CN211795916U - Intelligent water dispenser with lower bucket - Google Patents

Intelligent water dispenser with lower bucket Download PDF

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Publication number
CN211795916U
CN211795916U CN202020137477.5U CN202020137477U CN211795916U CN 211795916 U CN211795916 U CN 211795916U CN 202020137477 U CN202020137477 U CN 202020137477U CN 211795916 U CN211795916 U CN 211795916U
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CN
China
Prior art keywords
water
kettle
bucket
heat preservation
heating
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202020137477.5U
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Chinese (zh)
Inventor
蔡鹃
张乐冰
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Huaihua University
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Huaihua University
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Priority to CN202020137477.5U priority Critical patent/CN211795916U/en
Application granted granted Critical
Publication of CN211795916U publication Critical patent/CN211795916U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a bucket underlying intelligent water dispenser, which comprises a casing, wherein an upper space, a middle space and a lower space which are mutually isolated are sequentially arranged in the casing from top to bottom, a heating kettle is arranged in the upper space, a heat preservation kettle and a condensation kettle are arranged in the middle space side by side, and the lower space is used for placing a pure water bucket; the heating kettle is also communicated with the heat preservation kettle and the condensing kettle through a first electromagnetic valve and a second electromagnetic valve respectively; the shell is also provided with an automatic water outlet device based on an infrared correlation module so as to realize automatic water outlet and water cut-off; therefore, through the intelligent water dispenser with the lower bucket, firstly, when the bucket is replaced, the bucket does not need to be turned over to raise the height, the purified water bucket is directly placed in the lower-layer space according to the normal direction, the water replacement is convenient, and secondly, the warm boiled water and the cold water which are boiled through heating are obtained through the heat preservation kettle and the condensation kettle, so that the drinking water is more convenient.

Description

Intelligent water dispenser with lower bucket
Technical Field
The utility model relates to a water dispenser technical field especially relates to a formula intelligence water dispenser puts under cask.
Background
With the progress of society and the development of science and technology, the life style of people has also changed greatly, and people begin to pursue more convenient, scientific and technological, healthy life style, and traditional water dispenser also has some problems when providing convenience for drinking water for people: 1. the purified water barrel needs to be placed above the water dispenser, so that the water changing difficulty is high, general ladies cannot independently complete the water changing work, and inconvenience is brought to the ladies for water changing; 2. When no person uses the water heater, as long as the power switch is in an on state, the heater is always in an operating state, so that water in the hot water container is boiled for many times, namely, thousands of water turns, and the water is unfavorable for human health; 3. the water dispenser can not provide warm boiled water, when drinking water in time is needed, either cold pure water is directly drunk or hot water and cold water are mixed together to form warm water, although the water dispenser which directly outputs the warm water is also provided at present, the warm water output by the water dispenser is also two kinds of water for drinking cold water by hot water, but the warm water is not the warm boiled water in the true sense, the health of people is not good for long-term drinking, mainly because the quality of the pure water can not completely reach the standard, and bacteria and microorganisms contained in the water can possibly exceed the standard under the condition of not boiling, so people are more willing to drink the boiled warm boiled water. Therefore, the existing intelligent water dispenser needs to be improved, so that the intelligent water dispenser meets the pursuit of people for convenient and healthy life.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a put formula intelligence water dispenser under cask not only provides the convenient mode of changing water, can provide healthy warm boiled water moreover for the user in time drink.
In order to achieve the purpose, the utility model discloses an intelligent water dispenser with a lower bucket, which comprises a casing, wherein an upper space, a middle space and a lower space which are mutually isolated are sequentially arranged in the casing from top to bottom, a closed heating kettle is arranged in the upper space, a closed heat preservation kettle and a closed condensation kettle are arranged in the middle space side by side, the heating kettle is used for boiling water, the lower space is used for placing a pure water bucket, the heat preservation kettle is used for preserving the heat of boiled water entering the heating kettle, and the condensation kettle is used for condensing the water to a certain temperature; the shell is internally provided with a first water pump, a first water pipe, a second water pipe and a third water pipe, the upper end of the first water pipe is communicated with the heating kettle, the lower end of the first water pipe is used for being inserted into the purified water bucket, and the first water pump is arranged on the first water pipe and is used for pumping water in the purified water bucket into the heating kettle; the second water pipe is used for communicating the heating kettle with the heat preservation kettle, the third water pipe is used for communicating the heating kettle with the condensation kettle, a first electromagnetic valve is arranged on the second water pipe, and a second electromagnetic valve is arranged on the third water pipe; the shell is provided with a hot water valve communicated with the heating kettle at the upper layer space, and the shell is provided with a warm water valve and a cold water valve respectively communicated with the heat preservation kettle and the condensation kettle at the middle layer space.
Compared with the prior art, the intelligent water dispenser with the lower bucket is provided with the three-dimensional multilayer structure, and when the intelligent water dispenser is used, the purified water bucket is placed in the lower-layer space, so that when the water bucket is replaced, the water bucket does not need to be turned over and lifted, the purified water bucket is directly placed in the lower-layer space according to the normal direction, then a quick-dismantling opening at the bucket cover of the purified water bucket is opened, the lower end of the first water pipe is inserted and replaced by water replacement, and therefore water replacement is facilitated, and general ladies can also independently complete water replacement; in addition, the heating kettle is arranged on the upper layer of the shell, so that children are not easy to touch, and the children are prevented from being scalded by carelessly touching the heating kettle; furthermore, the middle level space of casing still is provided with heat preservation cauldron and condensing kettle, and when the water in the heating cauldron was boiled, first solenoid valve and second solenoid valve can be opened by automation, and the boiling water flows into heat preservation cauldron and condensing kettle, and the boiling water reduces gradually in the heat preservation cauldron, becomes warm boiling water, and the boiling water is condensed into cold boiling water after flowing into the condensing kettle, consequently, no matter be from warm water valve and cold water valve output's water healthy water by the boiling, more do benefit to people's health.
Preferably, be provided with the first pressure sensor who is used for detecting its gravity below the heating cauldron, the heat preservation cauldron with be provided with the second pressure sensor and the third pressure sensor who are used for detecting its gravity below the condensation cauldron respectively, be provided with the fourth pressure sensor who is used for detecting pure water bucket gravity on the diapire in the lower floor's space.
Preferably, the heat preservation cauldron keeps warm to the boiling water that gets into wherein through the natural heat preservation principle, be provided with first temperature sensor in the heating cauldron, be provided with second temperature sensor in the heat preservation cauldron, be provided with third temperature sensor in the condensation cauldron, still be provided with the fourth water pipe in the middle level space, the fourth water pipe is used for the intercommunication the heat preservation cauldron with the condensation cauldron, just be provided with the second water pump on the fourth water pipe, the second water pump can with the water suction in the heat preservation cauldron the condensation cauldron.
Preferably, the casing is further provided with three water receiving grooves, the three water receiving grooves are respectively located below the hot water valve, the warm water valve and the cold water valve, the three water receiving grooves are respectively provided with an automatic water outlet device, and when a water cup is placed at the water receiving groove, the automatic water outlet device at the water receiving groove controls the corresponding water valve to be automatically opened.
Preferably, the automatic water outlet device comprises a pair of infrared emitting modules and infrared receiving modules which are matched with each other and are installed on the left side and the right side of the water receiving tank, and an ultrasonic liquid level sensor installed above the water receiving tank, wherein the infrared emitting modules and the infrared receiving modules are used for detecting the height of a water cup placed on the water receiving tank, and the ultrasonic liquid level sensor is used for detecting the height of the liquid level in the water cup.
Preferably, a pyroelectric infrared sensor is further arranged on the casing and used for controlling the power switch states of the heating kettle and the condensing kettle.
Preferably, a first temperature display, a second temperature display and a third temperature display are arranged on the shell and at the hot water valve, the warm water valve and the cold water valve respectively, the first temperature display is used for displaying the temperature in the heating kettle, the second temperature display is used for displaying the temperature in the heat preservation kettle, and the third temperature display is used for displaying the temperature in the condensation kettle.
Preferably, a wireless communication module is further arranged in the casing, and external electronic equipment can control the states of the switches of the heating kettle and the condensing kettle through the wireless communication module.
Preferably, the wireless communication module includes any one or more of a bluetooth module, an infrared module, a WIFI module, and a GPS module.
Drawings
Fig. 1 is a schematic view of an internal plane structure of an intelligent water dispenser with a lower bucket according to an embodiment of the present invention.
Fig. 2 is a schematic view of an external plane structure of the intelligent water dispenser with an underneath bucket of the embodiment of the present invention.
Fig. 3 is a schematic diagram of the control principle of the intelligent water dispenser with an underneath type bucket according to the embodiment of the present invention.
Detailed Description
In order to explain technical contents, structural features, and objects and effects of the present invention in detail, the following description is given in conjunction with the embodiments and the accompanying drawings.
As shown in fig. 1, the utility model discloses a bucket underneath type intelligent water dispenser, which comprises a casing 1, an upper space 10, a middle space 11 and a lower space 12 which are isolated from each other are sequentially arranged in the casing 1 from top to bottom, a closed heating kettle 20 is arranged in the upper space 10, a closed heat preservation kettle 21 and a closed condensation kettle 22 are arranged in the middle space 11 side by side, the heating kettle 20 is used for boiling water (a heater is arranged in the heating kettle 20), the lower space 12 is used for placing a purified water bucket 23, the heat preservation kettle 21 is used for preserving heat of boiled water entering the heat preservation kettle, and the condensation kettle 22 is used for condensing water to a certain temperature (a condenser is arranged in the condensation kettle 22); still be provided with first water pump M1, first water pipe L1, second water pipe L2 and third water pipe L3 in the casing 1, first water pipe L1 upper end and heating kettle 20 intercommunication, the lower extreme of first water pipe L1 is arranged in inserting pure water bucket 23, first water pump M1 is installed on first water pipe L1 for pump into heating kettle 20 with the water in the pure water bucket 23, thereby accomplish heating kettle 20's automatic water feeding function. The second water pipe L2 is used for communicating the heating kettle 20 with the heat preservation kettle 21, the third water pipe L3 is used for communicating the heating kettle 20 with the condensation kettle 22, the second water pipe L2 is provided with a first electromagnetic valve F1, the third water pipe L3 is provided with a second electromagnetic valve F2, and when the first electromagnetic valve F1 and the second electromagnetic valve F2 are opened, hot water in the heating kettle 20 can flow into the heat preservation kettle 21 and the condensation kettle 22 under the action of gravity. As shown in fig. 2, a hot water valve 13 communicated with a heating kettle 20 is arranged at the upper space 10 on the casing 1, and a warm water valve 14 and a cold water valve 15 respectively communicated with a heat preservation kettle 21 and a condensing kettle 22 are arranged at the middle space 11 on the casing 1.
The utility model discloses put formula intelligence water dispenser under cask, be provided with three-dimensional multilayer structure, during the use, purified water bucket 23 is placed in lower floor's space 12, thus, when changing the cask, need not turn over the cask again and lift the height, directly place purified water bucket 23 in lower floor's space 12 according to normal orientation, then open the quick detach mouth of purified water bucket 23 bung department, insert the lower extreme of first water pipe L1 and trade water work promptly, thereby made things convenient for and traded water, general ms also can independently accomplish the work of trading water. In addition, the heating kettle 20 is arranged on the upper layer of the machine shell 1, so that children are not easy to touch, and the children are prevented from being scalded by carelessly touching. Moreover, the middle space 11 of the housing 1 is further provided with a heat preservation kettle 21 and a condensation kettle 22, when the water in the heating kettle 20 is boiled, the first electromagnetic valve F1 and the second electromagnetic valve F2 can be automatically opened, the boiled water flows into the heat preservation kettle 21 and the condensation kettle 22, the temperature of the boiled water in the heat preservation kettle 21 is gradually reduced to become warm water, and the boiled water flows into the condensation kettle 22 and is condensed into cold boiled water, so that the water output from the warm water valve 14 and the cold water valve 15 is the boiled healthy water, and the health of people is facilitated.
As shown in fig. 1 and 3, in order to monitor the liquid levels in the heating still 20, the holding still 21 and the condensing still 22, a first pressure sensor 30 for detecting the gravity of the heating still 20 is disposed below the heating still 20, a second pressure sensor 31 and a third pressure sensor 32 for detecting the gravity of the holding still 21 and the condensing still 22 are disposed below the condensing still 22, respectively, and a fourth pressure sensor 33 for detecting the gravity of the purified water bucket 23 is disposed on the bottom wall in the lower space 12. In this embodiment, through four pressure sensor's setting, detect the gravity of heating cauldron 20, heat preservation cauldron 21, condensation cauldron 22 and pure water bucket 23 respectively, then will detect the gravity and convert real-time liquid level data into according to respective capacity. The controller 9 of the water dispenser controls the state of the first water pump M1 through the feedback of the first pressure sensor 30, the controller 9 controls the states of the first electromagnetic valve F1 and the second electromagnetic valve F2 through the second pressure sensor 31 and the third pressure sensor 32, respectively, the controller 9 gives a water change indication through the feedback of the fourth pressure sensor 33, and specifically, the cabinet 1 may be provided with a water change indicator (an indicator light or a buzzer) electrically connected with the controller 9.
Further, as shown in fig. 1 and fig. 3, the thermal insulation kettle 21 is used for insulating the boiled water entering the thermal insulation kettle 21 by a natural thermal insulation principle, that is, the thermal insulation kettle 21 does not have a heater, and when the hot water flows into the thermal insulation kettle 21, the hot water is gradually cooled in the thermal insulation kettle 21, so that a user can drink warm boiled water at any time. The heating kettle 20 is provided with a first temperature sensor T1, the heat preservation kettle 21 is provided with a second temperature sensor T2, and the condensation kettle 22 is provided with a third temperature sensor T3. Still be provided with fourth water pipe L4 in the middle level space 11, fourth water pipe L4 is used for communicateing heat preservation cauldron 21 and condensation kettle 22, and is provided with second water pump M2 on the fourth water pipe L4, and second water pump M2 can be with the water suction in the heat preservation cauldron 21 to condensation kettle 22. In this embodiment, the first temperature sensor T1, the second temperature sensor T2, and the third temperature sensor T3 are electrically connected to the controller 9, respectively, and when the controller 9 detects that the temperature of the water in the thermal insulation kettle 21 is lower than the set temperature through the second temperature sensor T2, and the liquid level in the condensation kettle 22 is lower than the set position, the controller 9 may turn on the second water pump M2, so as to pump the warm water in the thermal insulation kettle 21 into the condensation kettle 22 through the fourth water pipe L4, so that the energy consumption of the condenser in the condensation kettle 22 can be saved when the water in the thermal insulation kettle 21 is not drunk in time.
As shown in fig. 2 and 3, in order to achieve intelligent and safe water use, three water receiving tanks 4 are further arranged on the casing 1, the three water receiving tanks 4 are respectively located below the hot water valve 13, the warm water valve 14 and the cold water valve 15, automatic water discharging devices are respectively arranged at the three water receiving tanks 4, and when a water cup is placed at the water receiving tank 4, the automatic water discharging devices at the water receiving tanks 4 control the corresponding water valves to be automatically opened. Preferably, the automatic water outlet device comprises a pair of infrared emitting modules 50 and infrared receiving modules 51 which are matched with each other and are arranged on the left side and the right side of the water receiving tank 4, and an ultrasonic liquid level sensor 52 which is arranged above the water receiving tank 4, wherein the infrared emitting modules 50 and the infrared receiving modules 51 are used for detecting the height of a water cup placed on the water receiving tank 4, and the ultrasonic liquid level sensor 52 is used for detecting the height of the liquid level in the water cup. In this embodiment, the ultrasonic liquid level sensor 52 and the infrared receiving module 51 are electrically connected to the controller 9, and the pair of infrared emitting module 50 and the infrared receiving module 51, which cooperate with each other, detect whether there is a cup to be placed on the water receiving tank 4 and the height of the cup, when the cup is detected, the water valve (one of the hot water valve 13, the warm water valve 14, and the cold water valve 15) above the water receiving tank 4 is opened, and when the ultrasonic liquid level sensor 52 detects that the water level in the cup is close to the height of the cup, the water valve is closed, thereby achieving automatic water discharge and water cut-off.
Preferably, a pyroelectric infrared sensor 8 is further disposed on the casing 1, and the pyroelectric infrared sensor 8 is used for controlling the power switch states of the heating kettle 20 and the condensing kettle 22. Through pyroelectric infrared sensor 8, whether someone exists around the water dispenser of real-time detection, when detecting nobody for a long time, but self-closing heating cauldron 20 and condensation kettle 22's switch to avoid the heater in the heating cauldron 20 to heat the water wherein repeatedly, practice thrift the electric energy.
In addition, as shown in fig. 2 and fig. 3, in order to facilitate a user to know the water temperature of the water discharged from each water valve when using water, a first temperature display 60, a second temperature display 61 and a third temperature display 62 are respectively arranged on the machine shell 1 at the hot water valve 13, the warm water valve and the cold water valve 15, the first temperature display 60 is used for displaying the temperature in the heating kettle 20, the second temperature display 61 is used for displaying the temperature in the heat preservation kettle 21, and the third temperature display 62 is used for displaying the temperature in the condensing kettle 22. The controller 9 displays the temperatures detected by the first, second and third temperature sensors T1, T2 and T3 on the first, second and third temperature displays 60, 61 and 62.
Preferably, as shown in fig. 3, in order to facilitate the user to remotely control the water dispenser, a wireless communication module 7 is further disposed in the housing 1, and the external electronic device can control the states of the switches of the heating kettle 20 and the condensing kettle 22 through the wireless communication module 7. Specifically, the wireless communication module 7 includes any one or more of a bluetooth module, an infrared module, a WIFI module, and a GPS module.
The above disclosure is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the scope of the invention, therefore, the invention is not limited thereto.

Claims (9)

1. An intelligent water dispenser with a lower bucket is characterized by comprising a machine shell, wherein an upper layer space, a middle layer space and a lower layer space which are mutually isolated are sequentially arranged in the machine shell from top to bottom, a closed heating kettle is arranged in the upper layer space, a closed heat preservation kettle and a closed condensation kettle are arranged in the middle layer space side by side, the heating kettle is used for boiling water, the lower layer space is used for placing a pure water bucket, the heat preservation kettle is used for preserving heat of boiled water entering the heating kettle, and the condensation kettle is used for condensing the water to a certain temperature; the shell is internally provided with a first water pump, a first water pipe, a second water pipe and a third water pipe, the upper end of the first water pipe is communicated with the heating kettle, the lower end of the first water pipe is used for being inserted into the purified water bucket, and the first water pump is arranged on the first water pipe and is used for pumping water in the purified water bucket into the heating kettle; the second water pipe is used for communicating the heating kettle with the heat preservation kettle, the third water pipe is used for communicating the heating kettle with the condensation kettle, a first electromagnetic valve is arranged on the second water pipe, and a second electromagnetic valve is arranged on the third water pipe; the shell is provided with a hot water valve communicated with the heating kettle at the upper layer space, and the shell is provided with a warm water valve and a cold water valve respectively communicated with the heat preservation kettle and the condensation kettle at the middle layer space.
2. The intelligent water dispenser with the underneath type bucket as claimed in claim 1, wherein a first pressure sensor for detecting the gravity of the heating kettle is arranged below the heating kettle, a second pressure sensor and a third pressure sensor for detecting the gravity of the heating kettle and the condensing kettle are respectively arranged below the heat preservation kettle and the condensing kettle, and a fourth pressure sensor for detecting the gravity of the purified water bucket is arranged on the bottom wall in the lower space.
3. The intelligent water dispenser with the underneath type bucket as claimed in claim 2, wherein the heat preservation kettle preserves the temperature of the boiled water entering the heat preservation kettle according to the principle of natural heat preservation, the heating kettle is provided with a first temperature sensor, the heat preservation kettle is provided with a second temperature sensor, the condensation kettle is provided with a third temperature sensor, the middle space is further provided with a fourth water pipe, the fourth water pipe is used for communicating the heat preservation kettle and the condensation kettle, the fourth water pipe is provided with a second water pump, and the second water pump can pump the water in the heat preservation kettle into the condensation kettle.
4. The intelligent water dispenser with the underneath type bucket as claimed in claim 1, wherein the housing is further provided with three water receiving grooves which are respectively located below the hot water valve, the warm water valve and the cold water valve, the three water receiving grooves are respectively provided with an automatic water outlet device, and when a water cup is placed at the water receiving grooves, the automatic water outlet devices at the water receiving grooves control the corresponding water valves to be automatically opened.
5. The intelligent water dispenser with the underneath type bucket as claimed in claim 4, wherein the automatic water outlet device comprises a pair of infrared emission module and infrared receiving module which are matched with each other and installed at the left and right sides of the water receiving tank, and an ultrasonic liquid level sensor installed above the water receiving tank, wherein the infrared emission module and the infrared receiving module are used for detecting the height of a water cup placed on the water receiving tank, and the ultrasonic liquid level sensor is used for detecting the height of the liquid level in the water cup.
6. The intelligent water dispenser with the underneath type bucket as claimed in claim 1, wherein a pyroelectric infrared sensor is further arranged on the casing and used for controlling the power switch states of the heating kettle and the condensing kettle.
7. The intelligent water dispenser with the underneath bucket as claimed in claim 3, wherein the casing is provided with a first temperature display, a second temperature display and a third temperature display at the hot water valve, the warm water valve and the cold water valve respectively, the first temperature display is used for displaying the temperature in the heating kettle, the second temperature display is used for displaying the temperature in the heat preservation kettle, and the third temperature display is used for displaying the temperature in the condensing kettle.
8. The intelligent water dispenser with the underneath type bucket as claimed in claim 1, wherein a wireless communication module is further arranged in the casing, and the external electronic equipment can control the states of the heating kettle and the condensing kettle through the wireless communication module.
9. The intelligent water dispenser with the underneath type bucket of claim 8, wherein the wireless communication module comprises any one or more of a Bluetooth module, an infrared module, a WIFI module and a GPS module.
CN202020137477.5U 2020-01-20 2020-01-20 Intelligent water dispenser with lower bucket Expired - Fee Related CN211795916U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020137477.5U CN211795916U (en) 2020-01-20 2020-01-20 Intelligent water dispenser with lower bucket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020137477.5U CN211795916U (en) 2020-01-20 2020-01-20 Intelligent water dispenser with lower bucket

Publications (1)

Publication Number Publication Date
CN211795916U true CN211795916U (en) 2020-10-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020137477.5U Expired - Fee Related CN211795916U (en) 2020-01-20 2020-01-20 Intelligent water dispenser with lower bucket

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI819988B (en) * 2023-05-11 2023-10-21 吉諾工業有限公司 Temperature alternating device for beverage hot water

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI819988B (en) * 2023-05-11 2023-10-21 吉諾工業有限公司 Temperature alternating device for beverage hot water

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Granted publication date: 20201030

Termination date: 20220120