JP2016223752A - refrigerator - Google Patents

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Publication number
JP2016223752A
JP2016223752A JP2015113560A JP2015113560A JP2016223752A JP 2016223752 A JP2016223752 A JP 2016223752A JP 2015113560 A JP2015113560 A JP 2015113560A JP 2015113560 A JP2015113560 A JP 2015113560A JP 2016223752 A JP2016223752 A JP 2016223752A
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Prior art keywords
switching
chamber
temperature
storage
refrigerator
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Inventor
西村 晃一
Koichi Nishimura
晃一 西村
平井 剛樹
Tsuyoki Hirai
剛樹 平井
智章 北野
Tomoaki Kitano
智章 北野
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Panasonic Intellectual Property Management Co Ltd
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Panasonic Intellectual Property Management Co Ltd
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Priority to JP2015113560A priority Critical patent/JP2016223752A/en
Priority to CN201680030626.4A priority patent/CN107636408A/en
Priority to PCT/JP2016/002603 priority patent/WO2016194356A1/en
Priority to EP16802798.5A priority patent/EP3306241A4/en
Publication of JP2016223752A publication Critical patent/JP2016223752A/en
Pending legal-status Critical Current

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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
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/06Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection by forced circulation
    • F25D17/08Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection by forced circulation using ducts
    • 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
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • 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
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • 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
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/042Air treating means within refrigerated spaces
    • F25D17/045Air flow control arrangements

Abstract

PROBLEM TO BE SOLVED: To achieve temperature increase as quickly as possible when a temperature of a switch room is switched from a low temperature side to a high temperature side.SOLUTION: Provided is a refrigerator 13 comprising a plurality of switch storage rooms 14, 15, and 16 each capable of switching a temperature of the storage room by a control to open or close a damper, configured such that when a set temperature of the switch storage room 14 is switched from a low temperature side to a high temperature side, a switch storage room damper 20 is closed and heating means 23 within the switch storage room is actuated, and the temperature of the switch storage room 14 can be increases as quickly as possible without heating the other storage rooms by heat of heating means 23 heating the switch storage room 14.SELECTED DRAWING: Figure 1

Description

本発明は、少なくとも一つの貯蔵室の温度を冷凍温度帯から冷蔵温度帯まで切り替え可能な冷蔵庫に関するものである。   The present invention relates to a refrigerator capable of switching the temperature of at least one storage room from a freezing temperature zone to a refrigeration temperature zone.

従来、冷蔵庫は貯蔵室ごとにあらかじめ決められた温度帯があり、冷凍室は冷凍温度帯の範囲内での温度調節、冷蔵室は冷蔵温度帯の範囲内での温度調節のみが可能であった。   Conventionally, refrigerators have a predetermined temperature range for each storage room, freezing rooms can only be adjusted within the freezing temperature range, and refrigerating rooms can only be controlled within the refrigerating temperature range. .

しかしながら、近年、生活形態の多様化などにより、使用者が購入する食材も多様になり、貯蔵室の温度帯を切り替えてそれぞれの温度帯の貯蔵容積を変えたいというニーズも高くなってきた。   However, in recent years, with the diversification of lifestyles, foods purchased by users have become diversified, and there has been an increasing need to change the storage volume of each temperature zone by switching the temperature zone of the storage room.

そのため、貯蔵室の温度帯を冷凍温度帯から冷蔵温度帯、または冷蔵温度帯から冷凍温度帯に切り替えられる冷蔵庫が開発されている。(例えば特許文献1参照)
以下、図面を参照しながら上記従来の冷蔵庫を説明する。
Therefore, refrigerators have been developed that can switch the temperature range of the storage room from the freezing temperature range to the refrigeration temperature range, or from the refrigeration temperature range to the freezing temperature range. (For example, see Patent Document 1)
Hereinafter, the conventional refrigerator will be described with reference to the drawings.

図4には特許文献1に記載されている従来の冷蔵庫を説明する縦断面図を示す。図5には従来の冷蔵庫の切り替え室周辺の正面図を示す。図4及び図5において、冷蔵庫1は、圧縮機2、凝縮器(図示せず)、減圧手段(図示せず)、蒸発器3からなる冷却システム4を備えるとともに、前面の開口部を開閉可能な扉5a、6a、7a、8aにより密閉した冷蔵室5、切替室6、冷凍室7、野菜室8を備えている。   FIG. 4 is a longitudinal sectional view for explaining a conventional refrigerator described in Patent Document 1. In FIG. FIG. 5 shows a front view around the switching room of a conventional refrigerator. 4 and 5, the refrigerator 1 includes a cooling system 4 including a compressor 2, a condenser (not shown), a decompression unit (not shown), and an evaporator 3, and can open and close the front opening. Refrigeration room 5, switching room 6, freezing room 7, and vegetable room 8 sealed with open doors 5 a, 6 a, 7 a and 8 a are provided.

蒸発器3は、冷凍室7背面の冷却室9内に収納されており、上部に冷却ファン10を備えており、蒸発器3で生成された冷気を庫内に循環させる。   The evaporator 3 is housed in a cooling chamber 9 on the back surface of the freezer compartment 7 and includes a cooling fan 10 in the upper part, and circulates the cold air generated by the evaporator 3 in the refrigerator.

また、切替室6背面には冷却ファン10により循環している冷気を切替室6内に導入、遮断する切替ダンパー11を備えるとともに、底面にはヒーター12を備えており、切替室6内を加熱する。   The switching chamber 6 has a switching damper 11 for introducing and shutting off the cold air circulated by the cooling fan 10 in the switching chamber 6 and a heater 12 on the bottom surface for heating the switching chamber 6. To do.

冷蔵庫1の運転時、蒸発器3で生成された冷気は、冷却ファン10により庫内に循環され、各貯蔵室は所定の温度に維持される。   During the operation of the refrigerator 1, the cold air generated by the evaporator 3 is circulated in the cabinet by the cooling fan 10, and each storage chamber is maintained at a predetermined temperature.

この時、切替室6内を設定温度に維持すべく、切替ダンパー11が開閉し、切替室6内への冷気の吹き出しを制御する。   At this time, the switching damper 11 opens and closes in order to maintain the inside of the switching chamber 6 at the set temperature, and controls the blowing of cool air into the switching chamber 6.

ここで、切替室6を冷凍設定から冷蔵設定に変更した時には、ヒーター12に通電し、切替室6内を加熱することにより、いち早く切替室6を冷蔵温度帯とすることができ、貯蔵食品などの品質を保つことができる。   Here, when the switching chamber 6 is changed from the refrigeration setting to the refrigeration setting, the switching chamber 6 can be quickly brought into the refrigeration temperature zone by energizing the heater 12 and heating the inside of the switching chamber 6, and stored foods, etc. Can keep the quality.

特許第3361038号公報Japanese Patent No. 3361038

しかしながら、上記従来の構成ではヒーターに通電されている時に切替ダンパーが開状態になった場合には、ヒーターの熱がダンパーを介して他の貯蔵室へと流れ、熱負荷とな
り、冷蔵庫の消費電力量が高くなるという課題があった。
However, in the above-described conventional configuration, when the switching damper is opened when the heater is energized, the heater heat flows to the other storage chamber via the damper and becomes a heat load, and the power consumption of the refrigerator There was a problem that the amount was high.

また、ヒーターが底面の壁のみを加熱し、自然対流により切替室を加熱しているため、底面ばかりが過熱され、中心温度は目標温度に昇温しにくいという課題があった。   Further, since the heater heats only the bottom wall and heats the switching chamber by natural convection, there is a problem that only the bottom surface is overheated and the center temperature is difficult to raise to the target temperature.

上記従来の課題を解決するために、本発明の冷蔵庫は、断熱壁で区画形成された貯蔵室と、冷却器が収納される冷却室と、冷却室から貯蔵室に冷気を送風する冷却ファンと、冷却室から貯蔵室に連通する吐出風路に設けられたダンパーとを備え、貯蔵室およびダンパーをそれぞれ複数有し、ダンパーの開閉制御により貯蔵室の温度をそれぞれ切替可能とする複数の切替貯蔵室を備えた冷蔵庫において、切替貯蔵室の設定温度を低温側から高温側に切替えた時は、切替貯蔵室用ダンパーを閉じるとともに、切替貯蔵室内の加熱手段を動作させることを特徴とする構成としたものである。   In order to solve the above-described conventional problems, the refrigerator of the present invention includes a storage chamber partitioned by a heat insulating wall, a cooling chamber in which a cooler is accommodated, a cooling fan that blows cool air from the cooling chamber to the storage chamber, and A plurality of switching storages, each having a plurality of storage chambers and dampers, each of which can be switched by controlling opening and closing of the dampers. In the refrigerator provided with a chamber, when the set temperature of the switching storage chamber is switched from the low temperature side to the high temperature side, the switching storage chamber damper is closed and the heating means in the switching storage chamber is operated. It is what.

これにより、ヒーターによる熱はダンパーにより遮断され、他の貯蔵室が加熱されることはなく、消費電力量の増加を抑制することができる。   Thereby, the heat by a heater is interrupted | blocked by a damper, and another store room is not heated, but the increase in power consumption can be suppressed.

また、切替貯蔵室の設定温度を低温側から高温側に切替えた時は、切替貯蔵室以外のダンパーを閉とし、切替貯蔵室用ダンパーを開とし、加熱手段及び冷却ファンを動作させることを特徴とする構成としたものである。   Further, when the set temperature of the switching storage chamber is switched from the low temperature side to the high temperature side, the dampers other than the switching storage chamber are closed, the switching storage chamber damper is opened, and the heating means and the cooling fan are operated. The configuration is as follows.

これにより、いち早く切替室の温度を昇温させることができ、貯蔵物の鮮度の劣化を防ぐことができる。   Thereby, the temperature of a switching chamber can be raised rapidly and deterioration of the freshness of a store thing can be prevented.

本発明の冷蔵庫は、真空断熱材の断熱性能劣化を抑制することができるので、冷蔵庫の断熱性能を向上することができる。   Since the refrigerator of this invention can suppress the heat insulation performance degradation of a vacuum heat insulating material, it can improve the heat insulation performance of a refrigerator.

本発明の実施の形態1及び2による冷蔵庫の縦断面図Vertical sectional view of a refrigerator according to Embodiments 1 and 2 of the present invention 本発明の実施の形態1による冷蔵庫を説明するフローチャートThe flowchart explaining the refrigerator by Embodiment 1 of this invention 本発明の実施の形態2による冷蔵庫を説明するフローチャートThe flowchart explaining the refrigerator by Embodiment 2 of this invention 従来の冷蔵庫の縦断面図Vertical section of a conventional refrigerator 従来の冷蔵庫の切替室近傍の正面図Front view near the switching room of a conventional refrigerator

請求項1に記載の発明は、断熱壁で区画形成された貯蔵室と、冷却器が収納される冷却室と、前記冷却室から前記貯蔵室に冷気を送風する冷却ファンと、前記冷却室から前記貯蔵室に連通する吐出風路に設けられたダンパーとを備え、前記貯蔵室および前記ダンパーをそれぞれ複数有し、前記ダンパーの開閉制御により前記貯蔵室の温度をそれぞれ切替可能とする複数の切替貯蔵室を備えた冷蔵庫において、前記切替貯蔵室の設定温度を低温側から高温側に切替えた時は、前記切替貯蔵室用ダンパーを閉じるとともに、前記切替貯蔵室内の加熱手段を動作させるものであり、切替室を昇温させるヒーターの熱で他の貯蔵室を加熱することがなく、消費電力量の低い冷蔵庫とすることができる。   The invention according to claim 1 includes a storage chamber partitioned by a heat insulating wall, a cooling chamber in which a cooler is accommodated, a cooling fan that blows cool air from the cooling chamber to the storage chamber, and the cooling chamber. A damper provided in a discharge air passage communicating with the storage chamber, and a plurality of switching units each having a plurality of the storage chambers and the dampers and capable of switching the temperature of the storage chambers by controlling the opening and closing of the dampers. In a refrigerator equipped with a storage room, when the set temperature of the switching storage room is switched from a low temperature side to a high temperature side, the switching storage room damper is closed and the heating means in the switching storage room is operated. In addition, it is possible to obtain a refrigerator with low power consumption without heating other storage chambers with the heat of the heater that raises the temperature of the switching chamber.

請求項2に記載の発明は、断熱壁で区画形成された貯蔵室と、冷却器が収納される冷却室と、前記冷却室から前記貯蔵室に冷気を送風する冷却ファンと、前記冷却室から前記貯蔵室に連通する吐出風路に設けられたダンパーとを備え、前記貯蔵室および前記ダンパーをそれぞれ複数有し、前記ダンパーの開閉制御により前記貯蔵室の温度をそれぞれ切替可能とする複数の切替貯蔵室を備えた冷蔵庫において、前記切替貯蔵室の設定温度を低温側
から高温側に切替えた時は、前記切替貯蔵室以外のダンパーを閉とし、前記切替貯蔵室用ダンパーを開とし、加熱手段及び前記冷却ファンを動作させるものであり、冷却ファンによってヒーターの熱を切替室内に循環させることができ、いち早く切替室の温度を昇温させることができ、保鮮性の高い冷蔵庫とすることができる。
The invention according to claim 2 includes a storage chamber partitioned by a heat insulating wall, a cooling chamber in which a cooler is accommodated, a cooling fan that blows cool air from the cooling chamber to the storage chamber, and the cooling chamber. A damper provided in a discharge air passage communicating with the storage chamber, and a plurality of switching units each having a plurality of the storage chambers and the dampers and capable of switching the temperature of the storage chambers by controlling the opening and closing of the dampers. In the refrigerator having a storage room, when the set temperature of the switching storage room is switched from the low temperature side to the high temperature side, the dampers other than the switching storage room are closed, the switching storage room damper is opened, and heating means And the cooling fan is operated, the heat of the heater can be circulated in the switching chamber by the cooling fan, the temperature of the switching chamber can be quickly raised, and the freshness is high. It can be built warehouse.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の形態によってこの発明が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. The present invention is not limited to the embodiments.

(実施の形態1)
図1は本発明の実施の形態1による冷蔵庫の縦断面図である。図2は本発明の実施の形態1による冷蔵庫の動作を示すフローチャートである。
(Embodiment 1)
FIG. 1 is a longitudinal sectional view of a refrigerator according to Embodiment 1 of the present invention. FIG. 2 is a flowchart showing the operation of the refrigerator according to Embodiment 1 of the present invention.

図1において、冷蔵庫13は、圧縮機2、凝縮器(図示せず)、減圧手段(図示せず)、蒸発器3からなる冷却システム4を備えるとともに、前面の開口部を開閉可能な扉5a、14a、15a、16aにより密閉した冷蔵室5、第一切替室14、第二切替室15、第三切替室16を備えている。   In FIG. 1, a refrigerator 13 includes a cooling system 4 including a compressor 2, a condenser (not shown), a decompression means (not shown), and an evaporator 3, and a door 5 a that can open and close an opening on the front surface. , 14a, 15a, 16a are provided with the refrigerator compartment 5, the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16.

蒸発器3は、第二切替室15背面で、断熱壁17により第二切替室15内と熱的に遮断された冷却室18内に収納されており、上部に冷却ファン10を備えており、蒸発器3で生成された冷気を庫内に循環させる。   The evaporator 3 is housed in a cooling chamber 18 that is thermally insulated from the second switching chamber 15 by the heat insulating wall 17 on the back surface of the second switching chamber 15, and includes the cooling fan 10 in the upper portion. The cold air generated in the evaporator 3 is circulated in the cabinet.

また冷蔵室、第一切替室14、第二切替室15、第三切替室16内には、冷却ファン10により循環している冷気をそれぞれの貯蔵室に導入、遮断する冷蔵室ダンパー19、第一切替ダンパー20、第二切替ダンパー21及び第三切替ダンパー22を備えるとともに、底面には第一ヒーター23、第二ヒーター24及び第三ヒーター25を備えており、それぞれ第一切替室14、第二切替室15、第三切替室16を加熱する。   Further, in the refrigeration chamber, the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16, the refrigeration chamber damper 19 for introducing and shutting off the cold air circulated by the cooling fan 10 to each storage chamber, the first The first switching damper 20, the second switching damper 21, and the third switching damper 22 are provided, and the first heater 23, the second heater 24, and the third heater 25 are provided on the bottom surface. The second switching chamber 15 and the third switching chamber 16 are heated.

さらに、各貯蔵室の温度を制御するために、ぞれぞれの貯蔵室には冷蔵室サーミスタ26、第一サーミスタ27、第二サーミスタ28及び第三サーミスタ29を備えている。   Furthermore, in order to control the temperature of each storage room, each storage room is provided with a refrigerator compartment thermistor 26, a first thermistor 27, a second thermistor 28, and a third thermistor 29.

以上のように構成された冷蔵庫について、以下その動作、作用を説明する。   About the refrigerator comprised as mentioned above, the operation | movement and an effect | action are demonstrated below.

冷蔵庫13運転時、蒸発器3で生成された冷気は、冷却ファン10により庫内に循環され、各貯蔵室は所定の温度に維持される。   During the operation of the refrigerator 13, the cold air generated by the evaporator 3 is circulated in the cabinet by the cooling fan 10, and each storage chamber is maintained at a predetermined temperature.

この時、第一切替室14、第二切替室15及び第三切替室16は第一切替ダンパー20、第二切替ダンパー21、第三切替ダンパー22の開閉により、それぞれマイナス20度前後の冷凍温度帯から5度前後の冷蔵温度帯に維持することが可能である。   At this time, the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16 are opened and closed by the first switching damper 20, the second switching damper 21, and the third switching damper 22, respectively. It is possible to maintain a refrigerated temperature zone around 5 degrees from the belt.

次に、第一切替室14、第二切替室15及び第三切替室16の設定温度を現在の温度よりも高い温度に切り替えた時の動作を、図2のフローチャートに基づいて説明する。   Next, an operation when the set temperature of the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16 is switched to a temperature higher than the current temperature will be described based on the flowchart of FIG.

ここでは説明を簡単にするために、第一切替室14の切替制御に限定して説明するが、第一切替室14、第二切替室15、第三切替室16いずれにおいても同様の動作で同様の効果が得られる。   Here, for the sake of simplicity, the description will be limited to the switching control of the first switching chamber 14, but the same operation is performed in any of the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16. Similar effects can be obtained.

第一切替室14の設定温度を現在の温度より高い温度に切り替えると、制御部(図示せず)により、まず第一切替ダンパー20を閉塞するとともに、第一ヒーター23を通電して第一切替室14内を加熱する。   When the set temperature of the first switching chamber 14 is switched to a temperature higher than the current temperature, the control unit (not shown) first closes the first switching damper 20 and energizes the first heater 23 to perform the first switching. The inside of the chamber 14 is heated.

そして第一サーミスタ27の検出する温度がある一定の値T1を超えると第一ヒーター23への通電を遮断する。   When the temperature detected by the first thermistor 27 exceeds a certain value T1, the power supply to the first heater 23 is cut off.

これにより、第一切替室14の温度を第一ヒーター23により、いち早く目的の温度に昇温させることができるとともに、第一切替ダンパー20が閉となっていることにより、第一切替室14の暖かい暖気が他の貯蔵室に流れることはなく、冷蔵庫13の熱負荷が増加することはない。   As a result, the temperature of the first switching chamber 14 can be quickly raised to the target temperature by the first heater 23, and the first switching damper 20 is closed. Warm warm air does not flow to other storage rooms, and the heat load of the refrigerator 13 does not increase.

尚、本実施の形態において、T1は外気温度、他の貯蔵室の設定温度などによって変動し、例えば外気温度、他の貯蔵室の設定温度が高いほど低い値とすることによって安定した温度制御とすることができる。   In the present embodiment, T1 varies depending on the outside air temperature, the set temperature of the other storage room, and the like. For example, the higher the outside air temperature and the set temperature of the other storage room, the lower the value. can do.

また、本実施の形態において、蒸発器3は第二切替室15背面としたが、蒸発器3の位置はどの貯蔵室内でもよい。また1つの貯蔵室内に収納することにより、ダクトが簡素化され、貯蔵内容積を大きくできるというメリットがある。   Moreover, in this Embodiment, although the evaporator 3 was made into the 2nd switching chamber 15 back surface, the position of the evaporator 3 may be in any storage chamber. Moreover, by accommodating in one storage chamber, there exists a merit that a duct is simplified and a storage internal volume can be enlarged.

また、本実施の形態において、切替室は第一から第三の3室としたが、1室以上であれば同様の効果が得られることは言うまでもない。   Further, in the present embodiment, the switching chambers are the first to third chambers, but it goes without saying that the same effect can be obtained if there are one or more chambers.

また、本実施の形態において、第一ヒーター23、第二ヒーター24及び第三ヒーター25は第一切替室14、第二切替室15及び第三切替室16の底面に備える構成として説明したが、側壁面、天面などに追加することにより昇温速度が速くなるが、消費電力量が高くなるというデメリットもある。   In the present embodiment, the first heater 23, the second heater 24, and the third heater 25 have been described as configurations provided on the bottom surfaces of the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16. By adding to the side wall surface, top surface, etc., the rate of temperature rise increases, but there is a demerit that the amount of power consumption increases.

また、本実施の形態において、第二ヒーター24を断熱壁17表面に備えることにより、第二切替室15が冷蔵設定の時、冷却室18から断熱壁17を介して第二切替室15内が冷やされるのを第二ヒーター24により抑制できるため、断熱壁17の厚さを薄くすることができ、第二切替室15の貯蔵容積を大きくすることができる。   Further, in the present embodiment, by providing the second heater 24 on the surface of the heat insulating wall 17, when the second switching chamber 15 is set to be refrigerated, the inside of the second switching chamber 15 is moved from the cooling chamber 18 through the heat insulating wall 17. Since the cooling can be suppressed by the second heater 24, the thickness of the heat insulating wall 17 can be reduced, and the storage volume of the second switching chamber 15 can be increased.

(実施の形態2)
図3は本発明の実施の形態2による冷蔵庫の動作を示すフローチャートである。
(Embodiment 2)
FIG. 3 is a flowchart showing the operation of the refrigerator according to the second embodiment of the present invention.

切替室14、15、16の設定温度を現在の温度よりも高い温度に切り替えた時の動作を、図3のフローチャートに基づき説明する。   The operation when the set temperature of the switching chambers 14, 15, 16 is switched to a temperature higher than the current temperature will be described based on the flowchart of FIG.

ここでは説明を簡単にするために、第一切替室14の切替制御に限定して説明するが、第一切替室14、第二切替室15、第三切替室16いずれにおいても同様の動作で同様の効果が得られる。   Here, for the sake of simplicity, the description will be limited to the switching control of the first switching chamber 14, but the same operation is performed in any of the first switching chamber 14, the second switching chamber 15, and the third switching chamber 16. Similar effects can be obtained.

第一切替室14の設定温度を現在の温度より高い温度に切り替えると、制御部(図示せず)により、まず冷蔵室ダンパー19、第二切替ダンパー21、第三切替ダンパー22を閉塞、第一切替ダンパー20を開放するとともに、第一ヒーター23を通電し、冷却ファン10を運転する。   When the set temperature of the first switching chamber 14 is switched to a temperature higher than the current temperature, the control unit (not shown) first closes the refrigerator compartment damper 19, the second switching damper 21, and the third switching damper 22, The switching damper 20 is opened, the first heater 23 is energized, and the cooling fan 10 is operated.

そして第一サーミスタ27の検出する温度がある一定の値T1を超えると第一ヒーター23への通電を遮断する。   When the temperature detected by the first thermistor 27 exceeds a certain value T1, the power supply to the first heater 23 is cut off.

これにより、第一切替室14の温度を第一ヒーター23により、より早く目的の温度に昇温させることができるとともに、冷蔵室ダンパー19、第二切替ダンパー21及び第三切替ダンパー22が閉となっていることにより、第一切替室14の暖かい暖気が他の貯蔵
室に流れることはなく、冷蔵庫13の熱負荷が増加することはない。
Thus, the temperature of the first switching chamber 14 can be raised to the target temperature earlier by the first heater 23, and the refrigerator compartment damper 19, the second switching damper 21, and the third switching damper 22 are closed. Thus, the warm warm air in the first switching chamber 14 does not flow to other storage chambers, and the heat load on the refrigerator 13 does not increase.

なお、実施の形態1と実施の形態2は、圧縮機2の運転状態により、場合分けして行うこともできる。すなわち、圧縮機2が運転中(蒸発器3が冷却中)の場合は、実施の形態1の動作を実施し、圧縮機2が停止中(蒸発器3が非冷却中)の場合は、実施の形態2の動作を実施することで、より効率的に第一切替室14の温度を上昇させることができる。   In addition, Embodiment 1 and Embodiment 2 can also be performed according to cases depending on the operation state of the compressor 2. That is, when the compressor 2 is in operation (the evaporator 3 is cooling), the operation of the first embodiment is performed, and when the compressor 2 is stopped (the evaporator 3 is not cooled), the operation is performed. By performing the operation of the second mode, the temperature of the first switching chamber 14 can be increased more efficiently.

さらに、蒸発器3近傍に配置される除霜ヒータ(図示せず)を利用して、第一切替室14の温度を上昇させてもよい。   Furthermore, you may raise the temperature of the 1st switching chamber 14 using the defrost heater (not shown) arrange | positioned in the evaporator 3 vicinity.

本発明の冷蔵庫は、貯蔵室の温度を低温から高温に切り替えた時に、他の貯蔵室の熱負荷を増加させることなく、いち早く昇温させることができるので、貯蔵室の温度を切替可能な冷蔵機器全般に適用可能である。   In the refrigerator of the present invention, when the temperature of the storage room is switched from low temperature to high temperature, the temperature can be quickly raised without increasing the heat load of the other storage room, so that the temperature of the storage room can be switched. Applicable to all devices.

3 蒸発器
10 冷却ファン
13 冷蔵庫
14 第一切替室
14a、15a、16a 扉
15 第二切替室
16 第三切替室
17 断熱壁
18 冷却室
19 冷蔵室ダンパー
20 第一切替ダンパー
21 第二切替ダンパー
22 第三切替ダンパー
23 第一ヒーター
24 第二ヒーター
25 第三ヒーター
26 冷蔵室サーミスタ
27 第一サーミスタ
28 第二サーミスタ
29 第三サーミスタ
DESCRIPTION OF SYMBOLS 3 Evaporator 10 Cooling fan 13 Refrigerator 14 1st switching chamber 14a, 15a, 16a Door 15 2nd switching chamber 16 3rd switching chamber 17 Thermal insulation wall 18 Cooling chamber 19 Refrigeration chamber damper 20 1st switching damper 21 2nd switching damper 22 Third switching damper 23 First heater 24 Second heater 25 Third heater 26 Cold room thermistor 27 First thermistor 28 Second thermistor 29 Third thermistor

Claims (2)

断熱壁で区画形成された貯蔵室と、冷却器が収納される冷却室と、前記冷却室から前記貯蔵室に冷気を送風する冷却ファンと、前記冷却室から前記貯蔵室に連通する吐出風路に設けられたダンパーとを備え、前記貯蔵室および前記ダンパーをそれぞれ複数有し、前記ダンパーの開閉制御により前記貯蔵室の温度をそれぞれ切替可能とする複数の切替貯蔵室を備えた冷蔵庫において、前記切替貯蔵室の設定温度を低温側から高温側に切替えた時は、前記切替貯蔵室用のダンパーを閉じるとともに、前記切替貯蔵室内の加熱手段を動作させることを特徴とする冷蔵庫。 A storage chamber partitioned by a heat insulating wall, a cooling chamber in which a cooler is accommodated, a cooling fan for blowing cool air from the cooling chamber to the storage chamber, and a discharge air passage communicating from the cooling chamber to the storage chamber In the refrigerator having a plurality of switching storage chambers, each having a plurality of the storage chambers and the dampers, each of which can switch the temperature of the storage chambers by opening and closing control of the dampers, When the set temperature of the switching storage chamber is switched from the low temperature side to the high temperature side, the damper for the switching storage chamber is closed and the heating means in the switching storage chamber is operated. 断熱壁で区画形成された貯蔵室と、冷却器が収納される冷却室と、前記冷却室から前記貯蔵室に冷気を送風する冷却ファンと、前記冷却室から前記貯蔵室に連通する吐出風路に設けられたダンパーとを備え、前記貯蔵室および前記ダンパーをそれぞれ複数有し、前記ダンパーの開閉制御により前記貯蔵室の温度をそれぞれ切替可能とする複数の切替貯蔵室を備えた冷蔵庫において、前記切替貯蔵室の設定温度を低温側から高温側に切替えた時は、前記切替貯蔵室以外のダンパーを閉とし、前記切替貯蔵室用ダンパーを開とし、加熱手段及び前記冷却ファンを動作させることを特徴とする冷蔵庫。 A storage chamber partitioned by a heat insulating wall, a cooling chamber in which a cooler is accommodated, a cooling fan for blowing cool air from the cooling chamber to the storage chamber, and a discharge air passage communicating from the cooling chamber to the storage chamber In the refrigerator having a plurality of switching storage chambers, each having a plurality of the storage chambers and the dampers, each of which can switch the temperature of the storage chambers by opening and closing control of the dampers, When the set temperature of the switching storage chamber is switched from the low temperature side to the high temperature side, the dampers other than the switching storage chamber are closed, the damper for the switching storage chamber is opened, and the heating means and the cooling fan are operated. Features a refrigerator.
JP2015113560A 2015-06-04 2015-06-04 refrigerator Pending JP2016223752A (en)

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JP2015113560A JP2016223752A (en) 2015-06-04 2015-06-04 refrigerator
CN201680030626.4A CN107636408A (en) 2015-06-04 2016-05-30 Freezer
PCT/JP2016/002603 WO2016194356A1 (en) 2015-06-04 2016-05-30 Refrigerator
EP16802798.5A EP3306241A4 (en) 2015-06-04 2016-05-30 Refrigerator

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