JPH0569581U - refrigerator - Google Patents

refrigerator

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Publication number
JPH0569581U
JPH0569581U JP866492U JP866492U JPH0569581U JP H0569581 U JPH0569581 U JP H0569581U JP 866492 U JP866492 U JP 866492U JP 866492 U JP866492 U JP 866492U JP H0569581 U JPH0569581 U JP H0569581U
Authority
JP
Japan
Prior art keywords
hydrophilic
refrigerator
evaporation
plate
hydrophilic plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP866492U
Other languages
Japanese (ja)
Inventor
一成 和田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fujitsu General Ltd
Original Assignee
Fujitsu General Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Fujitsu General Ltd filed Critical Fujitsu General Ltd
Priority to JP866492U priority Critical patent/JPH0569581U/en
Publication of JPH0569581U publication Critical patent/JPH0569581U/en
Pending legal-status Critical Current

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  • Removal Of Water From Condensation And Defrosting (AREA)

Abstract

(57)【要約】 【目的】 除霜水を蒸発させるために用いられる親水プ
レートの目詰まりを防ぐ構造を提供することを目的とす
るものである。 【構成】 ドレンホース2の下部には、所定の間隔をあ
けて複数の親水性プレート3、4、5、6を設け、か
つ、これらの親水プレート3、4、5、6は僅かの角度
で傾斜させるとともに、上段の親水プレートからの水滴
を受ける様に、夫々互い違いに傾斜の向きを変えて配置
してなること。
(57) [Abstract] [Purpose] An object of the present invention is to provide a structure for preventing clogging of a hydrophilic plate used for evaporating defrost water. [Structure] A plurality of hydrophilic plates 3, 4, 5 and 6 are provided at a lower portion of the drain hose 2 at predetermined intervals, and these hydrophilic plates 3, 4, 5 and 6 are formed at a slight angle. In addition to tilting, the tilting direction should be changed alternately so as to receive water droplets from the upper hydrophilic plate.

Description

【考案の詳細な説明】[Detailed description of the device]

【0001】[0001]

【産業上の利用分野】[Industrial applications]

本考案は冷蔵庫の構造に関する。 The present invention relates to a refrigerator structure.

【0002】[0002]

【従来の技術】[Prior Art]

従来の冷蔵庫は、冷却器の除霜水を蒸発させるため、冷蔵庫の底部に蒸発皿を 設け、同蒸発皿内にドレンパイプを通して除霜水を集め、この蒸発皿の下部の放 熱板に取付けたコンデンサーパイプの熱によって蒸発皿内の水を蒸発させる様に 構成されていた。この構造によると、冷蔵庫の箱体の底部に蒸発皿と、放熱板と 、コンデンサーパイプを設けているので、冷蔵庫内のデットスペースが大きくな る欠点を有していた。 To evaporate the defrost water in the refrigerator, the conventional refrigerator has an evaporating dish at the bottom of the refrigerator, collects the defrost water through the drain pipe in the evaporating dish, and attaches it to the heat dissipation plate under the evaporating dish. The heat of the condenser pipe was used to evaporate the water in the evaporation dish. According to this structure, since the evaporating dish, the heat radiating plate and the condenser pipe are provided at the bottom of the refrigerator box, there is a drawback that the dead space in the refrigerator becomes large.

【0003】 これに対して、上記冷蔵庫内のデットスペースの省スペース化を計るため、上 記蒸発皿内に下端を接触させた親水プレートを設け、その毛細管現象を利用して 同親水プレートに除霜水を吸わせ、この親水プレートによる蒸発面積の増加とと もに蒸発能力を増大させることにより、相対的に蒸発皿を小形化することが行わ れていた。On the other hand, in order to save the dead space in the refrigerator, a hydrophilic plate having its lower end in contact is provided in the evaporation dish, and the hydrophilic plate is removed using the capillary phenomenon. The evaporation tray was made relatively small by absorbing frost water and increasing the evaporation area as well as the evaporation area by the hydrophilic plate.

【0004】 しかしながら、上記親水プレートを用いた構造によると、蒸発皿に溜まった除 霜水を親水プレートに吸わせているので、蒸発皿内の塵も水と一緒に吸い込まれ この親水プレートが目詰まりを起こし、その吸上げ能力が低下し、蒸発量が減少 する等の欠点を有していた。However, according to the structure using the hydrophilic plate, since the defrosting water accumulated in the evaporation dish is absorbed by the hydrophilic plate, the dust in the evaporation dish is also sucked together with the water, and the hydrophilic plate becomes visible. It had drawbacks such as clogging, reduced suction capacity, and reduced evaporation.

【0005】[0005]

【考案が解決しようとする課題】[Problems to be solved by the device]

本考案は上記従来型の問題点に鑑み考案されたものであって、除霜水を蒸発さ せるために用いられる親水プレートの目詰まりを防ぐ構造を提供することを目的 とするものである。 The present invention has been devised in view of the above problems of the conventional type, and an object thereof is to provide a structure for preventing clogging of a hydrophilic plate used for evaporating defrost water.

【0006】[0006]

【課題を解決するための手段】[Means for Solving the Problems]

上記の課題を解決するための本考案の冷蔵庫は下記の構造を具えてなるもので ある。即ち、本体の機械室内に除霜水を受入れる蒸発皿を設けてなる冷蔵庫にお いて、上記蒸発皿上のドレンホースの下部には、所定の間隔をあけて複数の親水 性プレートを設け、かつ、これらの親水プレートは僅かの角度で傾斜させるとと もに、上段の親水プレートからの水滴を受ける様に、夫々互い違いに傾斜の向き を変えて配置してなるものである。 The refrigerator of the present invention for solving the above problems has the following structure. That is, in a refrigerator having an evaporating dish for receiving defrosting water in the machine room of the main body, a plurality of hydrophilic plates are provided below the drain hose on the evaporating dish at predetermined intervals, and The hydrophilic plates are tilted at a slight angle, and the tilting directions of the hydrophilic plates are alternately changed so as to receive water drops from the upper hydrophilic plate.

【0007】[0007]

【作用】[Action]

上記の構成において、ドレンホースから排出される除霜水は、まづ上段に位置 する親水プレート上に落ちる。この親水プレートは僅かの角度で傾斜させてある ので、その親水プレート面に含みきれなくなった水はその斜面に沿って徐々に流 れ落ちる。ここで、夫々の親水プレートは互い違いに傾斜の向きを変えて配置さ れているので、上記親水プレートから落ちる水は次の段の親水プレートの上端に 落ち、この親水プレートに含みきれなくなった水はその斜面に沿って徐々に流れ 落ち、以下同様に、順次下段の親水プレートに時間をかけてゆっくりと流れ落ち る。この間、各親水プレートに含まれた除霜水は夫々の蒸発面によって効率良く 蒸発されるので、その蒸発能力を大幅に向上させることができる。 In the above structure, the defrost water discharged from the drain hose first falls on the hydrophilic plate located in the upper stage. Since this hydrophilic plate is inclined at a slight angle, the water that cannot be contained in the hydrophilic plate surface gradually flows down along the inclined surface. Here, since the respective hydrophilic plates are alternately arranged with their inclination directions changed, the water that falls from the hydrophilic plate falls to the upper end of the hydrophilic plate of the next stage, and the water that cannot be contained in this hydrophilic plate. Gradually flows down along the slope, and in the same manner, slowly flows down to the lower hydrophilic plate over time. During this period, the defrosting water contained in each hydrophilic plate is efficiently evaporated by each evaporation surface, so that the evaporation ability can be greatly improved.

【0008】 上記の様に、複数の親水プレートを通して除霜水の蒸発が行われ、さらにこれ らの親水プレートに除霜水が含みきれなくなっても、その下部に設けられた蒸発 皿内に落ちて溜められるが、上記複数の親水プレートによって殆ど蒸発されるの で、この除霜水の量は少なくなり、蒸発皿の容積を小形化することができる。 また、上記親水プレートは蒸発皿内の除霜水に触れることなく、親水プレート に直接除霜水が落ちるので、従来型の様な目詰まりによる蒸発能力の低下の心配 はない。As described above, even if defrosting water is evaporated through a plurality of hydrophilic plates, and even if the defrosting water cannot be completely contained in these hydrophilic plates, the defrosting water falls into the evaporation tray provided under the defrosting water. However, the amount of the defrosting water is reduced and the volume of the evaporation dish can be reduced. In addition, since the defrosting water in the hydrophilic plate does not come into contact with the defrosting water in the evaporating dish and the defrosting water directly drops on the hydrophilic plate, there is no concern that the evaporating ability is lowered due to the clogging as in the conventional type.

【0009】[0009]

【実施例】【Example】

以下本考案を図に示す一実施例に基づいて説明すると、図1において、1は冷 蔵庫の底部に設けられる蒸発皿であって、同蒸発皿1の上方にはドレンホース2 が設けられ、同ドレンホース2の下部には、所定の間隔をあけて複数の親水性プ レート3、4、5、6が設けられ、かつ、これらの親水プレート3、4、5、6 は夫々僅かの角度で傾斜させるとともに、上段の親水プレート3の下縁31を、 この下段に位置する親水プレート4の上端41に対向させ、以下同様に、夫々互 い違いに傾斜の向きを変えて配置されている。 The present invention will be described below with reference to an embodiment shown in the drawing. In FIG. 1, reference numeral 1 is an evaporation tray provided at the bottom of a refrigerator, and a drain hose 2 is provided above the evaporation tray 1. In the lower part of the drain hose 2, a plurality of hydrophilic plates 3, 4, 5 and 6 are provided at a predetermined interval, and the hydrophilic plates 3, 4, 5 and 6 are respectively slightly separated. While tilting at an angle, the lower edge 31 of the upper hydrophilic plate 3 is made to face the upper end 41 of the hydrophilic plate 4 located at the lower level. There is.

【0010】 上記の構成により、ドレンホース2から排出される除霜水は、まづ上段に位置 する親水プレート3上に落ちる。この親水プレート3は僅かに傾斜させてあるの で、これに含みきれなくなった水はその斜面に沿って徐々に流れ落ち、この下段 の親水プレート4上に落ちる。同じく、この親水プレート4に含みきれなくなっ た水はその斜面に沿って徐々に流れ落ち、以下同様に、順次下段の親水プレート 5、親水プレート6の順に時間をかけてゆっくりと流れ落ちる。この間、各親水 プレート3、4、5、6に含まれた除霜水は夫々の蒸発面によって効率良く蒸発 され、その蒸発能力を大幅に向上させることができる。With the above configuration, the defrost water discharged from the drain hose 2 first falls onto the hydrophilic plate 3 located in the upper stage. Since the hydrophilic plate 3 is slightly inclined, the water that cannot be contained in the hydrophilic plate 3 gradually flows down along the slope and falls on the lower hydrophilic plate 4. Similarly, the water that cannot be completely contained in the hydrophilic plate 4 gradually flows down along the slope, and similarly thereafter, the lower hydrophilic plate 5 and the hydrophilic plate 6 sequentially flow slowly over time. During this time, the defrosting water contained in each hydrophilic plate 3, 4, 5, 6 is efficiently evaporated by each evaporation surface, and the evaporation ability can be greatly improved.

【0011】 上記の様に、複数の親水プレート3、4、5、6を通して除霜水の蒸発が行わ れるとともに、これらの最後の親水プレート6に除霜水が含みきれなくなったと しても、その下方に設けられた蒸発皿1内に落ちて溜められる。しかして、上記 複数の親水プレート3、4、5、6によって殆ど蒸発されるので、この除霜水の 量は少なくなり、蒸発皿1の容積を小形化することができる。 また、上記親水プレート6の下端は蒸発皿内の除霜水に触れることなく、上記 親水プレート3上に直接除霜水が落ちるので、蒸発皿1側から除霜水が吸上げら れることなく、従来型の様な目詰まりによる蒸発能力の低下の心配はない。As described above, even if defrosting water is evaporated through the plurality of hydrophilic plates 3, 4, 5, and 6, and even if the last hydrophilic plate 6 cannot contain defrosting water, It falls and is stored in the evaporation dish 1 provided below it. Since most of the hydrophilic plates 3, 4, 5, 6 are evaporated, the amount of defrosting water is reduced and the volume of the evaporation dish 1 can be reduced. Further, since the lower end of the hydrophilic plate 6 does not come into contact with the defrosting water in the evaporating dish and the defrosting water drops directly on the hydrophilic plate 3, the defrosting water is not sucked up from the evaporating dish 1 side. There is no need to worry about the deterioration of evaporation capacity due to clogging unlike the conventional type.

【0012】[0012]

【考案の効果】[Effect of the device]

本考案の冷蔵庫によると、冷蔵庫の底部に蒸発皿を設けるとともに、この蒸発 上方に所定の間隔をあけて複数の親水プレートを設けることによって、これら複 数の親水プレートを通して除霜水を蒸発させることができる。また、さらにこれ らの親水プレートに除霜水が含みきれなくなっても、その下部に設けられた蒸発 皿内に落ちて溜めることができるが、この蒸発皿に落ちる除霜水の量は上記複数 の親水プレートによる蒸発によって少なくなり、蒸発皿の容積を小形化すること ができる。これによって、冷蔵庫の下部に形成されるデットスペースを大幅に削 減することができ、相対的に庫内の有効容積を拡大することができる。また、上 記親水プレートは蒸発皿内の除霜水に触れない様に配置されるので、蒸発皿内の 除霜水を吸上げることなく、上部の親水プレートに直接除霜水が落ちる様にして いるので、従来型の様な親水プレートの目詰まりによる蒸発能力の低下を防止す ることができる。 According to the refrigerator of the present invention, an evaporating dish is provided at the bottom of the refrigerator, and a plurality of hydrophilic plates are provided above the evaporation at predetermined intervals to evaporate defrost water through the plurality of hydrophilic plates. You can Further, even if the defrosting water cannot be fully contained in these hydrophilic plates, they can be dropped and stored in the evaporation tray provided under the defrosting water. The volume of the evaporating dish can be reduced by evaporation with the hydrophilic plate. As a result, the dead space formed at the bottom of the refrigerator can be significantly reduced, and the effective volume in the refrigerator can be relatively increased. The hydrophilic plate is placed so that it does not come into contact with the defrosting water in the evaporating dish.Therefore, the defrosting water does not fall on the evaporating dish and is allowed to fall directly onto the upper hydrophilic plate. Therefore, it is possible to prevent the evaporation capacity from being lowered due to the clogging of the hydrophilic plate as in the conventional type.

【図面の簡単な説明】[Brief description of drawings]

【図1】本考案の一実施例を示す冷蔵庫に設ける蒸発皿
付近の要部断面側面図である。
FIG. 1 is a cross-sectional side view of essential parts near an evaporation dish provided in a refrigerator showing an embodiment of the present invention.

【符号の説明】[Explanation of symbols]

1 蒸発皿 2 ドレンパイプ 3 親水プレート 4 親水プレート 5 親水プレート 6 親水プレート 1 Evaporation dish 2 Drain pipe 3 Hydrophilic plate 4 Hydrophilic plate 5 Hydrophilic plate 6 Hydrophilic plate

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 【請求項1】 本体の機械室内に除霜水を受入れる蒸発
皿を設けてなる冷蔵庫において、上記蒸発皿上のドレン
ホースの下部には、所定の間隔をあけて複数の親水性プ
レートを設け、かつ、これらの親水プレートは僅かの角
度で傾斜させるとともに、上段の親水プレートからの水
滴を受ける様に、夫々互い違いに傾斜の向きを変えて配
置してなることを特徴とする冷蔵庫。
1. A refrigerator provided with an evaporation dish for receiving defrosting water in a machine room of a main body, wherein a plurality of hydrophilic plates are provided below a drain hose on the evaporation dish at predetermined intervals. The refrigerator is characterized in that the hydrophilic plates are tilted at a slight angle and the tilt directions thereof are alternately changed so as to receive water drops from the upper hydrophilic plate.
JP866492U 1992-02-26 1992-02-26 refrigerator Pending JPH0569581U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP866492U JPH0569581U (en) 1992-02-26 1992-02-26 refrigerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP866492U JPH0569581U (en) 1992-02-26 1992-02-26 refrigerator

Publications (1)

Publication Number Publication Date
JPH0569581U true JPH0569581U (en) 1993-09-21

Family

ID=11699205

Family Applications (1)

Application Number Title Priority Date Filing Date
JP866492U Pending JPH0569581U (en) 1992-02-26 1992-02-26 refrigerator

Country Status (1)

Country Link
JP (1) JPH0569581U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101395417B1 (en) * 2008-01-30 2014-05-14 엘지전자 주식회사 Cooling structure for a condenser of refrigerator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101395417B1 (en) * 2008-01-30 2014-05-14 엘지전자 주식회사 Cooling structure for a condenser of refrigerator

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