CN104586256A - Water dispenser body and water dispenser - Google Patents

Water dispenser body and water dispenser Download PDF

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Publication number
CN104586256A
CN104586256A CN201410719449.3A CN201410719449A CN104586256A CN 104586256 A CN104586256 A CN 104586256A CN 201410719449 A CN201410719449 A CN 201410719449A CN 104586256 A CN104586256 A CN 104586256A
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China
Prior art keywords
water
switch
water tank
sensor
water dispenser
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CN201410719449.3A
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Chinese (zh)
Inventor
方进
辛绍杰
顾雨晨
万广
张振涛
李林
席晓玉
陈海鹏
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Shanghai Dianji University
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Shanghai Dianji University
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Priority to CN201410719449.3A priority Critical patent/CN104586256A/en
Publication of CN104586256A publication Critical patent/CN104586256A/en
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Abstract

The invention provides a water dispenser body and a water dispenser. The water dispenser body at least comprises a water dispenser shell, a plurality of function water tanks and a plurality of control switches. The water dispenser shell is connected with a water containing device to be connected with a water source, and is provided with a water outlet and a plurality of function buttons. The function water tanks are communicated with the water containing device or other adjacent function water tanks to store water at different temperatures. The control switches are arranged between the function water tanks and the water containing device or between the function water tanks, the control switches are controlled to enable a user to select the water at the corresponding temperature by the function buttons, and water can be provided for drinking from the water outlet. The water dispenser is easy to operate, comfortable to use and capable of overcoming the defects that drinking water is repeatedly heated and refrigerated and the drinking water remains and is accumulated, capable of effectively saving energy, beneficial to the body health at the same time, capable of according with the new concept of energy saving and environment protection, good in practicability and large in potential application and popularization value.

Description

Water dispenser body and water dispenser
Technical field
The present invention relates to a kind of household appliance technical field, particularly relate to a kind of water dispenser body and water dispenser.
Background technology
The drinking water of tradition water dispenser is heated repeatedly, and be easy to formation thousand boiling water, this water is because of repeatedly for a long time heated, and involatile substance in water, as the heavy metal component such as calcium, magnesium and content of nitrite are very high.This water of drink of a specified duration, can disturb the gastrointestinal function of people, occurs temporarily diarrhoea, abdominal distension; Poisonous nitrite also can cause body anoxic, and severe patient can be gone into a coma convulsions, even dead, simultaneously due to traditional water dispenser lacks can not effectively by hot water and cold water isolation features effectively, make boiling water and cold water mix heating, make hot water not reach fluidized state, the water formed not open.Expert points out, drinks the water do not boiled, and suffers from the possibility increase by 21%-38% of carcinoma of urinary bladder, the carcinoma of the rectum.
The bottled water drunk due to people or running water, all cross through cholorination sterilization treatment.According to statistics with research chlorine treated water in separable go out 13 kinds of harmful substances, wherein halogenated hydrocarbon, chloroform also have carcinogenic, teratogenesis.When water temperature reaches 90 DEG C, halogenated hydrocarbons content rises to 177 micrograms by original per kilogram 53 microgram, exceedes 2 times of national hygiene standard for drinking water.
There is the residual water with being long placed in and have no idea to remove in time in tradition water dispenser, form water overnight, drink water overnight unfavorable to health, although running water or bottled water are through sterilization, filtration, but still having certain bacterium, boiling water is overnight, the easiest bacterial growth breeding when 37 DEG C, content of nitrite simultaneously in water can rise because of overnight, drinks this water and easily causes a disease.Simultaneously due to water dispenser sealing problem, drinking water contacts with air, is long placed in water and can not exposes too of a specified duration in atmosphere, otherwise can lose biologically active, thus lose a lot of specific function; If overlong time, not only without various mineral matter, but also the content of some harmful substance may be increased.Prove that bottled water must guard against repeatedly boiled or refrigeration according to science, this can cause the oxygen content of water to reduce, and the organic matter in water, under the catalysis of repeatedly heating, can produce the harmful substances such as the chloroform exceeded standard, and drinking for a long time can be unfavorable to health.
In addition, traditional water dispenser can not realize carrying out arranging and regulate to drinking water temperature according to drinking person.Traditional water dispenser automatic cycle controls imprecision simultaneously, be easy to hot water and cold water mix, and heating makes heating water tank produce dirt repeatedly, reduces the sensitivity of firing rate and heater, be easy to cause drinking water not open and easily damage heating water tank to such an extent as to water dispenser is scrapped.
Finally, drinking water functions all is in the market similar, and object is all to make drinking person convenience and ensureing drinking person safe drinking water.On market, existing drinking water function is single, except can meeting the convenience of people's drinking-water, do not have other to ensure, and the performance of water dispenser is bad, have ignored a lot of safe drinking water problem, as drinking water Repeat-heating, repeat refrigeration, be unfavorable for health, and cause the wasting of resources, much avoid the design of Repeat-heating water dispenser not tackle the problem at its root, there is a lot of leak and defect in design simultaneously, as do not ensured the residual shortcoming with piling up of hot water supply, drinking water, design rigorous not simultaneously, can not realize circulating completely.
Summary of the invention
The object of the invention is to propose a kind of water dispenser body, it has simple to operate, use comfortable advantage, avoid drinking water Repeat-heating, repeat refrigeration and drinking water remain and the shortcoming of piling up, effectively save the energy, be conducive to health simultaneously, meet energy-conserving and environment-protective new concept, there is good practicality and very large potential popularizing value.
To achieve these goals, the invention provides a kind of water dispenser body, it at least comprises: drinking machine crust, connects water storage unit to access water source, and provides the mouth of a river and multiple function button; Multiple functional water tank, described functional water tank is communicated with water storage unit or other adjacent functional water tank, to lay in the water of different temperatures; Multiple gauge tap, be arranged between described functional water tank and water storage unit or between described functional water tank, by controlling described gauge tap to provide user by the water of the relevant temperature selected by described multiple function button, and provide from described delivery port and drink.
Preferably, described functional water tank comprises any combination of water tank with strainer, heating water tank, attemperater, refrigeration water tank, cold water storage cistern, reservoir further.
Preferably, described multiple gauge tap correspondingly comprises the combination of the first water inlet switch, the second water inlet switch, the 3rd water inlet switch, the 4th water inlet switch, the 5th water inlet switch, the 6th water inlet switch.
Preferably, described multiple functional switch correspondingly comprises the combination of hot-water switch, refrigeration switch, warm water switch, cold water switch, sluicing switch.
Preferably, be also provided with corresponding sensor in described functional water tank, described sensor is for sensing the relevant parameter of the water of its place functional water tank, and the opening and closing of gauge tap according to the output control of sensing.More specifically, described sensor correspondingly comprises upper limit level sensor, lower limit level sensor, liquid level sensor and temperature sensor.
Preferably, described function button, described gauge tap are connected and cross complaint by intelligent circulation with described sensor.
Preferably, described drinking machine crust also comprises: drinking area, and described delivery port is arranged in described drinking area; Described drinking area also comprises elevation carrection sensor and diameter measurement sensor, wherein, described elevation carrection sensor is for measuring water tumbler height, described diameter measurement sensor is for measuring water tumbler diameter, and two signals that described two sensors record calculate the volume that can obtain different water tumbler from process by processor.
Below in conjunction with the drawings and specific embodiments, technical scheme of the present invention is described in detail, to make characteristic of the present invention and advantage more obvious.
Accompanying drawing explanation
Figure 1 shows that the structural representation of the water dispenser of one embodiment of the invention;
Figure 2 shows that the structural representation of the water dispenser body 2 of one embodiment of the invention;
Figure 3 shows that the schematic perspective view of the water dispenser body 2 of one embodiment of the invention;
Figure 4 shows that the circuit theory schematic diagram of the water dispenser of one embodiment of the invention.
the drawing reference numeral table of comparisons
Labeled elements name reference numerals element title
1 water dispenser 27 cold water storage cistern
11 water storage units 271 the 4th water inlet switch
2 water dispenser body 28 reservoirs
21 bucket bracket 281 the 5th water inlet switch
22 water guide post 282 the 6th water inlet switch
23 water tank with strainer 29 drinking areas
231 filter 291 delivery ports
24 heating water tank 292 elevation carrection sensors
241 blast pipe 293 diameter measurement sensors
242 upper limit level sensor 210 drinking machine crusts
243 lower limit level sensor 2101 hot-water switch
244 temperature sensor 2102 cold water switch
245 first water inlet switch 2103 warm water switches
25 attemperaters 2104 freeze switch
251 second water inlet switch 2105 sluice switch
252 liquid level sensors
26 refrigeration water tank
261 the 3rd water inlet switch
262 upper limit level sensors
263 temperature sensors
264 lower limit level sensors
Detailed description of the invention
Below will provide detailed description to embodiments of the invention.Although the present invention will carry out setting forth and illustrating in conjunction with some detailed description of the invention, it should be noted that the present invention is not merely confined to these embodiments.On the contrary, the amendment carry out the present invention or equivalent replacement, all should be encompassed in the middle of right of the present invention.
In addition, in order to better the present invention is described, in detailed description of the invention hereafter, give numerous details.It will be understood by those skilled in the art that do not have these details, the present invention can implement equally.In other example, known method, flow process, element and equipment are not described in detail, so that highlight purport of the present invention.
Figure 1 shows that the structural representation of the water dispenser of one embodiment of the invention.As shown in the figure, the water dispenser 1 of the present embodiment comprises water storage unit 11 and water dispenser body 2, and wherein, described water storage unit 11 can be the bucket of predetermined dimension, and described water dispenser body 2 is for carrying the functional part of described water dispenser 1.More specifically, described water dispenser body 2 at least comprises drinking machine crust, connects water storage unit to access water source, and provides the mouth of a river and multiple function button; Multiple functional water tank, described functional water tank is communicated with water storage unit or other adjacent functional water tank, to lay in the water of different temperatures; Multiple gauge tap, be arranged between described functional water tank and water storage unit or between described functional water tank, by controlling described gauge tap to provide user by the water of the relevant temperature selected by described multiple function button, and provide from described delivery port and drink.
Figure 2 shows that the structural representation of the water dispenser body 2 of one embodiment of the invention.As shown in the figure, described water dispenser body 2 is for carrying the functional part of described water dispenser 1.Described water dispenser body 2 comprises the bucket bracket 21 be arranged in described water dispenser body 2, for carrying described water storage unit 11; Be arranged on the water tank with strainer 23 in described drinking-water body 2, it is communicated with described water storage unit 11 by described water guide post 22; Be arranged on the filter 231 in described water tank with strainer 23, it is removably connected to described water guide post 22 by conduit; There is the heating water tank 24 of blast pipe 241, described heating water tank 24 is by described first water inlet switch 245 and the conducting of described water tank with strainer 23, blast pipe 241 and the conducting of described water tank with strainer 23 of described heating water tank 24, and upper limit level sensor 242, lower limit level sensor 243 and temperature sensor 244 are set in described heating water tank 24; Attemperater 25, described attemperater 25 volume is set to 2 times of heating water tank 24, liquid level sensor 252 is arranged on a little less than described attemperater 25 volume 1/2 place, its object is to can reach liquid level sensor 252 when water in heating water tank 24 enters attemperater 25 completely, consider that water evaporates, liquid level sensor 252 is a little less than 1/2 place of attemperater 25, and described attemperater 25 is by described second water inlet switch 251 and the conducting of described heating water tank 24; Refrigeration water tank 26, described refrigeration water tank 26 by described 3rd water inlet switch 261 and the conducting of described water tank with strainer 23, and arranges upper limit level sensor 262, temperature sensor 263 and lower limit level sensor 264 in described refrigeration water tank 26; There is the cold water storage cistern 27 of built-in liquid level sensor 272, described cold water storage cistern 27 is by the 4th water inlet switch 271 and the conducting of described refrigeration water tank 26, described cold water storage cistern 27 volume is 2 times of refrigeration water tank 26, and described liquid level sensor 272 is arranged on 1/2 place a little less than described cold water storage cistern 27 volume; Reservoir 28, described reservoir 28 one end is by the 5th water inlet switch 281 and the conducting of described attemperater 25, and the other end is by the 6th water inlet switch 282 and the conducting of described cold water storage cistern 27.
Figure 3 shows that the schematic perspective view of the water dispenser body 2 of one embodiment of the invention.As shown in the figure, the water dispenser body 2 of the present embodiment comprises drinking area 29, described drinking area 29 inside is provided with delivery port 291, elevation carrection sensor 292 and diameter measurement sensor 293, described delivery port 291 is removably connected to described reservoir 28 by conduit, described elevation carrection sensor 292 is for measuring water tumbler height, described diameter measurement sensor 293 is for measuring water tumbler diameter, and two signals that these two sensors record calculate the volume that can obtain different water tumbler from process by processor (not shown on figure).
Further, as shown in Figure 3, the drinking machine crust 210 of the water dispenser body 2 of the present embodiment is provided with hot-water switch 2101, cold water switch 2102, warm water switch 2103, refrigeration switch 2104, sluicing switch 2105, drinking person controls the drinking water that described multiple switch can obtain different temperatures health according to demand, whole use procedure is simply comfortable, simple operation, has good practicality and very large potential generalization.
Figure 4 shows that the circuit theory schematic diagram of the water dispenser of one embodiment of the invention.The operation principle of water dispenser of the present invention is further illustrated below with reference to Fig. 2 to 4.In order to coordinate explanation, first explanation is enumerated to the electronic devices and components numbering involved by Fig. 4, wherein LS1 and upper limit level sensor 242, LS2 and lower limit level sensor 243, LS3 and liquid level sensor 252, KTP1 and temperature sensor 244, KA1 i.e. the first water inlet switch 245, KA2 i.e. the second water inlet switch 251, KM1 and heater switch, LS4 and upper limit level sensor 262, LS5 and lower limit level sensor 264, LS6 and liquid level sensor 272, KTP2 and temperature sensor 263, KA3 i.e. the 3rd water inlet switch 261, KA4 i.e. the 4th water inlet switch 271, namely KM2 freezes switch, KA5 i.e. the 5th water inlet switch 281, KA6 i.e. the 6th water inlet switch 282, SB1 hot water switch 2101, namely SB2 freezes switch 2102, SB3 and warm water switch 2103, SB4 and cold water switch 2104, namely SB5 sluices switch, KT1-KT2 is the time relay, KA7 is self-lock switch.
The water storage unit 11 of described water dispenser 1 is carried on described bucket bracket 21, and the water in water storage unit 11 enters described water tank with strainer 23 by described water guide post 22 water conservancy diversion.When described water dispenser 1 access failure power supply, KA1, KA2, KA3, KA4, KA5 and KA6 are in normally off.When LS1 does not obtain signal, described LS1 hydraulic control normally closed switch is in normally off, and hydraulic control normal open switch is in normally open.When LS2 does not obtain signal, described LS2 hydraulic control normally closed switch is in normally off.When LS3 does not obtain signal, described LS3 hydraulic control normally closed switch is in normally off.When KTP1 does not obtain signal, described KTP1 hydraulic control normally closed switch is in normally off, and hydraulic control normal open switch is in normally open.When described water dispenser 1 switches on power, described LS3 and LS1 does not obtain signal, described LS3 hydraulic control normally closed switch and described LS1 hydraulic control normally closed switch are in a state of nature (normally closed), circuit 41, circuit 42 conducting in circuit diagram, described KA1 obtains electric, KA1 is by closing change open mode, and namely the first water inlet switch 245 is opened, and water flows into described heating water tank 24 by described KA1 from described water tank with strainer 23.When the water level of described heating water tank 24 reach described LS2 detect height time, described LS2 obtains signal, and described LS2 hydraulic control normally closed switch is by normally closed change normally open, and circuit 45 not conducting in circuit diagram, described KA2 is in original shut state and closes.When the water level of described heating water tank 24 reach described LS1 detect height time, described LS1 obtains signal, described LS1 hydraulic control normally closed switch is by normally closed change normally open, and in circuit diagram, circuit 41, circuit 42 disconnect, described KA1 power-off, described KA1 is in original shut state, namely described first water inlet switch 245 is closed, and LS1 hydraulic control normal open switch becomes normally closed, i.e. circuit 43 conducting in circuit diagram by often opening simultaneously, KM1 obtains electric, and namely described heating water tank 24 heats.When heating-up temperature arrives described KTP1 design temperature (as 100 degrees Celsius), KTP1 obtains signal, described KTP1 hydraulic control normally closed switch is often opened by normally closed change, and namely in circuit diagram, circuit 43 disconnects, described KM1 power-off, described heating water tank 24 stops heating, described KTP1 hydraulic control normal open switch is by often opening change normally off simultaneously, i.e. circuit 45 conducting in circuit diagram, and described KA2 obtains electric, described KA2 becomes open mode by original closedown, and namely the second water inlet switch 251 is opened.When described hot water enters described attemperater 25 by described KA2 completely from described heating water tank 24, described LS1 and described LS2 loses signal, i.e. described KA1 and described KA2 but also be in original normally off, when the water level of described attemperater 25 reaches or detects height higher than described LS3 simultaneously, described LS3 obtains signal, described LS3 hydraulic control normally closed switch is often opened by normally closed change, namely in circuit diagram, circuit 41 disconnects, described KA1 is in off-position, described KA1 is in original shut state, and namely described first water inlet switch 251 is closed all the time.When drinking person drinks described hot water, when the water level of described attemperater 25 detects height lower than described LS3, described LS3 loses signal, described LS3 hydraulic control normally closed switch by often opening change normally off, i.e. circuit 41, circuit 42 conducting in circuit diagram, described KA1 obtains electric, described KA1 becomes open mode by original closedown, namely the first water inlet switch 251 is opened, and described water flows into described heating water tank 24 by described KA1 from described water tank with strainer 23, namely carries out circulating-heating.As long as when reaching according to the water level of described attemperater 25 above or detect height higher than described LS3, described heating water tank 24 stops heating, namely efficiently avoid described water and repeatedly adds thermosetting thousand boiling water, has also effectively saved the energy simultaneously.Otherwise when detecting height lower than described LS3, described heating water tank 24 heats, and can ensure that hot water amount is approximately 1/2 of described attemperater 25 volume all the time, namely effectively save the time of user.
At the end of one day, press SB5, circuit 419 conducting in circuit diagram, described KA5 obtains electric, and described KA5, by closing change open mode, namely can drink 1/2 hot water amount of described attemperater 25 volume, thus efficiently avoid formation and to spend the night water and be long placed in water, namely can ensure that each water tank of water dispenser is in and does not have water state and can ensure that morning, water was fresh, is conducive to health, makes user's safety relieved simultaneously every night.
When drinking person needs drinking hot water, open SB1, circuit 418 conducting in circuit diagram, KA5 obtains electric, and described KA5 is by closing change open mode, and namely the 5th water inlet switch 281 is opened, open delivery port 291, then hot water enters reservoir 28 by KA5 from described attemperater 25, gets final product drinking hot water.When drinking person obtains institute's water requirement, close described SB1, circuit recovers reset condition.
When drinking person needs to drink warm water, open SB3, circuit 4171 in circuit diagram, circuit 4172 and circuit 4173 conducting, KT1 obtains electric, described KT1 trigger, described KA5 obtains electric simultaneously, described KA5 is by closing change open mode, namely the 5th water inlet switch 281 is opened, described hot water enters described reservoir 28 by KA5 from described heating water tank 24, when described KT1 reaches and arranges delay time, KT1 delayed contact switch is often opened by normally closed change, circuit 4171 in circuit diagram, circuit 4172 and circuit 4173 not conducting, described KA5 power-off, described KA5 is in original shut state, namely the 5th water inlet switch 281 is closed.When described KT1 reaches and arranges delay time, KT1 becomes normally closed by often opening, circuit 423 conducting in circuit diagram, described KA6 obtains electric, described KA6 opens by closing change, and namely the 6th water inlet switch 282 is opened, and described cold water enters described reservoir 28 by KA6 from described cold water storage cistern 27, described KT2 obtains electric simultaneously, described KT2 trigger.When described KT2 reach delay time is set time, KT2 is often opened by normally closed change, circuit 423 not conducting in circuit diagram, described KA6 power-off, and described KA6 is in original shut state, and namely the 6th water inlet switch 282 is closed, and namely described reservoir 28 obtains temperature required warm water.Described warm water temperature can be regulated by described hot water entry time and described cold water entry time, and described hot water entry time and described cold water entry time are controlled by described KT1 and institute KT2 respectively.Open delivery port 291, then described warm water is flowed out from described reservoir 28 by delivery port 291, i.e. drinkable warm water.Effectively can meet the wait heat water-cooled time of drinking person demand and saving drinking person.When drinking person obtains institute's water requirement, close described SB3, circuit recovers reset condition.
When drinking person needs to drink normal temperature cold water, open SB4, circuit 48 conducting in circuit diagram, KA3 obtains electric, described KA3 is by closing change open mode, namely the 3rd water inlet switch 261 is opened, circuit 415 conducting in circuit diagram, KA4 obtains electric, described KA4 is by closing change open mode, namely the 4th water inlet switch 271 is opened, circuit 424 conducting in circuit diagram, KA6 obtains electric, described KA6 is by closing change open mode, namely the 6th water inlet switch 282 is opened, circuit 425 in circuit diagram simultaneously, circuit 426 conducting, KA7 obtains electric, described KA7 often opens and becomes normally closed, i.e. circuit 416 conducting in circuit diagram, described KA4 obtains electric, namely the 4th water inlet switch 271 is in open mode all the time (object arranging KA7 prevents the described LS5 be arranged in described refrigeration water tank 26 from obtaining signal, KA4 is made to be in closed condition, always design is in open mode to reach described KA4).Described refrigeration water tank 26 is freezed and is not worked, and at this moment described refrigeration water tank 26 is just equivalent to conduit effect, opens delivery port 291, then cold water is by described refrigeration water tank 26, cold water storage cistern 27 and reservoir 28, gets final product Chilled Drinking Water.When drinking person obtains institute's water requirement, close described SB1, circuit returns to reset condition.
When drinking person needs described water dispenser 1 to freeze, described KA3 and described KA4 is all in original normally off, presses SB2, circuit 421 conducting in circuit diagram, and KA6 obtains electric, and described KA6 is by closing change open mode, and namely the 6th water inlet switch 282 is opened.Because described LS6 and LS4 does not obtain signal, described LS6 hydraulic control normally closed switch and described LS4 hydraulic control normally closed switch are in a state of nature (normally closed), circuit 49, circuit 410 conducting in circuit diagram, described KA3 obtains electric, described KA3 is by closing change open mode, namely the 3rd water inlet switch 261 is opened, and water flows into described refrigeration water tank 26 by described KA3 from described water tank with strainer 23.When the water level of described refrigeration water tank 26 reach described LS5 detect height time, described LS5 obtains signal, and described LS5 hydraulic control normally closed switch is by normally closed change normally open, and circuit 413 not conducting in circuit diagram, described KA4 is in original shut state.When the water level of described refrigeration water tank 26 reach described LS4 detect height time, described LS4 obtains signal, described LS4 hydraulic control normally closed switch is by normally closed change normally open, and in circuit diagram, circuit 49, circuit 410 disconnect, described KA3 power-off, described KA3 is in original shut state, namely described first water inlet switch 245 is closed, and LS4 hydraulic control normal open switch becomes normally closed, i.e. circuit 411 conducting in circuit diagram by often opening simultaneously, KM2 obtains electric, and namely described refrigeration water tank 26 is freezed.When cryogenic temperature arrives KTP2 design temperature (as 5 degrees Celsius), described KTP2 obtains signal, described KTP2 hydraulic control normally closed switch is often opened by normally closed change, and namely in circuit diagram, circuit 411 disconnects, described KM2 power-off, described refrigeration water tank 26 stops refrigeration, described KTP2 hydraulic control normal open switch is by often opening change normally off simultaneously, i.e. circuit 413 conducting in circuit diagram, and described KA4 obtains electric, described KA4 becomes open mode by original closedown, and namely the 4th water inlet switch 271 is opened.When described refrigeration frozen water enters described cold water storage cistern 27 by described KA4 completely from described refrigeration water tank 26, described LS4 and described LS5 loses signal, i.e. described KA3 and described KA4 but also be in original shut state, when the water level of described cold water storage cistern 27 reaches or detects height higher than described LS6 simultaneously, described LS6 obtains signal, described LS6 hydraulic control normally closed switch is often opened by normally closed change, namely in circuit diagram, circuit 49 disconnects, described KA3 is in off-position, described KA3 is in original shut state, and namely described 3rd water inlet switch 261 is closed all the time.When drinking person drinks described refrigeration frozen water, when the water level of described cold water storage cistern 27 detects height lower than described LS6, described LS6 loses signal, described LS6 hydraulic control normally closed switch by often opening change normally off, i.e. circuit 49, circuit 410 conducting in circuit diagram, described KA3 obtains electric, described KA3 becomes open mode by original shut state, namely the 3rd water inlet switch 261 is opened, and described water flows into described refrigeration water tank 26 by described KA3 from described water tank with strainer 23, namely carries out circularly cooling.As long as when reaching according to the water level of described refrigeration water tank 26 above or detect height higher than described LS6, described refrigeration water tank 26 stops refrigeration, namely efficiently avoid described water and repeatedly freezes, water oxygen element is lost, unfavorable to health, also effectively saved the energy simultaneously.Otherwise when detecting height lower than described LS6, described refrigeration water tank 26 is freezed, can ensure that the refrigeration frozen water water yield is approximately 1/2 of described refrigeration water tank 26 volume all the time, namely effectively save the time of user.When drinking person needs to drink refrigeration frozen water, open delivery port 291, then the frozen water that freezes is flowed out by described cold water storage cistern 27, can drink described refrigeration frozen water.When drinking person obtains institute's water requirement, close described SB2, circuit recovers reset condition.
Described drinking area 29 is provided with the delivery port 291 of glass pressure type, effectively prevents described drinking water from overflowing, and is provided with elevation carrection sensor 292 and diameter measurement sensor 293 simultaneously.When drinking person water tumbler put into described drinking area 29 prepare water receiving time, described elevation carrection sensor 292 and diameter measurement sensor 293 obtain signal, the volume of different water tumbler can be recorded accurately by processor, carry out further again calculating and process, show that different volume water tumbler fills described drinking water required time, when the described KA5 of independent control and described KA6 time to go, control it to close, namely efficiently avoid described reservoir 28 when drinking described hot water and cold water produce the water yield remain, efficiently avoid being long placed in of described drinking water simultaneously, improve the quality of drinking water.
In sum, the invention provides and a kind ofly avoid Repeat-heating, repeat to freeze and efficiently avoid to produce being long placed in and piling up residual intelligent drinking machine of water, fundamentally solve that traditional water dispenser Repeat-heating forms thousand boiling water, repeating to freeze forms metamorphic water and hot water is piled up and residual shortcoming.In addition, present invention employs a delivery port and coordinate multiple function button, facilitate user, save the energy simultaneously.
In addition, each functional unit in each embodiment of the present invention can be integrated in a processing module, also can be that the independent physics of unit exists, also can be integrated in a module by two or more unit.Above-mentioned integrated module both can adopt the form of hardware to realize, and the form of software function module also can be adopted to realize.If described integrated module using the form of software function module realize and as independently production marketing or use time, also can be stored in a computer read/write memory medium.
Detailed description of the invention and accompanying drawing are only the conventional embodiment of the present invention above.Obviously, various supplement, amendment and replacement can be had under the prerequisite not departing from the present invention's spirit that claims define and invention scope.It should be appreciated by those skilled in the art that the present invention can change in form, structure, layout, ratio, material, element, assembly and other side under the prerequisite not deviating from invention criterion according to concrete environment and job requirement in actual applications to some extent.Therefore, be only illustrative rather than definitive thereof in the embodiment of this disclosure, the scope of the present invention is defined by appended claim and legal equivalents thereof, and is not limited thereto front description.

Claims (9)

1. a water dispenser body, is characterized in that, described water dispenser body at least comprises:
Drinking machine crust, connects water storage unit to access water source, and provides the mouth of a river and multiple function button;
Multiple functional water tank, described functional water tank is communicated with water storage unit or other adjacent functional water tank, to lay in the water of different temperatures;
Multiple gauge tap, be arranged between described functional water tank and water storage unit or between described functional water tank, by controlling described gauge tap to provide user by the water of the relevant temperature selected by described multiple function button, and provide from described delivery port and drink.
2. water dispenser body according to claim 1, is characterized in that, described functional water tank comprises any combination of water tank with strainer, heating water tank, attemperater, refrigeration water tank, cold water storage cistern, reservoir further.
3. water dispenser body according to claim 2, is characterized in that, described multiple gauge tap correspondingly comprises the combination of the first water inlet switch, the second water inlet switch, the 3rd water inlet switch, the 4th water inlet switch, the 5th water inlet switch, the 6th water inlet switch.
4. water dispenser body according to claim 3, is characterized in that, described multiple functional switch correspondingly comprises the combination of hot-water switch, refrigeration switch, warm water switch, cold water switch, sluicing switch.
5. water dispenser body according to claim 2, it is characterized in that, also be provided with corresponding sensor in described functional water tank, described sensor is for sensing the relevant parameter of the water of its place functional water tank, and the opening and closing of gauge tap according to the output control of sensing.
6. water dispenser body according to claim 5, is characterized in that, described sensor correspondingly comprises upper limit level sensor, lower limit level sensor, liquid level sensor and temperature sensor.
7. water dispenser body according to claim 1, is characterized in that, described function button, described gauge tap are connected and cross complaint by intelligent circulation with described sensor.
8. water dispenser body according to claim 1, is characterized in that, described drinking machine crust also comprises:
Drinking area, described delivery port is arranged in described drinking area;
Described drinking area also comprises elevation carrection sensor and diameter measurement sensor, wherein, described elevation carrection sensor is for measuring water tumbler height, described diameter measurement sensor is for measuring water tumbler diameter, and two signals that described two sensors record calculate the volume that can obtain different water tumbler from process by processor.
9. a water dispenser, is characterized in that, described water dispenser comprises water storage unit and multiple water dispenser body as claimed in any of claims 1 to 7 in one of claims.
CN201410719449.3A 2014-12-01 2014-12-01 Water dispenser body and water dispenser Pending CN104586256A (en)

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Cited By (13)

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Publication number Priority date Publication date Assignee Title
CN104939677A (en) * 2015-06-23 2015-09-30 陶泽成 Water dispenser
CN105011769A (en) * 2015-07-22 2015-11-04 重庆市双涌净水科技有限公司 Self-cleaning water dispenser
CN105054797A (en) * 2015-08-19 2015-11-18 三峡大学 Small water temperature control system
CN105147120A (en) * 2015-09-29 2015-12-16 苏州科贝尔实业有限公司 Drink brewing machine capable of precisely controlling water temperature and temperature control method of machine
CN106037481A (en) * 2016-08-08 2016-10-26 马静 Water dispenser
CN106419555A (en) * 2016-11-02 2017-02-22 上海海事大学 Healthy water drinking machine based on single-chip microcomputer control
CN106580108A (en) * 2017-01-13 2017-04-26 浙江工业大学 Wide printhead coffee art machine
CN107951392A (en) * 2018-01-12 2018-04-24 安徽师范大学 A kind of water dispenser of quick regulation water temperature
CN108549421A (en) * 2018-03-05 2018-09-18 深圳圣思哲电器有限公司 A kind of method and system of intelligent control water tank water level
CN110470221A (en) * 2019-08-30 2019-11-19 佛山市顺德区美的饮水机制造有限公司 For measuring the device, drinking equipment and method of the physical size of object
CN111683894A (en) * 2017-12-28 2020-09-18 三得利控股株式会社 Water dispenser and water supply method for water dispenser
CN113069006A (en) * 2021-03-29 2021-07-06 苏州丁冬电器有限公司 Boiled water and instant-cooling type warm water dual-purpose composite water dispenser
CN113576251A (en) * 2021-08-31 2021-11-02 白荣丽 Circulating filtration type water dispenser capable of adjusting outlet water temperature and working method thereof

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CN1781419A (en) * 2004-04-02 2006-06-07 塔纳工业(1991)有限公司 Water dispenser and filter cartridge for use therein
CN201131640Y (en) * 2007-12-29 2008-10-15 北京华能科美科技有限公司 Integrated drinking machine
CN201299458Y (en) * 2008-11-19 2009-09-02 刘文小雪 Inducing water fountain
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Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104939677A (en) * 2015-06-23 2015-09-30 陶泽成 Water dispenser
CN105011769A (en) * 2015-07-22 2015-11-04 重庆市双涌净水科技有限公司 Self-cleaning water dispenser
CN105054797B (en) * 2015-08-19 2018-05-08 三峡大学 A kind of small-sized water temperature control system
CN105054797A (en) * 2015-08-19 2015-11-18 三峡大学 Small water temperature control system
CN105147120A (en) * 2015-09-29 2015-12-16 苏州科贝尔实业有限公司 Drink brewing machine capable of precisely controlling water temperature and temperature control method of machine
CN106037481A (en) * 2016-08-08 2016-10-26 马静 Water dispenser
CN106419555A (en) * 2016-11-02 2017-02-22 上海海事大学 Healthy water drinking machine based on single-chip microcomputer control
CN106580108A (en) * 2017-01-13 2017-04-26 浙江工业大学 Wide printhead coffee art machine
CN111683894A (en) * 2017-12-28 2020-09-18 三得利控股株式会社 Water dispenser and water supply method for water dispenser
CN107951392A (en) * 2018-01-12 2018-04-24 安徽师范大学 A kind of water dispenser of quick regulation water temperature
CN108549421A (en) * 2018-03-05 2018-09-18 深圳圣思哲电器有限公司 A kind of method and system of intelligent control water tank water level
CN110470221A (en) * 2019-08-30 2019-11-19 佛山市顺德区美的饮水机制造有限公司 For measuring the device, drinking equipment and method of the physical size of object
CN110470221B (en) * 2019-08-30 2021-10-26 佛山市顺德区美的饮水机制造有限公司 Device, water drinking apparatus and method for measuring physical dimensions of an object
CN113069006A (en) * 2021-03-29 2021-07-06 苏州丁冬电器有限公司 Boiled water and instant-cooling type warm water dual-purpose composite water dispenser
CN113576251A (en) * 2021-08-31 2021-11-02 白荣丽 Circulating filtration type water dispenser capable of adjusting outlet water temperature and working method thereof

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Application publication date: 20150506