CN219594347U - Pipeline water dispenser with external water tank - Google Patents

Pipeline water dispenser with external water tank Download PDF

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Publication number
CN219594347U
CN219594347U CN202320502057.6U CN202320502057U CN219594347U CN 219594347 U CN219594347 U CN 219594347U CN 202320502057 U CN202320502057 U CN 202320502057U CN 219594347 U CN219594347 U CN 219594347U
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China
Prior art keywords
water
outlet
dispenser
storage container
inlet
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CN202320502057.6U
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Chinese (zh)
Inventor
潘安顺
林演曙
甘又铭
莫祥煌
贺礼
王祥兴
付俊健
周琴
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Zhongshan Lemon Environmental Technology Co ltd
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Zhongshan Lemon Environmental Technology Co ltd
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Priority to CN202320502057.6U priority Critical patent/CN219594347U/en
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  • Devices For Dispensing Beverages (AREA)
  • Beverage Vending Machines With Cups, And Gas Or Electricity Vending Machines (AREA)

Abstract

The utility model discloses a pipeline water dispenser with an external water tank, which comprises a water dispenser main body, wherein a water storage container capable of being taken out is placed on the water dispenser main body, the pipeline water dispenser is also provided with a water channel for communicating the water storage container with a water channel of the water dispenser main body, and the water dispenser main body is also provided with a control component for controlling external purified water input.

Description

Pipeline water dispenser with external water tank
Technical Field
The utility model relates to a pipeline water dispenser, in particular to a pipeline water dispenser with an external water tank.
Background
At present, the pipeline water dispenser is generally matched with a water purifying device for use, the water purifying device is installed in a cabinet or other storage spaces and hidden, the pipeline water dispenser is placed at a conspicuous position for users to take water, purified water processed by the water purifying device can be firstly input into a water tank inside the pipeline water dispenser for storage so as to ensure that the purified water can be output at the first time when the users take water, however, the water tank of the traditional pipeline water dispenser is built in the water dispenser and is not detachable, and bacteria can not be bred in the water tank along with the increase of the use time and the unable disassembly and cleaning, so that the quality of the water for the users is directly influenced.
Therefore, how to overcome the above-mentioned drawbacks has become an important issue to be solved by the person skilled in the art.
Disclosure of Invention
The utility model overcomes the defects of the technology and provides the pipeline water dispenser with the external water tank.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides an external pipeline water dispenser of water tank, includes water dispenser main part 1, place removable water storage container 2 on the water dispenser main part 1, the pipeline water dispenser still is equipped with the water channel 3 that is used for the intercommunication water storage container 2 and water route of water dispenser main part 1, still be equipped with the control assembly 4 that is used for controlling outside water purification input on the water dispenser main part 1.
Preferably, the control assembly 4 includes a water level sensor 41 for sensing whether the water level in the water storage container 2 reaches a limit height, and a first solenoid valve 42 provided at the water inlet 11 of the water dispenser body 1 for controlling whether water is introduced.
Preferably, the water level sensor 41 includes a hall sensor 411 disposed in the water dispenser body 1 and a magnetic water float 412 disposed in the water storage container 2 and limited to move up and down, and the hall sensor 411 corresponds to the magnetic water float 412 in position so as to trigger the hall sensor 411 through the magnetic water float 412.
Preferably, the water dispenser main body 1 is further provided with an integrated water path plate 12, a second electromagnetic valve 13, a heating and cooling assembly 14 and a cold and hot water outlet 15, the integrated water path plate 12 is respectively provided with a first water path, a second water path and a third water path which are mutually independent, the first water path is communicated with the inlet of the water inlet 11 and the inlet of the first electromagnetic valve 42, the second water path is communicated with the outlet of the first electromagnetic valve 42 and the inlet of the second electromagnetic valve 13, the third water path is communicated with the water channel 3, the heating and cooling assembly 14 and the outlet of the second electromagnetic valve 13, and the cold and hot water outlet 15 is communicated with the heating and cooling assembly 14 and is used for outputting hot water and cold water.
Preferably, the heating and cooling assembly 14 includes a hot water pump 141 and a cold water pump 142, an inlet of the hot water pump 141 and an inlet of the cold water pump 142 are both communicated with the third waterway, the hot water pump 141 and the cold water outlet 15 are communicated through a heating pipe 143, and the cold water pump 142 and the cold water outlet 15 are communicated through an electronic ice container 144.
Preferably, the cold and hot water outlet 15 is a water-gas separation water outlet.
Preferably, the second waterway is also communicated with a pressure relief device 5.
Preferably, the water channel 3 includes a first water inlet/outlet 31 disposed on the water dispenser body 1, and a second water inlet/outlet 32 disposed at the bottom of the water storage container 2 and abutting against the first water inlet/outlet 31, a first spring-type check valve 33 is disposed on the first water inlet/outlet 31, a second spring-type check valve 34 is disposed on the second water inlet/outlet 32, and the first spring-type check valve 33 and the second spring-type check valve 34 are coaxially disposed opposite to each other.
Preferably, the water dispenser main body 1 is provided with a placement platform 16 for placing the water storage container 2, the placement platform 16 is provided with a limit protrusion 161, and the bottom of the water storage container 2 is provided with a limit groove 21 which is in concave-convex fit with the limit protrusion 161.
Preferably, the water storage container 2 is a kettle.
Compared with the prior art, the utility model has the beneficial effects that:
the pipeline water dispenser can directly input purified water input by the external water purifying equipment into the water storage container which can be taken out through the water channel, the built-in water tank of the traditional pipeline water dispenser is replaced by the water storage container, so that the water storage container can be conveniently taken out and cleaned in the use process, the situation that bacteria can not be cleaned due to the fact that the traditional built-in water tank is used for breeding for a long time is avoided, the control assembly can control the water purifying input of the external water purifying equipment to be cut off after the water level of the water storage container reaches the limit height, and can continuously feed water when the water storage container is not full of water, and excessive overflow or insufficient water in the water storage container is avoided to influence water consumption of users.
Drawings
FIG. 1 is a schematic diagram of a pipeline drinking machine.
FIG. 2 is a second schematic diagram of the pipeline drinking machine.
FIG. 3 is a third schematic view of the present pipeline drinking machine, wherein the housing of the drinking machine main body is hidden.
FIG. 4 is a schematic cross-sectional view of a drinking fountain of the present case.
Detailed Description
The following examples are provided to illustrate the features of the present utility model and other related features in further detail to facilitate understanding by those skilled in the art:
as shown in fig. 1 to 4, a pipeline water dispenser with an external water tank is characterized by comprising a water dispenser main body 1, wherein a water storage container 2 which can be taken out is placed on the water dispenser main body 1, a water channel 3 used for communicating the water storage container 2 with a water channel of the water dispenser main body 1 is further arranged on the pipeline water dispenser, and a control component 4 used for controlling external purified water input is further arranged on the water dispenser main body 1.
As described above, the pipeline water dispenser can directly input the purified water input by the external water purifying equipment into the removable water storage container 2 through the water channel 3, and the built-in water tank of the traditional pipeline water dispenser is replaced by the water storage container 2, so that the water storage container 2 can be conveniently taken out for cleaning in the use process, the situation that bacteria can not be cleaned due to the fact that the traditional built-in water tank is used for breeding for a long time is avoided, the control component 4 can control the water purifying input of the external water purifying equipment to be cut off after the water level of the water storage container 2 reaches the limit height, and can continuously feed water when the water storage container 2 is not full of water, and the excessive overflow or insufficient water in the water storage container 2 is avoided to influence the water consumption of users.
As shown in fig. 1 to 4, it is preferable that the control unit 4 includes a water level sensor 41 for sensing whether the water level in the water storage container 2 reaches a limit level and a first solenoid valve 42 provided at the water inlet 11 of the water dispenser body 1 for controlling whether water is introduced, so that the water level state in the water storage container 2 can be determined by the water level sensor 41 to control the first solenoid valve 42 to operate to control whether water is introduced.
As shown in fig. 1 to 4, preferably, the water level sensor 41 includes a hall sensor 411 provided in the water dispenser body 1 and a magnetic water float 412 provided in the water storage container 2 to be limited to move up and down, and the hall sensor 411 corresponds to the magnetic water float 412 in position so as to trigger the hall sensor 411 by the magnetic water float 412.
As described above, when the water level in the water storage container 2 does not reach the limit height, the magnetic water float 412 is positioned at the lowest position and aligned with the hall sensor 411, and when the water level in the water storage container 2 rises to the limit height, the magnetic water float 412 is lifted by the water level and is dislocated with the hall sensor 411 to trigger the hall sensor 411, so that the first electromagnetic valve 42 can be controlled to be opened or closed better by the signal of the hall sensor 411.
As shown in fig. 1 to 4, preferably, the water dispenser main body 1 is further provided with an integrated water path plate 12, a second electromagnetic valve 13, a heating and cooling assembly 14 and a cold and hot water outlet 15, the integrated water path plate 12 is respectively provided with a first water path, a second water path and a third water path which are mutually independent, the first water path communicates the water inlet 11 with the inlet of the first electromagnetic valve 42, the second water path communicates the outlet of the first electromagnetic valve 42 with the inlet of the second electromagnetic valve 13, the third water path communicates the water channel 3, the heating and cooling assembly 14 and the outlet of the second electromagnetic valve 13, and the cold and hot water outlet 15 communicates with the heating and cooling assembly 14 and is used for outputting hot water and cold water.
As described above, when the water level in the water storage container 2 does not reach the limit height and the heating and cooling assembly 14 does not work, the first electromagnetic valve 42 and the second electromagnetic valve 13 are opened to communicate the first waterway, the second waterway and the third waterway, and purified water is fed from the water inlet 11 to the water storage container 2 through the water channel 3; when the water level in the water storage container 2 reaches the limit height, the first electromagnetic valve 42 is closed, so that water cannot be fed into the water storage container 2; when the heating and cooling assembly 14 works, the first electromagnetic valve 42 is closed, the second electromagnetic valve 13 is opened, and the heating and cooling assembly 14 pumps out the purified water stored in the water storage container 2 and outputs the purified water from the cold and hot water outlet 15 after heating or cooling.
As shown in fig. 1 to 4, preferably, the heating and cooling assembly 14 includes a hot water pump 141 and a cold water pump 142, the inlet of the hot water pump 141 and the inlet of the cold water pump 142 are both communicated with the third waterway, the hot water pump 141 and the cold water outlet 15 are communicated through a heating pipe 143, and the cold water pump 142 and the cold water outlet 15 are communicated through an electronic ice container 144, so when a user needs to take hot water, the hot water pump 141 and the heating pipe 143 can work to pump water in the water storage container 2 and send the water out from the cold water outlet 15 after heating, and similarly when the user needs to take cold water, the cold water pump 142 and the electronic ice container 144 can work to pump water in the water storage container 2 and send the water out from the cold water outlet 15 after cooling.
As shown in fig. 1 to 4, the hot and cold water outlet 15 is preferably a water-air separation water outlet, so that high-temperature water vapor carried by water flow during hot water outlet can be avoided, and the possibility of scalding of a user is reduced.
As shown in fig. 1 to 4, preferably, the second water channel is further connected to a pressure release device 5, so that the pressure holding caused by the closed water channel after the water storage container 2 is lifted can be avoided.
As shown in fig. 1 to 4, preferably, the water channel 3 includes a first water inlet 31 disposed on the water dispenser body 1, and a second water inlet 32 disposed at the bottom of the water storage container 2 and abutting against the first water inlet 31, a first spring-type check valve 33 is disposed on the first water inlet 31, a second spring-type check valve 34 is disposed on the second water inlet 32, and the first spring-type check valve 33 and the second spring-type check valve 34 are coaxially disposed opposite to each other, so that when the water storage container 2 is placed on the water dispenser body 1, the first spring-type check valve 31 and the second spring-type check valve 32 can be mutually pushed up to enable the first water inlet 31 to communicate with the second water inlet 32, and when the water storage container 2 is taken out, the first spring-type check valve 31 and the second spring-type check valve 32 are reset to close to avoid overflow of purified water.
As shown in fig. 1 to 4, preferably, the water dispenser main body 1 is provided with a placement platform 16 for placing the water storage container 2, the placement platform 16 is provided with a limiting protrusion 161, and the bottom of the water storage container 2 is provided with a limiting groove 21 which is in concave-convex fit with the limiting protrusion 161, so that when the water storage container 2 is placed on the placement platform 16, the water storage container 2 can be fixed through the mutual matching of the limiting protrusion 161 and the limiting groove 21, and the water storage container 2 is prevented from being shifted to affect waterway communication.
As shown in fig. 1 to 4, preferably, the water storage container 2 is a water kettle, so that a user can pick up the water storage container 2 at any time and pour purified water therein for use, thereby further facilitating water taking of the user, and meanwhile, the flexibility of water consumption of the user can be improved due to the characteristic that the water kettle is convenient to move.
As described above, the present disclosure protects a pipeline water dispenser with an external water tank, and all technical schemes which are the same as or similar to the present disclosure should be shown as falling within the protection scope of the present disclosure.

Claims (10)

1. The pipeline water dispenser with the external water tank is characterized by comprising a water dispenser main body (1), wherein a water storage container (2) capable of being taken out is placed on the water dispenser main body (1), the pipeline water dispenser is further provided with a water channel (3) for communicating the water storage container (2) with a water channel of the water dispenser main body (1), and a control component (4) for controlling external purified water input is further arranged on the water dispenser main body (1).
2. A water dispenser with an external water tank as claimed in claim 1, wherein the control assembly (4) comprises a water level sensor (41) for sensing whether the water level in the water storage container (2) reaches a limit level and a first electromagnetic valve (42) arranged at the water inlet (11) of the water dispenser body (1) for controlling whether water is fed.
3. A water dispenser with an external water tank pipeline according to claim 2, wherein the water level sensor (41) comprises a hall sensor (411) arranged in the water dispenser main body (1) and a magnetic water float (412) which is arranged in the water storage container (2) and is limited to move up and down, and the hall sensor (411) corresponds to the magnetic water float (412) in position so as to trigger the hall sensor (411) through the magnetic water float (412).
4. The pipeline water dispenser with the external water tank according to claim 2, wherein the water dispenser main body (1) is further provided with an integrated water path plate (12), a second electromagnetic valve (13), a heating and cooling assembly (14) and a cold and hot water outlet (15), the integrated water path plate (12) is respectively provided with a first water path, a second water path and a third water path which are mutually independent, the first water path communicates the water inlet (11) with the inlet of the first electromagnetic valve (42), the second water path communicates the outlet of the first electromagnetic valve (42) with the inlet of the second electromagnetic valve (13), the third water path communicates the water channel (3), the heating and cooling assembly (14) and the outlet of the second electromagnetic valve (13), and the cold and hot water outlet (15) communicates with the heating and cooling assembly (14) and is used for outputting hot water and cold water.
5. The water dispenser with an external water tank pipeline according to claim 4, wherein the heating and cooling component (14) comprises a hot water pump (141) and a cold water pump (142), the inlet of the hot water pump (141) and the inlet of the cold water pump (142) are both communicated with the third waterway, the hot water pump (141) and the cold and hot water outlet (15) are communicated through a heating pipe (143), and the cold water pump (142) and the cold and hot water outlet (15) are communicated through an electronic ice container (144).
6. The water dispenser with an external water tank as claimed in claim 5, wherein the cold and hot water outlet (15) is a water-air separation water outlet.
7. The water dispenser with an external water tank as claimed in claim 4, wherein the second waterway is further communicated with a pressure relief device (5).
8. The pipeline water dispenser with the external water tank according to claim 1, wherein the water channel (3) comprises a first water inlet and outlet (31) arranged on the water dispenser main body (1), and a second water inlet and outlet (32) arranged at the bottom of the water storage container (2) and in butt joint with the first water inlet and outlet (31), a first spring type one-way valve (33) is arranged on the first water inlet and outlet (31), a second spring type one-way valve (34) is arranged on the second water inlet and outlet (32), and the first spring type one-way valve (33) and the second spring type one-way valve (34) are coaxially and oppositely arranged.
9. The pipeline water dispenser with the external water tank according to claim 1, characterized in that a placement platform (16) for placing the water storage container (2) is arranged on the water dispenser main body (1), a limit protrusion (161) is arranged on the placement platform (16), and a limit groove (21) which is in concave-convex fit with the limit protrusion (161) is arranged at the bottom of the water storage container (2).
10. A water dispenser with an external water tank line according to any one of claims 1 to 9, characterized in that the water storage container (2) is a water bottle.
CN202320502057.6U 2023-03-15 2023-03-15 Pipeline water dispenser with external water tank Active CN219594347U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320502057.6U CN219594347U (en) 2023-03-15 2023-03-15 Pipeline water dispenser with external water tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320502057.6U CN219594347U (en) 2023-03-15 2023-03-15 Pipeline water dispenser with external water tank

Publications (1)

Publication Number Publication Date
CN219594347U true CN219594347U (en) 2023-08-29

Family

ID=87750893

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320502057.6U Active CN219594347U (en) 2023-03-15 2023-03-15 Pipeline water dispenser with external water tank

Country Status (1)

Country Link
CN (1) CN219594347U (en)

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