CN208973450U - A kind of chilled water mechanism applied to drinking equipment - Google Patents

A kind of chilled water mechanism applied to drinking equipment Download PDF

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Publication number
CN208973450U
CN208973450U CN201721778476.3U CN201721778476U CN208973450U CN 208973450 U CN208973450 U CN 208973450U CN 201721778476 U CN201721778476 U CN 201721778476U CN 208973450 U CN208973450 U CN 208973450U
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CN
China
Prior art keywords
outlet
heat exchanger
water
exchanger tube
refrigerant
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Expired - Fee Related
Application number
CN201721778476.3U
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Chinese (zh)
Inventor
王金楠
谢洵
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Shenzhen Yi'annuo Technology Co Ltd
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Shenzhen Yi'annuo Technology Co Ltd
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Priority to CN201721778476.3U priority Critical patent/CN208973450U/en
Application granted granted Critical
Publication of CN208973450U publication Critical patent/CN208973450U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of chilled water mechanisms applied to drinking equipment, the chilled water mechanism includes water entering section, outlet part, heat exchanging part and refrigerant supply department, the heat exchanging part includes mutually indepedent and adjacent the first access and alternate path, the inlet and outlet of first access is respectively connected to the water entering section and the outlet part, and the inlet and outlet of the alternate path is respectively connected to the export and import of the refrigerant supply department.The refrigerant for entering the drinking water and the alternate path for entering the heat exchanger from the refrigerant supply department of the first access of the heat exchanger from the water entering section carries out heat exchange, the water temperature of drinking water flows out after reducing rapidly from the outlet part drinks for user, achieve the purpose that instant cold, ensure the freshness of drinking water, simultaneously, drinking water and refrigerant respectively independently of each other the first access and alternate path in flow, avoid the secondary pollution of drinking water, the cleanliness of drinking water be effectively guaranteed.

Description

A kind of chilled water mechanism applied to drinking equipment
Technical field
The utility model relates to drinking equipment technical fields, and in particular to a kind of refrigeration water dispenser applied to drinking equipment Structure.
Background technique
Existing water dispenser is all bottled water to be put upside down on smart seat, and the drinking water inside bottled water passes through gravity Effect pours into refrigerating ice glass liner, and drinking water is stored in refrigerating ice glass liner and is cooled by refrigerating ice glass liner, and user needs to drink cold When water, water outlet is opened, the drinking water in refrigerating ice glass liner passes through self weight outflow.The problem of this design, is that drinking water freezes After be stored for a long time in refrigerating ice glass liner, be easy to cause and drink water bacteria severe overweight, moreover, drinking water in refrigerating ice glass liner is easy Residual, causes the subsequent drinking water poured by previous remaining drinking water pollution, so that user is difficult to drink the cold of fresh clean Water, the serious health that can jeopardize user.
For this purpose, applicant devises a kind of chilled water mechanism applied to drinking equipment, to overcome the above problem.
Utility model content
Technical problem to be solved in the utility model is, for the existing above problem in the prior art, to provide one Kind can ensure that the freshness of drinking water can effectively guarantee the refrigeration that can be applied to drinking equipment of the cleanliness of drinking water again Water dispenser structure.
The technical scheme adopted by the utility model to solve the technical problem is as follows:
A kind of chilled water mechanism applied to drinking equipment is provided, the chilled water mechanism includes water entering section, outlet part, changes Hot portion and refrigerant supply department, the heat exchanging part include mutually indepedent and adjacent the first access and alternate path, and described first is logical The inlet and outlet on road is respectively connected to the water entering section and the outlet part, and the inlet and outlet of the alternate path connects respectively It is connected to the export and import of the refrigerant supply department.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the heat exchanging part includes two mutual It is independent and the first heat exchanger tube and the second heat exchanger tube, first heat exchanger tube is located in second heat exchanger tube, and described first The tube wall of heat exchanger tube is not contacted with the tube wall of second heat exchanger tube, and first heat exchanger tube has first access, described Second heat exchanger tube has the alternate path.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the water entering section includes and described The water inlet pipe of the inlet communication of one heat exchanger tube, the outlet part include the outlet pipe with the outlet of first heat exchanger tube, The internal diameter of the water inlet pipe and the outlet pipe is all larger than the internal diameter of first heat exchanger tube.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the internal diameter of the water inlet pipe is equal to institute State the internal diameter of outlet pipe.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the refrigerant supply department includes power Pump and the refrigerant source connecting with the kinetic pump, the refrigerant source inside have refrigerant and refrigerator, and the kinetic pump is also connected with The import of the alternate path, the refrigerant source are also connected with the outlet of the alternate path.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the refrigerator is refrigerating ice glass liner.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the import of first access and institute The outlet for stating alternate path is ipsilateral, and the outlet of first access is ipsilateral with the import of the alternate path.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the kinetic pump is brushless water pump.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the refrigerant supply department further includes One temperature sensor and processor, the temperature sensor are set to the refrigerant source, processor connection first temperature Spend sensor, the refrigerant source and the kinetic pump.
In the chilled water mechanism provided by the utility model applied to drinking equipment, the outlet part is equipped with and the place Manage the second temperature sensor of device connection.
Implement the chilled water mechanism provided by the utility model applied to drinking equipment, can achieve it is following the utility model has the advantages that The chilled water mechanism includes water entering section, outlet part, heat exchanging part and refrigerant supply department, and the heat exchanging part includes mutually indepedent and phase Adjacent the first access and alternate path, the inlet and outlet of first access are respectively connected to the water entering section and the water outlet Portion, the inlet and outlet of the alternate path are respectively connected to the export and import of the refrigerant supply department.From the water entering section Drinking water into the first access of the heat exchanger and the alternate path from the refrigerant supply department into the heat exchanger Refrigerant carries out heat exchange, and the water temperature of drinking water flows out after reducing rapidly from the outlet part drinks for user, reaches instant cold Purpose, it is ensured that the freshness of drinking water, meanwhile, drinking water and refrigerant respectively independently of each other the first access and second it is logical It is flowed in road, avoids the secondary pollution of drinking water, the cleanliness of drinking water is effectively guaranteed.
Detailed description of the invention
Fig. 1 is the schematic illustration of the utility model preferred embodiment.
The drawing reference numeral of specific embodiment illustrates:
Water inlet pipe 1 Outlet pipe 2
Heat exchanging part 3 Refrigerant supply department 4
First heat exchanger tube 31 Second heat exchanger tube 32
Kinetic pump 41 Refrigerant source 42
Processor 43
Specific embodiment
For a clearer understanding of the technical features, objectives and effects of the utility model, now control attached drawing is detailed Illustrate specific embodiment of the present utility model.Obviously, the described embodiments are only a part of the embodiments of the utility model, Instead of all the embodiments.Based on the embodiments of the present invention, those of ordinary skill in the art are not making creation Property labour under the premise of every other embodiment obtained, fall within the protection scope of the utility model.
As shown in Figure 1, being the preferred embodiment of the chilled water mechanism provided by the utility model applied to drinking equipment, institute Stating chilled water mechanism includes water entering section, outlet part, heat exchanging part 3 and refrigerant supply department 4.
The water entering section is that a hollow section is the circular water inlet pipe 1 directly grown, it is preferred that the water entering section access Drinking water be speed heat quickly cooling flow into after flow into.
The outlet part is that a hollow section is the circular outlet pipe 2 directly grown.
The refrigerant supply department 4 includes kinetic pump 41 and refrigerant source 42.There is refrigerant and refrigeration inside the refrigerant source 42 Device.The kinetic pump 41, it is preferred that use brushless water pump.The butane for being insoluble in water can be used in the refrigerant.The refrigerator, Preferably, using semiconductor refrigerating ice liner.The one end in the refrigerant source 42 is the import of the refrigerant supply department 4, the refrigerant The other end in source 42 connects one end of the kinetic pump 41, and the other end of the kinetic pump 41 is going out for the refrigerant supply department 4 Mouthful.
The heat exchanging part 3 includes that two mutually independent spiral sections are circular first heat exchanger tube 31 and second Heat exchanger tube 32, it is preferred that first heat exchanger tube 31 is set to inside second heat exchanger tube 32, and first heat exchanger tube 31 It is not contacted with second heat exchanger tube 32, first heat exchanger tube 31 and second heat exchanger tube 32 have heating conduction good Material is made, such as metal copper material.
The import of first heat exchanger tube 31 is connected to the water inlet pipe 1, and the outlet of first heat exchanger tube 31 is connected to The outlet pipe 2, interior the first access having for supplying drinking water circulation of first heat exchanger tube 31.Second heat exchanger tube 32 Import connect the other end (outlet of the refrigerant supply department 4) of the kinetic pump 41, the outlet of second heat exchanger tube 32 The one end (import of the refrigerant supply department 4) in the refrigerant source 42 is connected, has in second heat exchanger tube 32 and is used for cooling supply The alternate path of matchmaker's circulation.
The import of first access and the outlet of the alternate path are ipsilateral, the outlet of first access and described the The import of two accesses is ipsilateral, in this way, flow direction of the drinking water in first access and the refrigerant are logical described second Flow direction in road is opposite, that is to say, that so that the drinking water and the refrigerant reverse convection, to guarantee the drinking water and institute State the sufficient heat exchange of refrigerant.
In order to guarantee the heat exchanger effectiveness of the heat exchanging part 3, the tube wall of first heat exchanger tube 31 and second heat exchange The tube wall of pipe 32 fits closely, in addition, first heat exchanger tube 31 is identical with the internal diameter of second heat exchanger tube 32 and is less than institute State the internal diameter of water inlet pipe 1 and the internal diameter of the outlet pipe 2.
In addition, the refrigerant supply department 4 further includes the processor 43 connecting with the refrigerant source 42 and the kinetic pump 41, The processor 43 uses single-chip microcontroller.The processor 43 is used to control the refrigerator and the kinetic pump 41 in the refrigerant source 42 Start and stop.
The working principle of the chilled water mechanism is described below:
When user needs Chilled Drinking Water, the refrigerant supply department 4 is first opened, so that the refrigerator works, institute of freezing Refrigerant is stated, when the temperature inductor in the refrigerant source 42 detects that the temperature of the refrigerant reaches preset temperature, the refrigeration Device is automatically stopped work.When user presses cold water effluent switch, the starting in advance of kinetic pump 41, so that the refrigerant is in institute It states in alternate path and flows from bottom to top, then, drinking water flows into first access from the water inlet pipe 1, then described Top-down flowing in first access is finally flowed out from the outlet pipe 2.When drinking water flows in first access Reverse convection can be formed with the refrigerant flowed in the alternate path and carries out sufficient heat exchange, so that drinking water is described Cooling is completed when flowing in the first access, the drinking water after cooling is flowed out from the outlet pipe 2 so that user drinks.
In conclusion can achieve following the utility model has the advantages that described in using the chilled water mechanism provided in this embodiment The drinking water that water entering section enters the first access of the heat exchanger enters the second of the heat exchanger with from the refrigerant supply department 4 The refrigerant of access carries out heat exchange, and the water temperature of drinking water flows out after reducing rapidly from the outlet part drinks for user, reaches i.e. With i.e. cold purpose, it is ensured that the freshness of drinking water, meanwhile, drinking water and refrigerant respectively independently of each other the first access and It is flowed in alternate path, avoids the secondary pollution of drinking water, the cleanliness of drinking water is effectively guaranteed.
Further, the refrigerant supply department further includes the first temperature sensor, and first temperature sensor is set to It the refrigerant source and is electrically connected with the processor 43.First temperature sensor can be with refrigerant source 42 described in real-time detection Temperature, and the temperature information in the refrigerant source 42 is sent to the processor 43, when the temperature in the refrigerant source 42 reaches pole When small value, the processor 43 controls the refrigerator and stops working, to save electric energy.
Further, the second temperature sensor being electrically connected with the processor 43 is equipped in the outlet pipe 2.Described Two temperature sensors can be with the temperature of the water in real-time detection outlet pipe 2, and the temperature signal of the water in the outlet pipe 2 is sent out It sending to the processor 43, the temperature of the water in the water pipe 2 is compared the processor 43 with water temperature set by user, The power that the kinetic pump 41 is controlled if lower than the water temperature of setting reduces, if the water temperature for being higher than setting controls the kinetic pump 41 power increases, to accurately control the temperature of the water flowed out from the outlet pipe 2.
In other embodiments, the refrigerant can also use environmentally friendly refrigerant, ammonia of model Ra406 etc..
In other embodiments, the refrigerator can also use the icy gallbladder of compression mechanism.
In other embodiments, first heat exchanger tube 31 and second heat exchanger tube 32 can be integrated, that is, It says that the heat exchanging part 3 is an entirety, forms two adjacent first accesses and alternate path in the heat exchanging part 3.
The embodiments of the present invention are described above in conjunction with attached drawing, but the utility model is not limited to The specific embodiment stated, the above mentioned embodiment is only schematical, rather than restrictive, this field it is common Technical staff is not departing from the utility model aims and scope of the claimed protection situation under the enlightenment of the utility model Under, many forms can be also made, these are belonged within the protection of the utility model.

Claims (10)

1. a kind of chilled water mechanism applied to drinking equipment, which is characterized in that the chilled water mechanism includes water entering section, water outlet Portion, heat exchanging part and refrigerant supply department, the heat exchanging part include mutually indepedent and adjacent the first access and alternate path, and described The inlet and outlet of one access is respectively connected to the water entering section and the outlet part, the inlet and outlet point of the alternate path It is not connected to the export and import of the refrigerant supply department.
2. the chilled water mechanism according to claim 1 applied to drinking equipment, which is characterized in that the heat exchanging part includes Two it is mutually indepedent and the first heat exchanger tube and the second heat exchanger tube, first heat exchanger tube is located in second heat exchanger tube, and The tube wall of first heat exchanger tube is not contacted with the tube wall of second heat exchanger tube, and first heat exchanger tube has described first to lead to Road, second heat exchanger tube have the alternate path.
3. the chilled water mechanism according to claim 2 applied to drinking equipment, which is characterized in that the water entering section includes With the water inlet pipe of the inlet communication of first heat exchanger tube, the outlet part includes the outlet with first heat exchanger tube The internal diameter of outlet pipe, the water inlet pipe and the outlet pipe is all larger than the internal diameter of first heat exchanger tube.
4. the chilled water mechanism according to claim 3 applied to drinking equipment, which is characterized in that the water inlet pipe it is interior Diameter is equal to the internal diameter of the outlet pipe.
5. the chilled water mechanism according to claim 1 applied to drinking equipment, which is characterized in that the refrigerant supply department Including kinetic pump and the refrigerant source connecting with the kinetic pump, there is refrigerant and refrigerator, the power inside the refrigerant source Pump is also connected with the import of the alternate path, and the refrigerant source is also connected with the outlet of the alternate path.
6. the chilled water mechanism according to claim 5 applied to drinking equipment, which is characterized in that the refrigerator is system Icy gallbladder.
7. the chilled water mechanism according to claim 1 applied to drinking equipment, which is characterized in that first access Import and the outlet of the alternate path are ipsilateral, and the outlet of first access is ipsilateral with the import of the alternate path.
8. the chilled water mechanism according to claim 5 applied to drinking equipment, which is characterized in that the kinetic pump is nothing Brush water pump.
9. the chilled water mechanism according to claim 5 applied to drinking equipment, which is characterized in that the refrigerant supply department It further include the first temperature sensor and processor, the temperature sensor is set to the refrigerant source, and the processor connects institute State the first temperature sensor, the refrigerant source and the kinetic pump.
10. the chilled water mechanism according to claim 9 applied to drinking equipment, which is characterized in that the outlet part is set There is the second temperature sensor being connected to the processor.
CN201721778476.3U 2017-12-19 2017-12-19 A kind of chilled water mechanism applied to drinking equipment Expired - Fee Related CN208973450U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721778476.3U CN208973450U (en) 2017-12-19 2017-12-19 A kind of chilled water mechanism applied to drinking equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721778476.3U CN208973450U (en) 2017-12-19 2017-12-19 A kind of chilled water mechanism applied to drinking equipment

Publications (1)

Publication Number Publication Date
CN208973450U true CN208973450U (en) 2019-06-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721778476.3U Expired - Fee Related CN208973450U (en) 2017-12-19 2017-12-19 A kind of chilled water mechanism applied to drinking equipment

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020244584A1 (en) * 2019-06-06 2020-12-10 付军 Instant cooling system for drinking water and partitioned refrigerating system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020244584A1 (en) * 2019-06-06 2020-12-10 付军 Instant cooling system for drinking water and partitioned refrigerating system

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190614

Termination date: 20211219