CN105816047A - Water path system of instant-heating water dispenser - Google Patents
Water path system of instant-heating water dispenser Download PDFInfo
- Publication number
- CN105816047A CN105816047A CN201610322274.1A CN201610322274A CN105816047A CN 105816047 A CN105816047 A CN 105816047A CN 201610322274 A CN201610322274 A CN 201610322274A CN 105816047 A CN105816047 A CN 105816047A
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- CN
- China
- Prior art keywords
- water
- storehouse
- bin
- heating
- heating cabinet
- Prior art date
- 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.)
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Classifications
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J31/00—Apparatus for making beverages
- A47J31/44—Parts or details or accessories of beverage-making apparatus
- A47J31/54—Water boiling vessels in beverage making machines
- A47J31/542—Continuous-flow heaters
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J31/00—Apparatus for making beverages
- A47J31/44—Parts or details or accessories of beverage-making apparatus
- A47J31/46—Dispensing spouts, pumps, drain valves or like liquid transporting devices
- A47J31/462—Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank
- A47J31/467—Dispensing spouts, pumps, drain valves or like liquid transporting devices with an intermediate liquid storage tank for the infusion
Abstract
A water path system of an instant-heating water dispenser comprises a balance water tank, a water pump A and a water pump B. A water outflow bin, a heating bin, a water storage bin, a water inflow bin and a water discharge bin are arranged in the balance water tank. A water outlet is formed in the lower portion of the water outflow bin, a water inlet is formed in the lower portion of the water inflow bin and communicated with the interior of the water inflow bin, and a water discharge port is formed in the lower portion of the water discharge bin. The water outflow bin, the heating bin, the water storage bin, the water inflow bin and the water discharge bin are located at the same atmospheric pressure. The lower end of the heating bin and the lower end of the water storage bin are communicated with each other. The water storage bin is communicated with the water inflow bin in a one-way mode. Water overflowing out of the water inflow bin when the water inflow bin reaches the maximum water level flows into the water discharge bin. Water in the heating bin rolls and enters the water outflow bin across the side wall of the heating bin when boiling. The water outflow end of the water pump A is communicated with the water inlet, and the water inflow end of the water pump A is communicated with a water source. One end of the water pump B is communicated with the interior of the heating bin, and the other end of the water pump B is communicated with the interior of the water storage bin. The water path system has the advantages that under the premise of not increasing the power of an electric heater, the heating efficiency of the instant-heating water dispenser is increased, and the water outflow rate is increased.
Description
Technical field
The present invention relates to the water circuit system of instant-heating water drinking machine technical field, particularly instant-heating water drinking machine.
Background technology
Instant-heating water drinking machine is that one is i.e. by instant-heating and outlet hot, it is not necessary to the water dispenser that user waits, because its advantage providing hot water convenient and efficient is favored by more and more users.
But, the universal water flow of existing instant-heating water drinking machine is less, it is impossible to meet user's needs.Because by the biggest for instant for the cold water boiled energy needing to consume, in order to improve water flow, in industry, widespread practice is to strengthen the power of electric heater, but considers for Electrical Safety factor, the power of electric heater can not unconfined promote, and does not the most allow more than 2500W.
Because the rated voltage of domestic socket is 250V, rated current 10V, when the appliance power being inserted in socket is more than 2500W, more than 10A, there is potential safety hazard in electric current.
Summary of the invention
It is an object of the invention to overcome the deficiencies in the prior art, and the water circuit system of a kind of instant-heating water drinking machine is provided.It solve the problem that existing instant-heating water drinking machine hot water effluent's flow is little.
The technical scheme is that the water circuit system of instant-heating water drinking machine, including balanced reservoir, water pump A and water pump B;
Sump, heating cabinet, water storehouse, water storage and draining storehouse it is provided with out in balanced reservoir;Going out sump bottom and be provided with outlet, the tank wall of water storage bottom or balanced reservoir is provided with water inlet, and water inlet is directly or indirectly communicated to inside water storage, and bottom, draining storehouse is provided with discharge outlet;
Go out sump, heating cabinet, water storehouse, water storage and draining storehouse to be all under same atmospheric pressure;
Heating cabinet is interconnected in lower end with water storehouse;
Water storehouse and water storage unilaterally connected, the water of water storage can enter water storehouse;
The water that water storage reaches peak level and overflows flows into draining storehouse;
During water boiling in heating cabinet, rolling is crossed the sidewall of heating cabinet and is entered out sump;
Water pump A water side connects with water inlet, and water pump A water inlet end connects with water source, and water pump B one end is communicated in heating cabinet by pipeline A, and the water pump B other end is communicated in water storehouse by pipeline B.
The further technical scheme of the present invention is: water storehouse and water storage realize unilaterally connected by check valve, on the dividing plate A that check valve is located between water storehouse and water storage, so that the water of water storage can enter water storehouse by check valve.
The further technical scheme of the present invention is: goes out sump, heating cabinet, water storehouse, water storage and draining storehouse and is interconnected by the gap between respective cavity wall and balanced reservoir roof respectively in upper end, discharge chamber it is additionally provided with in balanced reservoir, the upper end of discharge chamber connects with the upper end going out sump, and the lower end of discharge chamber communicates with air.
The present invention further technical scheme is: heating cabinet is separated by dividing plate C with water storehouse, and heating cabinet is connected by the gap between dividing plate C with balanced reservoir bottom surface in lower end with water storehouse.
The present invention further technical scheme is: pipeline A one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of heating cabinet, and it connects end and is connected on the water inlet port of water pump B;Pipeline B one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of water storehouse, and it connects end and is connected on the water outlet port of water pump B.
In conjunction with present invention application note advantage on instant-heating water drinking machine:
1, i.e. starting preheating after instant-heating water drinking machine energising, heating cabinet is mixed homogeneously by circulation on a large scale with the water in water storehouse, and water temperature remains near predetermined temperature (higher than the warm water of water source temperature).After user presses water outlet key, electric heater only needs warm water is heated to boiling, needs the energy consumed to reduce, and on the premise of not increasing heater power, the efficiency of heating surface promotes, and the water outlet water yield increases.
2, heating cabinet is interconnected in lower end with water storehouse, and the free end of pipeline A is positioned at the upper end of heating cabinet, and the free end of pipeline B is positioned at the upper end of water storehouse.After water pump B starts, the water of heating cabinet and water storehouse can be formed by the circulation on a large scale on lower, and the water temperature making two storehouses is the most consistent in each aspect, it is to avoid the phenomenon that hot water is layered occur.
3, leaving water temperature remains at the boiling point of water, is not disturbed by environment, water source temperature.Balanced reservoir is essentially linker, this makes heating cabinet remain contour with the water level of water storehouse, the peak level that heating cabinet can reach is the top of dividing plate D99, this height is less than the height of the sidewall 17 of heating cabinet, both differences in height are S, only cross sidewall when the water boiling rolling in heating cabinet, sump could be flowed into out, i.e. ensure that the constant of leaving water temperature.
4, the flow set that pumps out of water pump A is definite value, it is not necessary to finely regulating also can guarantee that water yield is stable and water temperature is constant, reduces the design and manufacture cost of control circuit plate.When enter in the unit interval water yield of water storage more than unit between in heating cabinet rolling and go out boiling water amount time, the water having more can cover the peak level inflow draining storehouse of water storage.The boiling water water level making heating cabinet is in dynamic equilibrium.
Below in conjunction with figure, the invention will be further described with embodiment.
Accompanying drawing explanation
Fig. 1 is the structural representation of the present invention;
Fig. 2 is the structural representation of the instant-heating water drinking machine adaptive with the present invention.
Detailed description of the invention
Embodiment 1:
As it is shown in figure 1, the water circuit system of instant-heating water drinking machine, including balanced reservoir, check valve 2, water pump A3 and water pump B4.
Sump 11, heating cabinet 12, water storehouse 13, water storage 14 and draining storehouse 15 it is provided with out in balanced reservoir.Go out and bottom sump 11, be provided with outlet 111, be provided with water inlet 141 bottom water storage 14, bottom draining storehouse 15, be provided with discharge outlet 151.
Go out sump 11, heating cabinet 12, water storehouse 13, water storage 14 and draining storehouse 15 to be all under same atmospheric pressure.Specifically, go out sump 11, heating cabinet 12, water storehouse 13, water storage 14 and draining storehouse 15 to be interconnected by the gap between respective cavity wall and balanced reservoir roof respectively in upper end, discharge chamber 18 it is additionally provided with in balanced reservoir, the upper end of discharge chamber 18 connects with the upper end going out sump 11, and the lower end of discharge chamber 18 communicates with air.
Heating cabinet 12 is interconnected in lower end with water storehouse 13.Specifically, heating cabinet 12 is separated by dividing plate C19 with water storehouse 13, and heating cabinet 12 is connected by the gap between dividing plate C19 with balanced reservoir bottom surface in lower end with water storehouse 13.
Water storehouse 13 is adjacent with water storage 14, and check valve 2 is located on the dividing plate A16 between water storehouse 13 and water storage 14, so that the water of water storage 14 can enter water storehouse 13 by check valve 2.
Referring to Fig. 1, draining storehouse 15 is adjacent with water storage 14, and the top that peak level is dividing plate D99 that water storage 14 can reach, the water that water storage 14 reaches peak level and overflows all flows into draining storehouse 15.
Going out sump 11 adjacent with heating cabinet 12, after the boiling of water in heating cabinet 12, rolling is crossed the sidewall 17 of heating cabinet and is entered out sump 11.
The water side of water pump A3 is connected with the water inlet 141 of water storage 14 by pipeline, and the water inlet end of water pump A3 is connected with water source by pipeline.Water pump B4 one end is communicated in heating cabinet 12 by pipeline A41, and the water pump B4 other end is communicated in water storehouse 13 by pipeline B42.
Pipeline A41 one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of heating cabinet 12, and it connects end and is connected on the water inlet port of water pump B4.Pipeline B42 one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of water storehouse 13, and it connects end and is connected on the water outlet port of water pump B4.
The principle of the summary present invention:
The structure of the instant-heating water drinking machine adaptive with the present invention is as shown in Figure 2: is provided with control circuit plate 6 in the housing 5 of instant-heating water drinking machine lower end, is provided with electric heater 7 in heating cabinet 12, is provided with water level of temperature compound sensor group 8 in water storehouse 13.Control circuit plate 6 electrically connects with water pump A3, water pump B4, electric heater 7 and water level of temperature compound sensor group 8 respectively, and it can receive the signal from water level of temperature compound sensor group 8, and then regulates and controls water pump A3, water pump B4 and the running status of electric heater 7.
After user connects the power supply of instant-heating water drinking machine, i.e. start preheating, water pump A3 starts, and the water at water source pumps into water storage 14, and the water of water storage 14 enters water storehouse 13 and heating cabinet 12 by check valve 2, after the water of water storehouse 13 covers water level of temperature compound sensor group 8, water pump A3 power-off, electric heater 7 energising starts heating, water pump B4 subsequent start-up, make heating cabinet 12 form circulation on a large scale with the water of water storage 13, be finally reached temperature consistent.
(water level of temperature compound sensor group 8 can detect water temperature), electric heater 7 and water pump B4 power-off after the water temperature of water storehouse 13 reaches preset temperature.After a while, after the water temperature of water storehouse 13 is less than the preheating temperature preset, electric heater 7 and water pump B4 are again started up, the water temperature of water storehouse 13 is promoted to preset temperature, afterwards, electric heater 7 and water pump B4 power-off again, so move in circles, to ensure that heating cabinet 12 and water storehouse 13 are all the time near preset temperature.
When user needs hot water, pressing water outlet key (not shown), electric heater 7 only needs the warm water of heating cabinet 12 is heated to boiling, needs the energy consumed to reduce, and on the premise of not increasing heater power, the efficiency of heating surface promotes, and the water outlet water yield increases.
Claims (6)
1. the water circuit system of instant-heating water drinking machine, is characterized in that: include balanced reservoir, water pump A (3) and water pump B (4);
Sump (11), heating cabinet (12), water storehouse (13), water storage (14) and draining storehouse (15) it are provided with out in balanced reservoir;Go out sump (11) bottom and be provided with outlet (111), the tank wall of water storage (14) bottom or balanced reservoir is provided with water inlet (141), it is internal that water inlet (141) is directly or indirectly communicated to water storage (14), and draining storehouse (15) bottom is provided with discharge outlet (151);
Go out sump (11), heating cabinet (12), water storehouse (13), water storage (14) and draining storehouse (15) are all under same atmospheric pressure;
Heating cabinet (12) is interconnected in lower end with water storehouse (13);
Water storehouse (13) and water storage (14) unilaterally connected, the water of water storage can enter water storehouse;
The water that water storage (14) reaches peak level and overflows flows into draining storehouse (15);
During water boiling in heating cabinet (12), rolling is crossed the sidewall (17) of heating cabinet and is entered out sump (11);
Water pump A (3) water side connects with water inlet (141), water pump A (3) water inlet end connects with water source, water pump B (4) one end is communicated in heating cabinet (12) by pipeline A (41), and water pump B (4) other end is communicated in water storehouse (13) by pipeline B (42).
2. the water circuit system of instant-heating water drinking machine as claimed in claim 1, it is characterized in that: water storehouse (13) realizes unilaterally connected with water storage (14) by check valve (2), check valve (2) is located on the dividing plate A (16) between water storehouse (13) and water storage (14), so that the water of water storage (14) can pass through check valve (2) and enter water storehouse (13).
3. the water circuit system of instant-heating water drinking machine as claimed in claim 2, it is characterized in that: go out sump (11), heating cabinet (12), water storehouse (13), water storage (14) and draining storehouse (15) are interconnected by the gap between respective cavity wall and balanced reservoir roof respectively in upper end, discharge chamber (18) it is additionally provided with in balanced reservoir, the upper end of discharge chamber (18) connects with the upper end going out sump (11), and the lower end of discharge chamber (18) communicates with air.
4. the water circuit system of the instant-heating water drinking machine as according to any one of claim 1-3, it is characterized in that: heating cabinet (12) is separated by dividing plate C (19) with water storehouse (13), and heating cabinet (12) is connected by the gap between dividing plate C (19) and balanced reservoir bottom surface in lower end with water storehouse (13).
5. the water circuit system of the instant-heating water drinking machine as according to any one of claim 1-3, it is characterized in that: pipeline A (41) one end is free end, the other end is for connecting end, its free end stretches into and is positioned at the upper end of heating cabinet (12), and it connects end and is connected on the water inlet port of water pump B (4);Pipeline B (42) one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of water storehouse (13), and it connects end and is connected on the water outlet port of water pump B (4).
6. the water circuit system of instant-heating water drinking machine as claimed in claim 4, it is characterized in that: pipeline A (41) one end is free end, the other end is for connecting end, its free end stretches into and is positioned at the upper end of heating cabinet (12), and it connects end and is connected on the water inlet port of water pump B (4);Pipeline B (42) one end is free end, and the other end is for connecting end, and its free end stretches into and be positioned at the upper end of water storehouse (13), and it connects end and is connected on the water outlet port of water pump B (4).
Priority Applications (1)
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CN201610322274.1A CN105816047A (en) | 2016-05-16 | 2016-05-16 | Water path system of instant-heating water dispenser |
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CN201610322274.1A CN105816047A (en) | 2016-05-16 | 2016-05-16 | Water path system of instant-heating water dispenser |
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Citations (9)
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JP2011002145A (en) * | 2009-06-18 | 2011-01-06 | Panasonic Corp | Heat pump heat source machine |
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CN204460748U (en) * | 2014-12-31 | 2015-07-08 | 冯海涛 | Instant heating type drinking water heating device |
CN105180459A (en) * | 2015-10-29 | 2015-12-23 | 边江 | Instant heating type potable water heating device |
CN102954576B (en) * | 2012-12-10 | 2016-01-27 | 佛山市四季茶香茶具有限公司 | Instant heating type drinking water heating device and magnetic control protection method thereof |
CN105411390A (en) * | 2015-12-15 | 2016-03-23 | 边江 | Constant-temperature instant water drinking machine |
CN206006969U (en) * | 2016-05-16 | 2017-03-15 | 边江 | The water circuit system of instant-heating water drinking machine |
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2016
- 2016-05-16 CN CN201610322274.1A patent/CN105816047A/en active Pending
Patent Citations (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2807119Y (en) * | 2005-06-17 | 2006-08-16 | 李晨 | Electric water heater |
JP2011002145A (en) * | 2009-06-18 | 2011-01-06 | Panasonic Corp | Heat pump heat source machine |
CN202452657U (en) * | 2012-01-21 | 2012-09-26 | 冯海涛 | Water cooking device provided with instantaneous heat water cooking cavity |
CN102901207A (en) * | 2012-11-12 | 2013-01-30 | 冯海涛 | Energy-saving drinking water heating device |
CN102954576B (en) * | 2012-12-10 | 2016-01-27 | 佛山市四季茶香茶具有限公司 | Instant heating type drinking water heating device and magnetic control protection method thereof |
CN204460748U (en) * | 2014-12-31 | 2015-07-08 | 冯海涛 | Instant heating type drinking water heating device |
CN105180459A (en) * | 2015-10-29 | 2015-12-23 | 边江 | Instant heating type potable water heating device |
CN105411390A (en) * | 2015-12-15 | 2016-03-23 | 边江 | Constant-temperature instant water drinking machine |
CN206006969U (en) * | 2016-05-16 | 2017-03-15 | 边江 | The water circuit system of instant-heating water drinking machine |
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Application publication date: 20160803 |