CN201421235Y - Refrigeration evaporating base of cold drink machine - Google Patents

Refrigeration evaporating base of cold drink machine Download PDF

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Publication number
CN201421235Y
CN201421235Y CN2009201551186U CN200920155118U CN201421235Y CN 201421235 Y CN201421235 Y CN 201421235Y CN 2009201551186 U CN2009201551186 U CN 2009201551186U CN 200920155118 U CN200920155118 U CN 200920155118U CN 201421235 Y CN201421235 Y CN 201421235Y
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China
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heat
conducting plate
heat conductive
conductive plate
beverage
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Expired - Fee Related
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CN2009201551186U
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Chinese (zh)
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刘怡然
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Individual
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Individual
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Abstract

A refrigeration evaporating base of a cold drink machine comprises an evaporator and is characterized in that the evaporator comprises an evaporator body and an evaporating pipe, the evaporator body comprises a bottom heat conductive plate, a left heat conductive plate and a right heat conductive plate, the left heat conductive plate is mounted on the left side of the bottom heat conductive plate,the right heat conductive plate is mounted on the right side of the bottom heat conductive plate, and the evaporating pipe is arranged inside the evaporator body or is jointed on the outer surface ofthe evaporator body. The bottom heat conductive plate, the left heat conductive plate and the right heat conductive plate form three refrigerating surfaces of the refrigeration evaporating base, on the one hand, the three refrigerating surfaces can cool drink in a drink tank simultaneously, are fast in refrigerating speed and fine in refrigerating effect due to large heat conductive area, and onthe other hand, the three refrigerating surfaces cover the drink tank from three sides, thereby reducing heat exchange of the drink tank and the drink inside the same with external air, reducing refrigeration loss, enhancing cold accumulation capacity of drinks, reducing energy consumption and saving electric power.

Description

The refrigeration evaporator seat of cold drink machine
Technical field
The utility model relates to beverage cooling device, specifically, relates to a kind of refrigeration evaporator seat of cold drink machine.
Background technology
In the summer of sweltering heat, a lot of places (as shop, station, office space etc.) are provided with cold drink machine provides chilled beverage for people.The refrigeration evaporator seat of cold drink machine is used to place the beverage groove, and the beverage in beverage groove and the beverage groove is cooled off.
The refrigeration evaporator seat of existing cold drink machine is an evaporating pan, and the beverage groove is placed on the top of evaporating pan, and the beverage groove carries out heat exchange by its bottom with evaporating pan, thereby the beverage in beverage groove and the beverage groove is cooled.But this refrigeration evaporator seat has only a chill surface, and this chill surface only carries out heat exchange with the bottom of beverage groove, and heat-conducting area is little, thereby refrigerating speed is slow; The beverage groove has only the bottom to contact with evaporating pan, and the sidewall of beverage groove and top all are exposed in the air, and carries out heat exchange with air, causes the loss of refrigeration capacity of beverage groove big, the cold-storage ability of beverage, and the cold drink machine energy consumption is big.In addition, when the beverage groove is installed, need to use sealing ring that beverage trench bottom and evaporating pan are sealed, installation steps are many; And require the beverage groove strictness to put in place, otherwise drainage will occur.
Summary of the invention
Technical problem to be solved in the utility model provides a kind of refrigeration evaporator seat of cold drink machine, and this refrigeration evaporator seat refrigerating speed is fast, and can reduce the loss of refrigeration capacity of beverage groove, strengthens the cold-storage ability of beverage.The technical scheme that adopts is as follows:
A kind of refrigeration evaporator seat of cold drink machine comprises evaporimeter, it is characterized in that: described evaporimeter comprises evaporator body and evaporation tubes; Evaporator body comprises bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, and the left side heat-conducting plate is installed in the left side of bottom surface heat-conducting plate, and the right side heat-conducting plate is installed in the right side of bottom surface heat-conducting plate; Evaporation tubes is located at the inside of evaporator body or is bonded on the outer surface of evaporator body.
Space in the above-mentioned evaporator body is (promptly above the heat-conducting plate of bottom surface, and the space between left side heat-conducting plate and right side heat-conducting plate) be used to place the beverage groove, after the beverage groove is put into this space, the bottom of beverage groove, the left side and the right side respectively with the bottom surface heat-conducting plate, the left side heat-conducting plate contacts with the right side heat-conducting plate, the bottom of beverage groove, left side and right side can be respectively and the bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate carry out heat exchange, that is to say, the bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate constitute three chill surfaces of refrigeration evaporator seat, and beverage groove and beverage are wherein cooled.
Be located in evaporation tubes under the situation of inside of evaporator body, can adopt casting technique to make evaporator body, and make evaporation tubes be comprised in the inside of evaporator body.
The outer surface of above-mentioned evaporator body is made up of the lower surface of bottom surface heat-conducting plate, the left surface of left side heat-conducting plate and the right flank of right side heat-conducting plate.Be bonded in evaporation tubes under the situation on the outer surface of evaporator body, can adopt the good binding material of the heat conductivility binding agent of metal dust (as contain) that evaporation tubes is bonded on the outer surface of evaporator body, also evaporation tubes can be welded on the outer surface of evaporator body, also can adopt the good connector of heat conductivility (as metal connecting piece) that evaporation tubes is fixed on the outer surface of evaporator body.
Fusing at bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, (promptly the lower end of left side heat-conducting plate is connected the left side of bottom surface heat-conducting plate, the right side of connection bottom surface, the lower end heat-conducting plate of right side heat-conducting plate) under the situation, can on bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, be equipped with evaporation tubes; Also can only be provided with evaporation tubes on one or two in three heat-conducting plates such as bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, this moment is by the conduction of the heat between these three heat-conducting plates, make the heat-conducting plate that evaporation tubes is not set to be evaporated the tube-cooled cooling equally, and beverage groove and beverage are wherein cooled.Evaporation tubes can correspondingly be located at the inside of bottom surface heat-conducting plate, left side heat-conducting plate, right side heat-conducting plate, also can correspondingly be bonded on the right flank of left surface, right side heat-conducting plate of lower surface, the left side heat-conducting plate of bottom surface heat-conducting plate.
Not fusing at bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, (promptly left side heat-conducting plate, right side heat-conducting plate directly are not connected with the bottom surface heat-conducting plate, but be separated with the relatively poor material of heat conductivility) situation under, on bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, be equipped with evaporation tubes, evaporation tubes can be located at the inside of bottom surface heat-conducting plate, left side heat-conducting plate, right side heat-conducting plate, also can be bonded on the right flank of left surface, right side heat-conducting plate of lower surface, the left side heat-conducting plate of bottom surface heat-conducting plate.
When needing to place a plurality of beverage groove in the space in the evaporator body, preferred above-mentioned refrigeration evaporator seat also comprises heat conduction baffle, and the lower end of heat conduction baffle is connected with the bottom surface heat-conducting plate.Heat conduction baffle is separated into a plurality of parts with the space in the evaporator body, and quantity, size and the shape of the beverage groove that place as required the quantity of heat conduction baffle and position determined.After being placed into the beverage groove in the space in the evaporator body, the sidewall of beverage groove contacts with dividing plate, because the lower end of heat conduction baffle is connected with the bottom surface heat-conducting plate, therefore the cold of bottom surface heat-conducting plate can be discharged in beverage groove and the beverage wherein through heat conduction baffle, that is to say that the heat conduction baffle auxiliary evaporator cools to beverage groove and beverage wherein.
In a kind of specific embodiments, above-mentioned refrigeration evaporator seat is provided with a heat conduction baffle, heat conduction baffle is divided into left and right two parts with the space in the evaporator body, the left and right two parts in above-mentioned space can be placed a beverage groove respectively, the right side that is placed on the beverage groove in the left half of above-mentioned space contacts with heat conduction baffle, and the left side that is placed on the beverage groove of above-mentioned space right half contacts with heat conduction baffle.
Above-mentioned bottom surface heat-conducting plate, left side heat-conducting plate, right side heat-conducting plate and heat conduction baffle adopt the good material (as metal material, alloy material) of heat conductivility to make.
In order further to reduce the loss of cold, strengthen the cold-storage ability of beverage, cut down the consumption of energy, be coated with heat-insulation layer on the outer surface of preferred above-mentioned evaporimeter.Heat-insulation layer wraps evaporator body and evaporation tubes, can significantly reduce the heat exchange between evaporimeter, beverage groove and beverage and the outside air, reduces the loss of cold.Heat-insulation layer adopts the material (as polyurethane foam material) of heat conductivility difference to make.
In the utility model, bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate constitute three chill surfaces of refrigeration evaporator seat, on the one hand, three chill surfaces cool to beverage groove and beverage wherein simultaneously, because heat-conducting area is big, thereby refrigerating speed is fast, good refrigeration effect; On the other hand, three chill surfaces wrap the beverage groove from three bread, reduce beverage groove and the beverage wherein and the heat exchange of outside air, reduce the loss of cold, strengthen the cold-storage ability of beverage, cut down the consumption of energy, and save electric energy.In addition, when the beverage groove is installed, only needs directly the beverage groove to be put into the refrigeration evaporator seat and get final product, more convenient.
Description of drawings
Accompanying drawing is the structural representation of the utility model preferred embodiment.
The specific embodiment
As shown in drawings, the refrigeration evaporator seat of this cold drink machine comprises evaporimeter, heat conduction baffle 1 and heat-insulation layer 2.
Evaporimeter comprises evaporator body and evaporation tubes 3.Evaporator body comprises bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and right side heat-conducting plate 6; The lower end of left side heat-conducting plate 5 connects the left side of bottom surface heat-conducting plate 4, and the lower end of right side heat-conducting plate 6 connects the right side of bottom surface heat-conducting plate 4, and bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and right side heat-conducting plate 6 fuse.Evaporation tubes 3 is located at the inside of evaporator body, and in the present embodiment, the inside of bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and right side heat-conducting plate 6 is equipped with evaporation tubes 3.
The lower end of heat conduction baffle 1 is connected with bottom surface heat-conducting plate 4, heat conduction baffle 1 is divided into left and right two parts with the space in the evaporator body (promptly in above the bottom surface the heat-conducting plate 4 and space between left side heat-conducting plate 5 and right side heat-conducting plate 6), and the left and right two parts in above-mentioned space are respectively applied for places left side beverage groove 7 and right side beverage groove 8.
Bottom surface heat-conducting plate 4, left side heat-conducting plate 5, right side heat-conducting plate 6 and heat conduction baffle 1 adopt the good material (as metal material, alloy material) of heat conductivility to make.
Heat-insulation layer 2 covers on the outer surface of evaporimeter, that is to say, all is coated with heat-insulation layer 2 on the left surface of the lower surface of bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and the right flank of right side heat-conducting plate 6.Heat-insulation layer 2 adopts the material (as polyurethane foam material) of heat conductivility difference to make.
The outside of heat-insulation layer 2 is shells 9 of refrigeration evaporator seat.
Brief description is the operation principle of this refrigeration evaporator seat once:
When this refrigeration evaporator seat uses, in the space that left side beverage groove 7 and right side beverage groove 8 are placed in the evaporator body, wherein bottom, left side and the right side of left side beverage groove 7 contact with bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and heat conduction baffle 1 respectively, and bottom, left side and the right side of right side beverage groove 8 contacts with bottom surface heat-conducting plate 4, heat conduction baffle 1 and right side heat-conducting plate 6 respectively; Add beverage in beverage groove 7 and the right side beverage groove 8 to the left then.Evaporimeter in the refrigeration evaporator seat is connected in the refrigerating plant, and evaporimeter is the equipment of output cold; Refrigerating plant can adopt following structure, and compressor is connected with condenser, and condenser is connected with evaporation tubes 3 by capillary, and evaporation tubes 3 is connected with compressor; The structure of refrigerating plant and operation principle are well-known to those skilled in the art, are not described in detail at this.
During work, evaporation tubes 3 flows to bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and right side heat-conducting plate 6 with cold, and bottom surface heat-conducting plate 4 flows to heat conduction baffle 1 with cold; Bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and heat conduction baffle 1 flow to left side beverage groove 7 and beverage wherein with cold, absorb the heat of left side beverage groove 7 and beverage wherein, and the beverage in the left side beverage groove 7 is cooled; Bottom surface heat-conducting plate 4, heat conduction baffle 1 and right side heat-conducting plate 6 flow to right side beverage groove 8 and beverage wherein with cold, absorb the heat of right side beverage groove 8 and beverage wherein, and the beverage in the right side beverage groove 8 is cooled.
Three chill surfaces such as bottom surface heat-conducting plate 4, left side heat-conducting plate 5 and right side heat-conducting plate 6 wrap two beverage grooves (i.e. left side beverage groove 7 and right side beverage groove 8) from three bread, and heat-insulation layer 2 wraps bottom surface heat-conducting plate 4, left side heat-conducting plate 5, right side heat-conducting plate 6 and evaporation tubes 3, can reduce the loss of cold, strengthen the cold-storage ability of beverage.
In other embodiments, evaporation tubes also can be bonded on the outer surface of evaporator body, specifically: can adopt the good binding material of the heat conductivility binding agent of metal dust (as contain) that evaporation tubes is bonded on the outer surface of evaporator body, also evaporation tubes can be welded on the outer surface of evaporator body, also can adopt the good connector of heat conductivility (as metal connecting piece) that evaporation tubes is fixed on the outer surface of evaporator body.The outer surface of above-mentioned evaporator body is made up of the lower surface of bottom surface heat-conducting plate, the left surface of left side heat-conducting plate and the right flank of right side heat-conducting plate.
In other embodiments, under the situation that bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate fuse, also can only be provided with evaporation tubes on one or two in three heat-conducting plates such as bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, this moment is by the conduction of the heat between these three heat-conducting plates, the heat-conducting plate that evaporation tubes is not set can be lowered the temperature equally, and beverage groove and beverage are wherein cooled.

Claims (3)

1, a kind of refrigeration evaporator seat of cold drink machine comprises evaporimeter, it is characterized in that: described evaporimeter comprises evaporator body and evaporation tubes; Evaporator body comprises bottom surface heat-conducting plate, left side heat-conducting plate and right side heat-conducting plate, and the left side heat-conducting plate is installed in the left side of bottom surface heat-conducting plate, and the right side heat-conducting plate is installed in the right side of bottom surface heat-conducting plate; Evaporation tubes is located at the inside of evaporator body or is bonded on the outer surface of evaporator body.
2, the refrigeration evaporator seat of cold drink machine according to claim 1 is characterized in that: described refrigeration evaporator seat also comprises heat conduction baffle, and the lower end of heat conduction baffle is connected with the bottom surface heat-conducting plate.
3, the refrigeration evaporator seat of cold drink machine according to claim 1 and 2 is characterized in that: be coated with heat-insulation layer on the outer surface of described evaporimeter.
CN2009201551186U 2009-05-11 2009-05-11 Refrigeration evaporating base of cold drink machine Expired - Fee Related CN201421235Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201551186U CN201421235Y (en) 2009-05-11 2009-05-11 Refrigeration evaporating base of cold drink machine

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Application Number Priority Date Filing Date Title
CN2009201551186U CN201421235Y (en) 2009-05-11 2009-05-11 Refrigeration evaporating base of cold drink machine

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014059500A1 (en) * 2012-10-16 2014-04-24 Whirlpool S.A. Thermal transfer system for liquids by direct mean, and reservoir provided with direct thermal transfer system for liquid
CN106108666A (en) * 2016-08-29 2016-11-16 珠海格力电器股份有限公司 Refrigerant tank assembly and water dispenser
CN106166032A (en) * 2016-08-24 2016-11-30 珠海格力电器股份有限公司 Cold canister assembly and water dispenser
CN107367105A (en) * 2016-05-11 2017-11-21 富士电机株式会社 Freezer

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014059500A1 (en) * 2012-10-16 2014-04-24 Whirlpool S.A. Thermal transfer system for liquids by direct mean, and reservoir provided with direct thermal transfer system for liquid
CN107367105A (en) * 2016-05-11 2017-11-21 富士电机株式会社 Freezer
CN106166032A (en) * 2016-08-24 2016-11-30 珠海格力电器股份有限公司 Cold canister assembly and water dispenser
CN106108666A (en) * 2016-08-29 2016-11-16 珠海格力电器股份有限公司 Refrigerant tank assembly and water dispenser

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C14 Grant of patent or utility model
GR01 Patent grant
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: 20100310

Termination date: 20160511