JPS58140494A - Motor compressor - Google Patents

Motor compressor

Info

Publication number
JPS58140494A
JPS58140494A JP2270682A JP2270682A JPS58140494A JP S58140494 A JPS58140494 A JP S58140494A JP 2270682 A JP2270682 A JP 2270682A JP 2270682 A JP2270682 A JP 2270682A JP S58140494 A JPS58140494 A JP S58140494A
Authority
JP
Japan
Prior art keywords
oil
scroll
electric compressor
supply hole
oil supply
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.)
Granted
Application number
JP2270682A
Other languages
Japanese (ja)
Other versions
JPH044477B2 (en
Inventor
Akira Murayama
朗 村山
Hiroaki Kuno
久野 裕章
Naoshi Uchikawa
内川 直志
Takahiro Tamura
田村 貴寛
Takao Mizuno
隆夫 水野
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.)
Hitachi Ltd
Original Assignee
Hitachi 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 Hitachi Ltd filed Critical Hitachi Ltd
Priority to JP2270682A priority Critical patent/JPS58140494A/en
Publication of JPS58140494A publication Critical patent/JPS58140494A/en
Publication of JPH044477B2 publication Critical patent/JPH044477B2/ja
Granted legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04CROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
    • F04C29/00Component parts, details or accessories of pumps or pumping installations, not provided for in groups F04C18/00 - F04C28/00
    • F04C29/02Lubrication; Lubricant separation

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Rotary Pumps (AREA)

Abstract

PURPOSE:To simplify the work of an oil feeding hole by a method wherein a compression mechanism is constituted by rotating and fixed scrolls consisting of a mirror plate and a scroll-shaped lap standing vertically on the mirror plate while oil is fed from the oil feeding holes provided on the fixed scroll to the sliding surfaces of both scrolls. CONSTITUTION:The fixed scroll 10 is bored with a plurality of oil feeding holes 18 and the rotating scroll 1 is formed by the mirror plate 2 and the scroll-shaped lap 3 standing vertically on the mirror plate 2 while oil holding parts 30, pinching points 27 opposing to the oil feeding holes 18 and consisting of two sets of wide parts 28 and a narrow part 29 connecting the wide parts, are provided independently for each opposing oil feeding holes. The oil feeding holes 18 effect relative rotating motions with respect to the oil holding parts 30 due to the relative rotating motion between the fixed and rotating scrolls and thereby feeding the oil.

Description

【発明の詳細な説明】 本開明はスクロール圧縮機構を有する電動圧縮機に係り
、時にスクロール鏡板面の潤滑を簡単な構造で行なう構
造に関するものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to an electric compressor having a scroll compression mechanism, and more particularly to a structure for lubricating a scroll end plate surface with a simple structure.

従来のスクロール圧縮機では第1図に示すように、旋回
スクロール1の鏡板2と固定スクロール3との摺動面4
の潤滑は旋回スクロール1の鏡板2に設けた給油穴5.
6を介して旋回スクロール1の背面の旋回軸受ボス部7
に設けた油孔7aより給油を行なっていた。
In a conventional scroll compressor, as shown in FIG. 1, the sliding surface 4 between the end plate 2 of the orbiting scroll 1 and the fixed scroll 3 is
Lubrication is provided through the oil supply hole 5 provided in the end plate 2 of the orbiting scroll 1.
6 to the orbiting bearing boss portion 7 on the back surface of the orbiting scroll 1
Oil was supplied through an oil hole 7a provided in the tank.

このたl) S旋回スクロール1に給油穴5及び6を設
ける必要があり、さらに給油穴5の先端を密封する止め
栓8なども必要をなる。
For this reason, l) It is necessary to provide oil supply holes 5 and 6 in the S orbiting scroll 1, and a stopper 8 for sealing the tip of the oil supply hole 5 is also required.

さらに旋回軸受ボス部7に設は九油孔7aの油は、旋回
軸受9と旋回スクロール鏡板部4の両方に供給されるた
め双方の油量のバランスが難しく、鏡板部への給油が過
大になると旋回軸受部への給油が不十分になる欠点があ
る。
Furthermore, since the oil in the nine oil holes 7a provided in the orbiting bearing boss 7 is supplied to both the orbiting bearing 9 and the orbiting scroll end plate 4, it is difficult to balance the amount of oil between the two, resulting in excessive oil supply to the end plate. If this happens, there is a drawback that the lubrication of the swing bearing becomes insufficient.

本発明は、旋回スクロール鏡板と固定スクロール摺動面
への給油を、旋回スクロールを介せず、固定スクロール
側より行ない、かつ、旋回軸受への給油と独立すること
により、給油穴加工の簡素化および旋回輪受給油の安定
化をはかることを目的とするものである。
The present invention simplifies the machining of the oil supply hole by supplying oil to the orbiting scroll end plate and the sliding surface of the fixed scroll from the fixed scroll side without going through the orbiting scroll, and by supplying oil to the orbiting bearing independently. The purpose of this is to stabilize the oil supply to the swinging wheels.

本発明は上記の目的を達成するために、固定スクロール
に給油孔を設けて簡単な構造によシ確実に給油が行なえ
るようにした特徴を有する。
In order to achieve the above object, the present invention has a feature in that a fixed scroll is provided with an oil supply hole so that oil can be reliably supplied with a simple structure.

旋回スクロール鏡板部への給油は最終的にラップ周囲の
低圧部である吸入室へ流れ込むため、油の供給源が収入
圧力以上の高圧であれば、給油経路は自由に取れる。
Since the oil supplied to the orbiting scroll mirror plate ultimately flows into the suction chamber, which is a low-pressure area around the wrap, any oil supply route can be taken as long as the oil supply source has a high pressure higher than the income pressure.

従って、給油経路を旋回軸受の給油経路と分離すること
によシ、〃ロエの簡素化、給油の安定化がはかれる。
Therefore, by separating the oil supply path from the oil supply path of the swing bearing, it is possible to simplify the flow and stabilize the oil supply.

以下、本発明の一実施例を第2図〜第5図により説明す
る。
An embodiment of the present invention will be described below with reference to FIGS. 2 to 5.

鏡板2上に直立したうす巻き状のラップ3を有する旋回
スクロール1は、固定スクロール10と互いにラップを
内側に向けて組み合わされ、フレーム14で狭佇される
An orbiting scroll 1 having a thinly wound wrap 3 standing upright on an end plate 2 is assembled with a fixed scroll 10 with the wraps facing inward, and is enclosed by a frame 14.

旋回スクロールの背面Vこは、旋回軸受ボス7と自転防
止機構11が設けられ、旋回軸受ボス部の旋回l111
受9Vこは、クランク軸12のクランク13が挿入され
る。
On the rear surface V of the orbiting scroll, a rotation bearing boss 7 and an anti-rotation mechanism 11 are provided.
The crank 13 of the crankshaft 12 is inserted into the receiver 9V.

クランク軸12はフレーム14に支承され、軸端には、
モータ15が設置される。
The crankshaft 12 is supported by a frame 14, and at the shaft end,
A motor 15 is installed.

これらの圧縮機構は、谷閉谷器16に収納され、密閉容
器の下部は油溜17となっている。
These compression mechanisms are housed in a valley closure device 16, and the lower part of the closed container is an oil reservoir 17.

固定スクロール10は旋回スクロール1の鏡板2と同定
スクロールの摺動s4に開口する給油穴18を有する。
The fixed scroll 10 has an oil supply hole 18 that opens to the end plate 2 of the orbiting scroll 1 and the sliding portion s4 of the identification scroll.

モータ15の回転によシ旋回スクロール1は、クランク
13と自転防止機構11によりb定スクロール10に対
して旋回運動を行なう。
Due to the rotation of the motor 15, the orbiting scroll 1 performs an orbiting motion relative to the constant b scroll 10 by means of the crank 13 and the rotation prevention mechanism 11.

この結果旋回スクロールと固定スクロールで形成される
空間は中心に移動するに従ってその容積を減少し、吸入
口19より吸入したガスを圧縮し、固定スクロールの吐
出穴20より吐出する。
As a result, the volume of the space formed by the orbiting scroll and the fixed scroll decreases as it moves toward the center, compressing the gas sucked in through the suction port 19 and discharging it through the discharge hole 20 of the fixed scroll.

吐出されたガスは通路21を通って下方に流れ、モータ
を冷却した後吐出管22より圧縮機外部に吐出される0 固定スクロール給油穴18は通路23に連通し、通路の
先端は密閉容器16下部の油溜17に開口する。
The discharged gas flows downward through the passage 21, cools the motor, and then is discharged to the outside of the compressor from the discharge pipe 22. It opens into the oil sump 17 at the bottom.

油溜り部は高圧となり、給油穴部は低圧となるため差圧
により、通路23、給油穴18を通って油が旋回スクロ
ール鏡板の摺動部4へ供給される一方、旋回軸受9への
給油は、クランク軸12に設けた給油穴24を介して行
なわれ、旋回軸受の給油と旋回スクロール鏡板部の給油
はそれぞれ独立して行なわれる。
The pressure in the oil reservoir is high and the pressure in the oil supply hole is low. Due to the differential pressure, oil is supplied to the sliding part 4 of the orbiting scroll end plate through the passage 23 and the oil supply hole 18, while oil is supplied to the orbiting bearing 9. This is done through the oil supply hole 24 provided in the crankshaft 12, and the oil supply to the orbiting bearing and the oil supply to the orbiting scroll end plate are performed independently.

給油穴18に連通する通路23は第2図のように、容器
下部の油溜り17に開口しても良いが、吐出穴20から
吐出されるガスは油も含んでいるため、第2a図のよう
に固定スクロール10の外面に油溜26を設け、ここに
開口しても良い。また旋回スクロールの背面に形成され
る背圧室25にも、クランク軸を支承する軸受からの油
があるため、ここに開口しても良い。
The passage 23 communicating with the oil supply hole 18 may open into the oil reservoir 17 at the bottom of the container as shown in FIG. 2, but since the gas discharged from the discharge hole 20 also contains oil, the passage 23 in FIG. An oil reservoir 26 may be provided on the outer surface of the fixed scroll 10 and opened there. Further, the back pressure chamber 25 formed on the back surface of the orbiting scroll also contains oil from the bearing that supports the crankshaft, so the back pressure chamber 25 may be opened there.

また給油穴18は第3図に示すごとく複数個設けても1
個でも良い。
Moreover, even if a plurality of oil supply holes 18 are provided as shown in FIG.
Even individual pieces are fine.

ここでは90°おきに4個設けた例を示す。Here, an example is shown in which four are provided at 90° intervals.

また、旋回スクロール鏡板の、給油穴18に対応する位
置に油を保持するための溝、凹み等を設けると一層効果
がある。
Furthermore, it is even more effective to provide a groove, recess, etc. for retaining oil at a position corresponding to the oil supply hole 18 on the orbiting scroll end plate.

第4図に一例を示す。旋回スクロールの鏡板2に、給油
穴18に対面する点27をはさんで、2個の幅広部28
とこれをつなぐ1−狭部29からなる油保持部30を、
各給油穴ととに独立して設ける0 この油保持部30と給油穴18の関係は第5図に示すよ
うに、旋回スクロー、ルと固定スクロールは相対的に旋
回運動を行なうため、油保持部30に対して、給油穴が
相対的に旋回運動を行なうことになる。
An example is shown in FIG. Two wide parts 28 are formed on the end plate 2 of the orbiting scroll, sandwiching the point 27 facing the oil supply hole 18.
and the oil holding part 30 consisting of the 1-narrow part 29 connecting this,
The relationship between the oil holding portion 30 and the oil filling hole 18 is as shown in FIG. The refueling hole performs a pivoting movement relative to the portion 30.

従って給油穴は第5図に破線で示すように動き油保持部
30に間欠的に連通する。さらに、この連通は旋回スク
ロールの旋回に対応して順次連通する。
Therefore, the oil supply hole communicates intermittently with the movement oil holding portion 30 as shown by broken lines in FIG. Further, this communication is sequentially established in accordance with the rotation of the orbiting scroll.

この給油穴の移動はスフ四−ルの旋回量に等しい。従っ
て、旋回量に対し、油保持部30の幅の建め方によシ、
常に給油穴と連通ずることも、間欠的に連通することも
可能である0 さらに、ここでは、独立した油保持部30のクリを示し
たが、全周をリング状の溝でつなぐ事も可能である。
The movement of this oil supply hole is equal to the amount of rotation of the main shaft. Therefore, depending on the amount of rotation, the width of the oil holding portion 30 may vary.
It is possible to constantly communicate with the oil supply hole or to communicate intermittently0.Furthermore, although an independent oil holding part 30 is shown here, it is also possible to connect the entire circumference with a ring-shaped groove. It is.

これらは鏡板への給油の目的によりその仕様を変える事
ができる。
The specifications of these can be changed depending on the purpose of lubricating the head plate.

すなわち、潤滑のみの給油の場合、全周のリング溝で充
分であり、給油穴の個数も減らすことができる。給油量
をコントロールするためKは、間欠的に連通する油保持
部30を設ければ艮い。
That is, in the case of oil supply only for lubrication, a ring groove around the entire circumference is sufficient, and the number of oil supply holes can also be reduced. In order to control the amount of oil supplied, K can be solved by providing an oil holding part 30 that communicates intermittently.

さらに、旋回スクロールに作用する転覆モーメントによ
る旋回スクロールのミソすり連動を防止するためには、
ここに示した例のように、独立した油保持部30に順次
連通する構造とすれば良い以上の構造により、旋回スク
ロールの鏡板に、加工の困難な給油穴を設けることなく
、旋回スクロール鏡板部へ給油を行なうことができる。
Furthermore, in order to prevent interlocking of the orbiting scroll due to the overturning moment acting on the orbiting scroll,
As shown in the example shown here, the above-described structure allows communication with the independent oil retaining portions 30 in sequence, so that the end plate of the orbiting scroll can be easily formed without providing an oil supply hole that is difficult to process. can be refueled.

さらVこ、旋回軸受への給油と分離することかでさ、旋
回軸受への給油もケタ化できる0
Furthermore, by separating the oil supply to the slewing bearing, the lubrication to the slewing bearing can also be done in digits.

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

第1図は従来のスクロール圧縮機の断面図、第2図@2
a図は本発明のスクロール圧縮機の断面図、第3図は本
発明の固定スクロールの下面図、第を図は本発明の旋回
スクロールの上面図、第5図は旋回スクロール鏡板上の
油保持部と固定スクロール給油穴位置の関係を示す上面
図である。
Figure 1 is a cross-sectional view of a conventional scroll compressor, Figure 2 @2
Figure a is a sectional view of the scroll compressor of the present invention, Figure 3 is a bottom view of the fixed scroll of the present invention, Figure 5 is a top view of the orbiting scroll of the present invention, and Figure 5 is oil retention on the orbiting scroll end plate. FIG. 3 is a top view showing the relationship between the fixed scroll oil supply hole position and the fixed scroll oil supply hole position.

Claims (1)

【特許請求の範囲】 1、 台板(鏡板)とこの鏡板に直立しているうす巻き
状のラップからなる旋回スクロール及び固定スクロール
を有し、両スクロールを互いにラップを内側に回けて組
み合わせ、各々のラップと鏡板により形成される空間が
スクロールの中心方向に移動する従ってその容積を減少
するように両スクロールの相対運動を行なうスクロール
圧縮機構を有する電動圧縮機において、両スクロールの
鏡板摺動面へ固定スクロールに設けた給油穴よシ給油を
行なうことを特徴とする電動圧縮機。 2 廂足スクロールに設けた給油穴が圧縮機内部の油溜
シ部と連結してなる特許請求の範囲第1項記載の電動圧
縮機。 3、圧縮機内部の油舗り部が密閉容器底の油溜り部であ
る。特許請求の範囲第2項記載の電動圧縮機。 4 圧縮機内部の油溜り部が背圧室の油溜り部である特
許請求の範囲第2項記載の電動圧縮機。 5、固定スクロールに設けた給油穴が固定スクロール外
表面に設けた油溜と連通してなる特許請求の範囲第1項
記載の電動圧縮機。 6 台板(鏡板)とこの跳板に直立しているうす巻き状
のラップからなる旋回スクロール及び固定スクロール’
t−! L、両スクロールを互いにラップを内側に向け
て組み合わせ、各々のラップと鏡板によ多形成される空
間がスクロールの中心方向に移動するに従ってその容積
を減少するように両スクロールの相対運動を行なうスク
ロール圧縮機構を有する電動圧縮機において、両スクロ
ールの鏡板摺動面へ、固定スクロールに設けた給油穴よ
り給油を行なうと共に、上記固定スクロールの給油穴と
対面する旋回スクロールの一板部に油保持部を形成した
ことを特徴とする電動圧縮機。 γ、油保持部と給油穴が間欠的に連通するようにした特
許請求の範囲第6項記載の電動圧縮機。 8、油保持部を互いに独立して複数個設け、旋回スクロ
ールの旋回運動に対応して油保持部が順次給油穴と連通
ずるようにした特許請求の範囲第7項記載の電動圧縮機
。 9 油保持部がリング状の膏である特許請求の範囲第6
項記載の電動圧縮機。
[Claims] 1. It has an orbiting scroll and a fixed scroll consisting of a base plate (end plate) and a thinly wound wrap standing upright on the end plate, and both scrolls are combined by rotating the wraps inwardly, In an electric compressor having a scroll compression mechanism that performs relative movement of both scrolls so that the space formed by each wrap and end plate moves toward the center of the scroll and thus reduces its volume, the sliding surface of the end plate of both scrolls An electric compressor characterized in that oil is supplied through an oil supply hole provided in a fixed scroll. 2. The electric compressor according to claim 1, wherein the oil supply hole provided in the leg scroll is connected to an oil sump inside the compressor. 3. The oil sump inside the compressor is the oil sump at the bottom of the closed container. An electric compressor according to claim 2. 4. The electric compressor according to claim 2, wherein the oil reservoir inside the compressor is an oil reservoir in a back pressure chamber. 5. The electric compressor according to claim 1, wherein the oil supply hole provided in the fixed scroll communicates with an oil reservoir provided on the outer surface of the fixed scroll. 6 Orbiting scroll and fixed scroll consisting of a base plate (mirror plate) and a thinly wound wrap standing upright on this spring plate.
T-! L. A scroll in which both scrolls are assembled with their wraps facing inward, and the scrolls are moved relative to each other so that the volume of the space formed by each wrap and end plate decreases as it moves toward the center of the scroll. In an electric compressor having a compression mechanism, oil is supplied to the sliding surfaces of the end plates of both scrolls from an oil supply hole provided in a fixed scroll, and an oil retaining portion is provided on a plate portion of the orbiting scroll that faces the oil supply hole of the fixed scroll. An electric compressor characterized by forming: 7. The electric compressor according to claim 6, wherein the oil holding portion and the oil supply hole communicate with each other intermittently. 8. The electric compressor according to claim 7, wherein a plurality of oil holding portions are provided independently from each other, and the oil holding portions are successively communicated with the oil supply hole in response to the orbiting movement of the orbiting scroll. 9 Claim 6 in which the oil retaining portion is a ring-shaped paste
Electric compressor as described in section.
JP2270682A 1982-02-17 1982-02-17 Motor compressor Granted JPS58140494A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2270682A JPS58140494A (en) 1982-02-17 1982-02-17 Motor compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2270682A JPS58140494A (en) 1982-02-17 1982-02-17 Motor compressor

Publications (2)

Publication Number Publication Date
JPS58140494A true JPS58140494A (en) 1983-08-20
JPH044477B2 JPH044477B2 (en) 1992-01-28

Family

ID=12090294

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2270682A Granted JPS58140494A (en) 1982-02-17 1982-02-17 Motor compressor

Country Status (1)

Country Link
JP (1) JPS58140494A (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01141389U (en) * 1988-03-19 1989-09-28
EP0911526A1 (en) * 1997-10-27 1999-04-28 Carrier Corporation Lubrication systems for scroll compressors
KR100598999B1 (en) * 2002-05-16 2006-07-10 다이킨 고교 가부시키가이샤 Scroll-type compressor
KR100608691B1 (en) * 2004-09-18 2006-08-09 엘지전자 주식회사 Scroll compressor with oil discharge reduction function
JP2006214335A (en) * 2005-02-03 2006-08-17 Matsushita Electric Ind Co Ltd Scroll compressor
JP2008274964A (en) * 2008-08-18 2008-11-13 Daikin Ind Ltd Scroll type compressor
JP2009047905A (en) * 2007-08-20 2009-03-05 Kenwood Corp Panel folder
JP2011012600A (en) * 2009-07-02 2011-01-20 Panasonic Corp Scroll compressor
WO2012127719A1 (en) * 2011-03-24 2012-09-27 三洋電機株式会社 Scroll compressor

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5773885A (en) * 1980-10-27 1982-05-08 Hitachi Ltd Enclosed type scroll compressor for refrigerant

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5773885A (en) * 1980-10-27 1982-05-08 Hitachi Ltd Enclosed type scroll compressor for refrigerant

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01141389U (en) * 1988-03-19 1989-09-28
EP0911526A1 (en) * 1997-10-27 1999-04-28 Carrier Corporation Lubrication systems for scroll compressors
CN1127626C (en) * 1997-10-27 2003-11-12 运载器有限公司 Improved lubrication systems for scroll compressors
KR100598999B1 (en) * 2002-05-16 2006-07-10 다이킨 고교 가부시키가이샤 Scroll-type compressor
KR100608691B1 (en) * 2004-09-18 2006-08-09 엘지전자 주식회사 Scroll compressor with oil discharge reduction function
JP2006214335A (en) * 2005-02-03 2006-08-17 Matsushita Electric Ind Co Ltd Scroll compressor
JP2009047905A (en) * 2007-08-20 2009-03-05 Kenwood Corp Panel folder
JP2008274964A (en) * 2008-08-18 2008-11-13 Daikin Ind Ltd Scroll type compressor
JP2011012600A (en) * 2009-07-02 2011-01-20 Panasonic Corp Scroll compressor
WO2012127719A1 (en) * 2011-03-24 2012-09-27 三洋電機株式会社 Scroll compressor
CN103459850A (en) * 2011-03-24 2013-12-18 三洋电机株式会社 Scroll compressor
JP5914810B2 (en) * 2011-03-24 2016-05-11 パナソニックIpマネジメント株式会社 Scroll compressor

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