CN216715317U - Mutual split type cup washing faucet - Google Patents

Mutual split type cup washing faucet Download PDF

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Publication number
CN216715317U
CN216715317U CN202123435877.8U CN202123435877U CN216715317U CN 216715317 U CN216715317 U CN 216715317U CN 202123435877 U CN202123435877 U CN 202123435877U CN 216715317 U CN216715317 U CN 216715317U
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China
Prior art keywords
water
sleeve
water distribution
distribution cavity
ring
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CN202123435877.8U
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Chinese (zh)
Inventor
郑雄国
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Wenzhou Shengxue Sanitary Ware Co ltd
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Wenzhou Shengxue Sanitary Ware Co ltd
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Abstract

The utility model provides a mutual split type cup washing faucet, which comprises a faucet body provided with a water inlet connector, wherein the upper part of the faucet body is provided with a rotary section, the rotary section is provided with a water distribution cavity and a water distribution cavity, and the faucet body is also provided with a switching valve mounting part and a switching valve core; the faucet body is also provided with a water collecting disc, and the water collecting disc is provided with a water outlet sliding valve sleeve; a slide column is arranged in the slide valve sleeve, a flushing channel is arranged in the slide column, and a water through hole connected with the flushing channel is formed in the outer wall of the lower end of the slide column; the sliding column is provided with a first water-tight ring and a second water-tight ring from top to bottom; the water through hole is positioned between the first watertight ring and the second watertight ring and in the sliding valve sleeve before the sliding column is pressed downwards; the outer wall of the rotary section is provided with a water distribution sleeve, and the water distribution sleeve is provided with a water outlet. The utility model has the advantages of compact structure, convenient installation and use, and the cup washer and the water tap are combined into a whole.

Description

Mutual split type cup washing faucet
Technical Field
The utility model relates to the field of faucets and cup washing devices, in particular to an inter-split cup washing faucet.
Background
Present cup washing ware is the push type cup washing ware, and the occasion that has a plurality of cup washing ware often also need be equipped with tap and wash, for example occasions such as coffee shop, milk tea shop, dining room kitchen, this just leads to cup washing ware and tap to all can occupy certain space each other, still needs extra connection inlet tube each other simultaneously, no matter installation and later stage use all very inconvenient.
Most current counter basins only can be provided with one mounting hole for mounting a faucet, so that preferred mounting can be performed only between the faucet or a cup washer, or holes are formed again, if the cup washer and the faucet need to be mounted simultaneously, the counter basins with two mounting holes need to be mounted additionally most of the time, and the additional cost for mounting the cup washer and the faucet simultaneously is increased.
SUMMERY OF THE UTILITY MODEL
Based on the problems, the utility model aims to provide the inter-segmentation cup washing faucet which integrates the cup washing device and the faucet into a whole, has a compact structure and is convenient to install and use.
Aiming at the problems, the following technical scheme is provided: a mutual split type cup washing faucet comprises a faucet body provided with a water inlet interface, wherein a rotary section is arranged at the upper part of the faucet body, the rotary section is provided with a water distribution cavity and a water distribution cavity positioned at the center of the water distribution cavity, the faucet body is also provided with a switching valve mounting part, and a switching valve core which selects the water inlet interface to be communicated with the water distribution cavity and the water distribution cavity is arranged in the switching valve mounting part; the faucet body is also provided with a water collecting disc, the water collecting disc is provided with a water outlet and a sliding valve sleeve which is integrated with or separated from the water collecting disc, and the lower end of the sliding valve sleeve is positioned in the water diversion cavity; a slide column is arranged in the slide valve sleeve, is supported by a spring, and is positioned above the water collecting plate, so that the upper end of the slide column extends out of the slide valve sleeve, a flushing channel is arranged in the slide column from the upper end of the slide column to the lower end of the slide column, and a water through hole connected with the flushing channel is arranged on the outer wall of the lower end of the slide column; the sliding column is provided with a first water-tight ring and a second water-tight ring from top to bottom; the water through hole is positioned between the first watertight ring and the second watertight ring and in the sliding valve sleeve before the sliding column is pressed downwards; the second water-tight ring is far away from the lower end of the sliding valve sleeve after the sliding column is pressed down, and simultaneously the water through hole enters the water distribution cavity to be communicated with the water distribution cavity; the outer wall of the rotary section is provided with a water distribution sleeve which can rotate relative to the rotary section, two ends of the water distribution sleeve are in sealing fit with the outer wall of the rotary section, a water distribution cavity is formed between the rotary section and the inner wall of the water distribution sleeve, the outer wall of the rotary section is provided with a rotary water through hole which is communicated with the water distribution cavity and the water distribution cavity, and the water distribution sleeve is provided with a water outlet which is connected with the water distribution cavity and used for supplying water to downstream.
In the structure, the function of the cup washer and the function of the water tap are combined into a whole, when the cup washer is used, the communication between the upstream water inlet interface and the downstream water distribution cavity or the water distribution cavity can be switched through the switching valve core, and when the cup washer is switched to be communicated with the water distribution cavity, water is discharged from the water outlet; when the cup washing device needs to be used, the switching valve core is switched to be communicated with the water distribution cavity, the sliding column is pressed by a cup or a hand at the moment, the sliding column drives the first watertight ring and the second watertight ring to move downwards, the second watertight ring is far away from the lower end of the sliding valve sleeve, the water through hole is communicated with the water distribution cavity, water in the water distribution cavity enters the flushing channel through the water hole and is sprayed out of the top of the sliding column to achieve the purpose of cup washing, and waste water after cup washing is collected by the water collecting disc and then is discharged from the water outlet; the structure utilizes the switching valve core to control the alternative switching of the water faucet and the cup washer, effectively ensures the water outlet flow rate when the water faucet and the cup washer are separately arranged, and also solves the problems of overlarge space occupation, inconvenient installation and use and the like caused by the split arrangement of the water faucet and the cup washer in the prior art; the direction of the water outlet can be randomly adjusted within the range of 360 degrees by the water distributing sleeve, so that the water outlet direction can be conveniently controlled.
The utility model is further provided that a connecting sleeve is fixed at the bottom of the water collecting tray, and the connecting sleeve is spliced and matched with the water distribution cavity to enable the water collecting tray to rotate circumferentially relative to the faucet body by taking the axis of the connecting sleeve as the center of a circle.
In the structure, the connecting sleeve and the water collecting tray are integrally connected, so that the water collecting tray is rotated while the water collecting tray is connected with the faucet body, the orientation of the water outlet is controlled, and the water collecting tray is more convenient and quick to use.
The utility model is further provided that at least one first sealing ring is arranged between the connecting sleeve and the inner wall of the water distribution cavity; one side of the first sealing ring far away from the interior of the cavity of the water distribution cavity is provided with an anti-falling outer groove, and the faucet body is provided with an anti-falling pin matched with the anti-falling outer groove.
In the structure, the first sealing ring is fixed on the connecting sleeve and used for sealing a gap between the outer wall of the connecting sleeve and the inner wall of the water distribution cavity to avoid water leaping; the anti-drop outer groove and the anti-drop pin are matched and used for limiting the axial position of the connecting sleeve, so that the connecting sleeve is prevented from dropping under the pushing of water pressure in the water distribution cavity; the anticreep round pin includes the round pin body with anticreep outer slot adaptation and the locking section of turning round the section screw thread soon, and the anticreep round pin is preferred three and sets up along turning round section circumferential direction equipartition.
The utility model is further provided that the top end of the sliding column is provided with a pressure plate and a spray head connected with the flushing channel.
In the structure, the pressing plate is arranged at the top end of the sliding column, so that the pressing plate can be abutted against the cup opening of the cup to press the sliding column, and the spray head can be used for improving the water outlet pressure and improving the washing effect.
The utility model is further arranged in such a way that the lower end of the sliding valve sleeve is provided with a closing section, the inner diameter of the closing section is smaller than that of the sliding valve sleeve, and the second water-tight ring is matched and sealed with the inner wall of the closing section or the end surface of the lower end of the closing section; the spring is supported between the lower end face of the first watertight ring and the upper end face of the closing-in section.
In the above-mentioned structure, the spring can be cylinder spring or tower type spring, sets up binding off section and is convenient for it and first watertight ring terminal surface adaptation provide axial support for the spring to promote its play water that stops the washing way automatically on promoting the traveller after the state of pushing down the hand at the traveller.
The utility model is further provided that the sliding column of the second watertight ring, which is far away from one side of the first watertight ring, extends out of the closing section and is provided with a falling-off prevention part at the position of the extending section.
In the structure, the anti-dropping part is an outer clamp spring and provides axial fixation for the sliding column, so that the sliding column is prevented from being directly dropped upwards under the pushing of the spring and water pressure in a reset state.
The utility model is further provided that the first water-tight ring and the second water-tight ring are both provided with at least one outer groove, and a second sealing ring is arranged in the outer groove.
In the structure, the number of the outer grooves which are respectively optimized by the first watertight ring and the second watertight ring is two, and the corresponding second sealing rings and the outer grooves are arranged in an equal number, so that the water tightness is effectively ensured.
The utility model is further arranged in that the faucet body is also provided with a valve core mounting part which is positioned between the water inlet interface and the switching valve mounting part, and the valve core mounting part is provided with a control valve core which is used for controlling the on-off of water flow between the water inlet interface and the switching valve mounting part.
In the structure, the control valve core can be used for independently controlling the on-off of water flow between the water inlet interface and the switching valve core.
The utility model is further provided that when the control valve core is a cold and hot water valve core, the two water inlet ports are respectively a cold water inlet and a hot water inlet.
In the structure, the traditional cup washing device is in a single-cold mode, so that when a cold-hot water valve core is adopted, hot water supply can be realized through temperature adjustment, and the cup washing effect is improved; the cold and hot water valve core can adopt a swinging rotary type (a valve rod swings to control the on-off of mixed water, and a valve rod rotates to control the proportion of cold and hot water), a rotating pressing type (a central valve rod presses to control the on-off of mixed water, and an outer ring valve rod sleeve rotates to control the proportion of cold and hot water) and a concentric rotary type valve core (a central valve rod rotates to control the proportion of cold and hot water, and an outer ring valve rod sleeve rotates to control the on-off of mixed water); because the switching valve core is arranged, the on-off of the downstream water flow of the control valve core can be controlled by directly utilizing the switching valve core, and the cold-hot water proportion when the control valve core is a cold-hot water valve core can be ensured not to be influenced when the control valve core is used every time.
The utility model is further provided that the downstream of the water distribution sleeve is provided with a water outlet rod or a folding rod which is fixedly connected with the water distribution sleeve, and the tail end of the water outlet rod or the folding rod is provided with a bubbler connected with the water outlet.
In the structure, when the water outlet rod is connected with the water distribution sleeve, the water outlet rod rotates along with the water distribution sleeve; when the folding rod is connected with the water distribution sleeve, the folding rod can be folded and rotated in multiple directions to adjust the water outlet direction and height while rotating along with the water distribution sleeve.
The utility model is further configured that the water collection tray comprises a retaining edge arranged around the rim of the tray, the water outlet is arranged on the retaining edge for discharging water in the water collection tray, and the upper surface of the water collection tray is inclined towards the water outlet to improve the water discharging efficiency.
In the structure, the water outlet extends towards the direction far away from the center of the water collecting tray, and the water collecting tray bottom surface at the position of the water outlet extending tail end is provided with the water dripping flange, so that water drops can be collected conveniently, and the water drops are prevented from flowing along the water collecting tray bottom surface towards the direction of the faucet body or along the outer edge of the water collecting tray bottom surface and dripping to other places.
The utility model is further arranged that when the sliding valve sleeve and the water collecting tray are arranged integrally, the sliding valve sleeve and the water collecting tray can be produced by adopting an injection molding mode; when the sliding valve sleeve and the water collecting disc are arranged in a split mode, the sliding valve sleeve is connected with the water collecting disc in a screwing mode through threads.
In the structure, the slide valve sleeve is preferably split, so that the slide valve sleeve is convenient to produce independently, and the surface quality of the inner wall of the slide valve sleeve is ensured, thereby ensuring the water tightness.
The utility model is further provided that the water through holes and the rotary water through holes are all multiple.
In the structure, the water through holes are uniformly distributed along the circumferential direction of the sliding column; the water holes are uniformly distributed along the circumferential direction of the rotary section, so that the flow is improved.
The utility model is further set that the water distribution cavity is formed by a water distribution cylinder fixed in the water distribution cavity, and the lower end of the sliding valve sleeve is inserted in the water distribution cylinder.
In the structure, the lower end of the sliding valve sleeve is provided with a third sealing ring which is used for being matched and sealed with the water distribution cylinder.
The utility model is further set that the lower end of the rotary section is connected with the tap body, the upper end of the rotary section is provided with an anti-drop blocking shoulder for preventing the water diversion sleeve from dropping, and the anti-drop pin is positioned on the anti-drop blocking shoulder.
In the structure, two groups of outer grooves are formed in the outer wall of the rotary section, a fourth sealing ring is arranged in each outer groove, and the rotary water passing holes are located between the two groups of outer grooves; each group of outer grooves on the outer wall of the rotary section is divided into two grooves, and the number of the fourth sealing rings is the same as that of the outer grooves; the water distribution sleeve can smoothly rotate while the water tightness of the water distribution cavity is ensured.
The utility model has the beneficial effects that: the cup washer function and the faucet function are combined into a whole, when the cup washer is used, the communication between an upstream water inlet interface and a downstream water distribution cavity or a water distribution cavity can be switched through a switching valve core, and when the cup washer is switched to be communicated with the water distribution cavity, water is discharged from a water outlet; when the cup washing device needs to be used, the switching valve core is switched to be communicated with the water distribution cavity, the sliding column is pressed by a cup or a hand at the moment, the sliding column drives the first watertight ring and the second watertight ring to move downwards, the second watertight ring is far away from the lower end of the sliding valve sleeve, the water through hole is communicated with the water distribution cavity, water in the water distribution cavity enters the flushing channel through the water hole and is sprayed out of the top of the sliding column to achieve the purpose of cup washing, and waste water after cup washing is collected by the water collecting disc and then is discharged from the water outlet; the structure utilizes the switching valve core to control the switching of one of the water faucet and the cup washer, effectively ensures the water outlet flow rate when the water faucet and the cup washer are separately arranged, and also solves the problems of overlarge space occupation, inconvenient installation and use and the like caused by the split arrangement of the water faucet and the cup washer in the prior art; the direction of the water outlet can be randomly adjusted within the range of 360 degrees by the water distributing sleeve, so that the water outlet direction can be conveniently controlled.
Drawings
Fig. 1 is a schematic overall perspective structure of the present invention.
Fig. 2 is a schematic view of a water collecting tray and a faucet body separated from each other in a three-dimensional structure.
Fig. 3 is a first cut-away view angle three-dimensional structure schematic diagram before the strut is pressed.
Fig. 4 is a first cut-away view angle three-dimensional structure schematic diagram after the strut is pressed.
Fig. 5 is a schematic view of a second cut-away perspective three-dimensional structure of the strut of the present invention before being pressed.
Fig. 6 is a schematic view of a second cut-away perspective three-dimensional structure of the strut of the present invention after being pressed.
Fig. 7 is a schematic perspective view of the explosion full-section structure of the present invention.
Fig. 8 is a schematic overall perspective view of the water distribution sleeve of the present invention when connected to a folding rod.
Fig. 9 is a schematic view of the whole three-dimensional structure of the water diversion sleeve when the water diversion sleeve is connected with the water outlet rod.
The reference numbers in the figures mean: 10-a tap body; 11-water inlet interface; 12-a turn section; 121-water distribution cavity; 1211-water separation cylinder; 122-a water diversion cavity; 123-rotary water passing holes; 124-anti-drop blocking shoulder; 125-a fourth seal ring; 13-a switching valve mounting portion; 131-switching valve core; 14-water distribution sleeve; 141-water distribution cavity; 142-a water outlet; 143-water outlet rod; 144-a folding bar; 145-a bubbler; 15-anti-drop pin; 151-pin body; 152-a locking section; 16-a spool mounting portion; 161-control valve core; 20-a water collecting tray; 201-connecting sleeve; 202-a first seal ring; 203-anti-drop outer groove; 204-a rib; 205-drip lip; 21-a water outlet; 22-a slide valve sleeve; 221-a mouth closing section; 222-a third seal ring; 23-a spring; 30-a traveler; 301-a release prevention element; 31-a flushing channel; 32-water through holes; 33-a first water-tight ring; 34-a second water-tight ring; 35-a second sealing ring; 40-pressing plate; 50-spray head.
Detailed Description
The following detailed description of the present invention is provided in connection with the accompanying drawings and examples. The following examples are intended to illustrate the utility model but are not intended to limit the scope of the utility model.
Referring to fig. 1 to 9, the split type cup washing faucet shown in fig. 1 to 9 includes a faucet body 10 having a water inlet 11, a rotary section 12 is disposed on an upper portion of the faucet body 10, the rotary section 12 is provided with a water distribution chamber 121 and a water diversion chamber 122 located at a center of the water distribution chamber 121, the faucet body 10 is further provided with a switching valve mounting portion 13, and a switching valve core 131 is disposed in the switching valve mounting portion 13, the switching valve core is used for selecting one of the water inlet 11 to communicate with the water distribution chamber 121 and the water diversion chamber 122; the faucet body 10 is further provided with a water collecting tray 20, the water collecting tray 20 is provided with a water outlet 21 and a slide valve sleeve 22 which is integrated with or separated from the water collecting tray 20 and the lower end of which is positioned in the water diversion cavity 122; a slide column 30 which is supported by a spring 23 and enables the upper end of the slide column to extend out of the slide valve sleeve 22 and is positioned above the water collecting plate 20 is arranged in the slide valve sleeve 22, a flushing channel 31 which is arranged from the upper end of the slide column 30 to the lower end of the slide column 30 is arranged in the slide column 30, and a water through hole 32 connected with the flushing channel 31 is arranged on the outer wall of the lower end of the slide column 30; the sliding column 30 is provided with a first water-tight ring 33 and a second water-tight ring 34 from top to bottom; the water through hole 32 before the sliding column 30 is pressed down is positioned between the first water-tight ring 33 and the second water-tight ring 34 and is positioned in the sliding valve sleeve 22; the second water-tight ring 34 is far away from the lower end of the slide valve sleeve 22 after the slide column 30 is pressed down, and simultaneously the water through hole 32 enters the water diversion cavity 122 to be communicated with the water diversion cavity 122; the outer wall of the rotary section 12 is provided with a water distribution sleeve 14 which can rotate relative to the rotary section 12, two ends of the water distribution sleeve 14 are in sealing fit with the outer wall of the rotary section 12, a water distribution cavity 141 is formed between the rotary section 12 and the inner wall of the water distribution sleeve 14, the outer wall of the rotary section 12 is provided with a rotary water through hole 123 which is communicated with the water distribution cavity 141 and the water distribution cavity 121, and the water distribution sleeve 14 is provided with a water outlet 142 which is connected with the water distribution cavity 141 and used for supplying water to the downstream.
In the structure, the function of the cup washer and the function of the water tap are combined into a whole, when the cup washer is used, the communication between the upstream water inlet interface 11 and the downstream water distribution cavity 121 or the water distribution cavity 122 can be switched through the switching valve core 131, and when the cup washer is switched to be communicated with the water distribution cavity 121, water is discharged from the water outlet 142; when the cup washing device needs to be used, the switching valve core 131 is switched to be communicated with the water diversion cavity 122, the sliding column 30 is pressed by a cup or a hand at the moment, the sliding column 30 drives the first water-tight ring 33 and the second water-tight ring 34 to move downwards, the second water-tight ring 34 is far away from the lower end of the sliding valve sleeve 22, the water through hole 32 is communicated with the water diversion cavity 122, at the moment, water in the water diversion cavity 122 enters the flushing channel 31 through the water hole 32 and is sprayed out from the top of the sliding column 30 to achieve the purpose of cup washing, and waste water after cup washing is collected through the water collecting disc 20 and then is discharged from the water outlet 21; the structure utilizes the switching valve core 131 to control the switching of one of the water faucet and the cup washer, effectively ensures the water outlet flow rate when the water faucet and the cup washer are separately arranged, and also solves the problems of overlarge space occupation, inconvenient installation and use and the like caused by the split arrangement of the water faucet and the cup washer in the prior art; the direction of the water outlet 142 can be freely adjusted within the range of 360 degrees by the water distributing sleeve 14, so that the water outlet direction can be conveniently controlled.
In this embodiment, a connection sleeve 201 is fixed at the bottom of the water collection tray 20, and the connection sleeve 201 is inserted into the water distribution cavity 121 and makes the water collection tray 20 rotate circumferentially relative to the faucet body 10 around the axis of the connection sleeve 201.
In the above structure, the connection sleeve 201 is integrally connected with the water collection tray 20, so that the rotation of the water collection tray 20 is realized while the connection between the water collection tray 20 and the faucet body 10 is ensured, thereby controlling the orientation of the water outlet 21 and facilitating the use of the faucet body.
In this embodiment, at least one first sealing ring 202 is disposed between the connecting sleeve 201 and the inner wall of the water distribution cavity 121; the first sealing ring 202 is provided with an anti-dropping outer groove 203 on one side far away from the inner part of the cavity of the water distribution cavity 121, and the faucet body 10 is provided with an anti-dropping pin 15 matched with the anti-dropping outer groove 203.
In the above structure, the first sealing ring 202 is fixed on the connecting sleeve 201 and is used for sealing a gap between the outer wall of the connecting sleeve 201 and the inner wall of the water distribution cavity 121 to avoid water leakage; the anti-falling outer groove 203 and the anti-falling pin 15 are adapted to limit the axial position of the connecting sleeve 201, so that the connecting sleeve 201 is prevented from falling off under the pushing of water pressure in the water distribution cavity 121 and the water distribution cavity 122; the anti-slip pins 15 comprise pin bodies 151 matched with the anti-slip outer grooves 203 and locking sections 152 screwed with the rotary section 12, and the anti-slip pins 15 are preferably three and uniformly distributed along the circumferential direction of the rotary section 12.
In this embodiment, the top of the sliding column 30 is provided with a pressing plate 40 and a spray head 50 connected with the flushing channel 31.
In the above structure, the pressing plate 40 is disposed at the top end of the sliding column 30, so that the pressing plate 40 can abut against the rim of the cup to press the sliding column 30, and the nozzle 50 can be used to increase the water outlet pressure and improve the washing effect.
In this embodiment, the lower end of the slide valve sleeve 22 is provided with a closing section 221, the inner diameter of the closing section 221 is smaller than that of the slide valve sleeve 22, and the second watertight ring 34 is in fit sealing with the inner wall of the closing section 221 or the end face of the lower end of the closing section 221; the spring 23 is supported between the lower end face of the first watertight ring 33 and the upper end face of the closing-in section 221.
In the above structure, the spring 23 may be a cylindrical spring or a tower spring, and the closing section 221 is disposed so as to be adapted to the end surface of the first watertight ring 33 to provide axial support for the spring 23, so as to push the spool 30 to move upward to automatically stop the water outlet of the flushing passage 31 after the spool 30 is released from the pressing state.
In this embodiment, the sliding column 30 of the second watertight ring 34 on the side away from the first watertight ring 33 extends out of the receiving section 221 and is provided with a slip-preventing member 301 at the extending part.
In the above structure, the anti-slip member 301 is an external clamp spring, and provides axial fixation for the sliding column 30, so as to prevent the sliding column 30 from directly dropping out under the pushing of the spring 23 and the water pressure in the reset state.
In this embodiment, the first watertight ring 33 and the second watertight ring 34 are both provided with at least one outer groove, and a second sealing ring 35 is arranged in the outer groove.
In the above structure, the number of the outer grooves of the first watertight ring 33 and the second watertight ring 34 is preferably two, and the corresponding second sealing rings 35 are arranged in equal number with the outer grooves, so that the water tightness is effectively ensured.
In this embodiment, the faucet body 10 is further provided with a valve core mounting portion 16 located between the water inlet port 11 and the switching valve mounting portion 13, and the valve core mounting portion 16 is provided with a control valve core 161 for controlling on/off of water flow between the water inlet port 11 and the switching valve mounting portion 13.
In the above structure, the control valve core 161 can be used to control the on/off of the water flow between the water inlet port 11 and the switching valve core 131.
In this embodiment, when the control valve core 161 is a cold/hot water valve core, the number of the water inlet ports 11 is two, and the two ports are respectively a cold water inlet and a hot water inlet.
In the structure, the traditional cup washing device is in a single-cold mode, so that when a cold-hot water valve core is adopted, hot water supply can be realized through temperature adjustment, and the cup washing effect is improved; the cold and hot water valve core can adopt a swinging rotary type (a valve rod swings to control the on-off of mixed water, and a valve rod rotates to control the proportion of cold and hot water), a rotating pressing type (a central valve rod presses to control the on-off of mixed water, and an outer ring valve rod sleeve rotates to control the proportion of cold and hot water) and a concentric rotary type valve core (a central valve rod rotates to control the proportion of cold and hot water, and an outer ring valve rod sleeve rotates to control the on-off of mixed water); because the switching valve core 131 is arranged, the switching valve core 131 can be directly used for controlling the on-off of the water flow at the downstream of the control valve core 161, and the cold-hot water proportion of each use can not be influenced when the control valve core 161 is a cold-hot water valve core.
In this embodiment, the downstream of the water dividing sleeve 14 is a water outlet rod 143 or a folding rod 144 fixedly connected with the water dividing sleeve 14, and a bubbler 145 connected with the water outlet 142 is arranged at the end of the water outlet rod 143 or the folding rod 144.
In the above structure, when the water outlet rod 143 is connected to the water distribution sleeve 14, the water outlet rod 143 rotates along with the water distribution sleeve 14; when the folding rod 144 is connected with the water distribution sleeve 14, the folding rod 144 can be folded and rotated in multiple directions to adjust the water outlet direction and height while rotating along with the water distribution sleeve 14.
In this embodiment, the water collecting tray 20 includes a rib 204 disposed around the tray edge, the water outlet 21 is opened on the rib 204 for discharging the water in the water collecting tray 20, and the upper surface of the water collecting tray 20 is inclined toward the water outlet 21 to improve the water discharging efficiency.
In the above structure, the water outlet 21 extends toward the direction away from the center of the water collecting tray 20, and the bottom surface of the water collecting tray 20 at the extending end of the water outlet 21 is provided with the dripping rib 205, so as to collect water drops, and prevent the water drops from flowing along the bottom surface of the water collecting tray 20 toward the faucet body 10 or along the outer edge of the bottom surface of the water collecting tray 20 and dripping to other places.
In this embodiment, when the slide valve sleeve 22 and the water collecting tray 20 are integrally arranged, the two can be produced by injection molding; when the slide valve sleeve 22 and the water collecting tray 20 are separately arranged, the slide valve sleeve 22 is screwed with the water collecting tray 20 through threads.
In the above structure, the slide valve sleeve 22 is preferably split, which is convenient for individual production, and ensures the surface quality of the inner wall of the slide valve sleeve 22, thereby ensuring water tightness.
In this embodiment, the water through holes 32 and the rotary water through holes 123 are plural.
In the structure, the water through holes 32 are uniformly distributed along the circumferential direction of the sliding column 30; the water holes 123 are uniformly distributed along the circumferential direction of the rotary section 12, which is beneficial to improving the flow.
In this embodiment, the water diversion cavity 122 is formed by a water diversion cylinder 1211 fixed in the water distribution cavity 121, and the lower end of the slide valve sleeve 22 is inserted into the water diversion cylinder 1211.
In the above structure, the lower end of the slide valve sleeve 22 is provided with a third sealing ring 222 adapted to seal with the water separation cylinder 1211.
In this embodiment, the lower end of the revolving section 12 is connected to the faucet body 10, the upper end of the revolving section 12 is provided with an anti-slip retaining shoulder 124 for preventing the water distributing sleeve 14 from slipping off, and the anti-slip pin 15 is located on the anti-slip retaining shoulder 124.
In the above structure, two groups of outer grooves are formed in the outer wall of the rotation section 12, a fourth sealing ring 125 is arranged in each outer groove, and the rotation water passing hole 123 is located between the two groups of outer grooves; each group of outer grooves on the outer wall of the rotary section 12 has two grooves, and the number of the fourth sealing rings 125 is the same as that of the outer grooves; the smooth rotation of the water distribution sleeve 14 is achieved while the water-tightness of the water distribution chamber 141 is ensured.
The utility model has the beneficial effects that: the cup washer function and the water tap function are combined into a whole, when the cup washer is used, the communication between the upstream water inlet interface 11 and the downstream water distribution cavity 121 or the water distribution cavity 122 can be switched through the switching valve core 131, and when the cup washer is switched to be communicated with the water distribution cavity 121, water is discharged from the water outlet 142; when the cup washing device needs to be used, the switching valve core 131 is switched to be communicated with the water diversion cavity 122, the sliding column 30 is pressed by a cup or a hand at the moment, the sliding column 30 drives the first water-tight ring 33 and the second water-tight ring 34 to move downwards, the second water-tight ring 34 is far away from the lower end of the sliding valve sleeve 22, the water through hole 32 is communicated with the water diversion cavity 122, at the moment, water in the water diversion cavity 122 enters the flushing channel 31 through the water hole 32 and is sprayed out from the top of the sliding column 30 to achieve the purpose of cup washing, and waste water after cup washing is collected through the water collecting disc 20 and then is discharged from the water outlet 21; the structure utilizes the switching valve core 131 to control the switching of one of the water faucet and the cup washer, effectively ensures the water outlet flow rate when the water faucet and the cup washer are separately arranged, and also solves the problems of overlarge space occupation, inconvenient installation and use and the like caused by the split arrangement of the water faucet and the cup washer in the prior art; the direction of the water outlet 142 can be freely adjusted within the range of 360 degrees by the water distributing sleeve 14, so that the water outlet direction can be conveniently controlled.
The above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, several modifications and variations can be made without departing from the technical principle of the present invention, and those modifications and variations assumed in the above are also considered to be within the protective scope of the present invention.

Claims (10)

1. The utility model provides an each other segmentation formula wash cup tap, is including the tap body that is equipped with into water interface, its characterized in that: the upper part of the faucet body is provided with a rotary section, the rotary section is provided with a water distribution cavity and a water distribution cavity positioned in the center of the water distribution cavity, the faucet body is also provided with a switching valve mounting part, and a switching valve core which selects a water inlet interface to be communicated with the water distribution cavity and the water distribution cavity is arranged in the switching valve mounting part; the faucet body is also provided with a water collecting disc, and the water collecting disc is provided with a water outlet and a sliding valve sleeve which is integrated with or separated from the water collecting disc, and the lower end of the sliding valve sleeve is positioned in the water dividing cavity; a slide column is arranged in the slide valve sleeve, is supported by a spring, and is positioned above the water collecting plate, so that the upper end of the slide column extends out of the slide valve sleeve, a flushing channel is arranged in the slide column from the upper end of the slide column to the lower end of the slide column, and a water through hole connected with the flushing channel is arranged on the outer wall of the lower end of the slide column; the sliding column is provided with a first water-tight ring and a second water-tight ring from top to bottom; the water through hole is positioned between the first watertight ring and the second watertight ring and in the sliding valve sleeve before the sliding column is pressed downwards; the second water-tight ring is far away from the lower end of the sliding valve sleeve after the sliding column is pressed down, and simultaneously the water through hole enters the water distribution cavity to be communicated with the water distribution cavity; the outer wall of the rotary section is provided with a water distribution sleeve which can rotate relative to the rotary section, two ends of the water distribution sleeve are in sealing fit with the outer wall of the rotary section, a water distribution cavity is formed between the rotary section and the inner wall of the water distribution sleeve, the outer wall of the rotary section is provided with a rotary water through hole which is communicated with the water distribution cavity and the water distribution cavity, and the water distribution sleeve is provided with a water outlet which is connected with the water distribution cavity and used for supplying water to downstream.
2. The inter-split cup washing faucet of claim 1, further comprising: and a connecting sleeve is fixed at the bottom of the water collecting tray, and the connecting sleeve is in splicing fit with the water distribution cavity and enables the water collecting tray to rotate circumferentially relative to the faucet body by taking the axis of the connecting sleeve as a circle center.
3. The inter-split cup washing faucet of claim 2, wherein: at least one first sealing ring is arranged between the connecting sleeve and the inner wall of the water distribution cavity; one side of the first sealing ring far away from the interior of the cavity of the water distribution cavity is provided with an anti-falling outer groove, and the faucet body is provided with an anti-falling pin matched with the anti-falling outer groove.
4. The inter-split cup washing faucet of claim 1, wherein: and the top end of the sliding column is provided with a pressing plate and a spray head connected with the flushing channel.
5. The inter-split cup washing faucet of claim 1, further comprising: the lower end of the sliding valve sleeve is provided with a closing section, the inner diameter of the closing section is smaller than that of the sliding valve sleeve, and the second water-tight ring is in fit sealing with the inner wall of the closing section or the end face of the lower end of the closing section; the spring is supported between the lower end face of the first watertight ring and the upper end face of the closing-in section.
6. The inter-split cup washing faucet of claim 5, wherein: the sliding column of the second watertight ring, which is far away from one side of the first watertight ring, extends out of the extension section and is provided with an anti-falling part at the extension section.
7. The inter-split cup washing faucet of claim 1, further comprising: the first water-tight ring and the second water-tight ring are both provided with at least one outer groove, and a second sealing ring is arranged in each outer groove.
8. An inter-split cup-washing tap as claimed in any one of claims 1 to 7, wherein: the tap body still is equipped with the case installation department that is located between interface and the diverter valve installation department of intaking, the case installation department is equipped with the control case that is used for controlling the rivers break-make between interface and the diverter valve installation department of intaking.
9. The inter-split cup washing faucet of claim 8, wherein: when the control valve core is a cold and hot water valve core, the two water inlet ports are respectively a cold water inlet and a hot water inlet.
10. The inter-split cup washing faucet of claim 1, further comprising: the lower stream of the water distribution sleeve is provided with a water outlet rod or a folding rod which is fixedly connected with the water distribution sleeve, and the tail end of the water outlet rod or the folding rod is provided with a bubbler connected with a water outlet.
CN202123435877.8U 2021-12-30 2021-12-30 Mutual split type cup washing faucet Active CN216715317U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123435877.8U CN216715317U (en) 2021-12-30 2021-12-30 Mutual split type cup washing faucet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123435877.8U CN216715317U (en) 2021-12-30 2021-12-30 Mutual split type cup washing faucet

Publications (1)

Publication Number Publication Date
CN216715317U true CN216715317U (en) 2022-06-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123435877.8U Active CN216715317U (en) 2021-12-30 2021-12-30 Mutual split type cup washing faucet

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Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023046124A1 (en) * 2021-09-25 2023-03-30 浙江盛美洁具有限公司 Shunting water outlet device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023046124A1 (en) * 2021-09-25 2023-03-30 浙江盛美洁具有限公司 Shunting water outlet device
TWI808643B (en) * 2021-09-25 2023-07-11 大陸商浙江盛美潔具有限公司 Flow division water outlet device

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