are arranged circumferentially along the inner shell (312).

7. The faucet device according to claim 4, characterized in that, One end of the adapter (314) is provided with a positioning plate (3143), and the bracket (315) is correspondingly provided with a positioning groove (3153); The positioning plate (3143) is inserted into the positioning groove (3153).

8. The faucet device according to claim 2, characterized in that, An elastic sleeve (313) is fitted onto the inner shell (312), and the outer shell (311) is fitted onto the elastic sleeve (313).

9. The faucet device according to claim 2, characterized in that, The outer shell (311) includes an outer shell body (3111) sleeved on the inner shell (312), an outer shell cover (3112) disposed on one side of the outer shell body (3111), and an outer shell bottom cover (3113) detachably installed at the bottom of the outer shell cover (3112); An installation cavity is formed between the bottom cover (3113) and the cover (3112), and the bottom cover (3113) has a bottom cover opening (3114); The water outlet assembly (32) is installed in the mounting cavity, and the water outlet end of the water outlet assembly (32) is assembled in the bottom cover opening (3114).

10. The faucet device according to claim 9, characterized in that, The bottom cover (3113) and the outer cover (3112) are connected by a snap fastener (3115).

11. The faucet device according to claim 9, characterized in that, Along the radial direction of the outer shell body (3111), the distance between the upper and lower surfaces of the outer shell cover (3112) gradually decreases.

12. The faucet device according to any one of claims 1-11, characterized in that, The water outlet assembly (32) includes an upper cover (321) with a water inlet connector (3211), a water distribution baffle (322) with multiple water distribution holes (3221), and a lower cover (323) with multiple nozzles (3231). The water distribution baffle (322) is installed in the cavity of the upper cover (321), and the lower cover (323) is detachably connected to the upper cover (321); The water inlet connector (3211) is connected to the water outlet (3123) of the water chamber.

13. The faucet device according to claim 12, characterized in that, A water distribution bracket (324) is connected to the bottom of each of the water distribution holes (3221); The water distribution bracket (324) includes multiple connecting rods (3242) and a water baffle (3241) connected to the lower end of the multiple connecting rods (3242); The upper end of the connecting rod (3242) is connected to the water distribution baffle (322), and the water baffle (3241) is suspended below the water distribution hole (3221); A lateral water distribution port (3243) is formed between any two adjacent connecting rods (3242).

14. The faucet device according to any one of claims 1-11, characterized in that, The control component (33) includes a sliding valve core (332) slidably mounted in the water chamber (3121) for controlling the opening and closing of the water outlet (3123) of the water chamber, a button (331) cooperating with the sliding valve core (332) for pressing the sliding valve core (332), and an elastic element connected between the housing assembly (31) and the sliding valve core (332) for driving the sliding valve core to reset. The button (331) is slidably mounted on one end of the housing assembly (31) away from the faucet holder (1).

15. The faucet device according to any one of claims 1-11, characterized in that, The water passage (131) includes a cold water passage (1311), a hot water passage (1312), and a mixing water passage (1313); The water inlet (3122) of the water chamber is connected to the cold water channel (1311).

Citation Information

Patent Citations

  • Multifunctional water outlet faucet

    CN219954315U