CN1752677A - Refrigerator - Google Patents

Refrigerator Download PDF

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Publication number
CN1752677A
CN1752677A CN 200510108995 CN200510108995A CN1752677A CN 1752677 A CN1752677 A CN 1752677A CN 200510108995 CN200510108995 CN 200510108995 CN 200510108995 A CN200510108995 A CN 200510108995A CN 1752677 A CN1752677 A CN 1752677A
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China
Prior art keywords
temperature
compressor
dewfall
pattern
make
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Granted
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CN 200510108995
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Chinese (zh)
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CN100378415C (en
Inventor
仁木茂
谷口一寿
菊地宣博
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Toshiba Corp
Toshiba Lifestyle Products and Services Corp
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Toshiba Corp
Toshiba Consumer Marketing Corp
Toshiba Home Appliances Corp
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Publication of CN1752677A publication Critical patent/CN1752677A/en
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Publication of CN100378415C publication Critical patent/CN100378415C/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2400/00General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
    • F25D2400/30Quick freezing

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  • Engineering & Computer Science (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)

Abstract

To provide a refrigerator capable of preventing dew condensation in a cabinet even if using a quick freezing mode. This refrigerator is provided with the cabinet 2 with a freezing storage chamber 6 disposed, and a variable speed type compressor 41 for allowing a refrigerant to flow to a refrigerating cycle 40 connecting a condenser 42 to a cooler 48 embedded in the cabinet 2 to cool the freezing storage chamber 6 and an antisweating pipe 43 embedded in the cabinet 2 to prevent dew condensation on an external wall. After the completion (te) of the quick freezing mode operation of operating the compressor 41 by high speed rotation to quickly cool the freezing storage chamber 6, operation is shifted to an antisweating mode (td-te) of operating the compressor 41 by low speed rotation.

Description

Refrigerator
Technical field
The present invention relates to have the refrigerator that makes the IQF pattern that refrigerating chamber cools off rapidly.
Background technology
In the past, a kind of refrigerator with IQF pattern is arranged on market, this IQF pattern is when wanting to make the food IQF or when wanting rapid ice making, by the IQF switch that is equipped on the shop front is carried out the ON operation, make the rotating speed of compressor and box fan be higher than common rotating speed, thereby the specification when making refrigerating chamber, ice-making compartment or setting the cryogenic temperature district is switched chamber (chamber keeps in cold storage) and is cooled off (for example, patent documentation 1) rapidly.
[patent documentation 1] Japan Patent spy opens the 2004-3867 communique
Yet, in recent years,,, for example be cooled to-30 ℃~-40 ℃ low temperature in the refrigerating chamber storeroom in case use the IQF pattern owing to improved refrigerating capacity, because of with the temperature difference of outer temperature degree, tend on the outer wall of cell, dewfall take place.This occasion, if make compressor operation, then the refrigerant flow direction of high temperature is embedded in the dew eliminating tube in the outer wall, make outside wall temperature raise, for example more than 20 ℃, so can prevent dewfall.But, after finishing, the IQF pattern enters common cooling running, because of arrive the ON temperature of compressor, for example-18 ℃ before compressor stop, so as mentioned above, keep in cold storage indoor being cooled to-30 ℃~about-40 ℃, the ON temperature that wants to make room temperature arrive compressor needs for a long time, because of existing from indoor heat leakage, the outer wall of cell is in 20 ℃ of low temperature, for example less thaies, can not avoid the generation of dewfall.
Summary of the invention
In view of the above problems, the object of the invention is, even the refrigerator that adopts the IQF pattern also can prevent the cell dewfall is provided.
To achieve these goals, refrigerator of the present invention comprises: the cell that is equipped with the chamber that keeps in cold storage; With condensing machine, be embedded in the described cell variable speed type compressor that makes flow of refrigerant in the freeze cycle that couples together with the dew eliminating tube that prevents the outer wall dewfall, the cooler that makes the cooling of the described chamber of keeping in cold storage, it is characterized in that, make described compressor operation to run up, after IQF mode operation that the described chamber of keeping in cold storage is cooled off rapidly finishes, enter with low speed rotation and make the dewfall of described compressor operation prevent pattern.
Adopt foregoing invention, after the IQF mode operation finishes, even the chamber of keeping in cold storage is in low-temperature condition, rotate by the mandatory compressor that makes, make the refrigerant flow direction dew eliminating tube of high temperature, the outer wall of cell is heated, can prevent dewfall, and, because of low speed rotation, so can suppress unnecessary power consumption.
Description of drawings
Fig. 1 is the timetable of expression one embodiment of the invention.
Fig. 2 is the timetable of expression another embodiment of the present invention.
Fig. 3 is the longitudinal section of expression refrigerator of the present invention.
Fig. 4 is the skeleton diagram of freeze cycle of the refrigerator of presentation graphs 3.
The specific embodiment
One embodiment of the invention are illustrated.Fig. 3 is the longitudinal section of refrigerator of the present invention.As shown in the figure, refrigerator body 1 is a kind of following structure: filling in the cell 2 of heat-barrier material between outer container and interior case, begins from the upper strata to have successively: cold storage room is that refrigerating chamber 3, vegetable compartment 4, the chamber of keeping in cold storage are that refrigerating chamber 6 and the specification that becomes the chamber that keeps in cold storage when design temperature is altered to the cryogenic temperature district are switched chamber 5.In addition, make special diagram, the side in specification switching chamber 5 is being set up in parallel the ice-making compartment as the chamber that keeps in cold storage.In the front openings portion of body 1, begin to set gradually door 7~10 from the upper strata, open and close respectively and freely each storeroom 3~6 is closed.
Refrigerating chamber 3 and vegetable compartment 4 are separated by dividing plate 11, according to the detected temperatures of the refrigeration that is installed on refrigerating chamber 3 back sides with temperature sensor 54 (hereinafter referred to as the R sensor), remain in respectively in the humidity province of about 1~5 degree.Refrigeration is set at the back side of refrigerating chamber 3 (, refrigeration fan 18 (hereinafter referred to as the R fan) is set at an upper portion thereof hereinafter referred to as R cooler (Japanese: R エ バ)) with cooler 46.During these R fan 18 rotations, supply with the cold air that is generated by R cooler 46 to refrigerating chamber 3 and make indoor cooling, make vegetable compartment 4 coolings simultaneously, the cold air after cooling finishes returns R cooler 46 again and cools off.
On the other hand, specification is switched chamber 5, refrigerating chamber 6 and ice-making compartment and is separated by thermal wall 16, refrigerating chamber 6 is maintained at according to the freezing detected temperatures with temperature sensor 55 (hereinafter referred to as the F sensor) that is installed on the back side in-18~-27 ℃ the humidity province, and specification switching chamber 5 is controlled to the form that remains in all temps district that is set.At the back side that specification is switched chamber 5 and refrigerating chamber 6, be provided with to set for and (, refrigerating chamber be set at an upper portion thereof with fan 19 (hereinafter referred to as the F fan) hereinafter referred to as F evaporimeter (Japanese: F エ バ)) with evaporimeter 48 than the low refrigerating chamber of the evaporating temperature of R cooler 46.During these F fan 19 runnings, supply with the cold air that is generated by F evaporimeter 48 to specification switching chamber 5, ice-making compartment and refrigerating chamber 6 and make each chamber cooling, the cold air after the cooling end is cooled off by F evaporimeter 48 again.The Defrost heater of being made up of the tube heater of carrying out defrosting 20 is set on F evaporimeter 48 again.
Vegetable compartment 4, specification switch chamber 5 and refrigerating chamber 6 is separated by thermal wall 17, and refrigerating chamber 3 and vegetable compartment 4, specification are switched the mobile independently respectively cold air of chamber 5, ice-making compartment and refrigerating chamber 6.
Bottom, the back side at body 1 is provided with Machine Room 30, and inside is provided with the outer temperature degree sensor 53 of compressor 41, the condenser 42 of variable speed type, the radiator fan 31 (hereinafter referred to as the C fan) that makes its heat radiation and the outer temperature degree of detection.30 the back side is provided with control device 50 in the Machine Room, and this device is controlled according to the detected temperatures of outer temperature degree sensor 53, R sensor 54, F sensor 55 etc., to each electric component supply power.
Front lower at refrigerating-chamber door 7 sets guidance panel 13, on this guidance panel 13, has by pressing operation and exports input signal to control device 50 and switch to the IQF switch 14 of IQF pattern described later.
Freeze cycle 40 of the present invention is shown in Figure 4 as skeleton diagram, discharge side at compressor 41, be equipped with condenser 42 and dew eliminating tube 43 that condensing cold-producing medium is used, this dew eliminating tube 43 is embedded on the outer wall of cell 2, be the front of facies digitales dorsales manus, side, front and arrival dividing plate 11, thermal wall 16,17, to prevent the outer wall dewfall herein.The downstream of this dew eliminating tube 43 is connected with transfer valve 44 as the adjusting switching device shifter of flow or stream, one side of the outlet side of transfer valve 44 is connected in freezing pipe arrangement with capillary 47 (hereinafter referred to as the F capillary), F evaporimeter 48, accumulator 49 with being linked in sequence, and the opposing party is connected with the pipe arrangement that is connected in the 2nd capillary 45 (hereinafter referred to as the R capillary), R cooler 46.The outlet side pipe arrangement of R cooler is connected with the entrance side of F evaporimeter 48, and the outlet side pipe arrangement of accumulator 49 is connected with the suction side of compressor 41.
In the outlet pipe arrangement of R cooler 46, the refrigeration defrosting sensor 51 (hereinafter referred to as the RD sensor) of the pipe arrangement temperature that detects R cooler 46 is installed, in accumulator 49, the freezing defrosting sensor 52 (hereinafter referred to as the FD sensor) of using of the outlet side pipe arrangement temperature that detects F evaporimeter 48 is set.
Below common refrigerating mode is illustrated.Common refrigerating mode is a kind of pattern that R refrigerating mode and F refrigerating mode carry out each chamber cooling of alternately switching, the R refrigerating mode is that ON temperature that the detected temperatures at R sensor 54 rises to compressor 41 makes transfer valve 44 actions when for example being 5 ℃, so that refrigerant flow direction R cooler 46 sides, refrigerating chamber 3 and vegetable compartment 4 are cooled off, the R refrigerating mode then is ON temperature operation transfer valve 44 during for example for-18 ℃ that the detected temperatures at F sensor 55 becomes compressor 41, so that refrigerant flow direction F evaporimeter 48 sides are cooled off refrigerating chamber 6 grades.In addition, because of needing to make storeroom to be cooled to bottom line in the cooling, so even carry out the storeroom arrival ON temperature of cooling, when for example being 20 minutes and F refrigerating mode at the appointed time during the R refrigerating mode be during 40 minutes in, do not switch refrigerating mode.
Specifically, during the R refrigerating mode, 18 rotations of R fan, to refrigerating chamber 3 cool-air feeds, F fan 19 shuts down.During the F refrigerating mode, F fan 19 rotation, to refrigerating chamber 6 cool-air feeds such as grade, 18 rotations of R fan arrive set point of temperature for example till 3 ℃ until the detected temperatures of RD sensor 51, are used for the defrosting of R cooler 46.Like this, by the switching of hocket successively R refrigerating mode and F refrigerating mode, refrigerating chamber 3, vegetable compartment 4 and switching chamber 5, ice-making compartment, refrigerating chamber 6 are remained on suitable temperature.
Compressor 41, temperature difference according to the detected temperatures of the design temperature of each chamber and R sensor 54 or F sensor 55 decides speed to be rotated, when carrying out the storeroom no show ON temperature of cooling, stop the rotation when the arrival OFF temperature of the storeroom in the cooling.C fan 31 can make rotary speed change with the synchronization ground of compressor 41, along with compressor 41 stops and stopping.
Defrosting mode to F evaporimeter 48 is illustrated below.Defrosting mode is, after thinking that by the frosting of F evaporimeter 48 running cumulative time of cycle, for example compressor 41 of cooling running of the regulation that cooling performance is descending was through 8 hours, the pattern that enters in moment of the F refrigerating mode that is through with and from common refrigerating mode.In addition, before being about to enter defrosting mode,, the end setup temperature of F refrigerating mode is descended, carry out the pre-blowdown firing that forcibly makes cooling such as refrigerating chamber 6 grades for the temperature of refrigerating chamber 6 grades that suppress to cause because of defrosting rises.
After entering defrosting mode, defrost to Defrost heater 20 energisings, in a single day the detected temperatures of FD sensor 52 arrives for example 10 ℃ of defrosting end temps, and the energising of then interdicting Defrost heater 20 is to remove defrosting mode.Then, for pressure balance of making freeze cycle etc., with compressor 41 stop set point of temperature, for example through 6 fens clock times, enter common refrigerating mode again.
Below with reference to Fig. 1 the IQF pattern is described.The IQF pattern is a kind of when operation IQF switch 14, then enters immediately in the common refrigerating mode if belong in defrosting mode or the pre-blowdown firing then reentrant pattern after defrosting mode finishes if belong in the timing of t0.
During the IQF pattern, because of the food that is stored in refrigerating chamber 6 grades cools off rapidly, so, irrespectively make compressor 41 rotation at a high speed, for example turn round with the 63Hz speed with temperature in the storeroom when the F refrigerating mode enters.At this moment, F fan 19 and C fan 31 be at a high speed rotation also, thus increased the supply of cold air, the raising radiating effect, execution be to cool off rapidly.
In this cooling, arrive the occasion of ON temperature when the indoor temperature of refrigerating chamber 3, if continue to make the chamber of keeping in cold storage cooling, then refrigerating chamber 3 and vegetable compartment 4 can become high temperature, so after the ta timing, enter the R refrigerating mode, make the cold storage room cooling,, then after the tb timing, reenter the F refrigerating mode in case the storage indoor temperature arrives the OFF temperature.In addition,, also can make the temperature in the storeroom arrive the OFF temperature fast, enter the F refrigerating mode by making compressor 41 runnings to rotate at a high speed even enter the R refrigerating mode.
The IQF pattern, the moment that is entering from this pattern, predefined setting-up time for example 120 minutes or user after time of setting or arrived in advance the indoor temperature of refrigerating chamber 6 has been made the temperature set for example-30 ℃ the time have been passed through, think and the indoor cooling rapidly of fully having carried out finish its running.
Dewfall to one embodiment of the invention prevents pattern illustrated below.Dewfall prevents pattern, is made up of the 1st stipulated time and the 2nd stipulated time, enters after regularly at tc that the IQF pattern finishes, and in the present embodiment, the 1st stipulated time was exactly 20 minutes, with common the same control of refrigerating mode.
In general, even carry out common refrigerating mode, after the IQF pattern finishes, if the indoor temperature no show ON temperature of refrigerating chamber 3, because of refrigerating chamber 6 is in below the OFF temperature, so compressor 41 becomes halted state.Like this,, be meant to drop at this dewfall takes place below 20 ℃, at td back compulsory execution F refrigerating mode regularly because of heat leak though the outside wall temperature of cell 2 might drop to the close dew temperature of wait being measured by experiment.
This occasion, different with common F refrigerating mode, compressor 41 low speed rotation for example turn round with the 30Hz speed.
After the IQF mode operation finishes, because of the chamber that keeps in cold storage sufficiently cooled, so do not need continuation to cool off again, but if compressor 41 does not rotate, then the refrigerant gas of high temperature does not flow to dew eliminating tube 43, and the outer wall of cell 2 is not heated, because of heat leakage is cooled off, dewfall can take place.For this reason,, make refrigerant gas flow to dew eliminating tube 43, cell 2 is heated, can prevent the generation of dewfall by forcibly making compressor 41 rotations.Again,, invalid supercooling can be prevented, electrification can be realized economizing again by low speed rotation.And, by using the F refrigerating mode, though supercooling, can be 4 not different, make food freezing and bad phenomenon takes place with refrigerating chamber 3 and vegetable compartment yet.
After the IQF pattern finishes, even without the 1st stipulated time, also can make compressor 41 low speed rotation prevent dewfall as mentioned above, but because of the outer wall of cell 2 is heated in the IQF pattern, so even compressor 41 stops, wanting to make outside wall temperature to drop to close dew temperature and need to a certain degree time.Therefore, by being set for the time weak point that arrives close dew temperature than the outside wall temperature of the cell of being measured by experiment 2 the 1st stipulated time, can prevent dewfall reliably, and, in the 1st stipulated time, do not carry out the low speed rotation of enforceable compressor 41, so can prevent invalid cooling, realize economizing electrification.
On the other hand, prevent in the pattern, C fan 31 is stopped in dewfall.This and following purpose are promptly usually with compressor 41 rotation synchronously the time, and the purpose that the outer wall that the refrigerant gas temperature that flows to dew eliminating tube 43 is descended make cell 2 because of condenser 42 and compressor 41 heat radiations is heated plays reverse effect.For this reason,, can make the refrigerant gas that more increases temperature flow to dew eliminating tube 43 by in advance C fan 31 being stopped, can be more reliably and prevent dewfall effectively.
Dewfall prevent pattern be behind the mandatory F of the entering refrigerating mode td regularly, regularly remove the back at the te that passed through for the 2nd stipulated time, enter common refrigerating mode.The 2nd stipulated time be from rise with the temperature of the chamber that keeps in cold storage and the relation of the temperature of cell 2, wait stopping also not drop to behind the compressor 41 time of the time institute's instrumentation below the close dew temperature by experiment, be meant 10 minutes here.
Therefore, usually after passing through for the 2nd stipulated time, dewfall is prevented mode release, can prevent dewfall reliably, and, if make compressor 41 keep the state of low speed rotation to remain in operation, even can prevent that then the indoor temperature of refrigerating chamber 6 from arriving the ON temperature and also not cooling off this bad phenomenon, can carry out cooling thereafter effectively.
Other embodiment is described below with reference to Fig. 2.In the present embodiment, the dewfall that enters after the tf timing prevents in the pattern, when the indoor temperature of refrigerating chamber 3 arrives the ON temperature, enters the R refrigerating mode after the tg timing.Even this is for the not mandatory F of entering refrigerating mode also can make compressor 41 rotations cool off refrigerating chamber 3 grades by entering the R refrigerating mode, thereby makes the refrigerant gas of high temperature flow to the cause that dew eliminating tube 43 prevents dewfall.This occasion according to the cooling requirement of refrigerating chamber 3, because of entering the R refrigerating mode fast, becomes high temperature so also can prevent refrigerating chamber 3 and vegetable compartment 4.
Make the indoor temperature of refrigerating chamber 3 arrive the occasion of OFF temperature entering the R refrigerating mode,, then after the th timing, enter dewfall and prevent pattern if be in the 1st stipulated time and the 2nd stipulated time.Even this is because the R refrigerating mode finishes, enters the F refrigerating mode in the 1st stipulated time and the 2nd stipulated time, if refrigerating chamber 6 no show ON temperature, then, compressor 41 drops to cause below the close dew temperature because of not turning round, may make the outside wall temperature of cell 2.
Therefore, as mentioned above, prevent pattern,, also can compressor 41 be turned round in the district, thereby can prevent dewfall reliably in the time that dewfall might take place even the duration of runs of R refrigerating mode is short by entering dewfall.
The following describes another embodiment, in the present embodiment, the room temperature that keeps in cold storage when the 1st stipulated time or the 2nd stipulated time are finished according to the IQF mode operation changes.In having passed through the embodiment that behind the setting-up time IQF pattern is finished, load difference because of food, indoor temperature when IQF pattern sometimes finishes has notable difference, when indoor temperature is high, even passed through the 1st stipulated time or the 2nd stipulated time, little with the temperature difference of outer temperature degree, dewfall can not take place.For this reason, in the present embodiment, when the temperature of the chamber that keeps in cold storage when the running of IQF pattern finishes is high, by the 1st stipulated time or the 2nd stipulated time are shortened to for example 15 minutes or 5 minutes, can prevent dewfall reliably, and, common refrigerating mode can be entered fast.Certainly, when the temperature of storeroom is hanged down, also can prolong the 1st stipulated time or the 2nd stipulated time.
In addition, said structure is one embodiment of the invention, can do various changes.Freeze cycle 40 is not limited to structure illustrated in the present embodiment, also can adopt the so-called parallel circulations that R cooler 46 and F evaporimeter 48 is connected side by side and sets the circulation of 2 joint compressors or use single cooler to make 1 cooler circulation that refrigerating chamber 3 and refrigerating chamber 6 cool off etc.And the rotary speed of the 1st stipulated time, the 2nd stipulated time, compressor, close dew temperature etc. preferably suitably change according to the form of refrigerator, again, aspect the relation of outer temperature degree, also preferably can suitably change.
Utilizability on the industry
The present invention can be adapted to have the various refrigerators of IQF pattern.

Claims (8)

1. a refrigerator comprises: the cell that is equipped with the chamber that keeps in cold storage; With condenser, be embedded in the described cell in the freeze cycle that couples together with the dew eliminating tube that prevents the outer wall dewfall, the cooler that makes the cooling of the described chamber of keeping in cold storage, make the variable speed type compressor of flow of refrigerant, it is characterized in that, make described compressor operation to run up, after IQF mode operation that the described chamber of keeping in cold storage is cooled off rapidly finishes, enter with low speed rotation and make the dewfall of described compressor operation prevent pattern.
2. a refrigerator comprises: be equipped with cold storage room and the cell of the chamber that keeps in cold storage; With condenser, be embedded in the described cell to prevent the dew eliminating tube of outer wall dewfall, the refrigeration that makes the cooling of the described cold storage room and the chamber of keeping in cold storage independently of one another is with cooler and the freezing cooler of using, in the freeze cycle that the transfer valve that the refrigerant flow that flows to these coolers or stream are changed couples together, make the variable speed type compressor of flow of refrigerant, it is characterized in that, in order to make the described freezing described transfer valve action that makes with the cooler side of refrigerant flow direction, make described compressor operation to run up, after the IQF mode operation that the described chamber of keeping in cold storage is cooled off rapidly finishes, under the situation that described transfer valve is failure to actuate, entering with low speed rotation makes the dewfall of described compressor operation prevent pattern, and, prevent in the pattern in dewfall, when having arrived the ON temperature of compressor, cold storage room removes this pattern when above, make the transfer valve action, so that the described refrigeration of refrigerant flow direction cooler side.
3. refrigerator as claimed in claim 1 or 2 is characterized in that, sets the radiator fan that can make condenser and compressor heat radiation, prevents in the pattern in dewfall, and described radiator fan is stopped.
4. refrigerator as claimed in claim 1 or 2 is characterized in that, the 1st stipulated time or the 2nd stipulated time, the room temperature change that keeps in cold storage when finishing according to the IQF mode operation.
5. refrigerator as claimed in claim 1 or 2, it is characterized in that, when outer temperature degree is in set point of temperature when following, after compressor rotates the stipulated time at a high speed, set the OFF temperature of compressor lower, with according to the rotary speed that temperature difference determined of this design temperature, make compressor operation with the storage indoor temperature.
6. refrigerator as claimed in claim 1 or 2 is characterized in that dewfall prevents pattern, after the running of IQF pattern finishes through the 1st stipulated time enter when above.
7. refrigerator as claimed in claim 6 is characterized in that dewfall prevents pattern, removes when above passing through for the 2nd stipulated time.
8. refrigerator as claimed in claim 2 is characterized in that dewfall prevents in the pattern, when refrigerating chamber is in the ON temperature of compressor when above, in the 2nd stipulated time, make the cold storage room cooling, when the OFF temperature that arrives compressor is following, enters dewfall again and prevent pattern.
CNB2005101089954A 2004-09-24 2005-09-26 Refrigerator Active CN100378415C (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2004278285A JP4364098B2 (en) 2004-09-24 2004-09-24 refrigerator
JP2004278285 2004-09-24

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CN1752677A true CN1752677A (en) 2006-03-29
CN100378415C CN100378415C (en) 2008-04-02

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CN101865591A (en) * 2010-07-08 2010-10-20 合肥美的荣事达电冰箱有限公司 Dew removing tube of refrigerator and refrigerator with same
CN102095270A (en) * 2011-01-17 2011-06-15 合肥美的荣事达电冰箱有限公司 Refrigerating system of air cooling refrigerator and refrigerating method thereof
CN102121780A (en) * 2011-02-16 2011-07-13 合肥美的荣事达电冰箱有限公司 Refrigeration system and refrigerator with same
CN104160224A (en) * 2012-02-29 2014-11-19 松下电器产业株式会社 Refrigerator
US20160178245A1 (en) * 2014-12-23 2016-06-23 Lg Electronics Inc. Refrigerator
CN106642972A (en) * 2016-12-21 2017-05-10 南京创维家用电器有限公司 Control method and system for variable-frequency refrigerator
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CN101865591A (en) * 2010-07-08 2010-10-20 合肥美的荣事达电冰箱有限公司 Dew removing tube of refrigerator and refrigerator with same
CN101865591B (en) * 2010-07-08 2012-11-28 合肥美的荣事达电冰箱有限公司 Dew removing tube of refrigerator and refrigerator with same
CN102095270A (en) * 2011-01-17 2011-06-15 合肥美的荣事达电冰箱有限公司 Refrigerating system of air cooling refrigerator and refrigerating method thereof
CN102121780A (en) * 2011-02-16 2011-07-13 合肥美的荣事达电冰箱有限公司 Refrigeration system and refrigerator with same
CN104160224A (en) * 2012-02-29 2014-11-19 松下电器产业株式会社 Refrigerator
US20160178245A1 (en) * 2014-12-23 2016-06-23 Lg Electronics Inc. Refrigerator
CN105716348A (en) * 2014-12-23 2016-06-29 Lg电子株式会社 Refrigerator
CN105716348B (en) * 2014-12-23 2019-01-15 Lg电子株式会社 Refrigerator
US10907872B2 (en) 2014-12-23 2021-02-02 Lg Electronics Inc. Refrigerator
CN108027193A (en) * 2015-09-11 2018-05-11 松下知识产权经营株式会社 Freezer
CN106642972A (en) * 2016-12-21 2017-05-10 南京创维家用电器有限公司 Control method and system for variable-frequency refrigerator

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