JP6175228B2 - accumulator - Google Patents

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JP6175228B2
JP6175228B2 JP2012256034A JP2012256034A JP6175228B2 JP 6175228 B2 JP6175228 B2 JP 6175228B2 JP 2012256034 A JP2012256034 A JP 2012256034A JP 2012256034 A JP2012256034 A JP 2012256034A JP 6175228 B2 JP6175228 B2 JP 6175228B2
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refrigerant
gas
accumulator
desiccant
pipe
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JP2014102058A (en
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侯史 細川
侯史 細川
庫人 山崎
庫人 山崎
照之 堀田
照之 堀田
牧田 和久
和久 牧田
伊藤 肇
肇 伊藤
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Fujikoki Corp
Denso Corp
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Fujikoki Corp
Denso Corp
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Description

本発明は、冷凍サイクルを循環する冷媒を気液分離して貯留する形式のアキュムレータに関する。   The present invention relates to an accumulator of a type in which a refrigerant circulating in a refrigeration cycle is gas-liquid separated and stored.

冷凍サイクルを循環する冷媒を気液分離して貯留するため、レシーバタンクやアキュムレータ等が用いられる。この種のアキュムレータとして、例えば特許文献1には、ハウジングと、ハウジング内に配置された管部、フィルタ及び乾燥剤を封入した袋等の内機部品等で構成され、冷媒の導入口からハウジング内に流入した冷媒は、気液分離部材としての笠部に衝突して気相冷媒と、オイルを含む液相冷媒とに気液分離され、分離された気相冷媒は、管部に進入して導出口から排出されるアキュムレータが記載されている。   A receiver tank, an accumulator, or the like is used to separate and store the refrigerant circulating in the refrigeration cycle. As this type of accumulator, for example, Patent Document 1 includes a housing, a pipe portion disposed in the housing, a filter, an internal machine part such as a bag enclosing a desiccant, and the like. The refrigerant flowing into the gas collides with the shade as a gas-liquid separation member and is gas-liquid separated into a gas-phase refrigerant and a liquid-phase refrigerant containing oil, and the separated gas-phase refrigerant enters the pipe part. The accumulator discharged from the outlet is described.

また、特許文献2には、上端が開口した瓶状の胴体と、胴体の開口端を封止し、冷媒流入孔及び冷媒流出孔を備えた本体(ヘッダ)と、胴体の下方に配置された乾燥剤容器等の内機部品とを備え、本体の冷媒流入孔から本体内に流入した冷媒が、旋回部において旋回流へと変換され、旋回流による遠心分離にて液冷媒とガス冷媒とに分離されるアキュムレータが記載されている。   Further, in Patent Document 2, a bottle-shaped body having an upper end opened, a main body (header) provided with a refrigerant inflow hole and a refrigerant outflow hole, and disposed below the body. The refrigerant flowing into the main body from the refrigerant inlet hole of the main body is converted into a swirling flow at the swirling portion, and is converted into a liquid refrigerant and a gas refrigerant by centrifugal separation using the swirling flow. A separate accumulator is described.

実開昭57−2371号公報Japanese Utility Model Publication No. 57-2371 特開2011−21773号公報JP 2011-21773 A

特許文献2に記載された旋回式のアキュムレータでは、特に問題とはならないが、特許文献1に記載のような、冷媒流入孔及び冷媒流出孔が穿設されたヘッダの下方に気液分離部材が存在するアキュムレータでは、乾燥剤が胴体の下部に溜まった液相冷媒と接触することで気泡が発生し、この気泡が気液分離部材に衝突して大きな異音が生じるという問題があった。   In the swivel type accumulator described in Patent Document 2, there is no particular problem. However, as described in Patent Document 1, a gas-liquid separation member is provided below the header in which the refrigerant inflow hole and the refrigerant outflow hole are formed. In the existing accumulator, there is a problem that bubbles are generated when the desiccant comes into contact with the liquid refrigerant accumulated in the lower part of the body, and the bubbles collide with the gas-liquid separation member to generate a large noise.

そこで本発明は、上記従来の技術における問題点に鑑みて、気液分離部材を備えたアキュムレータにおいて、上記気泡の発生に伴う異音の発生を最小限に抑えることができるアキュムレータを提供することを目的とする。   Therefore, in view of the problems in the conventional technology, the present invention provides an accumulator that can minimize the generation of abnormal noise accompanying the generation of bubbles in an accumulator provided with a gas-liquid separation member. Objective.

上記目的を達成するため、本発明に係わるアキュムレータは、上端開口を備え、縦方向に延びる筒形の胴体、並びに縦方向に開口する冷媒流入孔及び冷媒流出孔を備え、前記胴体の開口部に連結されるヘッダからなるタンク本体と、前記冷媒流出孔に連結され、前記タンク本体内に縦方向に延びるインナーパイプ前記インナーパイプの外側に該インナーパイプと共に二重管をなすように設けられたアウターパイプ前記冷媒流入孔から流入した冷媒を衝突させて気液分離するように、前記胴体内の上方空間位置において、前記冷媒流入孔が対向するように設けられた気液分離部材、前記気液分離部材の下方に近接する位置で、前記アウターパイプから水平に一体に延伸された延伸部材乾燥剤を内包し、前記延伸部材に吊り下げられた乾燥剤バッグとを備え、前記延伸部材は複数の腕部を備えると共に、前記乾燥剤バッグは複数の切込み溝を有し、前記乾燥剤バッグは、前記延伸部材の複数の腕部が前記複数の切込み溝に挿入されることにより、該延伸部材から吊り下げられたことを特徴とする。 In order to achieve the above object, an accumulator according to the present invention comprises an opening at the upper end , a cylindrical body extending in the vertical direction, a refrigerant inflow hole and a refrigerant outflow hole opening in the vertical direction, and an opening of the body a header or Ranaru tank body connected to, coupled before Symbol refrigerant outlet hole, formed between the inner pipe extending longitudinally in said tank body, a double pipe with the inner pipe on the outside of the inner pipe an outer pipe which is provided to the so that refrigerant flowing from the refrigerant inlet to collide to gas-liquid separation, Oite space above the position of said body, said refrigerant inlet is provided to face a gas-liquid separating member, at a position close to below the gas-liquid separating member, the stretching member which is stretched integrally horizontally from the outer pipe, enclosing a desiccant, hung on the stretching member The a desiccant bag, said with stretching member comprises a plurality of arms, said desiccant bag has a plurality of notches, the desiccant bag, a plurality of arm portions of the stretching member is the It is characterized by being suspended from the extending member by being inserted into a plurality of cut grooves .

本発明のアキュムレータによれば、乾燥剤バッグを延伸部材に吊り下げたため、タンク本体に貯留された液相冷媒と乾燥剤とが接触して気泡が発生したとしても、気泡の発生位置から気液分離部材までの距離が短いため、気泡が勢いよく気液分離部材に衝突することを回避することができ、異音の発生を最小限に抑えることができる。また、乾燥剤バッグの固定方法として、吊り下げ式を採用したため、バッグを低コストで確実にタンク本体内に固定することができる。   According to the accumulator of the present invention, since the desiccant bag is suspended from the extending member, even if the liquid phase refrigerant stored in the tank body and the desiccant come into contact with each other and bubbles are generated, the gas-liquid is generated from the position where the bubbles are generated. Since the distance to the separation member is short, it is possible to avoid the bubbles from strikingly colliding with the gas-liquid separation member, and the generation of abnormal noise can be minimized. Further, since the hanging type is adopted as the fixing method of the desiccant bag, the bag can be reliably fixed in the tank body at low cost.

上記アキュムレータにおいて、延伸部材に、胴体の内周面と空隙をもって対向する円筒部を設ける構造を採用することにより、円筒部の内部で乾燥剤と冷媒との接触を効果的に行い、冷媒の吸湿を効率よく行うことができる。   In the above accumulator, by adopting a structure in which the extending member is provided with a cylindrical portion facing the inner peripheral surface of the body with a gap, the desiccant and the refrigerant are effectively brought into contact with each other inside the cylindrical portion, and the refrigerant absorbs moisture. Can be performed efficiently.

以上のように本発明によれば、気液分離部材を備えるアキュムレータにおいて、気液分離部材の下方に近接する位置に延伸部材を設け、延伸部材に乾燥剤バッグを吊り下げる構成としたので、異音の発生を最小限に抑えることが可能となる。   As described above, according to the present invention, in the accumulator including the gas-liquid separation member, the extending member is provided at a position close to the lower side of the gas-liquid separating member, and the desiccant bag is suspended from the extending member. It is possible to minimize the generation of sound.

本発明に係るアキュムレータの第1の実施形態を示す図であり、(a)は断面図、(b)は(a)のA−A線断面図、(c)は(b)のB−B線断面図である。It is a figure which shows 1st Embodiment of the accumulator which concerns on this invention, (a) is sectional drawing, (b) is the sectional view on the AA line of (a), (c) is BB of (b). It is line sectional drawing. 図1に示す乾燥剤バッグの展開図である。It is an expanded view of the desiccant bag shown in FIG. 本発明に係るアキュムレータの第2の実施形態を示す図であり、(a)は断面図、(b)は(a)のD−D線断面図である。It is a figure which shows 2nd Embodiment of the accumulator which concerns on this invention, (a) is sectional drawing, (b) is the DD sectional view taken on the line of (a). 図3に示す乾燥剤バッグの展開図である。It is an expanded view of the desiccant bag shown in FIG.

次に、本発明を実施するための好適な実施形態について、図面を参照しながら詳細に説明する。   Next, preferred embodiments for carrying out the present invention will be described in detail with reference to the drawings.

図1は、本発明に係るアキュムレータの第1の実施形態を示し、このアキュムレータ1は、胴体3とヘッダ4とからなるタンク本体2と、タンク本体2内に配置されたアウターパイプ5、インナーパイプ6及びバッグ7等の内機部品等で構成される。   FIG. 1 shows a first embodiment of an accumulator according to the present invention. This accumulator 1 is composed of a tank body 2 composed of a body 3 and a header 4, an outer pipe 5 disposed in the tank body 2, and an inner pipe. 6 and internal parts such as a bag 7.

タンク本体2は、上端開口の筒形の胴体3に対してヘッダ4が溶接部10を介して連結されることによって構成される。胴体3及びヘッダ4は、いずれもアルミニウム合金等の金属によって形成される。   The tank body 2 is configured by connecting a header 4 via a welded portion 10 to a cylindrical body 3 having an upper end opening. The body 3 and the header 4 are both made of a metal such as an aluminum alloy.

ヘッダ4には、冷媒流入孔8及び冷媒流出孔9が縦方向に開口する。冷媒流出孔9は、インナーパイプ6と連通する。   In the header 4, a refrigerant inflow hole 8 and a refrigerant outflow hole 9 are opened in the vertical direction. The refrigerant outflow hole 9 communicates with the inner pipe 6.

ヘッダ4の下方には、冷媒流入孔8からの混合冷媒(気相分と液相分が混在した冷媒)を、密度の高い液相冷媒及びコンプレッサオイル(以下、「オイル」という)と、密度の低い気相冷媒とに分離する気液分離部材16が逆皿状に配置されている。   Below the header 4, a mixed refrigerant (refrigerant in which a gas phase component and a liquid phase component are mixed) from the refrigerant inflow hole 8 is mixed with a high-density liquid phase refrigerant and compressor oil (hereinafter referred to as “oil”), and a density. A gas-liquid separation member 16 that separates into a gas phase refrigerant having a low level is arranged in an inverted dish shape.

胴体3の内部には、気液分離された気相冷媒が流入するアウターパイプ5と、アウターパイプ5に流入した気相冷媒を冷媒流出孔9に導くインナーパイプ6とが二重管構造をもって配置される。   Inside the body 3, an outer pipe 5 into which gas-liquid separated gas-phase refrigerant flows and an inner pipe 6 that guides the gas-phase refrigerant that has flowed into the outer pipe 5 to the refrigerant outlet hole 9 are arranged in a double tube structure. Is done.

アウターパイプ5は、合成樹脂からなり、上端部5aが開口した状態で胴体3に接合される。アウターパイプ5には、その上部位置でアウターパイプ5から水平に延伸する延伸部材20が一体に形成される。この延伸部材20は、4つの腕部20aと、上面から上方に向かって突出する補強用リブ20bが計4つ設けられる。   The outer pipe 5 is made of synthetic resin, and is joined to the body 3 with the upper end portion 5a opened. The outer pipe 5 is integrally formed with an extending member 20 extending horizontally from the outer pipe 5 at the upper position. The extending member 20 is provided with four arm portions 20a and a total of four reinforcing ribs 20b protruding upward from the upper surface.

乾燥剤(吸湿剤)7aを内包したバッグ(以下「乾燥剤バッグ」という。)7は、図2に示すように、3つの切込み溝7cを備え、図1(c)に示すように、切込み溝7cに延伸部材20の腕部20aが挿入されることで延伸部材20に吊下保持されている。なお、乾燥剤バッグ7の切込み溝7cを2つとし、相対向する2本の腕部20aで乾燥剤バッグ7を吊下支持することも可能である。   A bag (hereinafter referred to as “desiccant bag”) 7 containing a desiccant (moisture absorbent) 7a is provided with three cut grooves 7c as shown in FIG. 2, and a cut as shown in FIG. 1 (c). The arm portion 20a of the extending member 20 is inserted into the groove 7c so as to be suspended and held by the extending member 20. The desiccant bag 7 may be provided with two cut grooves 7c, and the desiccant bag 7 may be suspended and supported by two opposing arm portions 20a.

アウターパイプ5の下部内周面には、インナーパイプ6の外周面と当接するパイプリブ23が一体に形成されている。アウターパイプ5の底部には、金属や樹脂からなる網目部材21がインサート成形されたストレーナ22と、オイルをインナーパイプ6内に導くオイル戻し孔24とが備わっている。   A pipe rib 23 that is in contact with the outer peripheral surface of the inner pipe 6 is integrally formed on the lower inner peripheral surface of the outer pipe 5. The bottom of the outer pipe 5 is provided with a strainer 22 in which a mesh member 21 made of metal or resin is insert-molded, and an oil return hole 24 that guides oil into the inner pipe 6.

インナーパイプ6は、アルミニウム合金等の金属からなり、下端部6aが開口すると共に、上端部6bがヘッダ4の冷媒流出孔9に連結される。また、インナーパイプ6の下部は、アウターパイプ5の内周面に凸設されたパイプリブ23の内側に嵌入され、これにより、インナーパイプ6が安定して保持される。   The inner pipe 6 is made of a metal such as an aluminum alloy, the lower end portion 6 a is opened, and the upper end portion 6 b is connected to the refrigerant outflow hole 9 of the header 4. Further, the lower part of the inner pipe 6 is fitted inside a pipe rib 23 projecting from the inner peripheral surface of the outer pipe 5, whereby the inner pipe 6 is stably held.

次に、上記構成を有するアキュムレータ1の動作について、図1を参照しながら説明する。なお、以下の説明においては、アキュムレータ1を冷凍サイクルの蒸発器と圧縮機との間に配置し、蒸発器からの冷媒に含まれる水分を除去してガス冷媒を生成し、これを圧縮機へ戻す場合を例にとって説明する。   Next, the operation of the accumulator 1 having the above configuration will be described with reference to FIG. In the following description, the accumulator 1 is disposed between the evaporator and the compressor of the refrigeration cycle, and moisture contained in the refrigerant from the evaporator is removed to generate a gas refrigerant, which is supplied to the compressor. The case of returning will be described as an example.

蒸発器から排出された冷媒は、接続配管(不図示)を通じてアキュムレータ1に戻される。アキュムレータ1に到達した冷媒は、冷媒流入孔8から胴体3の内部に流入した後、気液分離部材16に衝突し、密度の高い液相冷媒及びオイルと、密度の低い気相冷媒(ガス冷媒)とに分離される。   The refrigerant discharged from the evaporator is returned to the accumulator 1 through a connection pipe (not shown). The refrigerant that has reached the accumulator 1 flows into the fuselage 3 through the refrigerant inflow hole 8, and then collides with the gas-liquid separation member 16, so that a high-density liquid-phase refrigerant and oil and a low-density gas-phase refrigerant (gas refrigerant). ) And are separated.

気液分離後の気相冷媒、液相冷媒及びオイルは、延伸部材20の各腕部20aの間の空隙を通過し、乾燥剤バッグ7によって水分・湿分が吸湿され、液相冷媒及びオイルは、自重により胴体3の底部に貯留される。その過程で、液相冷媒とオイルとの分離が進み、オイルは液相冷媒の下方に溜まる。   The gas-phase refrigerant, liquid-phase refrigerant and oil after gas-liquid separation pass through the gaps between the arm portions 20a of the extending member 20, and moisture and moisture are absorbed by the desiccant bag 7, and the liquid-phase refrigerant and oil are absorbed. Is stored at the bottom of the body 3 by its own weight. In the process, the separation of the liquid phase refrigerant and the oil proceeds, and the oil accumulates below the liquid phase refrigerant.

乾燥剤バッグ7を延伸部材20に吊り下げたため、タンク本体2に貯留された液相冷媒中に気泡が発生したとしても、気泡が勢いよく気液分離部材16に衝突することを回避することができ、異音の発生を最小限に抑えることができる。   Since the desiccant bag 7 is suspended from the extending member 20, even if bubbles are generated in the liquid-phase refrigerant stored in the tank body 2, it is possible to avoid the bubbles from strikingly colliding with the gas-liquid separation member 16. And the occurrence of abnormal noise can be minimized.

気液分離後の気相冷媒は、気液分離部材16の内側を通ってアウターパイプ5に流入し、アウターパイプ5内を下降する。その後、アウターパイプ5の底部で折り返されてインナーパイプ6に流入し、インナーパイプ6内を上昇して冷媒流出孔9に導かれる。このとき、オイル戻し孔24を通じて、胴体3の底に溜まったオイルがストレーナ22によって異物が除去されると共に吸引され、気相冷媒と共に冷媒流出孔9に導かれる。オイルを含んだ気相冷媒は、冷媒流出孔9から排出され、接続配管(不図示)を通じて圧縮機に搬送される。   The gas-phase refrigerant after the gas-liquid separation passes through the inside of the gas-liquid separation member 16 and flows into the outer pipe 5 and descends in the outer pipe 5. After that, it is folded at the bottom of the outer pipe 5 and flows into the inner pipe 6, rises in the inner pipe 6, and is guided to the refrigerant outflow hole 9. At this time, the oil accumulated at the bottom of the body 3 is removed by the strainer 22 and sucked through the oil return hole 24 and guided to the refrigerant outflow hole 9 together with the gas phase refrigerant. The gas-phase refrigerant containing oil is discharged from the refrigerant outflow hole 9 and conveyed to the compressor through a connection pipe (not shown).

図3は、本発明に係るアキュムレータの第2の実施形態を示し、このアキュムレータ31は、図1に示すアキュムレータ1の乾燥剤バッグ7及び延伸部材20に代えて、乾燥剤バッグ37及び延伸部材40を設けたことを特徴とし、この乾燥剤バッグ37及び延伸部材40以外の構成要素については、図1のアキュムレータ1と同じである。そこで、これら乾燥剤バッグ37及び延伸部材40の構成について以下に説明し、図1と同一の構成要素については同一の参照番号を付して説明を省略する。   FIG. 3 shows a second embodiment of the accumulator according to the present invention. This accumulator 31 is replaced with a desiccant bag 37 and a stretching member 40 in place of the desiccant bag 7 and the stretching member 20 of the accumulator 1 shown in FIG. The components other than the desiccant bag 37 and the stretching member 40 are the same as those of the accumulator 1 in FIG. Therefore, the configurations of the desiccant bag 37 and the extending member 40 will be described below, and the same components as those in FIG.

乾燥剤バッグ37は、図4に示すように、乾燥剤37aを内包し、延伸部材40の設置に伴い、図1に示す乾燥剤バッグ7より1つ少ない2つの切込み溝37cを備える。   As shown in FIG. 4, the desiccant bag 37 includes the desiccant 37 a and includes two cut grooves 37 c that are one less than the desiccant bag 7 shown in FIG. 1 when the stretching member 40 is installed.

延伸部材40は、乾燥剤バッグ37の切込み溝37cに挿入される2つの腕部40aと、逆椀状に形成され、乾燥剤バッグ37を収容する円筒部40cを有する。この円筒部40cは、腕部40aと一体に形成される。   The extending member 40 includes two arm portions 40 a that are inserted into the cut grooves 37 c of the desiccant bag 37 and a cylindrical portion 40 c that is formed in an inverted bowl shape and accommodates the desiccant bag 37. The cylindrical portion 40c is formed integrally with the arm portion 40a.

上記構成を有するアキュムレータ31の基本的な動作は、図1に示すアキュムレータ1と同じであるため、詳細説明を省略するが、冷媒流入孔8から胴体3の内部に流入した冷媒は、気液分離部材16によって気液分離された後、胴体3の内壁と円筒部40cとの間の空隙Cと、腕部40aを形成するための切込み溝40dを通過して下降し、乾燥剤バッグ37によって水分・湿分が吸湿される。   The basic operation of the accumulator 31 having the above-described configuration is the same as that of the accumulator 1 shown in FIG. 1, and detailed description thereof is omitted. However, the refrigerant flowing into the body 3 from the refrigerant inflow hole 8 is separated into gas and liquid. After gas-liquid separation by the member 16, the gas passes through the gap C between the inner wall of the body 3 and the cylindrical portion 40 c and the cut groove 40 d for forming the arm portion 40 a, and is lowered by the desiccant bag 37.・ Moisture is absorbed.

本実施の形態では、円筒部40cに乾燥剤バッグ37を収容したため、より安定して乾燥剤バッグ37を保持することができると共に、円筒部40cの内部で乾燥剤37aと冷媒との接触を効果的に行うことができ、水分・湿分の吸湿を効率よく行うことができる。   In the present embodiment, since the desiccant bag 37 is accommodated in the cylindrical portion 40c, the desiccant bag 37 can be held more stably, and the contact between the desiccant 37a and the refrigerant is effective inside the cylindrical portion 40c. It is possible to efficiently absorb moisture and moisture.

なお、乾燥剤バッグ7、37の吊り下げ方法は、上記に限定されず、バッグ7、37の寸法や、保持の確実性を考慮して、切込み溝7c、37cや延伸部材20、40の腕部20a、40aの数を増加させてもよい。   The method for suspending the desiccant bags 7 and 37 is not limited to the above, and the cutting grooves 7c and 37c and the arms of the extending members 20 and 40 are taken into consideration in consideration of the dimensions of the bags 7 and 37 and the certainty of holding. You may increase the number of the parts 20a and 40a.

1 アキュムレータ
2 タンク本体
3 胴体
4 ヘッダ
5 アウターパイプ
5a 上端部
6 インナーパイプ
6a 下端部
6b 上端部
7 乾燥剤バッグ
7a 乾燥剤
7c 切込み溝
8 冷媒流入孔
9 冷媒流出孔
10 溶接部
16 気液分離部材
20 延伸部材
20a 腕部
20b リブ
21 網目部材
22 ストレーナ
23 パイプリブ
24 オイル戻し孔
31 アキュムレータ
37 乾燥剤バッグ
37a 乾燥剤
37c 切込み溝
40 延伸部材
40a 腕部
40c 円筒部
40d 切込み溝
C 空隙
DESCRIPTION OF SYMBOLS 1 Accumulator 2 Tank main body 3 Body 4 Header 5 Outer pipe 5a Upper end part 6 Inner pipe 6a Lower end part 6b Upper end part 7 Desiccant bag 7a Desiccant 7c Cut groove 8 Refrigerant inflow hole 9 Refrigerant outflow hole 10 Welding part 16 Gas-liquid separation member 20 Stretch member 20a Arm portion 20b Rib 21 Mesh member 22 Strainer 23 Pipe rib 24 Oil return hole 31 Accumulator 37 Desiccant bag 37a Desiccant 37c Cut groove 40 Stretch member 40a Arm portion 40c Cylindrical portion 40d Cut groove C Gap

Claims (2)

上端開口を備え、縦方向に延びる筒形の胴体、並びに縦方向に開口する冷媒流入孔及び冷媒流出孔を備え、前記胴体の開口部に連結されるヘッダからなるタンク本体
記冷媒流出孔に連結され、前記タンク本体内に縦方向に延びるインナーパイプ
前記インナーパイプの外側に該インナーパイプと共に二重管をなすように設けられたアウターパイプ
前記冷媒流入孔から流入した冷媒を衝突させて気液分離するように、前記胴体内の上方空間位置において、前記冷媒流入孔が対向するように設けられた気液分離部材
前記気液分離部材の下方に近接する位置で、前記アウターパイプから水平に一体に延伸された延伸部材
乾燥剤を内包し、前記延伸部材に吊り下げられた乾燥剤バッグとを備え、
前記延伸部材は複数の腕部を備えると共に、前記乾燥剤バッグは複数の切込み溝を有し、
前記乾燥剤バッグは、前記延伸部材の複数の腕部が前記複数の切込み溝に挿入されることにより、該延伸部材から吊り下げられた
ことを特徴とするアキュムレータ。
An opening at the upper end, and longitudinally extending tubular fuselage and longitudinal with the refrigerant inlet and the refrigerant outlet hole open to, header or Ranaru tank body which is connected to the opening of the body,
Is connected before Symbol refrigerant outlet hole, and an inner pipe extending longitudinally in said tank main body,
An outer pipe which is provided so as to form a double pipe with the inner pipe on the outside of the inner pipe,
The refrigerant that has flowed from the refrigerant inlet to collide to gas-liquid separation, gas-liquid separation member Oite space above the position of said body, said refrigerant inlet is provided so as to face,
In a position close to below the gas-liquid separating member, the stretching member which is horizontally stretched integrally from the outer pipe,
A desiccant bag enclosing a desiccant and hanging from the stretching member ;
The stretching member includes a plurality of arms, and the desiccant bag has a plurality of cut grooves,
The accumulator is characterized in that the desiccant bag is suspended from the stretching member by inserting a plurality of arms of the stretching member into the plurality of cut grooves .
前記延伸部材には、前記胴体の内周面と空隙をもって対向する円筒部が設けられた
ことを特徴とする請求項1に記載のアキュムレータ。
The accumulator according to claim 1, wherein the extending member is provided with a cylindrical portion facing the inner peripheral surface of the body with a gap.
JP2012256034A 2012-11-22 2012-11-22 accumulator Active JP6175228B2 (en)

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JP6661345B2 (en) * 2015-07-14 2020-03-11 株式会社不二工機 accumulator
CN106352619B (en) * 2015-07-14 2020-05-12 株式会社不二工机 Storage device
JP6514981B2 (en) * 2015-07-17 2019-05-15 株式会社不二工機 accumulator
CN107289691A (en) * 2016-03-31 2017-10-24 浙江三花智能控制股份有限公司 Gas-liquid separator
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US4111005A (en) * 1977-04-07 1978-09-05 General Motors Corporation Press-on plastic baffle for accumulator-dehydrator
JP2575062Y2 (en) * 1991-10-04 1998-06-25 昭和アルミニウム株式会社 Liquid receiver
JPH074787A (en) * 1993-06-17 1995-01-10 Hitachi Ltd Accumulator
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