Faucets with utensil flushing mechanism

By designing a faucet with a vessel flushing mechanism, the vessel flushing mechanism can be flexibly switched to another position, and the nozzle can be hidden or exposed, which solves the problem of traditional faucets having a single function and occupying a large space, and achieves a simple, beautiful and convenient user experience.

CN115126047BActive Publication Date: 2025-09-05ZHANGZHOU SOLEX SMART HOME CO LTD
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Patent Information

Application Number
CN202111642881.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-10-20
Filing Date
2021-12-29
Publication Date
2025-09-05
Estimated Expiration
2041-12-29

AI Technical Summary

Technical Problem

Traditional faucets have a single function, and faucets with utensil washing equipment take up a lot of space and have a complex structure, making them inconvenient to use.

Method used

A faucet with a vessel flushing mechanism is designed. The vessel flushing mechanism is movably mounted on the main pipe component and can be switched to different positions according to needs. The nozzle can be hidden or exposed. The usage status is controlled by a cover or an induction switch. The flushing function is realized by combining hot and cold water circuits and a control valve.

Benefits of technology

The nozzle is protected and hidden, the occupied space is reduced, the appearance is simple and beautiful, the use is convenient, and the structure is simple, which improves the stability and convenience of use.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN115126047B_ABST
    Figure CN115126047B_ABST
Patent Text Reader

Abstract

The present invention discloses a faucet with a vessel washing mechanism, comprising a faucet mechanism, a vessel washing mechanism and a water inlet mechanism. The faucet mechanism comprises a main pipe component and a first water channel at least partially disposed within the main pipe component, and the water inlet mechanism is connected to the first water channel. The vessel washing mechanism is mounted on the main pipe component and is provided with a nozzle that can be connected to the water inlet mechanism. The vessel washing mechanism is movably mounted on the main pipe component, and the nozzle is controlled to be in different positions by the movability of the vessel washing mechanism, thereby facilitating use and storage and preventing the nozzle from being damaged or contaminated.
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Description

Technical Field

[0001] The invention relates to the technical field of kitchen and bathroom, in particular to a faucet with a utensil flushing mechanism. Background Art

[0002] The traditional faucet only has the function of discharging water and has a single function. In order to solve the above shortcomings, some people have proposed faucets with utensil flushing equipment, such as:

[0003] A multifunctional faucet includes a main pipe, a hose detachably connected to the main pipe outlet, the other end of the hose forming a disassembly port, a faucet bracket and a cleaning device fixedly connected to the side wall of the main pipe, the faucet bracket having a faucet water inlet and a faucet water outlet, and the cleaning device comprising a cleaning bracket and a rolling tube. The rolling tube includes an inner cavity, a rotating shaft fixedly connected therein, one end of the rotating shaft extending outside the rolling tube and rotatably connected to the cleaning bracket, the cleaning bracket having a cleaning water inlet, the cleaning water inlet being in communication with the inner cavity, a paddle fixedly connected to the rotating shaft, a cleaning sleeve disposed on the outer surface of the rolling tube, and a through hole extending through the wall of the rolling tube. When used as a conventional faucet, the disassembly port is detachably connected to the faucet water inlet; when used as a cleaning device, the disassembly port is detachably connected to the cleaning water inlet. The cleaning bracket of the cleaning device is fixedly attached to the main pipe, occupying a large amount of space.

[0004] or,

[0005] A utensil washing device comprises: a discharge container including: a receiving portion; a discharge channel in fluid communication with the receiving portion; a water delivery rim in fluid communication with the discharge channel and configured to deliver water thereon; a fluid discharge component coupled to the discharge container, the fluid discharge component comprising: a central body movably coupled to the discharge container; a plurality of nozzles coupled to the central body and eccentrically positioned relative to the receiving portion; a trigger coupled to the central body and movable relative to the discharge container together with the central body; and a valve operably coupled to the fluid discharge component and configured to move with the trigger to control the flow of water through the central body to the plurality of nozzles. This washing device is fixed to a kitchen countertop, is inconvenient to use, and has a complex structure. Summary of the Invention

[0006] The present invention provides a faucet with a utensil flushing mechanism, which overcomes the shortcomings of faucets in the background art.

[0007] One of the technical solutions adopted by the present invention to solve the technical problem is: a faucet with a utensil flushing mechanism, comprising:

[0008] A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component;

[0009] a water inlet mechanism connected to the first water channel; and

[0010] The utensil washing mechanism is mounted on the faucet mechanism and is provided with a nozzle which can be connected to the water inlet mechanism. The utensil washing mechanism is movably mounted on the main pipe component, and the nozzle is controlled to be in different positions by the utensil washing mechanism.

[0011] In one embodiment, a receiving groove is formed in the outer peripheral wall of the main pipe component, and the vessel washing mechanism in the non-use position is located in the receiving groove.

[0012] In one embodiment, the connection between the utensil rinsing mechanism and the main pipe component includes at least a rotational relationship.

[0013] In one embodiment, a receiving groove is recessed in the outer peripheral wall of the main pipe component, and the vessel rinsing mechanism in a non-use position is located within the receiving groove. The vessel rinsing mechanism is rotatably connected to the main pipe component, and the rotation axis of the vessel rinsing mechanism is arranged horizontally and disposed within the receiving groove. The vessel rinsing mechanism is restrained by a lower groove wall of the receiving groove to limit the vessel rinsing mechanism in the use position.

[0014] In one embodiment, the main pipe component includes a main shell and a base fixed under the main shell. The main shell is recessed to form the above-mentioned receiving groove, and the base is formed with the above-mentioned receiving groove lower wall.

[0015] In one embodiment, the utensil rinsing mechanism comprises a rotating shaft rotatably connected to a main pipe component. An axial groove is axially recessed on a first end surface of the rotating shaft and connected to a water inlet mechanism. The utensil rinsing mechanism comprises a cupwashing water channel connecting a nozzle and the axial groove. When the utensil rinsing mechanism is in use, the nozzle is arranged upward.

[0016] In one embodiment, a mounting seat is fixedly provided in the main pipe component, a pivot is convexly provided on the mounting seat, a water inlet groove that can be connected to the water inlet mechanism is provided on the mounting seat, a water outlet groove that is connected to the water inlet groove is concavely provided on the end surface of the pivot, and the pivot can be rotatably inserted into the axial groove, and the water outlet groove and the axial groove are connected.

[0017] In one embodiment, the main pipe component is provided with a lug, and the lug is provided with a pivot hole; the lug and the mounting seat are arranged facing each other, and the second end of the rotating shaft is rotatably connected to the pivot hole of the lug.

[0018] In one embodiment, a control valve is further provided between the water outlet mechanism and the dishwashing mechanism, which can at least be controlled to switch on and off. The dishwashing mechanism has a water outlet and a control switch. The nozzle is installed in the water outlet and the nozzle of the dishwashing mechanism is arranged upward when in the use position. The control switch and the control valve are connected by signal.

[0019] In one embodiment, the control switch includes a touch-pressure switch, which is provided on the top surface of the vessel rinsing mechanism in the use position and is controlled by whether a vessel is placed on the vessel rinsing mechanism.

[0020] In one embodiment, the control switch includes a sensor switch. The sensor switch is provided on the top surface of the vessel rinsing mechanism in the use position, and the switch is controlled by sensing whether a vessel is placed on the vessel rinsing mechanism.

[0021] In one embodiment, the utensil rinsing mechanism further comprises a lower housing and a panel. The water outlet comprises a rotating shaft rotatably connected to the main pipe component. A first end surface of the rotating shaft is axially recessed with an axial groove capable of connecting to the water inlet mechanism. The water outlet comprises a cupwashing channel connected to the axial groove and a through-port connected to the cupwashing channel. The through-port is equipped with the aforementioned nozzle. The water outlet is fixedly mounted within the lower housing. The panel is fixedly connected to the lower housing and is provided with a clearance opening corresponding to the nozzle and the control switch.

[0022] In one embodiment, the device further comprises a control box, wherein the control valve is arranged in the control box, and the control switch is connected to a signal line, and the signal line is connected to the control valve.

[0023] In one embodiment: the water inlet mechanism includes a cold water line and a hot water line; the vessel rinsing mechanism is connected to the cold water line of the water inlet mechanism; the faucet mechanism includes a main control valve, which connects the cold water line, the hot water line and the first water channel, and the main control valve is installed on the main pipe component.

[0024] In one embodiment: it also includes a control valve that is arranged between the water outlet mechanism and the utensil rinsing mechanism and can at least control the switch; the faucet mechanism includes a support pipe and a second water channel, one end of the first water channel is connected to the main control valve and the other end passes through the main pipe component and the support pipe, the control valve connects the cold water circuit and one end of the second water channel, and the other end of the second water channel can be connected to the nozzle.

[0025] In one embodiment, the second water channel is provided with an ozone generator.

[0026] In one embodiment, the nozzle is arranged upward or downward by the activity of the vessel washing mechanism.

[0027] The second technical solution adopted by the present invention to solve the technical problem is: a faucet with a utensil flushing mechanism, comprising:

[0028] A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component;

[0029] a water inlet mechanism connected to the first water channel;

[0030] The vessel washing mechanism is movably mounted on the main component and can move between a use position and a non-use position relative to the main component. The outer peripheral wall of the main component is provided with a receiving groove, and the vessel washing mechanism in the non-use position is located in the receiving groove.

[0031] The third technical solution adopted by the present invention to solve the technical problem is: a faucet with a utensil flushing mechanism, comprising:

[0032] A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component;

[0033] a water inlet mechanism connected to the first water channel; and

[0034] The vessel washing mechanism is provided with a nozzle that can be connected to the water inlet mechanism. The vessel washing mechanism is installed on the faucet mechanism and is controlled to be in use or in non-use. The nozzle of the vessel washing mechanism in the use state is exposed, and the nozzle of the vessel washing mechanism in the non-use state is hidden.

[0035] In one embodiment, the vessel washing mechanism is movably mounted on the main component and can move relative to the main component between a use position and a non-use position.

[0036] In one embodiment, further comprising:

[0037] The cover plate is movably connected to the main pipe component and can move relative to the main pipe component between a covering position in which at least the nozzle is covered to hide the nozzle and an opening position in which the cover is opened to expose the nozzle. The cover plate is controlled by the movement of the cover plate to control whether the dishwashing mechanism is in use or not.

[0038] In one embodiment, the invention further comprises a cover plate, wherein the cover plate forms a cover connection cavity, and the cover plate is rotatably connected to the main pipe component, and the cover connection cavity of the cover plate located at the cover connection position covers the nozzle.

[0039] In one embodiment, the main pipe component is provided with a mounting surface, the nozzle is mounted on the mounting surface, and the cover plate in the covering position covers the mounting surface.

[0040] In one embodiment, a mounting groove is formed in the outer peripheral wall of the main pipe component, the nozzle is arranged in the mounting groove, and the cover plate is rotatably connected to the main pipe component, and the cover plate at the covering position covers the notch of the mounting groove.

[0041] In one embodiment, the vessel rinsing mechanism is fixedly connected to the main pipe component.

[0042] In one embodiment, the invention further includes a control valve that is arranged between the water outlet mechanism and the utensil rinsing mechanism and can at least control the switch; the utensil rinsing mechanism has a control switch, the control switch and the control valve are signal-connected, the nozzle is arranged outward, and the cover plate in the covering connection also covers the control switch.

[0043] In one embodiment, the device further comprises a control box, wherein the control valve is arranged in the control box, and the control switch is connected to a signal line, and the signal line is connected to the control valve.

[0044] In one embodiment, the cover plate forms a cover connection cavity, and the cover plate is rotatably connected to the main pipe component, and the cover connection cavity of the cover plate located at the cover connection position covers the nozzle.

[0045] In one embodiment, the water inlet mechanism includes a cold water path and a hot water path; the vessel rinsing mechanism is connected to the cold water path of the water inlet mechanism; the faucet mechanism includes a main control valve, the main control valve connecting the cold water path, the hot water path, and the first water path, and the main control valve is installed on the main pipe component;

[0046] It also includes a control valve that is arranged between the water outlet mechanism and the utensil rinsing mechanism and can at least control the switch; the faucet mechanism includes a support pipe and a second water channel, one end of the first water channel is connected to the main control valve and the other end passes through the main pipe component and the support pipe, the control valve is connected to the cold water circuit and one end of the second water channel, and the other end of the second water channel can be connected to the nozzle.

[0047] Compared with the background technology, this technical solution has the following advantages:

[0048] The utensil rinsing mechanism is movably attached to the main component and can be adjusted as needed to control the nozzle position. For example, the nozzle points upward for rinsing when in use, and points downward when not in use to prevent damage and contamination, thus protecting the nozzle. The utensil rinsing mechanism is controlled by the utensil rinsing mechanism to be in use or inactive. Since the utensil rinsing mechanism can be adjusted in two positions, it is convenient for use and storage, takes up less space, and has a simple and attractive appearance.

[0049] The dishwashing mechanism is mounted on the main component and can be controlled to be in use or non-use state. The nozzle of the dishwashing mechanism is exposed when in use, and is hidden when in non-use state, so that it is convenient to use and store and prevent the nozzle from being damaged or contaminated.

[0050] The utensil flushing mechanism is restricted by the lower groove wall of the storage groove to limit the utensil flushing mechanism in the use position, thereby improving stability and convenience during use.

[0051] The main pipe component includes a main shell and a base fixed under the main shell. The main shell is recessed to form the above-mentioned receiving groove, and the base is formed with the above-mentioned receiving groove lower groove wall, which is convenient for assembly and has a simple structure.

[0052] An axial groove that can be connected to the water inlet mechanism is axially recessed on the first end surface of the rotating shaft, and a cup washing water channel that connects the nozzle and the axial groove is provided in the utensil washing mechanism, or / and a pivot is convexly provided on the mounting seat, and the mounting seat is provided with a water inlet groove that can be connected to the water inlet mechanism, and a water outlet groove that is connected to the water inlet groove is recessed on the end surface of the pivot. The pivot can be rotatably inserted into the axial groove, and the water outlet groove and the axial groove are connected, so that the water channel connection does not interfere with the rotation of the washing mechanism.

[0053] The nozzle of the dishwashing mechanism is exposed or hidden by controlling the cover plate to be in the open position or the cover connection position. The cover plate is opened when in use and closed when not in use to hide the nozzle and prevent the nozzle from being damaged or contaminated. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0055] Figure 1 This is a three-dimensional schematic diagram of the faucet of Example 1, with the flushing mechanism in the use position.

[0056] Figure 2 This is a diagram showing an example of using the faucet mechanism and the flushing device for flushing a cup in accordance with the first embodiment.

[0057] Figure 3 It is a three-dimensional schematic diagram of the faucet mechanism and flushing device of the first embodiment, with the flushing mechanism in a non-use position.

[0058] Figure 4 It is a cross-sectional schematic diagram of the faucet mechanism and flushing device of Example 1, with the flushing mechanism in the use position.

[0059] Figure 5 yes Figure 4 A magnified schematic diagram of .

[0060] Figure 6 yes Figure 4 BB cross-section diagram.

[0061] Figure 7 It is a three-dimensional schematic diagram of the main component and the flushing device of the first embodiment, and the flushing mechanism is in a non-use position.

[0062] Figure 8 It is a three-dimensional schematic diagram of the main component and flushing equipment of the first embodiment, with the flushing mechanism in the use position.

[0063] Figure 9 It is a cross-sectional schematic diagram of the main pipe component and the flushing device of the first embodiment.

[0064] Figure 10 It is a schematic diagram of a three-dimensional exploded view of a faucet in Example 1.

[0065] Figure 11 It is a block diagram of a faucet in Example 1.

[0066] Figure 12 This is a three-dimensional schematic diagram of the faucet of the second embodiment, with the cover plate at the cover connection position.

[0067] Figure 13 This is a three-dimensional schematic diagram of the faucet of the second embodiment, with the cover in the open position.

[0068] Figure 14This is a diagram showing an example of the use of the second head mechanism and the rinsing device for rinsing cups in accordance with the embodiment.

[0069] Figure 15 It is a three-dimensional schematic diagram of the faucet of the fourth embodiment, with the vessel flushing mechanism in use.

[0070] Figure 16 It is a three-dimensional schematic diagram of the faucet of the fourth embodiment, and an example of the use of the utensil flushing mechanism.

[0071] Description of reference numerals: faucet mechanism 1, vessel flushing mechanism 2, water inlet mechanism 3, vessel 4, control box 5;

[0072] Main pipe component 11, storage tank 111, main housing 112, base 113, lug 114, mounting seat 115, pivot 116, water inlet groove 117, water outlet groove 118, first water channel 12, support pipe 13, second water channel 14, water outlet terminal 15;

[0073] Nozzle 21, water outlet 22, rotating shaft 23, axial groove 231, control switch 24, signal line 241, lower shell 25, panel 26;

[0074] Main control valve 31 , control valve 32 , cold water line 33 , hot water line 34 . DETAILED DESCRIPTION

[0075] Example 1

[0076] Please refer to Figures 1 to 11A faucet with a dishwashing mechanism includes a faucet mechanism 1, a dishwashing mechanism 2, and a water inlet mechanism 3. The faucet mechanism 1 includes a main pipe 11 and a first water channel 12 at least partially disposed within the main pipe 11. The water inlet mechanism 3 is connected to the first water channel 12 via a main control valve 31. The dishwashing mechanism 2 is attached to the main pipe 11 and can be controlled to be in use or inactive. When in use, the nozzle 21 of the dishwashing mechanism 2 is exposed, while when inactive, the nozzle 22 of the dishwashing mechanism 2 is concealed. In this embodiment, the dishwashing mechanism 2 is movably attached to the main pipe 11 and can be moved relative to the main pipe 11 between an active position corresponding to an active state and a non-active position corresponding to a non-active state. The dishwashing mechanism 2 is provided with a nozzle 21. The water inlet mechanism 3 is connected to the nozzle 21 via a control valve 32. When in the active position, the nozzle 21 of the dishwashing mechanism 2 faces upward, and the active state or non-active state is controlled by the movement of the dishwashing mechanism 2. In this embodiment, a receiving groove 111 is formed on the outer peripheral wall of the main component 11, and the utensil washing mechanism 2 in the non-use position is located in the receiving groove 111, so that the utensil washing mechanism 2 is hidden in the main component 11. After storage, the structure is compact and the appearance is simple. It is not necessary to set up a separate installation position on the kitchen countertop and the faucet space can be saved. The connection between the utensil washing mechanism 2 and the main component 11 includes at least a rotation relationship. If there is only a rotation connection, the rotation axis of the utensil washing mechanism 2 is arranged horizontally, and the washing mechanism 2 is arranged horizontally when it is in the use position. The structure is compact and easy to use. When in the non-use position, it is vertically stored in the storage groove 111. The nozzle faces the bottom of the storage groove to be in a hidden state. It adopts a connection with only rotation, which is easy to operate. In order to facilitate opening the utensil washing mechanism 2 in the non-use position and a recess is formed between the utensil washing mechanism 2 and the upper groove wall of the storage groove 111. In order to improve the rotation convenience, a positioning pin mechanism is set between the main component and the utensil washing mechanism 2 (to maintain it in the use position or the non-use position, and to improve the rotation feel). However, other movable connection structures, such as sliding or pulling, can also be used as needed.

[0077] The water inlet mechanism 3 includes a cold water path 33 and a hot water path 34. The faucet mechanism 1 includes a main control valve 31, a support pipe 13, and a second water channel 14. The main control valve 31 connects the cold water path 33, the hot water path 34, and the first water channel 12. The main control valve 31 is installed on the main pipe 11 to control the opening and closing, flow rate, and water temperature of the first water channel 12. The structure of the main control valve 31 can refer to the existing technology. One end of the first water channel 12 is connected to the main control valve 31, and the other end passes through the main pipe 11 and the support pipe 13. The end of the first water channel 12 is provided with a water outlet terminal 15. The first water channel 12 can be bent. The control valve 32 is installed between the cold water path 33 of the water outlet mechanism 3 and the utensil rinsing mechanism 2 to control the opening and closing. The control valve 32 is a solenoid valve. The control valve 32 connects the cold water path 33 and one end of the second water channel 14 through a connector 331. The other end of the second water channel 14 can be connected to the nozzle 21.

[0078] In this embodiment, the rotation axis of the utensil washing mechanism 2 is arranged in the receiving groove 111, and the utensil washing mechanism 2 is restricted by the lower groove wall of the receiving groove 111 to limit the utensil washing mechanism 2 to the use position. In the specific structure, the main pipe component 11 includes a main shell 112 and a base 113 fixed under the main shell 112. The main shell 112 is recessed to form the receiving groove 111, and the base 113 is formed with the lower groove wall of the receiving groove 111. The base 113 is provided with a protruding lug 114, and the lug 114 is provided with a pivot hole. The base 113 is attached to the mounting seat 115, and a fixed relationship is formed after the attachment. The lug 114 and the mounting seat 115 are arranged facing each other, and the mounting seat 115 is provided with a pivot 116 protruding towards the lug 114. The mounting seat 115 is provided with a water inlet groove 117 that can be connected to the second water channel 14. The distal end of the pivot 116 is recessed with a water outlet groove 118 connected to the water inlet groove 117.

[0079] The utensil rinsing mechanism 2 includes a water outlet 22 having a rotating shaft 23 disposed on one side thereof. An axial groove 231 is formed in the axial direction of a first end surface of the rotating shaft 23. The water outlet 22 is provided with a cupwashing channel 232 connected to the axial groove 231 and a through-hole connected to the cupwashing channel 232. The through-hole is provided with the nozzle 21. The second end of the rotating shaft 23 is rotatably connected to the pivot hole of the lug 114. The pivot 116 of the mounting seat 115 is rotatably inserted into the axial groove 231 of the rotating shaft 23. On the one hand, the above connection enables rotation, so that the rotating shaft is located in the receiving groove. On the other hand, the water outlet groove and the axial groove are connected. The water path is: cold water path 33 - control valve 32 - water inlet groove 117 - water outlet groove 118 - axial groove 231 - cupwashing channel 232 - nozzle 21.

[0080] The utensil rinsing mechanism 2 also includes a control switch 24, which is signal-connected to the control valve 32. If the control switch 24 is a touch switch, the touch switch is provided on the top surface of the utensil rinsing mechanism 2 when in use, and the touch switch is controlled by whether the utensil 4 is placed on the utensil rinsing mechanism 2. Alternatively, the control switch 24 is an induction switch, the induction switch is provided on the top surface of the utensil rinsing mechanism 2 when in use, and the induction switch is controlled by whether the utensil 4 is placed on the utensil rinsing mechanism 2. If the touch switch is a capacitive induction key or an infrared induction key, the switch can be automatically controlled by whether the utensil 4 is prevented from being opened or closed. However, a manually controlled control switch can also be provided as needed, such as one that is manually pressed or activated by human body sensing. In the specific structure, the utensil washing mechanism 2 also includes a lower shell 25 and a panel 26. The water outlet 22 is fixedly arranged in the lower shell 25. The panel 26 is fixedly covered with the lower shell 25 and has a clearance opening corresponding to the nozzle and the control switch. It also includes a control box 5. The control valve 32 is arranged in the control box 5. The control switch 24 is connected to a signal line 241. The signal line 241 passes through the gap between the water outlet and the panel, the main pipe component, and is connected to the control valve 32 located in the control box 5. The structure is compact, the appearance is beautiful, and it is safe and reliable to use.

[0081] The cup rinsing process is as follows: 1. When the control switch 24 is a capacitive sensing key, the utensil rinsing mechanism 2 is rotated to be in the use position, the cup 4 is placed on the utensil rinsing mechanism 2 and the nozzle is covered. When the capacitive sensing key is pressed by the cup, the control valve is opened, and water flows out of the nozzle to achieve rinsing; 2. When the control switch 24 is an infrared sensing key, the utensil rinsing mechanism 2 is rotated to be in the use position, the cup 4 is placed on the utensil rinsing mechanism 2 and the nozzle is covered. When the infrared sensor senses the cup, the control valve is opened, and water flows out of the nozzle to achieve rinsing; 3. When the utensil rinsing mechanism 2 is rotated to be in the use position, the cup 4 is placed on the utensil rinsing mechanism 2 and the nozzle is covered, the control switch is manually operated, and water flows out of the nozzle to achieve rinsing.

[0082] Example 2

[0083] The difference between it and the first embodiment is: Figures 12 to 14The dishwashing mechanism 2 is fixedly attached to the main body 11 and is provided with a nozzle 21. A cover plate 6 is also provided. The cover plate 6 is rotatably connected to the main body 11 and can move relative to the main body 11 between an open position and a closed position. The movement of the cover plate 6 controls whether the dishwashing mechanism 2 is in use or not. When the cover plate is in the open position, the dishwashing mechanism is in use; when the cover plate is in the closed position, the dishwashing mechanism is not in use. The open or closed position of the cover plate 6 controls whether the nozzle 21 of the dishwashing mechanism 1 is exposed, allowing the cleaning of the dishes 4, or hidden, preventing damage or contamination. In the specific structure, the main pipe component 11 is provided with a mounting surface 119, the nozzle 21 is mounted on the mounting surface 119, the cover plate 6 forms a cover connection cavity 61, the cover plate is rotatably connected to the main pipe component, the cover plate in the covering position covers the mounting surface, the cover connection cavity 61 covers the nozzle 21 with good concealment effect and beautiful appearance, and the cover plate 6 in the open position is arranged roughly horizontally.

[0084] The mounting surface 119 is also provided with a control switch 24 to control whether the nozzle sprays water or not. The cover plate in the covering position also covers the control switch to prevent the control switch from being accidentally touched. When in use, the control switch can be pushed against by the vessel port to open the control valve.

[0085] Example 3

[0086] The difference between it and the first and second embodiments is that the control box 5 is equipped with an ozone generator, which is arranged in the second water channel so that the water sprayed from the nozzle is ozone water, thereby improving the cleaning, disinfection and sterilization effect.

[0087] Example 4

[0088] The difference between it and the first embodiment is: Figure 15 and Figure 16 The utensil washing mechanism 2 is rotatably mounted on the main pipe component 11, and the rotation axis is parallel to the center line of the main pipe component 11, or the utensil washing mechanism 2 is coaxially arranged with the main pipe component 11, and the utensil washing mechanism 2 can rotate circumferentially around the main pipe component 11. The rotation of the utensil washing mechanism 2 causes the nozzle 21 of the utensil washing mechanism 2 to be in different positions to control it to be in a use position or a non-use position. When in a non-use state, the nozzle will not interfere with other use states of the faucet or avoid the nozzle from being contaminated, such as Figure 15 、 16 In the non-use position, the nozzle is at 90 degrees to the water outlet position and rotated to the edge of the sink to avoid interfering with items placed in the sink.

[0089] The above description is merely a preferred embodiment of the present invention and therefore cannot be used to limit the scope of the present invention. In other words, equivalent changes and modifications made according to the scope of the present invention and the contents of the specification should still fall within the scope of the present invention.

Claims

1. A faucet with a vessel flushing mechanism, characterized by: include: A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component; a water inlet mechanism connected to the first water channel; and A utensil washing mechanism is mounted on the faucet mechanism and is provided with a nozzle that can be connected to the water inlet mechanism. The utensil washing mechanism is movably mounted on the main pipe component, and the nozzle is controlled to be in different positions by the movement of the utensil washing mechanism; A receiving groove is recessed in the outer peripheral wall of the main pipe component, and the utensil washing mechanism in the non-use position is located in the receiving groove. The utensil washing mechanism has a rotating shaft that is rotatably connected to the main pipe component. An axial groove is recessed in the axial direction of the first end surface of the rotating shaft and can be connected to the water inlet mechanism. The utensil washing mechanism is provided with a cupwashing water channel that connects the nozzle and the axial groove. The nozzle of the utensil washing mechanism is arranged upward when in the use position.

2. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: The connection between the utensil washing mechanism and the main component includes at least a rotational relationship.

3. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: The vessel washing mechanism is rotatably connected to the main component. The rotation axis of the vessel washing mechanism is arranged horizontally and is disposed in the receiving groove. The vessel washing mechanism is restricted by the lower groove wall of the receiving groove to limit the vessel washing mechanism in the use position.

4. The faucet with a vessel flushing mechanism according to claim 3, characterized in that: The main pipe component comprises a main shell and a base fixed under the main shell. The main shell is recessed to form the receiving groove, and the base is formed with a lower groove wall of the receiving groove.

5. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: A mounting seat is fixed in the main pipe component, and a pivot is convexly provided on the mounting seat. The mounting seat is provided with a water inlet groove that can be connected to the water inlet mechanism. The end surface of the pivot is concavely provided with a water outlet groove that is connected to the water inlet groove. The pivot can be rotatably inserted into the axial groove, and the water outlet groove and the axial groove are connected.

6. The faucet with a vessel flushing mechanism according to claim 5, characterized in that: The main pipe component is provided with a lug, and the lug is provided with a pivot hole; the lug and the mounting seat are arranged facing each other, and the second end of the rotating shaft can be rotatably connected to the pivot hole of the lug.

7. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: It also includes a control valve that is arranged between the water outlet mechanism and the utensil washing mechanism and can at least control the switch; the utensil washing mechanism has a water outlet body and a control switch, the nozzle is installed in the water outlet body and the nozzle of the utensil washing mechanism is arranged upward when in the use position, and the control switch and the control valve are connected by signal.

8. The faucet with a vessel flushing mechanism according to claim 7, characterized in that: The control switch comprises a touch-pressure switch, which is provided on the top surface of the vessel washing mechanism in the use position and is controlled by whether a vessel is placed on the vessel washing mechanism.

9. The faucet with a vessel flushing mechanism according to claim 7, characterized in that: The control switch includes an induction switch. The induction switch is provided on the top surface of the vessel washing mechanism in the use position. The induction switch is controlled by sensing whether a vessel is placed on the vessel washing mechanism.

10. The faucet with a vessel flushing mechanism according to claim 7, characterized in that: The utensil washing mechanism further comprises a lower housing and a panel. The water outlet has a rotating shaft rotatably connected to the main pipe component. An axial groove is axially recessed on a first end surface of the rotating shaft and connected to the water inlet mechanism. The water outlet is provided with a cupwashing channel connected to the axial groove and a through-port connected to the cupwashing channel, and the through-port is equipped with the above-mentioned nozzle. The water outlet is fixedly mounted in the lower housing. The panel is fixedly connected to the lower housing and is provided with a clearance port corresponding to the nozzle and the control switch.

11. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: The water inlet mechanism includes a cold water path and a hot water path; the vessel washing mechanism is connected to the cold water path of the water inlet mechanism; the faucet mechanism includes a main control valve, which connects the cold water path, the hot water path and the first water channel, and the main control valve is installed on the main pipe component.

12. The faucet with a vessel flushing mechanism according to claim 11, characterized in that: It also includes a control valve that is arranged between the water outlet mechanism and the utensil rinsing mechanism and can at least control the switch; the faucet mechanism includes a support pipe and a second water channel, one end of the first water channel is connected to the main control valve and the other end passes through the main pipe component and the support pipe, the control valve is connected to the cold water circuit and one end of the second water channel, and the other end of the second water channel can be connected to the nozzle.

13. The faucet with a vessel flushing mechanism according to claim 12, characterized in that: The second water channel is provided with an ozone generator.

14. The faucet with a vessel flushing mechanism according to claim 1, characterized in that: The nozzles are arranged upward or downward by the movable control of the utensil washing mechanism.

15. A faucet with a vessel flushing mechanism, characterized in that: include: A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component; a water inlet mechanism connected to the first water channel; The vessel washing mechanism is movably mounted on the main component and can move relative to the main component between an in-use position and a non-use position. The outer peripheral wall of the main component is provided with a receiving groove, and the vessel washing mechanism in the non-use position is located in the receiving groove; The utensil washing mechanism is provided with a nozzle, and the water inlet mechanism is connected to the nozzle via a control valve. When the utensil washing mechanism is in a use position, the nozzle is arranged upward.

16. A faucet with a vessel flushing mechanism, characterized in that: include: A faucet mechanism comprising a main pipe component and a first water channel at least partially disposed within the main pipe component; a water inlet mechanism connected to the first water channel; a vessel washing mechanism having a nozzle connected to the water inlet mechanism, the vessel washing mechanism being attached to the faucet mechanism and being controllable to be in use or in non-use, the nozzle of the vessel washing mechanism being exposed when in use and concealed when in non-use; and a cover plate movably connected to the main pipe component and movable relative to the main pipe component between a cover position for at least covering the nozzle and an open position for opening the cover, and controlling whether the dishwashing mechanism is in use or in non-use by the movement of the cover plate; The main pipe component is provided with a mounting surface, the nozzle is mounted on the mounting surface, and the cover plate at the covering position is covered on the mounting surface.

17. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: The vessel washing mechanism is movably mounted on the main component and can move between a use position and a non-use position relative to the main component.

18. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: The cover plate forms a cover connection cavity, and the cover plate is rotatably connected to the main pipe component. The cover connection cavity of the cover plate located at the cover connection position covers the nozzle.

19. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: The outer peripheral wall of the main pipe component is concavely provided with an installation groove, the nozzle is arranged in the installation groove, the cover plate is rotatably connected to the main pipe component, and the cover plate located at the covering position covers the notch of the installation groove.

20. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: The vessel flushing mechanism is fixedly connected to the main pipe component.

21. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: It also includes a control valve that is arranged between the water outlet mechanism and the utensil washing mechanism and can at least control the switch; the utensil washing mechanism has a control switch, the control switch and the control valve are signal-connected, the nozzle is arranged outward, and the cover plate in the cover connection also covers the control switch.

22. The faucet with a vessel flushing mechanism according to claim 7 or 21, characterized in that: The utility model also comprises a control box, wherein the control valve is arranged in the control box, and the control switch is connected with a signal line, and the signal line is connected with the control valve.

23. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: Also includes: The cover plate forms a cover connection cavity, and the cover plate is rotatably connected to the main pipe component. The cover connection cavity of the cover plate located at the cover connection position covers the nozzle.

24. The faucet with a vessel flushing mechanism according to claim 16, characterized in that: The water inlet mechanism includes a cold water channel and a hot water channel; the vessel washing mechanism is connected to the cold water channel of the water inlet mechanism; the faucet mechanism includes a main control valve, which connects the cold water channel, the hot water channel and the first water channel, and the main control valve is installed on the main pipe component; It also includes a control valve that is arranged between the water outlet mechanism and the utensil rinsing mechanism and can at least control the switch; the faucet mechanism includes a support pipe and a second water channel, one end of the first water channel is connected to the main control valve and the other end passes through the main pipe component and the support pipe, the control valve is connected to the cold water circuit and one end of the second water channel, and the other end of the second water channel can be connected to the nozzle.

Citation Information

Patent Citations

  • Bifurcate rotatable water tap

    CN102937199A

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    CN115126047A

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    CN204025751U

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    CN204553992U

  • Faucet with vessel washing mechanism

    CN217310182U