JPS63138175A - Sealed compressor - Google Patents

Sealed compressor

Info

Publication number
JPS63138175A
JPS63138175A JP28475586A JP28475586A JPS63138175A JP S63138175 A JPS63138175 A JP S63138175A JP 28475586 A JP28475586 A JP 28475586A JP 28475586 A JP28475586 A JP 28475586A JP S63138175 A JPS63138175 A JP S63138175A
Authority
JP
Japan
Prior art keywords
hole
oil supply
supply hole
oil
rotary shaft
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
JP28475586A
Other languages
Japanese (ja)
Inventor
Yuji Saeki
佐伯 雄二
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.)
Panasonic Holdings Corp
Original Assignee
Matsushita Refrigeration Co
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 Matsushita Refrigeration Co filed Critical Matsushita Refrigeration Co
Priority to JP28475586A priority Critical patent/JPS63138175A/en
Publication of JPS63138175A publication Critical patent/JPS63138175A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B39/00Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
    • F04B39/16Filtration; Moisture separation

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressor (AREA)

Abstract

PURPOSE:To facilitate separation of waste from gas by forming a gas bleeder hole, which is to put oil supply hole formed in a rotary shaft in a single piece with a crank shaft stretching in the longitudinal direction of the compressing mechanism in communication with a sealed vessel in such an arrangement that its backmost part is inclined lower, and forming this backmost part to be used as a waster storage hole. CONSTITUTION:In this sealed compressor, a crank shaft 8 is rotated by a motor part through a rotary shaft 8a to which the rotor of said motor part is fixed, and a piston 7 of the compressor part is reciprocated through a connecting rod 9, to compress the refrigerant and discharge. At this time, the refrigerator oil 14 is sucked through an oil lead-in hole 16 formed at the bottom of said rotary shaft 8a, and supplied to parts to be lubricated via an oil supply hole 17 formed inclined. Here a gas bleeder hole 18 to put the oil supply hole 17 in communication to inside the sealed vessel is formed in the rotary shaft 8a in such a way that the backmost portion is inclined lower, and this backmost portion is made deeper than the oil supply hole 17 so as to be used as a waste storage hole 19, which shall serve separation and removal of waste from the gas.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は冷蔵庫、エアーコンディショナー等に使用する
密閉形圧縮機に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application The present invention relates to a hermetic compressor used in refrigerators, air conditioners, etc.

従来の技術 近年、密閉形圧縮機は小形、軽量、高性能化を計るとと
もに長期間の使用に耐える様々な改良が進められその信
頼性は著しく向上している。
BACKGROUND OF THE INVENTION In recent years, hermetic compressors have been made smaller, lighter, and more efficient, and various improvements have been made to ensure that they can withstand long-term use, and their reliability has significantly improved.

以下図面を参照しながら上述した従来の密閉形圧縮機の
一例について説明する。
An example of the conventional hermetic compressor mentioned above will be described below with reference to the drawings.

第3図は従来の密閉形圧縮機の断面図を示すものである
。図において1は電動圧縮機の電動機で固定子2と回転
子3より構成され、接続端子4゜密封端子5を通して電
源に通じている。6はピストン7、クランクシャフト8
.コンロッド9と電動圧縮機の本体部となるケーシング
1oより構成される圧縮機構で、前記回転子30回転に
より前記ピストン7を往復動させる構造となっている。
FIG. 3 shows a sectional view of a conventional hermetic compressor. In the figure, reference numeral 1 denotes a motor for an electric compressor, which is composed of a stator 2 and a rotor 3, and is connected to a power source through connection terminals 4 and sealed terminals 5. 6 is piston 7, crankshaft 8
.. The compression mechanism is composed of a connecting rod 9 and a casing 1o which is the main body of the electric compressor, and has a structure in which the piston 7 is reciprocated by the rotation of the rotor 30.

11はスティでクランクストップ12とともに密閉容器
13に取り付けられ電動圧縮機の支持をするだめの構成
部品である。14は前記密閉容器13に封入された冷凍
機油で前記圧縮機構6を構成するクランクシャフト8の
下端部が浸っている。
Reference numeral 11 denotes a stay, which is a component that is attached to the closed container 13 together with the crank stop 12 and supports the electric compressor. Reference numeral 14 denotes refrigerating machine oil sealed in the airtight container 13, into which the lower end of the crankshaft 8 constituting the compression mechanism 6 is immersed.

第4図は前記圧縮機構6の詳細図である。図において8
aは前記クランクシャフト8の回転軸で、下端部にこの
回転軸と同窓に配した油導入孔16より前記回転軸8a
に対してななめ上方向に傾斜して開けた給油孔17と交
差するガス抜き穴18は一端を前記給油孔に他端を前記
回転軸の軸芯方向にのび前記冷凍機油14の油面より上
側に連通している。
FIG. 4 is a detailed view of the compression mechanism 6. In the figure 8
a is the rotating shaft of the crankshaft 8, and the rotating shaft 8a is inserted through the oil introduction hole 16 arranged at the lower end in the same window as the rotating shaft.
A gas vent hole 18 that intersects with the oil supply hole 17, which is opened diagonally upward and inclined, has one end connected to the oil supply hole and the other end extending in the axial direction of the rotating shaft above the oil level of the refrigerating machine oil 14. is connected to.

以上のように構成された密閉形圧縮機について、以下そ
の動作について説明する。電動機1の回転子3の回転運
動によりクランクシャフト8の回転軸8aも回転をし、
回転軸8aの下端部は冷凍機14に浸った状態で回転を
するため油導入孔16を通して給油孔17内にある冷凍
機油14には遠心力が働き給油孔17の傾斜角に応じた
揚力で圧縮機構6を構成する各々摺動部分に連続して潤
滑給油される。その後電動機1.密閉容器14等を伝っ
て密閉容器14底面に冷凍機油14は貯えられ再び同様
の動作を繰り返す。油導入孔16を経由して給油孔17
を上昇する冷凍機油14は遠心力の働きによって回転軸
8aの軸芯より離れ傾斜した給油孔17の側面を上昇し
、回転軸8aの軸芯側は冷凍機油14中に溶解した冷媒
がガス化して溜る。このガスは圧縮機構6を構成する各
々摺動部分への潤滑に悪影響を与えるため給油孔17よ
り排出する必要がありガス抜き孔18を通して密閉容器
14へ戻すよう構成されている。
The operation of the hermetic compressor configured as above will be described below. Due to the rotational movement of the rotor 3 of the electric motor 1, the rotating shaft 8a of the crankshaft 8 also rotates,
Since the lower end of the rotating shaft 8a rotates while immersed in the refrigerator 14, centrifugal force acts on the refrigerator oil 14 in the oil supply hole 17 through the oil introduction hole 16, and a lift force corresponding to the inclination angle of the oil supply hole 17 is applied. Each sliding portion constituting the compression mechanism 6 is continuously lubricated. Then electric motor 1. The refrigerating machine oil 14 is stored on the bottom surface of the sealed container 14 through the sealed container 14 and the like, and the same operation is repeated again. Oil supply hole 17 via oil introduction hole 16
The refrigerating machine oil 14 that rises up the side of the oil supply hole 17 that is tilted away from the axis of the rotating shaft 8a due to the action of centrifugal force, and the refrigerant dissolved in the refrigerating machine oil 14 is gasified on the axis side of the rotating shaft 8a. It accumulates. Since this gas adversely affects the lubrication of the sliding parts of the compression mechanism 6, it must be discharged from the oil supply hole 17 and returned to the closed container 14 through the gas vent hole 18.

発明が解決しようとする問題点 しかしながら上記のような構成では密閉容器内に残留す
る金属粉を主体としたゴミが冷凍機油中に混在している
ので圧縮機構を構成する各々摺動部分を潤滑給油する時
摺動部間の隙間に冷凍機油中のゴミがかみ込み回転子の
拘束による密閉形圧縮機の機能が停止するという問題点
を有していた。
Problems to be Solved by the Invention However, with the above configuration, dust mainly consisting of metal powder remaining in the closed container is mixed in the refrigerating machine oil, so it is necessary to lubricate each sliding part that makes up the compression mechanism. When doing so, there is a problem in that dust in the refrigerating machine oil gets caught in the gap between the sliding parts and the function of the hermetic compressor stops due to the restriction of the rotor.

本発明は上記問題点に鑑み圧縮機を構成する各々摺動部
に混在しているゴミを分離した冷凍機油を供給する密閉
形圧縮機を提供するものである。
In view of the above problems, the present invention provides a hermetic compressor that supplies refrigerating machine oil from which dust mixed in sliding parts constituting the compressor has been separated.

問題点を解決するための手段 上記問題点を解決するために本発明の密閉形圧縮機はク
ランクシャフトの回転軸に設けた給油孔と密閉容器内を
連通ずるガス抜き孔を給油孔側を低く傾斜させガス抜き
孔奥端部を給油孔より深くすることにより凹部を備えた
ものである。
Means for Solving the Problems In order to solve the above-mentioned problems, the hermetic compressor of the present invention has a gas vent hole that communicates between the oil supply hole provided on the rotating shaft of the crankshaft and the inside of the closed container, so that the gas vent hole is lowered on the side of the oil supply hole. A concave portion is provided by making the back end of the gas vent hole deeper than the oil supply hole.

作  用 本発明は上記した構成によって給油孔の油通路部に凹部
を設けて冷凍機油中に混在する金属粉を主体としたゴミ
を分離することで摺動部間の隙間にゴミがかみ込み回転
子の拘束による密閉形圧縮機の機能が停止することを防
ぐこととなる。
Function The present invention has the above-described configuration, and by providing a recess in the oil passage of the oil supply hole to separate dust mainly consisting of metal powder mixed in the refrigerating machine oil, the dust gets caught in the gap between the sliding parts and rotates. This prevents the hermetic compressor from stopping functioning due to child restraint.

実施例 以下本発明の一実施例の密閉形圧縮機について第1図、
第2図を参照しながら説明するが、従来と同一構成につ
いては同一番号を符してその詳細な説明を省略する。第
2図は第1図圧縮機構6の詳細図中におけるクランクシ
ャフト8の回転軸下端部の詳細である。図において19
はゴミ溜穴で給油孔17に向って傾斜したガス抜き孔1
8を明ける時奥端部を前記給油孔17より深くすること
により形成されたものである。前記ガス抜き孔18゛は
前記回転軸8aの開放端側に対して前記ゴミ溜り穴19
を下方に位置させる方向に傾斜して明けている。
EXAMPLE FIG. 1 shows a hermetic compressor according to an example of the present invention.
A description will be given with reference to FIG. 2, but the same components as the conventional one will be denoted by the same reference numerals and detailed explanation thereof will be omitted. FIG. 2 shows details of the lower end of the rotating shaft of the crankshaft 8 in the detailed view of the compression mechanism 6 in FIG. 1. 19 in the figure
is a dust collection hole, which is a gas vent hole 1 that slopes toward the oil supply hole 17.
8 is formed by making the rear end deeper than the oil supply hole 17. The gas vent hole 18' is connected to the dust collecting hole 19' toward the open end side of the rotating shaft 8a.
It is slanted in the direction in which it is positioned downward.

以上のように構成された密閉形圧縮機の動作について説
明する。油導入孔16よυ入り給油孔17に存在する冷
凍機油14は回転軸8aの回転運動により遠心力を受は
給油孔17の壁面を矢印イのように移動し各摺動部に潤
滑給油される。冷凍機油中には冷媒が溶解しており電動
圧縮機の駆動により攪拌、密閉容器13内の減圧等によ
り冷媒が発泡しガス状となって給油孔17内に溢れて給
油の防げを起こさないようガス抜き孔18を通して矢印
口のよう密閉容器内へ戻される。この他に冷凍機油14
中には上記一連の動作中に金属粉を主体としたゴミも混
在しておりこのゴミは矢印イに従って給油孔17の壁面
に沿って上方向に移動するがガス抜き孔18が傾斜して
いるので冷凍機油14よシ強い遠心力を受けて容易に分
離され、ゴミ溜穴19に堆積ハし金属粉を主体としたゴ
ミは各摺動面までは導かれない。
The operation of the hermetic compressor configured as above will be explained. The refrigerating machine oil 14 present in the oil supply hole 17 through the oil introduction hole 16 receives centrifugal force due to the rotational movement of the rotating shaft 8a, and moves along the wall surface of the oil supply hole 17 as shown by arrow A, lubricating each sliding part. Ru. The refrigerant is dissolved in the refrigerating machine oil, and is stirred by the drive of the electric compressor, and by reducing the pressure inside the sealed container 13, etc., the refrigerant foams, becomes gaseous, and prevents the refrigerant from overflowing into the oil supply hole 17 and preventing oil supply. It passes through the gas vent hole 18 and returns into the sealed container as indicated by the arrow. In addition, refrigeration oil 14
During the above series of operations, there is also dust mixed in, mainly consisting of metal powder, and this dust moves upward along the wall of the oil supply hole 17 according to arrow A, but the gas vent hole 18 is slanted. Therefore, the refrigerating machine oil 14 is easily separated by a strong centrifugal force, and the dust, which is deposited in the dust collecting hole 19 and mainly consisting of metal powder, is not guided to each sliding surface.

以上のように本実施例によれば、給油孔17の途中にゴ
ミ溜穴19を有する傾斜したガス抜き孔18を設けるこ
とにより圧縮機構を構成する各摺動部に冷凍機油に混在
した金属粉を主体とするゴミの移動を防ぎ回転子の拘束
による密閉形圧縮機の機能停止を防止することができる
As described above, according to this embodiment, by providing the inclined gas vent hole 18 having the dust collection hole 19 in the middle of the oil supply hole 17, metal powder mixed in the refrigerating machine oil can be removed from each sliding part of the compression mechanism. It is possible to prevent the movement of dust mainly consisting of , and to prevent the hermetic compressor from stopping due to rotor restriction.

発明の効果 以上のように本発明はクランクシャフトの回転軸に設け
た給油孔に対して密閉容器内を連通ずるガス抜き孔を給
油孔側を低く傾斜させて設け、且このガス抜き孔の奥端
部を給油孔より深くし凹部を設けることによりゴミ溜穴
を形成したのでガス中から容易にゴミを分離することが
でき、従って各摺動部に冷凍機油に混在した金属粉を主
体とするゴミの移動を防ぎ回転子の拘束による密閉形圧
縮機の機能停止を防止することが出来る。
Effects of the Invention As described above, the present invention provides a gas vent hole that communicates with the oil supply hole in the rotating shaft of the crankshaft through the inside of the sealed container, with the fuel hole side slanted low, and furthermore, the gas vent hole that communicates with the oil supply hole provided on the rotating shaft of the crankshaft is provided with a low slope. By making the end part deeper than the oil supply hole and providing a concave part, a dirt collection hole is formed, so dirt can be easily separated from the gas, and therefore each sliding part contains mainly metal powder mixed in the refrigerating machine oil. It is possible to prevent the movement of dust and prevent the hermetic compressor from stopping due to rotor restriction.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の一実施例における密閉形圧縮機の圧縮
機構の断面図、第2図は第1図のクランクシャフト下部
の拡大断面図、第3図は従来の密閉形圧縮機の断面図、
第4図は第3図の圧縮機構の断面図である。 8・・・・・・クランクシャフト、8a・・・・・・回
転軸、13・・・・・・密閉容器、16・・・・・・油
導入孔、17・・・・・・給油孔、18・・・・・・ガ
ス抜き孔、19・・・・・・ゴミ溜穴。 代理人の氏名 弁理士 中 尾 敏 男 ほか1名3−
−−クランクシャフト 8α−一一巨I医細 16一−−油等入札 t”t−−−4合う白各し 18−一一ガス抜き孔 N2図 第 3 図 第4図
Fig. 1 is a sectional view of a compression mechanism of a hermetic compressor according to an embodiment of the present invention, Fig. 2 is an enlarged sectional view of the lower part of the crankshaft in Fig. 1, and Fig. 3 is a sectional view of a conventional hermetic compressor. figure,
FIG. 4 is a sectional view of the compression mechanism of FIG. 3. 8... Crankshaft, 8a... Rotating shaft, 13... Sealed container, 16... Oil introduction hole, 17... Oil supply hole , 18... Gas vent hole, 19... Dust collection hole. Name of agent: Patent attorney Toshio Nakao and 1 other person3-
--Crankshaft 8α-11 Giant I Medical details 161--Oil, etc. bid t''t---4 Matching white each 18-11 Gas vent hole N2 Figure 3 Figure 4

Claims (1)

【特許請求の範囲】[Claims] 密閉容器内に垂直方向のクランクシャフト回転軸を有す
る圧縮機構を収納し、前記回転軸に対してななめ上方向
に傾斜して開けた給油孔を設けるとともに前記クランク
シャフト回転軸に前記給油孔と密閉容器内を連通するガ
ス抜き孔を奥端部を低く傾斜させて設け、且、前記ガス
抜き孔の奥端部を前記給油孔より深くすることによりゴ
ミ溜穴を備えたことを特徴とする密閉形圧縮機。
A compression mechanism having a vertical crankshaft rotation axis is housed in an airtight container, and an oil supply hole is provided diagonally upwardly with respect to the rotation axis, and the oil supply hole is sealed in the crankshaft rotation axis. A sealed container characterized in that a gas vent hole that communicates with the inside of the container is provided with a back end inclined low, and a dirt collection hole is provided by making the back end of the gas vent hole deeper than the oil supply hole. shape compressor.
JP28475586A 1986-11-28 1986-11-28 Sealed compressor Pending JPS63138175A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP28475586A JPS63138175A (en) 1986-11-28 1986-11-28 Sealed compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP28475586A JPS63138175A (en) 1986-11-28 1986-11-28 Sealed compressor

Publications (1)

Publication Number Publication Date
JPS63138175A true JPS63138175A (en) 1988-06-10

Family

ID=17682581

Family Applications (1)

Application Number Title Priority Date Filing Date
JP28475586A Pending JPS63138175A (en) 1986-11-28 1986-11-28 Sealed compressor

Country Status (1)

Country Link
JP (1) JPS63138175A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017145281A1 (en) * 2016-02-24 2017-08-31 三菱電機株式会社 Scroll compressor

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS498327U (en) * 1972-04-18 1974-01-24
JPS56107984A (en) * 1980-02-01 1981-08-27 Hitachi Ltd Compressor shaft

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS498327U (en) * 1972-04-18 1974-01-24
JPS56107984A (en) * 1980-02-01 1981-08-27 Hitachi Ltd Compressor shaft

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017145281A1 (en) * 2016-02-24 2017-08-31 三菱電機株式会社 Scroll compressor

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