Summary of the invention
Above-mentioned shortcoming for the defrost water treating apparatus that overcomes current refrigerator exists the invention provides a kind of defroster water treatment facilities, and is overheated to prevent the rise parts that bring of temperature by the parts around the defrost water cooling, improves the efficient of refrigeration system.
The technical solution adopted for the present invention to solve the technical problems is:
A kind of defroster water treatment facilities comprises defrost water discharge pipe and Defrost water evaporating pallet, it is characterized in that, described Defrost water evaporating pallet comprises the 1st and the 2nd defrost water storage part; Described the 1st defrost water storage part is recessed to form end face at compressor case by certain depth, is used to store defrost water; The defrost water water conservancy diversion that produces during the defrosting of defrost water discharge pipe handle is to described the 1st defrost water storage part; Described the 2nd defrost water storage part, above-below direction along described compressor case, at the downside of described the 1st defrost water storage part, after compressor case is outwards given prominence to, be bent upwards and extend to form along the compressor periphery, be used to store the defrost water of overflowing from the 1st defrost water storage part.
Aforesaid defroster water treatment facilities wherein at the condenser downside that is positioned at described compressor case one side, is provided for storing the defrost pan of defrost water.
Aforesaid defroster water treatment facilities, wherein at described the 2nd defrost water storage part, formation can allow defrost water flow to the discharge portion of defrost pan.
Aforesaid defroster water treatment facilities, wherein the compressor case below also is provided with the defrost pan that is used to store defrost water.
Description of drawings
The present invention is further described below in conjunction with drawings and Examples.
Fig. 1 is the Machine Room schematic perspective view of current refrigerator.
Fig. 2 is the schematic perspective view of the defroster water treatment facilities of first embodiment of the invention.
Fig. 3 is the compressor vertical view of Fig. 2.
Fig. 4 is the compressor case side direction sectional drawing of Fig. 2.
Fig. 5 is the defroster water treatment facilities schematic perspective view of second embodiment of the invention.
Fig. 6 is the compressor vertical view of Fig. 5.
Fig. 7 is the side direction sectional drawing of the compressor case of Fig. 6.
Fig. 8 is the schematic perspective view of the defroster water treatment facilities of third embodiment of the invention.
Fig. 9 is the compressor vertical view of Fig. 8.
Figure 10 is the side direction sectional drawing of the compressor case of Fig. 9.
The number in the figure explanation:
13: Machine Room 15: the defrost water discharge pipe
21: 25: the 1 defrost water storage parts of compressor case
27: the 2 defrost water storage parts 28: bottom
29: side wall portion
The specific embodiment
Structure same as the prior art among the present invention is represented with identical label.
Shown in Fig. 2,3,4, the back side bottom section of refrigerator main body 11 is formed with Machine Room 13.The inside of Machine Room 13 is provided with compressor 20, and compressor 20 is used for compression refrigerant.Condenser 40 is arranged on a side of compressor 20, allows the refrigerant heat release, makes it that condensation take place.One side of condenser 40 has blowing fan 50, to condenser 40 blowings, promotes the heat radiation of condenser 40.
Compressor 20 is provided with the defroster water treatment facilities of first embodiment of the invention.This treating apparatus evaporates when can allow defrost water 10 cooling compressors 20.
Defroster water treatment facilities of the present invention comprises the 1st defrost water storage part 25, defrost water discharge pipe 15.The 1st defrost water storage part 25 is recessed to form end face at compressor case 21 downwards by certain depth, can store defrost water 10.Defrost water discharge pipe 15 is formed on the end face of Machine Room 13, and defrost water 10 water conservancy diversion that produce during defrosting are to above-mentioned the 1st defrost water storage part 25.
Compressor case 21 is made with metal material usually.End face pressurization by at above-mentioned compressor shell 21 is recessed to form the 1st defrost water storage part 25 downwards by certain depth, allows it and compressor case form one, stores from the defrost water 10 of defrost water discharge pipe 15 drippages of compressor case 21 end faces.
The downside of the 1st defrost water storage part 25 is formed with the 2nd defrost water storage part 27, can store the defrost water of overflowing from the 1st defrost water storage part 25, improves the cooling effect to compressor 20.The 2nd defrost water storage part 27 has bottom 28 and side wall portion 29, and has the section configuration in similar stream.Certain-length is outwards given prominence to from the lateral margin of compressor case 21 in bottom 28, and extends by peripheral direction.Side wall portion 29 has from the bottom that 28 outboard ends are bent upwards, and presses the structure that the peripheral direction of compressor case 21 is extended.
When the refrigerator operation that defrosts, Defrost heater (figure slightly) when connecting power supply, produces defrost water 10.Above-mentioned defrost water 10 drops onto the 1st defrost water storage part 25 and is stored by defrost water discharge pipe 15.The defrost water 10 that is stored in above-mentioned the 1st defrost water storage part 25 is carried out heat exchange with compressor case 21, and in the time of cooling compressor shell 21, the evaporation rate of self is also accelerated.The defrost water 10 of overflowing from the 1st defrost water storage part 25 flows downward along the surface of compressor case 21, compressor case 21 is cooled off, and flow to the 2nd defrost water storage part 27.Cooling compressor shell 21 when evaporation takes place the defrost water that is stored in the 2nd defrost water storage part 27.
Shown in Fig. 5,6,7, the defroster water treatment facilities of second embodiment of the invention comprises the 1st defrost water storage part 25, defrost water discharge pipe the 15, the 2nd defrost water storage part 27, defrost pan 33.The 1st defrost water storage part 25 is recessed to form end face at compressor case 21 downwards by certain depth, can store defrost water 10.Defrost water discharge pipe 15 is formed on the end face of Machine Room 13, and defrost water 10 water conservancy diversion that produce during defrosting are to above-mentioned the 1st defrost water storage part 25.The 2nd defrost water storage part 27 be formed on compressor case 21 around, can store the defrost water of overflowing and flowing downward from the 1st defrost water storage part 25.Defrost pan 33 is arranged on the downside of compressor case, can store defrost water 10.
The downside that the end face of compressor case 21 is formed with the 1st defrost water storage part 25, the 1 defrost water storage parts is formed with the 2nd defrost water storage part 27.The 2nd defrost water storage part has bottom 28 and side wall portion 29, can store the defrost water of overflowing from the 1st defrost water storage part 25.
In addition, the bottom 28 of compressor case 21 is combined with the support 22 that forms one with it.Support 22 is used for supports compressor 20, and is combined with vibration-proof rubber 23, can reduce transfer of vibration.
The downside of vibration-proof rubber 23 is provided with defrost pan 33.The water yield of defrost water 10 is very big and when overflowing the 2nd defrost water storage part, and above-mentioned defrost pan 33 can store the above-mentioned defrost water of overflowing 10.
Here, the 2nd defrost water storage part 27 and defrost pan 33 can use according to kind, characteristic and model of refrigerator and defrost water 10 discharge rates of compressor 20 with being allowed a choice.Such as, the water storage capacity according to the 1st defrost water storage part 25 and the 2nd defrost water storage part 27 can not be provided with defrost pan 33.Also the 1st defrost water storage part 25 and defrost pan 33 can only be set, the 2nd defrost water storage part 27 is not set.
The defrost water that produces during defrosting 10 is by defrost water discharge pipe 15, drops onto the 1st defrost water storage part 25 and is stored.The defrost water 10 that is stored in above-mentioned the 1st defrost water storage part 25 is carried out heat exchange, cooling compressor shell 21 with compressor case 21.Along with defrost water 10 continues drippage, defrost water might be overflowed the 1st defrost water storage part 25.The defrost water 10 of overflowing from the 1st defrost water storage part 25 flows downward along the surface of compressor case 21, compressor case 21 is cooled off, and flow to the 2nd defrost water storage part 27.Cooling compressor shell 21 when evaporation takes place the defrost water that is stored in the 2nd defrost water storage part 27.When the water yield of defrost water 10 is very big, when overflowing the 2nd defrost water storage part 27, the above-mentioned defrost water of overflowing 10 is stored in above-mentioned defrost pan 33.
Shown in Fig. 8,9,10, the defroster water treatment facilities of third embodiment of the invention comprises the 1st defrost water storage part the 25, the 2nd defrost water storage part 27, defrost water discharge pipe 15, defrost pan 34.The 1st defrost water storage part 25 is recessed to form end face at compressor case 21 downwards by certain depth, can store defrost water 10.The 2nd defrost water storage part 27 be formed on compressor case 21 around, can store the defrost water 10 of overflowing from the 1st defrost water storage part 25.Defrost water 10 water conservancy diversion that produce during 15 defrostings of defrost water discharge pipe are to above-mentioned the 1st defrost water storage part 25.Defrost pan 34 is arranged on the downside of condenser 40, can store defrost water 10.
Above-mentioned the 2nd defrost water storage part 27 has bottom 28 and side wall portion 29, and has the section configuration in similar stream.Certain-length is outwards given prominence to from the lateral margin of compressor case 21 in bottom 28, and extends by peripheral direction.Side wall portion 29 has from the bottom that 28 outboard ends are bent upwards, and presses the structure that the peripheral direction of compressor case 21 is extended.Near a side of condenser 40, be formed with discharge portion 30 in the side wall portion 29, discharge portion 30 can allow the defrost water 10 that is stored in the 2nd defrost water storage part 27 flow out to the defrost pan 34 of condenser 40 downsides.Defrost pan 34 inside are provided with condenser 40, and condenser 40 contacts with the defrost water 10 of defrost pan 34 inside, carries out heat exchange.
The defrost water 10 that produces during defrosting drops onto the 1st defrost water storage part 25 by defrost water discharge pipe 15, is stored.Be stored in the defrost water 10 cooling compressor shells 21 in above-mentioned the 1st defrost water storage part 25.The defrost water 10 of overflowing from the 1st defrost water storage part 25 flows downward, and compressor case 21 is cooled off.In the defrost water that flows downward, a part flows to the 2nd defrost water storage part 27, cooling compressor shell 21 when evaporation takes place, and another part flows into defrost pan 34 by discharge portion 30.The defrost water 10 that is stored in defrost pan 34 contacts with condenser 40, carries out heat exchange, promotes the heat radiation of condenser 40, and is evaporated.