JPWO2020217313A1 - refrigerator - Google Patents

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Publication number
JPWO2020217313A1
JPWO2020217313A1 JP2021515354A JP2021515354A JPWO2020217313A1 JP WO2020217313 A1 JPWO2020217313 A1 JP WO2020217313A1 JP 2021515354 A JP2021515354 A JP 2021515354A JP 2021515354 A JP2021515354 A JP 2021515354A JP WO2020217313 A1 JPWO2020217313 A1 JP WO2020217313A1
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connecting member
door
gasket
refrigerator
vinyl chloride
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JP7055240B2 (en
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裕三 中西
天広 狩野
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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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
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers

Abstract

冷蔵庫は、箱体と扉との間隙を密閉するガスケットとを備え、ガスケットは、扉に取り付けられた取付部材と、磁性体を収容する収容部材とを連結し、間隔を開けて配置された第1連結部材及び第2連結部材とを有し、第2連結部材は、扉の内周側に配置され、第1連結部材は、第2連結部材の外側に配置され、第1連結部材は、第2連結部材よりも弾性が大きい材質で形成され、第2連結部材は、第1連結部材よりも熱伝導率が小さい材質で形成されている。The refrigerator is provided with a gasket that seals the gap between the box body and the door, and the gasket connects the mounting member attached to the door and the accommodating member accommodating the magnetic material, and is arranged at an interval. It has one connecting member and a second connecting member, the second connecting member is arranged on the inner peripheral side of the door, the first connecting member is arranged on the outside of the second connecting member, and the first connecting member is arranged. The second connecting member is made of a material having a higher elasticity than the second connecting member, and the second connecting member is made of a material having a lower thermal conductivity than the first connecting member.

Description

本発明は、扉にガスケットが設けられた冷蔵庫に関する。 The present invention relates to a refrigerator provided with a gasket on the door.

特許文献1には、フェライトを収容し、扉の閉止時において、扉を冷蔵庫の本体に密着させる密着部と、扉と密着部とを連結し、内部に空洞を有するホルダーとを備えた冷蔵庫のガスケットが開示されている。 Patent Document 1 describes a refrigerator provided with a contact portion that accommodates a ferrite and brings the door into close contact with the main body of the refrigerator when the door is closed, and a holder that connects the door and the close contact portion and has a cavity inside. Gaskets are disclosed.

実開昭56−010281号公報No. 56-01281

特許文献1の冷蔵庫においては、扉が閉止されたとき、フェライトが収容されたガスケットの密着部は、ガスケットのホルダーの内部空間に押し込まれて収容される。 In the refrigerator of Patent Document 1, when the door is closed, the contact portion of the gasket containing the ferrite is pushed into the internal space of the gasket holder and accommodated.

従来の冷蔵庫においては、ガスケットは軟質塩化ビニルで形成されている。しかしながら、特許文献1の冷蔵庫においては、ガスケットのホルダーは、冷蔵庫の内部と外部との断熱性能を大きくするため、軟質塩化ビニルより弾性の小さい発泡性の塩化ビニルで形成されている。したがって、特許文献1の冷蔵庫のガスケットでは、ガスケットのホルダーの内部空間にガスケットの密着部を収容するのに必要な弾性性能を確保できない可能性があるという課題があった。 In conventional refrigerators, the gasket is made of soft vinyl chloride. However, in the refrigerator of Patent Document 1, the gasket holder is made of foamable vinyl chloride, which has less elasticity than soft vinyl chloride, in order to increase the heat insulating performance between the inside and the outside of the refrigerator. Therefore, the gasket of the refrigerator of Patent Document 1 has a problem that the elastic performance required for accommodating the close contact portion of the gasket in the internal space of the gasket holder may not be secured.

本発明は、上述の課題を解決するものであり、断熱性能と弾性性能の双方を確保可能なガスケットを有する冷蔵庫を提供することを目的とする。 The present invention solves the above-mentioned problems, and an object of the present invention is to provide a refrigerator having a gasket capable of ensuring both heat insulating performance and elastic performance.

本発明の冷蔵庫は、一面が開口した箱体と、前記開口を開閉自在に前記箱体に取り付けられた扉と、前記箱体と前記扉との間に配置され、前記箱体と前記扉との間隙を密閉するガスケットとを備え、前記ガスケットは、前記扉に取り付けられた取付部材と、磁性体を収容する収容部材と、前記取付部材と前記収容部材とを連結する第1連結部材と、前記取付部材と前記収容部材とを連結し、前記第1連結部材から間隔を空けて配置された第2連結部材とを有しており、前記第2連結部材は、前記扉の内周側に配置されており、前記第1連結部材は、前記第2連結部材の外側に配置されており、前記第1連結部材は、前記第2連結部材よりも弾性が大きい材質で形成されており、前記第2連結部材は、前記第1連結部材よりも熱伝導率が小さい材質で形成されている。 The refrigerator of the present invention is arranged between a box body having one side open, a door attached to the box body so that the opening can be opened and closed, and the box body and the door, and the box body and the door. The gasket comprises a gasket for sealing the gap between the door, a mounting member attached to the door, an accommodating member accommodating a magnetic material, and a first connecting member for connecting the mounting member and the accommodating member. It has a second connecting member that connects the mounting member and the accommodating member and is arranged at a distance from the first connecting member, and the second connecting member is on the inner peripheral side of the door. The first connecting member is arranged outside the second connecting member, and the first connecting member is made of a material having a higher elasticity than the second connecting member. The second connecting member is made of a material having a lower thermal conductivity than the first connecting member.

本発明の構成によれば、第2連結部材は、第1連結部材よりも熱伝導率が小さい材質で形成されるため、ガスケットの断熱性能を向上させることができる。また、第1連結部材は、第2連結部材よりも弾性が大きい材質で形成されるため、ガスケットの弾性性能を確保できる。したがって、本発明の構成によれば、断熱性能と弾性性能の双方を確保可能なガスケットを有する冷蔵庫を提供することができる。 According to the configuration of the present invention, since the second connecting member is formed of a material having a lower thermal conductivity than that of the first connecting member, the heat insulating performance of the gasket can be improved. Further, since the first connecting member is made of a material having higher elasticity than the second connecting member, the elastic performance of the gasket can be ensured. Therefore, according to the configuration of the present invention, it is possible to provide a refrigerator having a gasket capable of ensuring both heat insulating performance and elastic performance.

実施の形態1に係る冷蔵庫の外観構成の一例を示した概略的な斜視図である。It is a schematic perspective view which showed an example of the appearance structure of the refrigerator which concerns on Embodiment 1. FIG. 図1の冷蔵庫の正面図である。It is a front view of the refrigerator of FIG. 図2のA−A断面を示す断面図である。It is sectional drawing which shows the AA cross section of FIG. 図3のガスケットの拡大図である。It is an enlarged view of the gasket of FIG. 図3のガスケットの変形例である。It is a modification of the gasket of FIG. 図5のガスケットの拡大図である。It is an enlarged view of the gasket of FIG. 実施の形態2に係る冷蔵庫のガスケットの取付部材を、図2のA−A断面で示した拡大図である。It is an enlarged view which showed the mounting member of the gasket of the refrigerator which concerns on Embodiment 2 in the cross section AA of FIG. 実施の形態3に係る冷蔵庫のガスケットを、図2のA−A断面で示した図である。It is a figure which showed the gasket of the refrigerator which concerns on Embodiment 3 in the cross section AA of FIG.

実施の形態1.
実施の形態1に係る冷蔵庫100について説明する。図1は、実施の形態1に係る冷蔵庫100の外観構成の一例を示した概略的な斜視図である。図2は、図1の冷蔵庫100の正面図である。図3は、図2のA−A断面を示す断面図である。なお、以下の説明における冷蔵庫100の各々の構成部材同士の位置関係、例えば上下、左右、前後、外内、表裏、又は縦横等の位置関係は、原則として、冷蔵庫100を使用可能な状態に設置したときの位置関係とする。また、図1〜3を含む以下の図面では各構成部材の寸法の関係及び形状が、実際のものとは異なる場合がある。また、以下の図面では、同一の部材若しくは部分又は同一の機能を有する部材若しくは部分には、同一の符号を付すか、又は符号を付すことを省略している。
Embodiment 1.
The refrigerator 100 according to the first embodiment will be described. FIG. 1 is a schematic perspective view showing an example of the external configuration of the refrigerator 100 according to the first embodiment. FIG. 2 is a front view of the refrigerator 100 of FIG. FIG. 3 is a cross-sectional view showing a cross section taken along the line AA of FIG. In addition, in the following description, the positional relationship between the constituent members of the refrigerator 100, for example, the positional relationship such as up / down, left / right, front / back, outside / inside, front / back, or vertical / horizontal, is installed in a state where the refrigerator 100 can be used in principle. It is the positional relationship when it is done. Further, in the following drawings including FIGS. 1 to 3, the relationship and shape of the dimensions of each constituent member may differ from the actual ones. Further, in the following drawings, the same members or parts or members or parts having the same functions are designated by the same reference numerals or omitted.

冷蔵庫100は、一面に開口1aを有する箱体1と、箱体1の開口1aを覆う複数の扉2を有している。箱体1及び扉2は、冷蔵庫100の外郭を形成している。 The refrigerator 100 has a box body 1 having an opening 1a on one surface, and a plurality of doors 2 covering the opening 1a of the box body 1. The box 1 and the door 2 form the outer shell of the refrigerator 100.

箱体1は、箱体1の内部に食品等の被貯蔵物を収容可能な断熱性の筐体である。箱体1は、正面方向に開口1aを有している。また、箱体1は、冷蔵庫100の外郭を形成する外箱1bと、冷蔵庫100の内部空間を形成する内箱1cと、外箱1bと内箱1cとの間に設けられた空間に充填された断熱材1dを備えている。外箱1bは、ステンレス等の鋼板で形成される。内箱1cは、プラスチック等の合成樹脂で形成される。断熱材1dは、真空断熱材、又はウレタン樹脂等で形成される。 The box body 1 is a heat-insulating housing capable of accommodating a stored object such as food inside the box body 1. The box body 1 has an opening 1a in the front direction. Further, the box body 1 is filled in a space provided between the outer box 1b forming the outer shell of the refrigerator 100, the inner box 1c forming the inner space of the refrigerator 100, and the outer box 1b and the inner box 1c. It is equipped with a heat insulating material 1d. The outer box 1b is made of a steel plate such as stainless steel. The inner box 1c is made of a synthetic resin such as plastic. The heat insulating material 1d is formed of a vacuum heat insulating material, a urethane resin, or the like.

図3に示すように、外箱1bは、箱体1の正面側の壁面を形成するフランジ1b1と、フランジ1b1の裏面側に間隔を空けて配置された板ばね1b2とを有している。フランジ1b1及び板ばね1b2は、例えば、箱体1の外側面と一体形成されており、曲げ加工により形成される。内箱1cにおける箱体1の正面側の末端1c1は、フランジ1b1と板ばね1b2の間に挟まれて係止される。 As shown in FIG. 3, the outer box 1b has a flange 1b1 forming a wall surface on the front side of the box body 1 and a leaf spring 1b2 arranged on the back surface side of the flange 1b1 at intervals. The flange 1b1 and the leaf spring 1b2 are integrally formed with, for example, the outer surface of the box body 1 and are formed by bending. The front end 1c1 of the box body 1 in the inner box 1c is sandwiched and locked between the flange 1b1 and the leaf spring 1b2.

また、箱体1は、内箱1cの内部空間の図1の点線に示す位置に、2以上の断熱性の仕切板1eを有している。仕切板1eにより、内箱1cの内部空間は、温度帯の異なる2以上の貯蔵室10に区画される。仕切板1eは、仕切板1eを介して隣接する貯蔵室10の間で熱伝導が行われないように、真空断熱材、又はウレタン樹脂等で形成されている。例えば、図1に示すように、5ドア式の冷凍冷蔵庫として冷蔵庫100を構成する場合、貯蔵室10は、冷蔵室10aと、製氷室10bと、切替室10cと、冷凍室10dと、野菜室10eとして形成できる。なお、図1及び図2においては、冷蔵室10a、製氷室10b、切替室10c、冷凍室10d、及び野菜室10eは、点線の引出線で示されている。切替室10cは、例えば、冷凍室10dと保冷温度の異なる冷凍庫として用いることができる。 Further, the box body 1 has two or more heat insulating partition plates 1e at the positions shown by the dotted lines in FIG. 1 in the internal space of the inner box 1c. The partition plate 1e divides the internal space of the inner box 1c into two or more storage chambers 10 having different temperature zones. The partition plate 1e is formed of a vacuum heat insulating material, urethane resin, or the like so that heat conduction is not performed between the adjacent storage chambers 10 via the partition plate 1e. For example, as shown in FIG. 1, when the refrigerator 100 is configured as a 5-door type freezer / refrigerator, the storage room 10 includes a refrigerator room 10a, an ice making room 10b, a switching room 10c, a freezing room 10d, and a vegetable room. It can be formed as 10e. In FIGS. 1 and 2, the refrigerating room 10a, the ice making room 10b, the switching room 10c, the freezing room 10d, and the vegetable room 10e are indicated by dotted leader lines. The switching chamber 10c can be used, for example, as a freezer having a different cold insulation temperature from the freezing chamber 10d.

扉2は、箱体1の内部空間を開放又は密閉する蓋体である。扉2は、開口1aを開閉自在に箱体1に取り付けられている。扉2の意匠面2a、すなわち、前面及び周縁面はガラス等で形成される。扉2の背面2bは、プラスチック等の合成樹脂で形成される。扉2の内部空間には、断熱性を有する断熱材料2c、例えば、真空断熱材又はウレタン樹脂等が充填されている。 The door 2 is a lid that opens or seals the internal space of the box 1. The door 2 is attached to the box body 1 so that the opening 1a can be opened and closed. The design surface 2a of the door 2, that is, the front surface and the peripheral surface is formed of glass or the like. The back surface 2b of the door 2 is made of a synthetic resin such as plastic. The internal space of the door 2 is filled with a heat insulating material 2c having a heat insulating property, for example, a vacuum heat insulating material or a urethane resin.

扉2は、冷蔵庫100の貯蔵室10に応じた数の扉2を有している。例えば、図1及び図2に示すように、冷蔵庫100が5つの貯蔵室10を有する場合、冷蔵庫100には、5つの扉2、すなわち、冷蔵庫扉21、製氷室扉23、切替室扉25、冷凍室扉27、及び野菜室扉29が設けられている。冷蔵庫扉21は、例えば、図1及び図2に示すように左扉21aと右扉21bとを更に有し、ヒンジ21cを介して、箱体1に取り付けられている。なお、図1及び図2に示した冷蔵庫扉21は回転式の両開き扉であるが、これに限られず、回転式の片開き扉としてもよい。また、製氷室扉23、切替室扉25、冷凍室扉27、及び野菜室扉29は、引出式扉として形成される。図示しないが、引出式扉は、扉2の背面2bに内箱1cの側壁に沿って延びる一対の棒材を設け、内箱1cの側壁に設けられた一対のレールに対し棒材を前後方向に摺動させることにより開閉される。 The door 2 has a number of doors 2 corresponding to the storage chamber 10 of the refrigerator 100. For example, as shown in FIGS. 1 and 2, when the refrigerator 100 has five storage chambers 10, the refrigerator 100 has five doors 2, that is, a refrigerator door 21, an ice making chamber door 23, and a switching chamber door 25. A freezer room door 27 and a vegetable room door 29 are provided. The refrigerator door 21 further has, for example, a left door 21a and a right door 21b as shown in FIGS. 1 and 2, and is attached to the box body 1 via a hinge 21c. The refrigerator door 21 shown in FIGS. 1 and 2 is a rotary double door, but the door is not limited to this and may be a rotary single door. Further, the ice making room door 23, the switching room door 25, the freezing room door 27, and the vegetable room door 29 are formed as a drawer type door. Although not shown, the pull-out door is provided with a pair of rods extending along the side wall of the inner box 1c on the back surface 2b of the door 2, and the rods are provided in the front-rear direction with respect to the pair of rails provided on the side wall of the inner box 1c. It is opened and closed by sliding it on.

また、図3に示すように、扉2の背面2bの一部は、貯蔵室10の内部に突出している。扉2の背面2bの突出部分2dは、例えば、扉2の背面2bの周縁に沿って形成されている。なお、扉2において、突出部分2dは形成しなくてもよい。 Further, as shown in FIG. 3, a part of the back surface 2b of the door 2 protrudes into the storage chamber 10. The protruding portion 2d of the back surface 2b of the door 2 is formed, for example, along the peripheral edge of the back surface 2b of the door 2. It should be noted that the protruding portion 2d does not have to be formed in the door 2.

なお、冷蔵庫100は、上述の構成に限られず、冷蔵庫100の形態及び用途に応じて、製氷室10b、切替室10c、及び野菜室10eのいずれか又は全てを省略してもよいし、冷蔵室10a及び冷凍室10dの一方を省略してもよい。なお、本発明においては、冷凍室10dのみを有する冷凍貯蔵庫についても、冷蔵庫100に含まれるものとする。 The refrigerator 100 is not limited to the above configuration, and any or all of the ice making chamber 10b, the switching chamber 10c, and the vegetable compartment 10e may be omitted depending on the form and use of the refrigerator 100, or the refrigerating chamber. One of 10a and the freezing chamber 10d may be omitted. In the present invention, the freezing storage having only the freezing chamber 10d is also included in the refrigerator 100.

また、冷蔵庫100は、冷蔵庫100の形態及び用途に応じて、同一用途の複数の貯蔵室10を有してもよい。 Further, the refrigerator 100 may have a plurality of storage chambers 10 for the same purpose depending on the form and use of the refrigerator 100.

また、図1では、箱体1の開口1aは、冷蔵庫100の正面方向に設けられているが、例えば、業務用途の冷蔵庫100のように、箱体1の開口1aは、冷蔵庫100の上面方向に設けてもよい。 Further, in FIG. 1, the opening 1a of the box body 1 is provided in the front direction of the refrigerator 100, but the opening 1a of the box body 1 is directed toward the upper surface of the refrigerator 100, for example, as in the refrigerator 100 for business use. It may be provided in.

図3に示すように、冷蔵庫100は、箱体1と扉2との間に配置され、箱体1と扉2との間隙20を密閉するガスケット5を備えている。ガスケット5は、扉2の背面2bの周縁に沿って配置され、箱体1と扉2との間隙20を密閉しており、例えば、図3に示すように、扉2の背面2bの突出部分2dよりも扉2の外周側に沿って配置されている。以降では、ガスケット5の具体的な構成の一例について、図4を用いて説明する。図4は、図3のガスケット5の拡大図である。 As shown in FIG. 3, the refrigerator 100 is arranged between the box body 1 and the door 2 and includes a gasket 5 for sealing the gap 20 between the box body 1 and the door 2. The gasket 5 is arranged along the peripheral edge of the back surface 2b of the door 2 and seals the gap 20 between the box body 1 and the door 2. For example, as shown in FIG. 3, the protruding portion of the back surface 2b of the door 2. It is arranged along the outer peripheral side of the door 2 rather than 2d. Hereinafter, an example of a specific configuration of the gasket 5 will be described with reference to FIG. FIG. 4 is an enlarged view of the gasket 5 of FIG.

ガスケット5は、取付部材51と、収容部材53と、磁性体53aと、第1連結部材55aと、第2連結部材55bと、第3連結部材55cと、外包部材57aと、冷気漏洩抑制部材57bとを備えている。 The gasket 5 includes a mounting member 51, an accommodating member 53, a magnetic body 53a, a first connecting member 55a, a second connecting member 55b, a third connecting member 55c, an outer capsule member 57a, and a cold air leakage suppressing member 57b. And have.

取付部材51は、ガスケット5を扉2に取り付ける部材である。取付部材51は、扉2の背面2bに取り付けられる支持部51aと、支持部51aに接続された胴部51bと、胴部51bの先端に配置された頭部51cとを有している。 The mounting member 51 is a member that mounts the gasket 5 to the door 2. The mounting member 51 has a support portion 51a attached to the back surface 2b of the door 2, a body portion 51b connected to the support portion 51a, and a head portion 51c arranged at the tip of the body portion 51b.

図3に示すように、扉2の背面2bには、取付部材51を係合させるための溝2eが設けられている。溝2eは、扉2の背面2bの周縁に沿って設けられており、例えば、図3に示すように、突出部分2dの外周側に沿って配置されている。扉2の背面2bと垂直な面における溝2eの壁面2e1の断面は、C字形状に形成されている。 As shown in FIG. 3, the back surface 2b of the door 2 is provided with a groove 2e for engaging the mounting member 51. The groove 2e is provided along the peripheral edge of the back surface 2b of the door 2, and is arranged along the outer peripheral side of the protruding portion 2d, for example, as shown in FIG. The cross section of the wall surface 2e1 of the groove 2e on the surface perpendicular to the back surface 2b of the door 2 is formed in a C shape.

支持部51aは、溝2eを覆うように配置されている。例えば、支持部51aは扁平形状の部材として形成される。また、支持部51aは溝2eを覆う面と反対側の面で、第1連結部材55a、第2連結部材55b、及び第3連結部材55cを支持している。胴部51bは、溝2eの内部に配置されており、支持部51aから溝2eの方向に延びている。頭部51cは、溝2eの内部に配置されており、溝2eの壁面2e1に形成された一対の凸部2e3で係止させることにより、溝2eに係合している。頭部51cは、例えば、図4に示すように、テーパ形状の部材であり、頭部51cの先端に向かうにつれて、頭部51cの幅が小さくなっている。また、凸部2e3の方向の頭部51cの幅は、一対の凸部2e3の間の幅よりも大きくなっている。なお、頭部51cの形状は、溝2eの壁面2e1に係止される形状であれば、テーパ形状でなくてもよい。また、溝2eの壁面2e1の形状は、頭部51cを係合できる形状であれば、C字形状の断面を有するものでなくてもよい。 The support portion 51a is arranged so as to cover the groove 2e. For example, the support portion 51a is formed as a flat member. Further, the support portion 51a supports the first connecting member 55a, the second connecting member 55b, and the third connecting member 55c on the surface opposite to the surface covering the groove 2e. The body portion 51b is arranged inside the groove 2e and extends from the support portion 51a in the direction of the groove 2e. The head portion 51c is arranged inside the groove 2e, and is engaged with the groove 2e by being locked by a pair of convex portions 2e3 formed on the wall surface 2e1 of the groove 2e. As shown in FIG. 4, the head 51c is, for example, a tapered member, and the width of the head 51c decreases toward the tip of the head 51c. Further, the width of the head 51c in the direction of the convex portions 2e3 is larger than the width between the pair of convex portions 2e3. The shape of the head 51c does not have to be a tapered shape as long as it is locked to the wall surface 2e1 of the groove 2e. Further, the shape of the wall surface 2e1 of the groove 2e does not have to have a C-shaped cross section as long as the head portion 51c can be engaged.

また、取付部材51の胴部51b及び頭部51cの内部には、空洞51dが設けられている。取付部材51の胴部51b及び頭部51cに空洞51dが設けられていることにより、空洞51dが設けられていない場合と比較して、取付部材51の胴部51b及び頭部51cの伸縮性が大きくなる。したがって、取付部材51の胴部51b及び頭部51cに空洞51dを設けることにより、胴部51b及び頭部51cを溝2eの内部に容易に係合させることができる。 Further, a cavity 51d is provided inside the body portion 51b and the head portion 51c of the mounting member 51. Since the cavity 51d is provided in the body portion 51b and the head portion 51c of the mounting member 51, the elasticity of the body portion 51b and the head portion 51c of the mounting member 51 is increased as compared with the case where the cavity 51d is not provided. growing. Therefore, by providing the cavity 51d in the body portion 51b and the head portion 51c of the mounting member 51, the body portion 51b and the head portion 51c can be easily engaged with the inside of the groove 2e.

また、取付部材51においては、支持部51aは、発泡塩化ビニルで形成されており、胴部51b及び頭部51cは、軟性塩化ビニルで形成されている。なお、図4以降の図面においては、発泡塩化ビニルで形成されたガスケット5の各部材は右上がりのハッチングで示されており、軟性塩化ビニルで形成されたガスケット5の各部材は左上がりのハッチングで示されている。 Further, in the mounting member 51, the support portion 51a is made of foamed vinyl chloride, and the body portion 51b and the head portion 51c are made of soft vinyl chloride. In the drawings after FIG. 4, each member of the gasket 5 made of foamed vinyl chloride is shown by hatching that rises to the right, and each member of the gasket 5 made of soft vinyl chloride is hatched that rises to the left. Indicated by.

ここで、軟性塩化ビニルは、フタル酸エステル等の可塑剤の添加によって軟性を調整可能な合成樹脂である。軟性塩化ビニルは、発泡塩化ビニルよりも弾性は大きいが、熱伝導率が大きいという特性を有している。また、発泡塩化ビニルは、塩化ビニルの合成樹脂にガスを細かく分散させ、発泡状又は多孔質形状に成形した合成樹脂である。発泡塩化ビニルは、軟性塩化ビニルよりも熱伝導率は小さいが、弾性が小さいという特性を有している。 Here, the soft vinyl chloride is a synthetic resin whose softness can be adjusted by adding a plasticizer such as a phthalate ester. Soft vinyl chloride has a higher elasticity than foamed vinyl chloride, but has a characteristic of high thermal conductivity. Further, the foamed vinyl chloride is a synthetic resin formed into a foamed or porous shape by finely dispersing gas in a synthetic resin of vinyl chloride. Effervescent vinyl chloride has a lower thermal conductivity than soft vinyl chloride, but has a characteristic of low elasticity.

支持部51aは箱体1と扉2との間隙20に配置されているため、支持部51aを熱伝導率が小さい材質である発泡塩化ビニルで形成することにより、貯蔵室10と冷蔵庫100の外部との間の断熱性能を向上させることができる。また、一方、胴部51b及び頭部51cを弾性が大きい材質である軟性塩化ビニルで形成することにより、胴部51b及び頭部51cの弾性性能を維持できるため、胴部51b及び頭部51cが溝2eから脱離する可能性を低減できる。 Since the support portion 51a is arranged in the gap 20 between the box body 1 and the door 2, the support portion 51a is made of foamed vinyl chloride, which is a material having a low thermal conductivity, so that the outside of the storage chamber 10 and the refrigerator 100 can be used. It is possible to improve the heat insulation performance between the two. On the other hand, by forming the body portion 51b and the head portion 51c with soft vinyl chloride which is a material having high elasticity, the elastic performance of the body portion 51b and the head portion 51c can be maintained, so that the body portion 51b and the head portion 51c can be formed. The possibility of detachment from the groove 2e can be reduced.

したがって、上述の構成の取付部材51によれば、断熱性能と弾性性能との双方が確保可能であり、ガスケット5が扉2から脱離する可能性を低減できるガスケット5を提供することができる。 Therefore, according to the mounting member 51 having the above-described configuration, it is possible to provide the gasket 5 which can secure both the heat insulating performance and the elastic performance and can reduce the possibility that the gasket 5 is detached from the door 2.

収容部材53は、磁性体53aを収容した部材である。磁性体53aは、例えば、フェライト等の磁性材料で形成される。扉2の閉止時において、磁力により外箱1bのフランジ1b1に収容部材53を密着させることにより、箱体1と扉2との間隙20は閉塞される。 The accommodating member 53 is a member accommodating the magnetic body 53a. The magnetic material 53a is formed of, for example, a magnetic material such as ferrite. When the door 2 is closed, the gap 20 between the box body 1 and the door 2 is closed by bringing the accommodating member 53 into close contact with the flange 1b1 of the outer box 1b by magnetic force.

収容部材53は、弾性が大きい材質である軟性塩化ビニルで形成されている。収容部材53は扉2の開閉時に、箱体1と擦れて摩擦音が発生する。収容部材53を熱伝導率が小さい材質である発泡塩化ビニルで形成した場合、発泡塩化ビニルは軟性塩化ビニルと比較して粗い表面を有しているため、摩擦音が大きくなる。また、収容部材53は、冷蔵庫100の外観の一部であり、発泡塩化ビニルを用いた場合、軟性塩化ビニルと比較して粗い表面を有しているため、意匠性が低下する。 The accommodating member 53 is made of soft vinyl chloride, which is a material having high elasticity. When the door 2 is opened and closed, the accommodating member 53 rubs against the box body 1 to generate a frictional noise. When the accommodating member 53 is made of foamed vinyl chloride, which is a material having a low thermal conductivity, the foamed vinyl chloride has a rough surface as compared with the soft vinyl chloride, so that the friction noise becomes loud. Further, the accommodating member 53 is a part of the appearance of the refrigerator 100, and when foamed vinyl chloride is used, it has a rough surface as compared with soft vinyl chloride, so that the designability is deteriorated.

一方、収容部材53を軟性塩化ビニルで形成すれば、発泡塩化ビニルと比較して、収容部材53と箱体1との間の摩擦音が小さくなり、意匠性も向上させることができる。したがって、収容部材53を軟性塩化ビニルで形成することにより、冷蔵庫100の使用時における使用者の快適性を向上させることができる。 On the other hand, if the accommodating member 53 is made of soft vinyl chloride, the frictional noise between the accommodating member 53 and the box 1 can be reduced and the design can be improved as compared with the foamed vinyl chloride. Therefore, by forming the accommodating member 53 with flexible vinyl chloride, it is possible to improve the comfort of the user when using the refrigerator 100.

第1連結部材55a、第2連結部材55b、及び第3連結部材55cは、取付部材51と収容部材53との間を連結している。また、第1連結部材55a、第2連結部材55b、及び第3連結部材55cは、互いに間隔を空けて配置されており、第1連結部材55aと第3連結部材55cとの間、及び第2連結部材55bと第3連結部材55cとの間には、空間56が形成されている。第1連結部材55a、第2連結部材55b、及び第3連結部材55cが間隔を空けて配置されることにより、空間56により熱伝導が遮断されるため、取付部材51と収容部材53との間の断熱性能を向上させることができる。また、第1連結部材55a、第2連結部材55b、及び第3連結部材55cは、湾曲形状を有している。第1連結部材55a、第2連結部材55b、及び第3連結部材55cが湾曲形状を有することによって、扉2の閉止時に、収容部材53を第1連結部材55a、第2連結部材55b、及び第3連結部材55cの伸縮により支持できる。また、第2連結部材55bは、第2連結部材55bから扉2の背面2bの突出部分2dに向けて延在する複数のリブ57cを有しており、取付部材51の方向への冷気の流入を抑制している。なお、ガスケット5において、複数のリブ57c及び第3連結部材55cは省略できる。 The first connecting member 55a, the second connecting member 55b, and the third connecting member 55c are connected between the mounting member 51 and the accommodating member 53. Further, the first connecting member 55a, the second connecting member 55b, and the third connecting member 55c are arranged at intervals from each other, and are arranged between the first connecting member 55a and the third connecting member 55c, and the second. A space 56 is formed between the connecting member 55b and the third connecting member 55c. By arranging the first connecting member 55a, the second connecting member 55b, and the third connecting member 55c at intervals, heat conduction is blocked by the space 56, so that the heat conduction is cut off between the mounting member 51 and the accommodating member 53. Insulation performance can be improved. Further, the first connecting member 55a, the second connecting member 55b, and the third connecting member 55c have a curved shape. Since the first connecting member 55a, the second connecting member 55b, and the third connecting member 55c have a curved shape, when the door 2 is closed, the accommodating member 53 is placed in the first connecting member 55a, the second connecting member 55b, and the second connecting member 55b. 3 It can be supported by the expansion and contraction of the connecting member 55c. Further, the second connecting member 55b has a plurality of ribs 57c extending from the second connecting member 55b toward the protruding portion 2d of the back surface 2b of the door 2, and the inflow of cold air in the direction of the mounting member 51. Is suppressed. In the gasket 5, the plurality of ribs 57c and the third connecting member 55c can be omitted.

また、第2連結部材55bは、前記扉の内周側に配置されている。第3連結部材55cは、第2連結部材55bの外側に配置されている。第1連結部材55aは、第2連結部材55b及び第3連結部材55cの外側に配置されている。また、第1連結部材55aは、第2連結部材55bよりも弾性が大きい材質である軟性塩化ビニルで形成されている。また、第2連結部材55bは、第1連結部材55aよりも熱伝導率が小さい材質である発泡塩化ビニルで形成されている。 Further, the second connecting member 55b is arranged on the inner peripheral side of the door. The third connecting member 55c is arranged outside the second connecting member 55b. The first connecting member 55a is arranged outside the second connecting member 55b and the third connecting member 55c. Further, the first connecting member 55a is made of soft vinyl chloride, which is a material having higher elasticity than the second connecting member 55b. Further, the second connecting member 55b is made of foamed vinyl chloride, which is a material having a lower thermal conductivity than the first connecting member 55a.

第2連結部材55bを発泡塩化ビニルで形成することにより、貯蔵室10と冷蔵庫100の外部との間の断熱性能を向上させることができる。したがって、第1連結部材55aを軟性塩化ビニルで形成したとしても、第2連結部材55bで断熱されており、隣接する連結部材55が間隔を空けて配置されているため、取付部材51と収容部材53との間の断熱性能は維持できる。また、収容部材53を軟性塩化ビニルで形成したとしても、第2連結部材55bが、収容部材53よりも貯蔵室10の側に位置し、貯蔵室10を覆うように配置すれば、箱体1と扉2との間隙20の断熱性能を維持できる。したがって、第2連結部材55bを第1連結部材55aよりも熱伝導率が小さい材質である発泡塩化ビニルで形成することにより、箱体1と扉2との間隙20の断熱性能を維持できる。 By forming the second connecting member 55b with foamed vinyl chloride, the heat insulating performance between the storage chamber 10 and the outside of the refrigerator 100 can be improved. Therefore, even if the first connecting member 55a is made of flexible vinyl chloride, it is insulated by the second connecting member 55b, and the adjacent connecting members 55 are arranged at intervals, so that the mounting member 51 and the accommodating member are accommodated. Insulation performance between 53 can be maintained. Further, even if the accommodating member 53 is made of flexible vinyl chloride, if the second connecting member 55b is located closer to the storage chamber 10 than the accommodating member 53 and is arranged so as to cover the storage chamber 10, the box body 1 The heat insulating performance of the gap 20 between the door 2 and the door 2 can be maintained. Therefore, by forming the second connecting member 55b with foamed vinyl chloride, which is a material having a lower thermal conductivity than the first connecting member 55a, the heat insulating performance of the gap 20 between the box body 1 and the door 2 can be maintained.

また、第2連結部材55bを発泡塩化ビニルで形成することにより、第1連結部材55aが貯蔵室10からの冷気により冷却されるのを抑制できる。したがって、冷蔵庫100を高温多湿下で使用する場合であっても、第1連結部材55aにおける結露の発生を抑制することができる。 Further, by forming the second connecting member 55b with foamed vinyl chloride, it is possible to prevent the first connecting member 55a from being cooled by the cold air from the storage chamber 10. Therefore, even when the refrigerator 100 is used under high temperature and high humidity, it is possible to suppress the occurrence of dew condensation on the first connecting member 55a.

また、従来、ガスケット5における結露の発生を抑制するために、ヒータ等の発熱体によりガスケット5を加熱していた。しかしながら、第2連結部材55bを発泡塩化ビニルで形成すれば、第1連結部材55aにおける結露の発生を抑制できるため、ガスケット5の加熱のためのヒータ容量を低減でき、冷蔵庫100のエネルギー削減を実現できる。 Further, conventionally, in order to suppress the occurrence of dew condensation on the gasket 5, the gasket 5 is heated by a heating element such as a heater. However, if the second connecting member 55b is made of foamed vinyl chloride, the generation of dew condensation on the first connecting member 55a can be suppressed, so that the heater capacity for heating the gasket 5 can be reduced, and the energy of the refrigerator 100 can be reduced. can.

また、第1連結部材55aを軟性塩化ビニルで形成することにより、発泡塩化ビニルで形成された場合と比較して、取付部材51と収容部材53との間の伸縮機能を向上させることができるため、弾性性能を維持することができる。したがって、第1連結部材55aを軟性塩化ビニルで形成し、第2連結部材55bを発泡塩化ビニルで形成することにより、断熱性能と弾性性能の双方を確保可能なガスケット5を有する冷蔵庫100を提供することができる。 Further, by forming the first connecting member 55a with flexible vinyl chloride, the elastic function between the mounting member 51 and the accommodating member 53 can be improved as compared with the case where the first connecting member 55a is formed of foamed vinyl chloride. , Elastic performance can be maintained. Therefore, by forming the first connecting member 55a with soft vinyl chloride and the second connecting member 55b with foamed vinyl chloride, the refrigerator 100 having a gasket 5 capable of ensuring both heat insulating performance and elastic performance is provided. be able to.

また、第1連結部材55aを軟性塩化ビニルで形成すれば、発泡塩化ビニルと比較して、第1連結部材55aの伸縮に伴い発生する音が小さくなり、意匠性も向上させることができる。したがって、第1連結部材55aを軟性塩化ビニルで形成することにより、冷蔵庫100の使用時における使用者の快適性を向上させることができる。 Further, if the first connecting member 55a is formed of soft vinyl chloride, the sound generated by the expansion and contraction of the first connecting member 55a is reduced as compared with the foamed vinyl chloride, and the designability can be improved. Therefore, by forming the first connecting member 55a with flexible vinyl chloride, it is possible to improve the comfort of the user when using the refrigerator 100.

また、第1連結部材55aを軟性塩化ビニルで形成し、第2連結部材55bを発泡塩化ビニルで形成した場合、第1連結部材55aと第2連結部材55bとの弾性の違いにより、収容部材53が箱体1に斜めに吸着する可能性がある。しかしながら、第1連結部材55a及び第2連結部材55bの湾曲の形状及び長さをそれぞれ調整することにより、第1連結部材55a及び第2連結部材55bの弾力を調整すれば、収容部材53が箱体1に斜めに吸着することを抑制できる。したがって、第1連結部材55aを軟性塩化ビニルで形成し、第2連結部材55bを発泡塩化ビニルで形成したとしても、箱体1と扉2との間隙20の断熱性能は損なわれない。 Further, when the first connecting member 55a is made of soft vinyl chloride and the second connecting member 55b is made of foamed vinyl chloride, the accommodating member 53 is due to the difference in elasticity between the first connecting member 55a and the second connecting member 55b. May be slantedly adsorbed on the box 1. However, if the elasticity of the first connecting member 55a and the second connecting member 55b is adjusted by adjusting the curved shape and length of the first connecting member 55a and the second connecting member 55b, respectively, the accommodating member 53 becomes a box. It is possible to suppress diagonally adsorbing to the body 1. Therefore, even if the first connecting member 55a is made of soft vinyl chloride and the second connecting member 55b is made of foamed vinyl chloride, the heat insulating performance of the gap 20 between the box body 1 and the door 2 is not impaired.

外包部材57aは、取付部材51を覆うように配置されている。外包部材57aを、弾性の大きい材質である軟性塩化ビニルで形成すれば、発泡塩化ビニルで形成された支持部51aを外部から見えないようにできるため、ガスケット5の意匠性が更に向上する。また、外包部材57aは、取付部材51を覆っているため、冷蔵庫100外部から箱体1と取付部材51へ流れる空気を遮蔽できる。 The outer capsule member 57a is arranged so as to cover the mounting member 51. If the outer packaging member 57a is made of soft vinyl chloride, which is a highly elastic material, the support portion 51a made of foamed vinyl chloride can be made invisible from the outside, so that the design of the gasket 5 is further improved. Further, since the outer packaging member 57a covers the mounting member 51, the air flowing from the outside of the refrigerator 100 to the box body 1 and the mounting member 51 can be shielded.

冷気漏洩抑制部材57bは、収容部材53に接続され、収容部材53よりも扉2の内周側に配置されている。冷気漏洩抑制部材57bは、扉2の背面2bの突出部分2dに延びるリブ57b1と、リブ57b1の先端に配置され、内部に空洞57b3を有する突起57b2とを有している。突起57b2は、扉2の背面2bの突出部分2dと箱体1との間に配置され、扉2の閉止時において、貯蔵室10からの冷気の漏洩を抑制している。これにより、ガスケット5の断熱性能を向上させることができる。 The cold air leakage suppressing member 57b is connected to the accommodating member 53 and is arranged on the inner peripheral side of the door 2 with respect to the accommodating member 53. The cold air leakage suppressing member 57b has a rib 57b1 extending to a protruding portion 2d of the back surface 2b of the door 2 and a protrusion 57b2 arranged at the tip of the rib 57b1 and having a cavity 57b3 inside. The protrusion 57b2 is arranged between the protruding portion 2d of the back surface 2b of the door 2 and the box body 1, and suppresses the leakage of cold air from the storage chamber 10 when the door 2 is closed. Thereby, the heat insulating performance of the gasket 5 can be improved.

図5は、図3のガスケット5の変形例である。図6は、図5のガスケット5の拡大図である。図5及び図6に示すように、冷気漏洩抑制部材57bは、箱体1と扉2の間を遮蔽しており、突起57b2は、扉2の閉止時において、貯蔵室10から外部に流れる冷気を遮っている。この構成によれば、ガスケット5の断熱性能をさらに向上させることができる。 FIG. 5 is a modification of the gasket 5 of FIG. FIG. 6 is an enlarged view of the gasket 5 of FIG. As shown in FIGS. 5 and 6, the cold air leakage suppressing member 57b shields between the box body 1 and the door 2, and the protrusion 57b2 is the cold air flowing from the storage chamber 10 to the outside when the door 2 is closed. Is blocking. According to this configuration, the heat insulating performance of the gasket 5 can be further improved.

なお、ガスケット5において、外包部材57a及び冷気漏洩抑制部材57bは省略することができる。 In the gasket 5, the external capsule member 57a and the cold air leakage suppressing member 57b can be omitted.

また、ガスケット5は、軟質塩化ビニルと発泡塩化ビニルとを同時押出しすることにより、一体成型することが可能である。これにより、ガスケット5は、軟質塩化ビニルと発泡塩化ビニルとが接着した状態で製造されるため、製造工数を低減することができる。 Further, the gasket 5 can be integrally molded by simultaneously extruding soft vinyl chloride and foamed vinyl chloride. As a result, the gasket 5 is manufactured in a state where the soft vinyl chloride and the foamed vinyl chloride are adhered to each other, so that the manufacturing man-hours can be reduced.

なお、ガスケット5で用いられる軟質塩化ビニルの弾性等の物理特性は、ガスケット5の各部材で必ずしも同一でなくてもよい。また、ガスケット5で用いられる発泡塩化ビニルの断熱性等の物理特性は、ガスケット5の各部材で必ずしも同一でなくてもよい。 The physical characteristics such as elasticity of the soft vinyl chloride used in the gasket 5 do not necessarily have to be the same in each member of the gasket 5. Further, the physical characteristics such as the heat insulating property of the foamed vinyl chloride used in the gasket 5 do not necessarily have to be the same in each member of the gasket 5.

実施の形態2.
実施の形態2の冷蔵庫100のガスケット5の構成を図7を用いて説明する。図7は、実施の形態2に係る冷蔵庫100のガスケット5の取付部材51を、図2のA−A断面で示した拡大図である。
Embodiment 2.
The configuration of the gasket 5 of the refrigerator 100 of the second embodiment will be described with reference to FIG. 7. FIG. 7 is an enlarged view showing the mounting member 51 of the gasket 5 of the refrigerator 100 according to the second embodiment in the cross section taken along the line AA of FIG.

図7に示すように、実施の形態2では、支持部51aは、係止部59を有しており、胴部51bは、係止部59を介して支持部51aに接続されている。図7に示すように、係止部59は、例えば、T字形状の断面を有する係止部材であり、胴部51bの内部に係止された引掛部59aと、引掛部59aと支持部51aとの間に接続された脚59bとを有している。引掛部59aの幅は、脚59bの幅よりも大きくなっている。なお、係止部59は、引掛部59aが胴部51bの内部に係止される構成、すなわち、引掛部59aが支持部51aから離間した位置に取り付けられたものであれば、別の構成とすることができる。その他の構成については、上述の実施の形態1と同一であるため説明を省略する。 As shown in FIG. 7, in the second embodiment, the support portion 51a has a locking portion 59, and the body portion 51b is connected to the support portion 51a via the locking portion 59. As shown in FIG. 7, the locking portion 59 is, for example, a locking member having a T-shaped cross section, and is a hooking portion 59a locked inside the body portion 51b, a hooking portion 59a, and a support portion 51a. It has legs 59b connected to and from. The width of the hook portion 59a is larger than the width of the legs 59b. The locking portion 59 has a different configuration as long as the hooking portion 59a is locked inside the body portion 51b, that is, the hooking portion 59a is attached at a position away from the support portion 51a. can do. Since other configurations are the same as those in the first embodiment, the description thereof will be omitted.

ガスケット5の取付部材51において、支持部51aが係止部59を有し、胴部51bが係止部59を介して支持部51aに接続されることにより、支持部51aと胴部51bとの接続強度を向上することができる。したがって、この構成によれば、発泡塩化ビニルで形成された支持部51aと軟質塩化ビニルで形成された胴部51bとの境界面での接続強度を向上させることができる。 In the mounting member 51 of the gasket 5, the support portion 51a has a locking portion 59, and the body portion 51b is connected to the support portion 51a via the locking portion 59, whereby the support portion 51a and the body portion 51b are connected to each other. The connection strength can be improved. Therefore, according to this configuration, it is possible to improve the connection strength at the boundary surface between the support portion 51a formed of foamed vinyl chloride and the body portion 51b formed of soft vinyl chloride.

実施の形態3.
実施の形態3の冷蔵庫100のガスケット5の構成を図8を用いて説明する。図8は、実施の形態3に係る冷蔵庫100のガスケット5を、図2のA−A断面で示した図である。
Embodiment 3.
The configuration of the gasket 5 of the refrigerator 100 of the third embodiment will be described with reference to FIG. FIG. 8 is a diagram showing the gasket 5 of the refrigerator 100 according to the third embodiment in the cross section taken along the line AA of FIG.

実施の形態3では、冷気漏洩抑制部材57bが、熱伝導性の低い材質である発泡塩化ビニルで形成されている。その他の構成については、上述の実施の形態1と同一であるため説明を省略する。 In the third embodiment, the cold air leakage suppressing member 57b is made of foamed vinyl chloride, which is a material having low thermal conductivity. Since other configurations are the same as those in the first embodiment, the description thereof will be omitted.

上述の構成によれば、冷気漏洩抑制部材57bにより、ガスケット5に流れる冷気の流れを抑制するとともに、ガスケット5全体の断熱性能を向上させることができる。 According to the above configuration, the cold air leakage suppressing member 57b can suppress the flow of cold air flowing through the gasket 5 and improve the heat insulating performance of the entire gasket 5.

その他の実施の形態.
本発明は、上述の実施の形態に限らず、本発明の要旨を逸脱しない範囲において種々の変形が可能である。例えば、上述の実施の形態の構成は、冷蔵庫100のみならず、開閉自在な扉2を有する他の冷却貯蔵庫、例えば、自動販売機、ショーケース等にも適用可能である。
Other embodiments.
The present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the gist of the present invention. For example, the configuration of the above-described embodiment can be applied not only to the refrigerator 100 but also to other cooling storages having a door 2 that can be opened and closed, such as a vending machine and a showcase.

また、上述の実施形態は、互いに組み合わせることが可能である。 Moreover, the above-mentioned embodiments can be combined with each other.

1 箱体、1a 開口、1b 外箱、1b1 フランジ、1b2 板ばね、1c 内箱、1c1 末端、1d 断熱材、1e 仕切板、2 扉、2a 意匠面、2b 背面、2c 断熱材料、2d 突出部分、2e 溝、2e1 壁面、2e3 凸部、5 ガスケット、10 貯蔵室、10a 冷蔵室、10b 製氷室、10c 切替室、10d 冷凍室、10e 野菜室、20 間隙、21 冷蔵庫扉、21a 左扉、21b 右扉、21c ヒンジ、23 製氷室扉、25 切替室扉、27 冷凍室扉、29 野菜室扉、51 取付部材、51a 支持部、51b 胴部、51c 頭部、51d 空洞、53 収容部材、53a 磁性体、55a 第1連結部材、55b 第2連結部材、55c 第3連結部材、56 空間、57a 外包部材、57b 冷気漏洩抑制部材、57b1 リブ、57b2 突起、57b3 空洞、57c リブ、59 係止部、59a 引掛部、59b 脚、100 冷蔵庫。 1 Box body, 1a opening, 1b outer box, 1b1 flange, 1b2 leaf spring, 1c inner box, 1c1 end, 1d heat insulating material, 1e partition plate, 2 doors, 2a design surface, 2b back surface, 2c heat insulating material, 2d protruding part 2, 2e groove, 2e1 wall surface, 2e3 convex part, 5 gasket, 10 storage room, 10a refrigerating room, 10b ice making room, 10c switching room, 10d freezer room, 10e vegetable room, 20 gap, 21 refrigerator door, 21a left door, 21b Right door, 21c hinge, 23 ice making room door, 25 switching room door, 27 freezer room door, 29 vegetable room door, 51 mounting member, 51a support, 51b body, 51c head, 51d cavity, 53 storage member, 53a Magnetic material, 55a 1st connecting member, 55b 2nd connecting member, 55c 3rd connecting member, 56 space, 57a outer packaging member, 57b cold air leakage suppression member, 57b1 rib, 57b2 protrusion, 57b3 cavity, 57c rib, 59 locking part , 59a hook, 59b legs, 100 refrigerator.

Claims (9)

一面が開口した箱体と、
前記開口を開閉自在に前記箱体に取り付けられた扉と、
前記箱体と前記扉との間に配置され、前記箱体と前記扉との間隙を密閉するガスケットと
を備え、
前記ガスケットは、
前記扉に取り付けられた取付部材と、
磁性体を収容する収容部材と、
前記取付部材と前記収容部材とを連結する第1連結部材と、
前記取付部材と前記収容部材とを連結し、前記第1連結部材から間隔を空けて配置された第2連結部材と
を有しており、
前記第2連結部材は、前記扉の内周側に配置されており、
前記第1連結部材は、前記第2連結部材の外側に配置されており、
前記第1連結部材は、前記第2連結部材よりも弾性が大きい材質で形成されており、
前記第2連結部材は、前記第1連結部材よりも熱伝導率が小さい材質で形成されている
冷蔵庫。
A box with an open side and
A door attached to the box body so that the opening can be opened and closed,
A gasket which is arranged between the box body and the door and seals a gap between the box body and the door is provided.
The gasket is
The mounting member attached to the door and
A housing member that houses the magnetic material and
A first connecting member that connects the mounting member and the accommodating member,
It has a second connecting member that connects the mounting member and the accommodating member and is arranged at a distance from the first connecting member.
The second connecting member is arranged on the inner peripheral side of the door.
The first connecting member is arranged outside the second connecting member.
The first connecting member is made of a material having higher elasticity than the second connecting member.
The second connecting member is a refrigerator made of a material having a lower thermal conductivity than the first connecting member.
前記第1連結部材は、軟性塩化ビニルで形成されており、
前記第2連結部材は、発泡塩化ビニルで形成されている
請求項1に記載の冷蔵庫。
The first connecting member is made of flexible vinyl chloride.
The refrigerator according to claim 1, wherein the second connecting member is made of foamed vinyl chloride.
前記収容部材は、前記第2連結部材よりも弾性が高い材質で形成されている
請求項1に記載の冷蔵庫。
The refrigerator according to claim 1, wherein the accommodating member is made of a material having higher elasticity than the second connecting member.
前記ガスケットは、
前記取付部材を前記扉の外周側から覆う外包部材
を有しており、
前記外包部材は、前記第2連結部材よりも弾性が高い材質で形成されている
請求項1〜3のいずれか一項に記載の冷蔵庫。
The gasket is
It has an outer packaging member that covers the mounting member from the outer peripheral side of the door.
The refrigerator according to any one of claims 1 to 3, wherein the outer capsule member is made of a material having higher elasticity than the second connecting member.
前記扉の裏面には、溝が設けられており、
前記取付部材は、
前記扉の裏面に配置され、前記第1連結部材及び前記第2連結部材を支持する支持部と、
前記溝に係合する頭部と、
前記頭部と前記支持部とをつなぐ胴部と
を備え、
前記支持部は、前記第1連結部材よりも熱伝導率が低い材質で形成されており、
前記胴部及び前記頭部は、前記第2連結部材よりも弾性が高い材質で形成されている
請求項1〜4のいずれか一項に記載の冷蔵庫。
A groove is provided on the back surface of the door.
The mounting member is
A support portion arranged on the back surface of the door and supporting the first connecting member and the second connecting member,
The head engaged in the groove and
A body portion connecting the head portion and the support portion is provided.
The support portion is made of a material having a lower thermal conductivity than the first connecting member.
The refrigerator according to any one of claims 1 to 4, wherein the body portion and the head portion are made of a material having higher elasticity than the second connecting member.
前記支持部は、係止部を有し、
前記胴部は、前記係止部を介して前記支持部に取り付けられている
請求項5に記載の冷蔵庫。
The support portion has a locking portion and has a locking portion.
The refrigerator according to claim 5, wherein the body portion is attached to the support portion via the locking portion.
前記ガスケットは、
前記収容部材に接続され、前記収容部材よりも前記扉の内周側に配置された冷気漏洩抑制部材
を有しており、
前記冷気漏洩抑制部材は、前記第1連結部材よりも熱伝導率が低い材質で形成されている
請求項1〜6のいずれか一項に記載の冷蔵庫。
The gasket is
It has a cold air leakage suppressing member connected to the accommodating member and arranged on the inner peripheral side of the door with respect to the accommodating member.
The refrigerator according to any one of claims 1 to 6, wherein the cold air leakage suppressing member is made of a material having a lower thermal conductivity than the first connecting member.
前記冷気漏洩抑制部材は、前記箱体と前記扉の間を遮蔽する
請求項7に記載の冷蔵庫。
The refrigerator according to claim 7, wherein the cold air leakage suppressing member shields between the box body and the door.
前記ガスケットは、一体成型されている
請求項1〜8のいずれか一項に記載の冷蔵庫。
The refrigerator according to any one of claims 1 to 8, wherein the gasket is integrally molded.
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JPS5249960U (en) * 1975-10-07 1977-04-09
JPS63311077A (en) * 1987-06-09 1988-12-19 旭化成株式会社 Gasket for refrigerator
JPS6470683A (en) * 1987-09-11 1989-03-16 Matsushita Refrigeration Manufacture of door gasket for refrigerator, etc.
JP2002206854A (en) * 2000-11-06 2002-07-26 Matsushita Refrig Co Ltd Door device and refrigerator with the same
JP2008533433A (en) * 2005-03-21 2008-08-21 インダストリエ イルピア ソシエタ ペル アチオニ Two sealing gaskets for refrigerator storage shelves with high thermal insulation performance
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