WO2019090969A1 - 饮水机 - Google Patents
饮水机 Download PDFInfo
- Publication number
- WO2019090969A1 WO2019090969A1 PCT/CN2018/072925 CN2018072925W WO2019090969A1 WO 2019090969 A1 WO2019090969 A1 WO 2019090969A1 CN 2018072925 W CN2018072925 W CN 2018072925W WO 2019090969 A1 WO2019090969 A1 WO 2019090969A1
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- WO
- WIPO (PCT)
- Prior art keywords
- water
- tank
- cold
- water outlet
- outlet pipe
- Prior art date
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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
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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
- A47J31/60—Cleaning devices
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L2/00—Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
- A61L2/02—Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using physical phenomena
- A61L2/04—Heat
- A61L2/06—Hot gas
- A61L2/07—Steam
Definitions
- the present invention relates to the field of home appliance technology, and more particularly to a water dispenser.
- water dispensers with cleaning functions are mostly sterilized by ozone and added with cleaning solvents for sterilization.
- the remaining water in the water dispenser pipeline should be completely drained, and then the tee pipe should be used to connect the cold water and hot water inlet pipes of the sub-tank to start the ozone generator, and let the ozone enter the water dispenser, the cold bladder, the hot bladder and the water dispenser.
- the anti-virus is realized in the pipeline.
- the operation steps are cumbersome.
- the water dispenser after washing has a pungent odor residue, which requires multiple water rinses to remove the odor.
- the prior art also uses a water circulation cleaning and flushing pipeline, but the cleaning process uses a normal temperature water flushing, which does not have a sterilization effect. It is also necessary to use with professional cleaning solvents. It is well known that any chemical cleaning is easy to have residues, and it is necessary to repeatedly remove a large amount of water to remove the drug reagent residues. The same unfortunate effect is that the operation is complicated and it is easy to cause drug residues to be detrimental to healthy drinking water.
- the present invention aims to solve at least one of the above technical problems to some extent.
- the present invention provides a water dispenser, which is simple in structure, convenient to use, and has a good cleaning effect.
- a water dispenser includes: a body; a water source assembly, the water source assembly is disposed on the body; a cold water outlet pipe, one end of the cold water outlet pipe is in communication with the water source assembly, the cold water The other end of the outlet pipe forms a cold water outlet; the heating tank is disposed in the body, the heating tank is in communication with the water source assembly, and the heating tank defines a heating chamber for heating; a water outlet pipe, one end of the hot water outlet pipe is in communication with the heating tank, and the other end of the hot water outlet pipe forms a hot water outlet; the first steam pipe, the first steam pipe is located at Between the hot water outlet pipe and the cold water outlet pipe, and connected to the hot water outlet pipe and the cold water outlet pipe, respectively, the first steam pipe needs to be cleaned when the water dispenser needs to be cleaned The hot water outlet line and the cold water outlet line are connected to drain steam generated in the heating tank to the water source assembly.
- the first steam line is disposed between the cold water outlet pipe and the hot water outlet pipe, and when the water dispenser needs to be cleaned, the steam is heated by the heating tank and passes through the first
- the steam pipeline is drained to the cold water outlet pipeline, the hot water outlet pipeline and the water source assembly for high temperature steam sterilization.
- the water dispenser has a simple structure, better sterilization effect, and does not cause secondary pollution to the water dispenser pipeline, and is simple to operate. ,practical.
- the water dispenser further includes: a solenoid valve disposed on the first steam line to communicate and disconnect the hot water outlet pipe and the cold water outlet pipe .
- the water source assembly comprises: a water pool, the water pool is disposed at the top of the body, and the cold water outlet pipeline and the heating tank are respectively connected to the water pool; the smart seat, the smart seat It is disposed in the sub-tank to receive and connect the water source tank and the sub-tank.
- the sub-tank is formed as a refrigerating reservoir
- the water source assembly further includes: a diverter disc disposed in the sub-tank and communicating the water source tank and the heating tank.
- the cold water outlet pipe and the heating tank are respectively in communication with the bottom of the sub-tank.
- the water dispenser further includes: a first water inlet pipe, the first water inlet pipe is disposed between the heating tank and the water source component to water the water source component Draining to the heating tank, the upper end of the first water inlet pipe is in communication with the sub-tank, the lower end of the first water inlet pipe is in communication with the lower portion of the heating tank; the drain pipe, the drain pipe and the drain pipe The first inlet pipe is in communication, and the level of the drain of the drain is between the upper end and the lower end of the heating tank.
- the level of the drain is located at an upper portion of the heating tank.
- the water dispenser further includes: a second steam line disposed between the heating tank and the sub-tank and communicating the heating tank and the sub-tank to The steam generated in the heating tank is directly drained to the sub-tank.
- an upper end of the second steam line extends into the top of the sub-tank.
- the water dispenser further includes: an ice eagle disposed between the water source component and the cold water outlet pipe, the ice chiller being in communication with the water source component and a cooling chamber for cooling is defined in the ice bladder, the cold water outlet conduit is in communication with the ice cone; a second inlet conduit is disposed in the ice cone and the water source assembly And communicating the ice blast with the water source assembly, the second water inlet pipe drains water in the water source assembly to the ice blast when the water dispenser is in normal operation, and is required in the water dispenser The steam in the ice biliary is drained to the sub-tank during washing.
- the water dispenser further includes: a cold tank, the cold tank is disposed on the body, the cold tank defines a refrigeration chamber; a water source tank, the water source tank and the cold tank Communicating to drain water in the water source tank into the refrigeration chamber, one end of the cold water outlet pipe is in communication with the cold tank, and the heating tank is in communication with the cold tank, the first steam pipe
- the road connects the hot water outlet pipe and the cold water outlet pipe to drain steam generated in the heating tank to the cold tank when the water dispenser needs to be cleaned.
- the cold tank is disposed at the top of the body, the water source tank is disposed under the cold tank, and the water dispenser further includes: a third water inlet pipeline, and an upper end of the third water inlet pipeline The cold tank is connected, the lower end of the third water inlet pipe is in communication with the water source tank; the pumping device is disposed on the third water inlet pipe to pump water in the water source tank To the cold tank.
- an upper end of the third water inlet pipe extends into the top of the cold tank.
- FIG. 1 is a schematic view showing the structure of a water dispenser according to an embodiment of the present invention.
- FIG. 2 is a schematic structural view of a water dispenser according to another embodiment of the present invention.
- FIG. 3 is a schematic structural view of a water dispenser according to still another embodiment of the present invention.
- FIG. 4 is a schematic structural view of a water dispenser according to another embodiment of the present invention.
- water dispenser 100 body 10, water source assembly 20, sub-tank 21 (21a), smart seat 22, cold tank 25, water source tank 26, third water inlet line 23, pumping device 24, cold water outlet pipe 30, ice cube 31, sewage outlet 311, second water inlet pipe 32, cold water tap 33, heating tank 40, hot water outlet pipe 41, hot water tap 42, first steam line 60, solenoid valve 61, second steam The pipeline 62, the first water inlet pipe 80, and the drain pipe 81.
- the terms “installation”, “connected”, “connected”, “fixed” and the like shall be understood broadly, and may be either a fixed connection or a detachable connection, unless explicitly stated and defined otherwise. , or connected integrally; may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
- installation shall be understood broadly, and may be either a fixed connection or a detachable connection, unless explicitly stated and defined otherwise.
- , or connected integrally may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
- the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
- the water dispenser 100 according to an embodiment of the present invention will be specifically described below with reference to the accompanying drawings.
- a water dispenser 100 includes a body 10, a water source assembly 20, a cold water outlet line 30, a heating tank 40, a hot water outlet line 41, and a first steam line 60.
- the water source assembly 20 is disposed on the body 10, one end of the cold water outlet pipe 30 is in communication with the water source assembly 20, and the other end of the cold water outlet pipe 30 forms a cold water outlet.
- the heating tank 40 is disposed in the body 10, and the heating tank 40 is provided.
- a heating chamber for heating is defined in the heating tank 40, and one end of the hot water outlet line 41 is in communication with the heating tank 40, and the other end of the hot water outlet line 41 forms a hot water outlet, the first steam tube
- the road 60 is disposed between the hot water outlet pipe 41 and the cold water outlet pipe 30 and is respectively connected to the hot water outlet pipe 41 and the cold water outlet pipe 30, and the first steam pipe 60 communicates with the hot water when the water dispenser needs to be cleaned.
- the water outlet line 41 and the cold water outlet line 30 are used to drain the steam generated in the heating tank 40 to the water source assembly 20.
- the water dispenser 100 is mainly composed of the body 10, the water source assembly 20, the heating tank 40, and the cold water outlet pipe 30 for connecting the water source assembly 20 and the heating tank 40, the hot water outlet pipe 41, and The first steam line 60 and the like are composed, wherein the cold water outlet pipe 30 can be directly connected to the water source assembly 20, the end of the cold water outlet pipe 30 forming a cold water outlet and a cold water tap 33 for discharging cold water.
- the heating tank 40 is in communication with the water source assembly 20 for heating water and generating steam.
- the hot water outlet line 41 is in communication with the heating tank 40.
- the end of the hot water outlet line 41 forms a hot water outlet and is provided with a hot water tap 42. Used to drain hot water.
- a first steam line 60 is disposed between the cold water outlet pipe 30 and the hot water outlet pipe 41.
- the first steam line 60 is disconnected when the water dispenser 100 is in normal use, and is connected to the cold water when the water dispenser 100 needs to be cleaned.
- the water line 30 and the hot water outlet line 41, the steam generated in the heating tank 40 is drained through the first steam line 60 to the cold water outlet line 30 and the water source assembly 20, and the cold water outlet line 30 and the water source assembly 20 are steam sterilized. .
- the cold water outlet pipe 30 communicates with the water source assembly 20, and the cold water tap 33 is opened to allow the cold water to flow out.
- the heating tank 40 is in communication with the water source assembly 20, and the heating tank 40 heats the water, and the hot water tap 42 is turned on to discharge the hot water.
- the water source assembly 20 is disconnected, for example, the water source tank or the water tank is removed, and then the remaining water in the water source assembly 20 is discharged through the sewage outlet, and only a certain water level is retained in the heating tank 40. . Then, the heating function of the heating tank 40 is started, and at the same time, the first steam line 60 is opened to communicate the cold water outlet line 30 and the hot water outlet line 41. After the water in the heating tank 40 is boiled, the steam is boiled, and the steam flows through the hot water outlet pipe 41 through the first steam line 60 and the cold water outlet line 30, and finally flows to the water source assembly 20, and the hot water outlet pipe 41.
- the cold water outlet pipe 30 and the water source assembly 20 are subjected to high temperature steam sterilization.
- the water source tank or the water tank is installed on the water dispenser 100, and the water source assembly 20 is connected, and the water dispenser 100 can be restored to normal use.
- the first steam line 60 is disposed between the cold water outlet pipe 30 and the hot water outlet pipe 41, and when the water dispenser 100 needs to be cleaned, by heating
- the tank 40 is heated to generate steam and is drained through the first steam line 60 to the cold water outlet line 30, the hot water outlet line 41 and the water source assembly 20 for high temperature steam sterilization.
- the water dispenser 100 has a simple structure and a better sterilization effect. Moreover, it will not cause secondary pollution to the water dispenser pipeline, and the operation is simple and practical.
- the water dispenser 100 further includes a solenoid valve 61 disposed on the first steam line 60 to communicate and disconnect the hot water outlet line 41 and the cold water outlet line 30.
- the first steam line 60 communicates with and disconnects the cold water outlet pipe 30 and the hot water outlet pipe 41 by the opening and closing of the solenoid valve 61, and the water dispenser 100 is in normal use, the solenoid valve The 61 is kept closed, and the cold water outlet pipe 30 and the hot water outlet pipe 41 are disconnected.
- the solenoid valve 61 is opened to realize the communication between the cold water outlet pipe 30 and the hot water outlet pipe 41, thereby introducing steam generated in the heating tank 40 into the water source assembly 20 for sterilization.
- the structure in which the cold water outlet pipe 30 and the hot water outlet pipe 41 are connected and closed by the solenoid valve 61 is simple and feasible, and the existing structure is less modified, and the high cost is not increased.
- the water source assembly 20 includes a sub-tank 21 and a smart seat 22.
- the sub-tank 21 is disposed at the top of the body 10, and the cold water outlet pipe 30 and the heating tank 40 are respectively communicated with the sub-tank 21, and the smart seat 22 is disposed in the sub-tank 21 to receive and connect the water source tank and the sub-tank 21.
- the cold water outlet pipe 30 and the heating tank 40 are in communication with the bottom of the sub-tank 21, respectively.
- the water source assembly 20 is composed of a sub-tank 21, a smart seat 22 and a water source tank (not shown), wherein the sub-tank 21 is provided at the top of the water dispenser 100.
- a pool for storing and dividing water is defined in the pool 21, and the smart seat 22 is disposed in the sub-tank 21, and the smart seat 22 is used to support and connect the water source tank and the sub-tank 21.
- the water source assembly 20 has a simple structure, mature technology, and low cost.
- the sub-tank 21a is formed as a refrigerating reservoir
- the water source assembly 20 further includes a diverter disc (not shown) disposed in the sub-tank 21a and communicating with the water source tank and the heating tank 40. .
- the sub-tank 21a is an open cold tank structure, and the sub-tank 21a is provided with a shunting disc, and the shunting disc can directly drain water in a part of the water source tank to the heating tank 40. Heating is carried out, and another part of the water is left in the open cold tank for cooling treatment to meet the lower temperature of the outlet water.
- the sub-tank 21a of the structure can meet different market demands.
- the water dispenser 100 further includes a first water inlet line 80 and a drain pipe 81.
- the first water inlet pipe 80 is disposed between the heating tank 40 and the water source assembly 20 to drain the water in the water source assembly 20 to the heating tank 40.
- the upper end of the first water inlet pipe 80 communicates with the water pool 21, and the first inlet
- the lower end of the water line 80 communicates with the lower portion of the heating tank 40
- the drain pipe 81 communicates with the first water inlet pipe 80, and the level of the drain port of the drain pipe 81 is located between the upper end and the lower end of the heating tank 40.
- the heating tank 40 and the water source assembly 20 are connected by the first water inlet pipe 80, and the water in the water pool 21 flows into the heating tank 40 through the first water inlet pipe 80 for heat treatment.
- the first water inlet pipe 80 is provided with a drain pipe 81 at the same time.
- the level of the drain port of the drain pipe 81 can be used to control the water level in the heating tank 40, thereby controlling the amount of water in the heating tank 40.
- the level of the drain is located at an upper portion of the heating pot 40.
- the water level in the heating tank 40 can be reasonably controlled to control the amount of steam generated in the heating tank 40, thereby ensuring the cleaning effect of the water dispenser 100 while avoiding the heating inside the heating tank 40.
- the heating element is dry-fired to ensure the safety of the water dispenser 100.
- the water dispenser 100 further includes a second steam line 62 disposed between the heating tank 40 and the sub-tank 21 and communicating with the heating tank 40 and the sub-tank 21 to The steam generated in the heating tank 40 is directly drained to the sub-tank 21.
- the upper end of the second steam line 62 extends into the top of the sub-tank 21.
- another passage is provided between the heating tank 40 and the sub-tank 21, that is, the second steam line 62, and the second steam line 62 can directly drain a part of the steam generated in the heating tank 40 to the sub-tank.
- 21, directly disinfecting the sub-tank 21, reducing the steam flow, can further improve the sterilization effect of the sub-tank 21, and the upper end of the second steam line 62 extends into the top of the sub-tank 21, can avoid the pool 21
- the condensed water flows in and affects the sterilization effect.
- the water dispenser 100 further includes an ice cube 31 and a second water inlet line 32.
- the ice cube 31 is disposed between the water source assembly 20 and the cold water outlet conduit 30, the ice cube 31 is in communication with the water source assembly 20, and the ice cube 31 is defined for cooling.
- the refrigeration chamber, the cold water outlet pipe 30 is in communication with the ice cube 31, the second water inlet conduit 32 is disposed between the ice cube 31 and the water source assembly 20 and connects the ice cube 31 with the water source assembly 20, and the second water inlet conduit 32 is at the water dispenser.
- the water in the water source assembly 20 is drained to the ice cube 31 during normal operation, and the steam in the ice cube 31 is drained to the divided water tank 21 when the water dispenser needs to be cleaned.
- the water dispenser 100 further includes an ice cube 31 and a second water inlet pipe 32 between the cold water outlet pipe 30 and the water dividing pool 21, and the second water inlet pipe 32 is normal in the water dispenser 100.
- the water in the sub-tank 21 is drained to the ice cube 31.
- the ice cube 31 cools the water, it is discharged through the cold water tap 33 of the cold water outlet pipe 30 to satisfy the user's demand for low-temperature water.
- the bottom of the ice cube 31 is provided with a sewage outlet 311.
- the sewage outlet 311 is opened to discharge the residual water in the ice cube 31 and the sub-tank 21.
- the solenoid valve 61 is opened to communicate with the first steam line 60, the steam generated by the heating in the heating tank 40 flows into the cold water outlet pipe 30 through the first steam line 60, and then flows into the ice cube 31 and flows back through the second water inlet pipe 32.
- the sterilizing and disinfecting of the ice cube 31 and the second water inlet pipe 32 is realized in the pool 21 .
- the water dispenser 100 has a simple structure, a better sterilization effect, and does not cause secondary pollution to the water dispenser pipeline, and is simple and practical to operate.
- a water dispenser 100 according to another embodiment of the present invention will be specifically described below with reference to the accompanying drawings.
- the water dispenser 100 includes a body 10, a cold tank 25, a water source tank 26, a cold water outlet line 30, a heating tank 40, a hot water outlet line 41, and a first steam line 60. .
- the cold tank 25 is disposed on the body 10, and a cooling chamber is defined in the cold tank 25, and the water source tank 26 communicates with the cold tank 25 to drain water in the water source tank 26 into the refrigeration chamber.
- One end of the cold water outlet pipe 30 communicates with the cold tank 25, and the other end of the cold water outlet pipe 30 forms a cold water outlet.
- the heating tank 40 is disposed in the body 10, and the heating tank 40 is in communication with the cold tank 25 and the heating tank 40 is defined therein for use.
- the heated heating chamber, one end of the hot water outlet line 41 is in communication with the heating tank 40, and the other end of the hot water outlet line 41 forms a hot water outlet, and the first steam line 60 is disposed in the hot water outlet line 41 and the cold water outlet.
- the water pipes 30 are connected to the hot water outlet pipe 41 and the cold water outlet pipe 30 respectively.
- the first steam pipe 60 connects the hot water outlet pipe 41 and the cold water outlet pipe 30 to heat when the water dispenser needs to be cleaned.
- the steam generated in the tank 40 is drained to the cold tank 25.
- the water dispenser 100 mainly consists of the body 10, the cold tank 25, the water source tank 26, the heating tank 40, and the cold water outlet pipe 30 for connecting the cold tank 25 and the heating tank 40, and the hot water outlet.
- the water line 41 is composed of a first steam line 60 and the like, wherein the cold tank 25 can be an open cold tank, and the cold tank 25 can cool the water to meet the user's demand for low temperature water, and the water source tank 26 can drain the water. A bucket or other source of water to the water source tank 26.
- the cold water outlet pipe 30 may be directly connected to the cold tank 25, and the end of the cold water outlet pipe 30 forms a cold water outlet and is provided with a cold water tap 33 for discharging cold water.
- the heating tank 40 is in communication with the cold tank 25 for heating water and generating steam, and the hot water outlet line 41 is in communication with the heating tank 40.
- the end of the hot water outlet line 41 forms a hot water outlet and is provided with a hot water tap 42. Used to drain hot water.
- a first steam line 60 is disposed between the cold water outlet pipe 30 and the hot water outlet pipe 41.
- the first steam line 60 is disconnected when the water dispenser 100 is in normal use, and is connected to the cold water when the water dispenser 100 needs to be cleaned.
- the water line 30 and the hot water outlet line 41, the steam generated in the heating tank 40 is drained through the first steam line 60 to the cold water outlet line 30 and the cold tank 25, and the cold water outlet line 30 and the cold tank 25 are steam sterilized. .
- the cold water outlet pipe 30 communicates with the cold tank 25, and the cold water tap 33 is opened to discharge cold water.
- the heating tank 40 is in communication with the cold tank 25, and the heating tank 40 heats the water, and the hot water tap 42 is turned on to discharge the hot water.
- the connection of the cold tank 25 to the water source tank 26 is disconnected, for example, the water source tank or the water tank can be removed.
- the heating function of the heating tank 40 is started, and at the same time, the first steam line 60 is opened to communicate the cold water outlet line 30 and the hot water outlet line 41.
- the steam is boiled, and the steam flows through the hot water outlet line 41 through the first steam line 60 and the cold water outlet line 30, and finally flows to the cold tank 25, and the hot water outlet pipe 41.
- the cold water outlet pipe 30 and the cold tank 25 are subjected to high temperature steam sterilization.
- the cold tank 25 and the water source tank 26 are connected, and the water dispenser 100 can be restored to normal use.
- the first steam line 60 is disposed between the cold water outlet pipe 30 and the hot water outlet pipe 41, and when the water dispenser 100 needs to be cleaned, by heating
- the tank 40 is heated to generate steam and is drained through the first steam line 60 to the cold water outlet line 30, the hot water outlet line 41 and the cold tank 25 for high temperature steam sterilization.
- the water dispenser 100 has a simple structure and a better sterilization effect. Moreover, it will not cause secondary pollution to the water dispenser pipeline, and the operation is simple and practical.
- the water dispenser 100 further includes a solenoid valve 61 disposed on the first steam line 60 to communicate and disconnect the hot water outlet line 41 and the cold water outlet line 30.
- the first steam line 60 communicates with and disconnects the cold water outlet pipe 30 and the hot water outlet pipe 41 by the opening and closing of the solenoid valve 61, and the water dispenser 100 is in normal use, the solenoid valve The 61 is kept closed, and the cold water outlet pipe 30 and the hot water outlet pipe 41 are disconnected.
- the solenoid valve 61 is opened to realize the communication between the cold water outlet pipe 30 and the hot water outlet pipe 41, thereby introducing steam generated in the heating tank 40 into the cold tank 25 for sterilization.
- the structure in which the cold water outlet pipe 30 and the hot water outlet pipe 41 are connected and closed by the solenoid valve 61 is simple and feasible, and the existing structure is less modified, and the high cost is not increased.
- the cold tank 25 is disposed at the top of the body 10, and the water source tank 26 is disposed below the cold tank 25.
- the water dispenser 100 further includes a third water inlet conduit 23 and a pumping device 24.
- the upper end of the third water inlet pipe 23 communicates with the cold tank 25
- the lower end of the third water inlet pipe 23 communicates with the water source tank 26, and the pumping device 24 is disposed on the third water inlet pipe 23 to place the water source tank 26 therein.
- the water pump is sent to the cold tank 25.
- the upper end of the third water inlet conduit 23 extends into the top of the cold tank 25.
- the water source tank 26 is a lower-mounted water source structure, the water source tank 26 is disposed below the cold tank 25, and the water in the water source tank 26 is sent to the cold tank 25 by the pumping device 24.
- the pumping device 24 can be operated to send the water pump in the water source tank 26 to the cold tank.
- the pumping device 24 stops running.
- the heating function of the heating tank 40 can be turned on, and the first steam line 60 is opened to communicate with the cold water outlet pipe 30 and The hot water outlet pipe 41 is subjected to high temperature steam sterilization.
- the pumping device 24 resumes operation, and the water dispenser 100 can resume normal use.
- the water dispenser 100 of the structure has the water source tank 26 disposed in a bottom-mounted configuration, so that the water source tank 26 can be prevented from being transported to the top of the body 10 for assembly, which is more convenient and labor-saving.
- the water dispenser 100 further includes a splitter tray (not shown) disposed within the cold tank 25 and communicating with the water source tank and the heating tank 40.
- the cold tank 25 is provided with a shunting disc, and the shunting disc can directly drain the water in a part of the water source tank to the heating tank 40 for heating, and another part of the water is left in the cold tank 25 for cooling. Processed to meet the need for lower water temperatures. Thereby, the cold tank 25 of this structure can prevent the water heated into the heating tank 40 from being cooled, reducing energy loss.
- the cold water outlet pipe 30 and the heating tank 40 are in communication with the bottom of the cold tank 25, respectively. Thereby, it can be ensured that the water in the cold tank 25 can be completely discharged or utilized.
- the water dispenser 100 further includes a first water inlet line 80.
- the first water inlet pipe 80 is disposed between the heating tank 40 and the cold tank 25 to drain the water in the cold tank 25 to the heating tank 40.
- the upper end of the first water inlet pipe 80 communicates with the cold tank 25, the first The lower end of the water line 80 communicates with the lower portion of the heating tank 40.
- the heating tank 40 and the cold tank 25 are connected by the first water inlet pipe 80, and the water in the cold tank 25 flows into the heating tank 40 through the first water inlet pipe 80 for heat treatment.
- the water dispenser 100 further includes a second steam line 62 disposed between the heating tank 40 and the cold tank 25 and communicating the heating tank 40 and the cold tank 25 to The steam generated in the heating tank 40 is directly drained to the cold tank 25.
- the upper end of the second steam line 62 extends into the top of the cold tank 25.
- another passage is provided between the heating tank 40 and the cold tank 25, that is, the second steam line 62, and the second steam line 62 can directly drain a part of the steam generated in the heating tank 40 to the cold tank.
- 25 directly sterilizing the cold tank 25, reducing the steam flow can further improve the sterilization effect of the cold tank 25, and the upper end of the second steam line 62 extends into the top of the cold tank 25, can avoid the inside of the cold tank 25
- the condensed water flows in and affects the sterilization effect.
- the water dispenser 100 has a simple structure, a better sterilization effect, and does not cause secondary pollution to the water dispenser pipeline, and is simple and practical to operate.
- first and second may include one or more of the features, either explicitly or implicitly.
- a plurality means two or more unless otherwise stated.
- connection or integral connection; may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
- connection or integral connection; may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
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Abstract
Description
Claims (13)
- 一种饮水机,其特征在于,包括:机体;水源组件,所述水源组件设在所述机体上;冷水出水管路,所述冷水出水管路的一端与所述水源组件连通,所述冷水出水管路的另一端形成冷水出口;加热罐,所述加热罐设在所述机体内,所述加热罐与所述水源组件连通且所述加热罐内限定有用于加热的加热腔;热水出水管路,所述热水出水管路的一端与所述加热罐连通,所述热水出水管路的另一端形成热水出口;第一蒸汽管路,所述第一蒸汽管路设在所述热水出水管路与所述冷水出水管路之间且分别与所述热水出水管路和所述冷水出水管路相连,所述第一蒸汽管路在所述饮水机需要清洗时连通所述热水出水管路和所述冷水出水管路以将所述加热罐内产生的蒸汽引流至所述水源组件。
- 根据权利要求1所述的饮水机,其特征在于,还包括:电磁阀,所述电磁阀设在所述第一蒸汽管路上以连通和断开所述热水出水管路与所述冷水出水管路。
- 根据权利要求1所述的饮水机,其特征在于,所述水源组件包括:分水池,所述分水池设在所述机体顶部,所述冷水出水管路和所述加热罐分别与所述分水池连通;聪明座,所述聪明座设在所述分水池内以承接并连通水源罐和所述分水池。
- 根据权利要求3所述的饮水机,其特征在于,所述分水池形成为制冷蓄水池,所述水源组件还包括:分流盘,所述分流盘设在所述分水池内且连通所述水源罐和所述加热罐。
- 根据权利要求3所述的饮水机,其特征在于,所述冷水出水管路和所述加热罐分别与所述分水池的底部连通。
- 根据权利要求3所述的饮水机,其特征在于,还包括:第一进水管路,所述第一进水管路设在所述加热罐与所述水源组件之间以将所述水源组件内的水引流至所述加热罐,所述第一进水管路的上端与所述分水池连通,所述第一进水管路的下端与所述加热罐的下部连通;排水管,所述排水管与所述第一进水管路连通,所述排水管的排水口的水平高度位于所述加热罐的上端与下端之间。
- 根据权利要求6所述的饮水机,其特征在于,所述排水口的水平高度位于所述加热罐的上部。
- 根据权利要求3所述的饮水机,其特征在于,还包括:第二蒸汽管路,所述第二蒸汽管路设在所述加热罐与所述分水池之间且连通所述加热罐与所述分水池以将所述加热罐内产生的蒸汽直接引流至所述分水池。
- 根据权利要求8所述的饮水机,其特征在于,所述第二蒸汽管路的上端伸入所述分水池的顶部。
- 根据权利要求3所述的饮水机,其特征在于,还包括:冰胆,所述冰胆设在所述水源组件与所述冷水出水管路之间,所述冰胆与所述水源组件连通且所述冰胆内限定有用于制冷的制冷腔,所述冷水出水管路与所述冰胆连通;第二进水管路,所述第二进水管路设在所述冰胆与所述水源组件之间且连通所述冰胆与所述水源组件,所述第二进水管路在所述饮水机正常运行时将所述水源组件内的水引流至所述冰胆,且在所述饮水机需要清洗时将所述冰胆内的蒸汽引流至所述分水池。
- 根据权利要求1所述的饮水机,其特征在于,还包括:冷罐,所述冷罐设在所述机体上,所述冷罐内限定有制冷腔;水源罐,所述水源罐与所述冷罐连通以将所述水源罐内的水引流至所述制冷腔内,所述冷水出水管路的一端与所述冷罐连通,所述加热罐与所述冷罐连通,所述第一蒸汽管路在所述饮水机需要清洗时连通所述热水出水管路和所述冷水出水管路以将所述加热罐内产生的蒸汽引流至所述冷罐。
- 根据权利要求11所述的饮水机,其特征在于,所述冷罐设在所述机体顶部,所述水源罐设在所述冷罐下方,所述饮水机还包括:第三进水管路,所述第三进水管路的上端与所述冷罐连通,所述第三进水管路的下端与所述水源罐连通;泵送装置,所述泵送装置设在所述第三进水管路上以将所述水源罐内的水泵送至所述冷罐内。
- 根据权利要求12所述的饮水机,其特征在于,所述第三进水管路的上端伸入所述冷罐的顶部。
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CN201721491498.1U CN208692974U (zh) | 2017-11-09 | 2017-11-09 | 饮水机 |
CN201721491497.7 | 2017-11-09 | ||
CN201721491497.7U CN208625354U (zh) | 2017-11-09 | 2017-11-09 | 饮水机 |
CN201721491498.1 | 2017-11-09 |
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