JP2006077577A - Scroll compressor - Google Patents

Scroll compressor Download PDF

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Publication number
JP2006077577A
JP2006077577A JP2004259236A JP2004259236A JP2006077577A JP 2006077577 A JP2006077577 A JP 2006077577A JP 2004259236 A JP2004259236 A JP 2004259236A JP 2004259236 A JP2004259236 A JP 2004259236A JP 2006077577 A JP2006077577 A JP 2006077577A
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Japan
Prior art keywords
scroll
seal
tip seal
end plate
storage groove
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JP2004259236A
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Japanese (ja)
Inventor
Taisei Kobayakawa
大成 小早川
Takushi Sasa
卓士 佐々
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Panasonic Holdings Corp
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Matsushita Electric Industrial Co Ltd
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Priority to JP2004259236A priority Critical patent/JP2006077577A/en
Publication of JP2006077577A publication Critical patent/JP2006077577A/en
Pending legal-status Critical Current

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    • 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
    • F04C27/00Sealing arrangements in rotary-piston pumps specially adapted for elastic fluids
    • F04C27/005Axial sealings for working fluid
    • 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
    • F04C18/00Rotary-piston pumps specially adapted for elastic fluids
    • F04C18/02Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents
    • F04C18/0207Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents both members having co-operating elements in spiral form
    • F04C18/0215Rotary-piston pumps specially adapted for elastic fluids of arcuate-engagement type, i.e. with circular translatory movement of co-operating members, each member having the same number of teeth or tooth-equivalents both members having co-operating elements in spiral form where only one member is moving

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

Abstract

<P>PROBLEM TO BE SOLVED: To provide a scroll compressor for securing high performance, by forming a cross-sectional shape for improving floating performance and stability of a chip seal. <P>SOLUTION: In a section of substantially half winding to a winding start from the winding finish end 285 of a revolving scroll 213, a cross section of a chip seal storage groove 251 is formed in a chip seal cross-sectional shape for arranging a recess part 286c of a chamfer shape outside, by arranging an inclined face 293 such as the outer wall side becomes lower than the inner wall side, on a bottom surface 254 of the chip seal storage groove 251 of the revolving scroll 213, and arranging an inclined face 295 such as following after the inclined face 293 of the storage groove 251, on an anti-seal surface of the chip seal 244 of a part opposed to this inclined face 293. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、空気調和機等に使用されるスクロール圧縮機のチップシールに関するものである。   The present invention relates to a tip seal of a scroll compressor used for an air conditioner or the like.

以下に従来のスクロール圧縮機の圧縮機機構部への給油方式とチップシールの機能について図面を基に説明する。   Hereinafter, an oil supply system to the compressor mechanism of a conventional scroll compressor and the function of the tip seal will be described with reference to the drawings.

図6は従来のスクロール圧縮機の縦断面図で、図7はその圧縮機構の部分断面図である。   FIG. 6 is a longitudinal sectional view of a conventional scroll compressor, and FIG. 7 is a partial sectional view of the compression mechanism.

底部に潤滑油を溜める油溜207を有する吐出圧力雰囲気の密閉容器201の内部に圧縮機構とこれを駆動する電動機の固定子203aを固定し、電動機の回転子203bに圧縮機構を駆動するクランク軸206を結合し、密閉容器201の圧縮機構の周囲を油溜207とする。圧縮機構は、固定スクロール210と、この固定スクロール210と噛み合って複数個の圧縮室214を形成する旋回スクロール213と、この旋回スクロール213の自転を防止して旋回のみをさせる自転拘束部品215と、この旋回スクロール213の反ラップ側に設けた旋回駆動軸222と、クランク軸206の主軸218の内方に設けこの旋回駆動軸222が嵌入する偏芯軸受223と、このクランク軸206の主軸218を支承する主軸受219と旋回スクロール213の背面の鏡板背面224から微小な間隔の隙間をおいてこの旋回スクロール213の軸方向の動きを制限する軸方向移動制限平面部226を有する軸受部品221を配置する。この軸方向移動制限平面部226に、鏡板背面224にかかる気体圧力を中心部に掛かる吐出圧力と鏡板背面224の外周にかかる吐出圧力よりも低い圧力とに仕切る摺動仕切環225を配設する。この摺動仕切り環225の外方の空間に形成される背圧室245は旋回スクロール鏡板213の内部に設けた絞り機構246を有する第1の連通通路241を介して旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249と連通する構成となっている。   A compression mechanism and a stator 203a of an electric motor that drives the compression mechanism are fixed inside an airtight container 201 having an oil reservoir 207 that stores lubricating oil at the bottom, and a crankshaft that drives the compression mechanism to a rotor 203b of the electric motor An oil reservoir 207 is formed around the compression mechanism of the sealed container 201. The compression mechanism includes a fixed scroll 210, a turning scroll 213 that meshes with the fixed scroll 210 to form a plurality of compression chambers 214, a rotation restraining component 215 that prevents the turning of the turning scroll 213 and makes only turning, An orbiting drive shaft 222 provided on the opposite side of the orbiting scroll 213, an eccentric bearing 223 provided inside the main shaft 218 of the crankshaft 206 and fitted with the orbiting drive shaft 222, and a main shaft 218 of the crankshaft 206. A bearing part 221 having an axial movement limiting flat surface portion 226 for limiting the axial movement of the orbiting scroll 213 is disposed with a small gap from the main bearing 219 to be supported and the back of the end plate 224 behind the orbiting scroll 213. To do. A sliding partition ring 225 that divides the gas pressure applied to the end plate back surface 224 into a discharge pressure applied to the central portion and a pressure lower than the discharge pressure applied to the outer periphery of the end plate back surface 224 is disposed on the axial movement restriction plane portion 226. . The back pressure chamber 245 formed in the space outside the sliding partition ring 225 is the center of the orbiting scroll end plate back surface 224 via a first communication passage 241 having a throttle mechanism 246 provided inside the orbiting scroll end plate 213. It is the structure which communicates with the space 249 where the discharge pressure of a part acts.

また、旋回スクロール鏡板内部227に形成され、チップシール格納溝251に連絡する第2の連絡通路248を背圧室245に連絡する第1の連絡通路241の途中から分岐し、この分岐部253より下流の第1の連絡通路に絞り機構246を設ける構成になっている。   Further, a second communication passage 248 formed in the inside of the orbiting scroll end plate 227 and communicating with the tip seal storage groove 251 is branched from the middle of the first communication passage 241 communicating with the back pressure chamber 245. The throttle mechanism 246 is provided in the downstream first communication passage.

さらに、クランク軸206にもその内部を貫通する給油通路243を設け、この給油通路243の反圧縮機構側の端面はオイルポンプ242を介して油溜207と、圧縮機構側の端面は旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249とそれぞれ連通する構成になっている。   Further, the crankshaft 206 is also provided with an oil supply passage 243 penetrating the crankshaft 206. An end surface of the oil supply passage 243 on the side opposite to the compression mechanism is an oil reservoir 207 via an oil pump 242, and an end surface on the compression mechanism side is an orbiting scroll end plate. It is configured to communicate with a space 249 in which the discharge pressure at the center of the back surface 224 acts.

このような構成にすることによって、油溜207からオイルポンプ242などで旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249へ導かれた潤滑油は、第1の連絡通路241から絞り機構246を経由して最外周の圧縮室に適量供給されるとともに、第1の連絡通路241から分岐する第2の連絡通路248からチップシール格納溝251とチップシール244背面のスキマに形成される空間にも充分に供給されることによって、チップシール格納溝251の長手方向に形成される低圧側への漏れ通路を遮断するとともに、チップシール格納溝251から溢れでる潤滑油によって圧縮室を形成する壁面にも供給する給油構成であった。   With this configuration, the lubricating oil guided from the oil reservoir 207 to the space 249 in which the discharge pressure at the center of the orbiting scroll end plate back 224 acts by the oil pump 242 or the like is throttled from the first communication passage 241. An appropriate amount is supplied to the outermost compression chamber via the mechanism 246 and is formed in the clearance on the back surface of the chip seal storage groove 251 and the chip seal 244 from the second communication path 248 branched from the first communication path 241. By being sufficiently supplied to the space, the leakage path to the low pressure side formed in the longitudinal direction of the tip seal storage groove 251 is blocked, and the compression chamber is formed by the lubricating oil overflowing from the tip seal storage groove 251. It was the oil supply composition which also supplies to the wall surface.

また、図5に示すように、チップシール244はチップシール格納溝251よりも長手方向の長さが適量短く形成されており、かつ巻始め端にすきま270を形成させてチップシール格納溝251に組付けられているため、旋回スクロール213の旋回運動によって、巻始め端すきま270が吐出孔260に連通する時にチップシール244背面に吐出圧力を導入して浮上し、固定スクロール210底面に押付けられるため、チップシール244を横断して外側に形成されるより低圧の圧縮室への漏れ通路を遮断する構成であった。
特開2000−213477号公報
Further, as shown in FIG. 5, the tip seal 244 is formed with an appropriate length in the longitudinal direction shorter than the tip seal storage groove 251, and a gap 270 is formed at the winding start end to form the tip seal storage groove 251. Since the swivel scroll 213 is swung, the swivel movement of the swivel scroll 213 causes the discharge pressure to be introduced into the back surface of the tip seal 244 when the winding start end clearance 270 communicates with the discharge hole 260, and is pressed against the bottom surface of the fixed scroll 210. The leakage passage to the lower pressure compression chamber formed outside across the tip seal 244 is blocked.
JP 2000-213477 A

しかしながら、上記従来の構成では、吐出孔260および第2の連絡通路248のチップシール格納溝側の開口端252から半巻き以上下流部(巻終り部もしくは吸入側)では通路抵抗による圧力低下でチップシール244を浮上させる能力が低下する上、チップシールの外側の圧縮室281の方が内側の圧縮室282より圧力が高くなるタイミング(図4参照)があるため、チップシール244がチップシール格納溝251の内外壁にねじられて押し付けられる結果、チップシール244の巻終り部が引っかかって、浮上が不十分となり、チップシール244を横断してより低圧側の圧縮室へ漏れ込んで性能低下するという課題を有していた。   However, in the above-described conventional configuration, the tip is reduced due to a pressure drop due to passage resistance in the downstream portion (winding end portion or suction side) more than half a turn from the opening end 252 of the discharge hole 260 and the second communication passage 248 on the tip seal storage groove side. Since the ability to float the seal 244 is reduced and the compression chamber 281 on the outer side of the chip seal has a higher pressure (see FIG. 4) than the inner compression chamber 282, the chip seal 244 is placed in the chip seal storage groove. As a result of being twisted and pressed against the inner and outer walls of 251, the end of winding of the tip seal 244 is caught and the floating becomes insufficient, and the tip seal 244 crosses the tip seal 244 and leaks into the compression chamber on the lower pressure side, resulting in reduced performance. Had problems.

これを、改善する方策としては、第2の連絡通路248の開口端252の位置を巻終り側に設置することがあるが、この場合第2の連絡通路248の両端の圧力差が大きくなって高圧高温の潤滑油が、チップシール格納溝251経由で吸入室近傍の圧縮室281および282へ過剰に漏込んでしまうため、吸入冷媒の過熱損失によって、やはり性能低下を招くという課題を有していた。   As a measure for improving this, there is a case where the position of the open end 252 of the second communication passage 248 is installed on the winding end side. In this case, the pressure difference between both ends of the second communication passage 248 becomes large. The high-pressure and high-temperature lubricating oil excessively leaks into the compression chambers 281 and 282 in the vicinity of the suction chamber via the chip seal storage groove 251, so that there is a problem that the performance is also deteriorated due to the overheat loss of the suction refrigerant. It was.

本発明は、このような従来の課題を解決するものであり、圧縮機としてより高い性能を提供することを目的とする。   The present invention solves such conventional problems, and an object thereof is to provide higher performance as a compressor.

上記課題を解決するために本発明は、旋回スクロール巻終わり端から巻始めにかけて概半巻きの区間は旋回スクロールのチップシール格納溝の底面に外壁側が内壁側よりも低くなるような傾斜面を設けるとともに、この傾斜面に対向する部分のチップシールの反シール面は格納溝の傾斜面にならうような傾斜面を設け、かつ外側に面取り状の逃げ部を設けるチップシール断面形状にするものである。   In order to solve the above-described problems, the present invention provides an approximately half-turn section from the end of the orbiting scroll to the beginning of the winding so that an inclined surface is provided on the bottom surface of the tip seal storage groove of the orbiting scroll so that the outer wall side is lower than the inner wall side. In addition, the anti-seal surface of the tip seal facing the inclined surface is provided with an inclined surface that follows the inclined surface of the storage groove, and a chip seal cross-sectional shape that is provided with a chamfered relief portion on the outside. is there.

上記のようなチップシール断面形状にすることによって、チップシールの浮上性を向上させ、圧縮効率を高めるものである。   By making the chip seal cross-sectional shape as described above, the floating property of the chip seal is improved and the compression efficiency is increased.

本発明のスクロール圧縮機は、チップシールの浮上性および安定性を向上させる断面形状にすることによって、高い性能を確保するスクロール圧縮機を提供することができる。   The scroll compressor of this invention can provide the scroll compressor which ensures high performance by making it the cross-sectional shape which improves the floating property and stability of a chip seal.

本発明のスクロール圧縮機は、旋回スクロール巻終わり端から巻始めにかけて概半巻きの区間は旋回スクロールのチップシール格納溝の底面に外壁側が内壁側よりも低くなるような傾斜面を設けるとともに、この傾斜面に対向する部分のチップシールの反シール面は格納溝の傾斜面にならうような傾斜面を設け、かつ外側に面取り状の逃げ部を設けるチップシール断面形状にするにより、チップシールの浮上性および安定性が向上し、圧縮効率を高めることができる。   The scroll compressor of the present invention is provided with an inclined surface in which the outer wall side is lower than the inner wall side on the bottom surface of the tip seal storage groove of the orbiting scroll in the approximately half winding section from the end of the orbiting scroll to the beginning of winding. The anti-seal surface of the chip seal at the portion facing the inclined surface is provided with an inclined surface that follows the inclined surface of the storage groove, and a chip seal cross-sectional shape that is provided with a chamfered relief portion on the outer side is used. Floatability and stability are improved, and compression efficiency can be increased.

(実施の形態1)
以下本発明の実施の形態について図面を参照して説明する。
(Embodiment 1)
Embodiments of the present invention will be described below with reference to the drawings.

図6および図7(図3)において、底部に潤滑油を溜める油溜207を有する吐出圧力雰囲気の密閉容器201の内部に圧縮機構とこれを駆動する電動機の固定子203aを固定し、電動機の回転子203bに圧縮機構を駆動するクランク軸206を結合し、密閉容器201の圧縮機構の周囲を油溜207とする。圧縮機構は、固定スクロール210と、この固定スクロール210と噛み合って複数個の圧縮室214を形成する旋回スクロール213と、この旋回スクロール213の自転を防止して旋回のみをさせる自転拘束部品215と、この旋回スクロール213の反ラップ側に設けた旋回駆動軸222と、クランク軸206の主軸218の内方に設けこの旋回駆動軸222が嵌入する偏芯軸受223と、このクランク軸206の主軸218を支承する主軸受219と旋回スクロール213の背面の鏡板背面224から微小な間隔の隙間をおいてこの旋回スクロール213の軸方向の動きを制限する軸方向移動制限平面部226を有する軸受部品221を配置する。この軸方向移動制限平面部226に、鏡板背面224にかかる気体圧力を中心部に掛かる吐出圧力と鏡板背面224の外周にかかる吐出圧力よりも低い圧力とに仕切る摺動仕切環225を配設する。この摺動仕切り環225の外方の空間に形成される背圧室245は旋回スクロール鏡板213の内部に設けた第1の連通通路241を介して旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249と連通する構成となっている。   6 and 7 (FIG. 3), the compression mechanism and the stator 203a of the electric motor that drives the compression mechanism are fixed to the inside of the sealed container 201 having a discharge pressure atmosphere having an oil reservoir 207 that stores lubricating oil at the bottom. A crankshaft 206 that drives the compression mechanism is coupled to the rotor 203b, and an oil reservoir 207 is formed around the compression mechanism of the sealed container 201. The compression mechanism includes a fixed scroll 210, a turning scroll 213 that meshes with the fixed scroll 210 to form a plurality of compression chambers 214, a rotation restraining component 215 that prevents the turning of the turning scroll 213 and makes only turning, An orbiting drive shaft 222 provided on the opposite side of the orbiting scroll 213, an eccentric bearing 223 provided inside the main shaft 218 of the crankshaft 206 and fitted with the orbiting drive shaft 222, and a main shaft 218 of the crankshaft 206. A bearing part 221 having an axial movement limiting flat surface portion 226 for limiting the axial movement of the orbiting scroll 213 is disposed with a small gap from the main bearing 219 to be supported and the back of the end plate 224 behind the orbiting scroll 213. To do. A sliding partition ring 225 that divides the gas pressure applied to the end plate back surface 224 into a discharge pressure applied to the central portion and a pressure lower than the discharge pressure applied to the outer periphery of the end plate back surface 224 is disposed on the axial movement restriction plane portion 226. . The back pressure chamber 245 formed in the space outside the sliding partition ring 225 has a discharge pressure at the center of the orbiting scroll end plate back surface 224 via the first communication passage 241 provided inside the orbiting scroll end plate 213. It is configured to communicate with the acting space 249.

また、旋回スクロール鏡板内部227に形成され、チップシール格納溝251に連絡する第2の連絡通路248を背圧室245に連絡する第1の連絡通路241の途中から分岐させる構成になっている。   Further, the second communication passage 248 formed in the inside of the orbiting scroll end plate 227 and communicating with the tip seal storage groove 251 is branched from the middle of the first communication passage 241 communicating with the back pressure chamber 245.

さらに、クランク軸206にもその内部を貫通する給油通路243を設け、この給油通路243の反圧縮機構側の端面はオイルポンプ242を介して油溜207と、圧縮機構側の端面は旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249とそれぞれ連通する構成になっている。   Further, the crankshaft 206 is also provided with an oil supply passage 243 penetrating the crankshaft 206. An end surface of the oil supply passage 243 on the side opposite to the compression mechanism is an oil reservoir 207 via an oil pump 242, and an end surface on the compression mechanism side is an orbiting scroll end plate. It is configured to communicate with a space 249 in which the discharge pressure at the center of the back surface 224 acts.

このような構成にすることによって、油溜207からオイルポンプ242などで旋回スクロール鏡板背面224の中心部の吐出圧力が作用する空間249へ導かれた潤滑油は、第1の連絡通路241から絞り機構246等を経由して最外周の圧縮室に適量供給されるとともに、第1の連絡通路241から分岐する第2の連絡通路248からチップシール格納溝251とチップシール244背面のスキマに形成される空間にも充分に供給されることによって、チップシール格納溝251の長手方向に形成される低圧側への漏れ通路を遮断するとともに、チップシール格納溝251から溢れでる潤滑油によって圧縮室を形成する壁面にも供給する給油構成になっている。   With this configuration, the lubricating oil guided from the oil reservoir 207 to the space 249 in which the discharge pressure at the center of the orbiting scroll end plate back 224 acts by the oil pump 242 or the like is throttled from the first communication passage 241. An appropriate amount is supplied to the outermost peripheral compression chamber via the mechanism 246 and the like, and is formed in the clearance on the back surface of the chip seal storage groove 251 and the chip seal 244 from the second communication path 248 branched from the first communication path 241. Is sufficiently supplied to the space where the chip seal storage groove 251 is formed, so that the leakage path to the low pressure side formed in the longitudinal direction of the chip seal storage groove 251 is blocked and the compression chamber is formed by the lubricating oil overflowing from the chip seal storage groove 251. The oil supply structure also supplies to the wall surface.

また、図5に示すように、チップシール244はチップシール格納溝251よりも長手方向の長さが適量短く形成されており、かつ巻始め端に適量すきま270を形成させてチップシール格納溝251に組付けられているため、旋回スクロール213の旋回運動によって、巻始め端すきま270が吐出孔260に連通する時にチップシール244背面に吐出圧力を導入して固定スクロール210底面に押付けられるため、チップシール244を横断して外側に形成されるより低圧の圧縮室への漏れ通路を遮断する構成になっている。   Further, as shown in FIG. 5, the tip seal 244 is formed with an appropriate length shorter in the longitudinal direction than the tip seal storage groove 251 and an appropriate amount of clearance 270 is formed at the winding start end. Since the swivel movement of the orbiting scroll 213 causes the winding start end clearance 270 to communicate with the discharge hole 260, the discharge pressure is introduced into the back surface of the chip seal 244 and is pressed against the bottom surface of the fixed scroll 210. The leak passage to the lower pressure compression chamber formed outside across the seal 244 is blocked.

さらに、図1および図2に示すように、旋回スクロール巻終わり端285から巻始め側にかけて概半巻きの区間のチップシール格納溝251の底面形状は、外壁側が内壁側よりも低くなるような傾斜面293を有する形状になっており、またこれに組付けられるチップシール244の反シール面は格納溝251の傾斜面293に対向する部分が、格納溝251の傾斜面293にならうような傾斜面295と外側に面取り状の逃げ部286cを有する形状になっている。   Further, as shown in FIGS. 1 and 2, the bottom shape of the tip seal storage groove 251 in the approximately half-turned section from the turning scroll winding end 285 to the winding start side is inclined so that the outer wall side is lower than the inner wall side. The anti-seal surface of the tip seal 244 assembled to the surface 293 is inclined such that the portion facing the inclined surface 293 of the storage groove 251 follows the inclined surface 293 of the storage groove 251. The surface 295 and the outer side have a chamfered relief portion 286c.

上記のような断面形状を有するチップシール格納溝251とチップシール244にすることによって、吐出孔260から離れていることによって発生する通路抵抗損失によってチップシール浮上性が悪くなることを、回避することが可能になる。   By using the chip seal storage groove 251 and the chip seal 244 having the cross-sectional shape as described above, it is possible to prevent the chip seal floating performance from being deteriorated due to a passage resistance loss caused by being away from the discharge hole 260. Is possible.

すなわち、チップシール244に隣接する圧縮室281(282)の圧力差によりチップシール244がチップシール格納溝251の両側壁面にねじれた状態(図4のタイミング)で押付けられる旋回スクロール巻終り端285から概半巻始め側のポイント(図1参照)においても、チップシール244の面取り状の逃がし部286cにより、外壁側からの導入圧力を受けやすくするとともに、チップシール格納溝251およびチップシール244に設けた傾斜面(293および295)のガイド作用によって、チップシール244を内壁側に移動時にスムーズに浮上させることができる。チップシール244は一度浮上すれば、内壁側からの圧力が作用しても固定スクロール底面255に沿って移動するだけで、浮上は安定する(一連の動作は図2参照)。   That is, from the end 285 of the orbiting scroll which is pressed in a state where the tip seal 244 is twisted against the both side walls of the tip seal storage groove 251 due to the pressure difference between the compression chambers 281 (282) adjacent to the tip seal 244 (timing in FIG. 4). Also at the point on the almost half winding start side (see FIG. 1), the chamfered relief portion 286c of the tip seal 244 makes it easy to receive the introduction pressure from the outer wall side, and is provided in the tip seal storage groove 251 and the tip seal 244. The tip seal 244 can be smoothly lifted when moving to the inner wall side by the guide action of the inclined surfaces (293 and 295). Once the chip seal 244 is lifted, the lift is stabilized only by moving along the bottom surface 255 of the fixed scroll even if pressure from the inner wall is applied (see FIG. 2 for a series of operations).

さらに、チップシール244の面取り状の逃がし部286cとチップシール格納溝251の底面254との間に形成されるスキマに潤滑油を導き、その潤滑油がチップシール巻終り側に移動する時の反力によって、チップシール244はチップシール格納溝251側壁面および固定スクロール210底面255へ押し付けられ、巻終わり部においてもチップシール横断方向のシール性能は維持される。この作用が継続的におこなわれることで、同時にチップシール格納溝251に沿って、高圧側から低圧側へ洩れ込む経路も遮断することができる。   Further, the lubricating oil is guided to a gap formed between the chamfered relief portion 286c of the chip seal 244 and the bottom surface 254 of the chip seal storage groove 251, and the reaction when the lubricating oil moves toward the end of the chip seal winding. The chip seal 244 is pressed against the side wall surface of the chip seal storage groove 251 and the bottom surface 255 of the fixed scroll 210 by the force, and the sealing performance in the cross direction of the chip seal is maintained even at the end of winding. By continuously performing this action, it is possible to simultaneously block a path that leaks from the high pressure side to the low pressure side along the tip seal housing groove 251.

この結果、チップシールの浮上は安定し、より高い性能を確保するスクロール圧縮機を提供することができる。   As a result, it is possible to provide a scroll compressor in which the tip seal floats stably and higher performance is ensured.

以上のように、本発明のスクロール圧縮機は、チップシールの浮上性および安定性を向上させることによって、高い性能を確保するスクロール圧縮機を提供することができるので、冷凍機や空気圧縮機、膨張機等の用途にも適用できる。   As described above, the scroll compressor of the present invention can provide a scroll compressor that ensures high performance by improving the floatability and stability of the chip seal, so that a refrigerator or an air compressor, It can also be applied to applications such as expanders.

本発明のチップシール断面形状と旋回スクロールと相対位置関係を示す斜視図The perspective view which shows the relative position relationship between the tip seal cross-sectional shape of the present invention and the orbiting scroll 本発明のチップシール格納溝およびチップシ−ルの断面形状と動作説明図Cross-sectional shape and operation explanatory diagram of chip seal storage groove and chip seal of the present invention 従来のスクロール圧縮機の圧縮機構部の拡大断面図Enlarged sectional view of the compression mechanism of a conventional scroll compressor チップシールの外側の圧縮室が内側の圧縮室より圧力が高くなるタイミングを説明する図The figure explaining the timing when the compression chamber outside the tip seal becomes higher in pressure than the inner compression chamber スクロール圧縮機構部の巻始め部の部分拡大断面図Partial enlarged sectional view of the winding start portion of the scroll compression mechanism 従来のスクロール圧縮機の縦断面図Longitudinal sectional view of a conventional scroll compressor 従来のスクロール圧縮機の圧縮機構部の拡大縦断面図Enlarged longitudinal sectional view of a compression mechanism of a conventional scroll compressor

符号の説明Explanation of symbols

201 密閉容器
202 圧縮機構
203a,203b 電動機
206 クランク軸
207 油溜
210 固定スクロール
213 旋回スクロール
214 圧縮室
215 自転拘束部品
218 主軸
219 主軸受
221 軸受部品
222 旋回駆動軸
223 偏芯軸受
225 摺動仕切環
241 第1の連絡通路
242 オイルポンプ
244 チップシール
245 背圧室
248 第2の連絡通路
251 チップシール格納溝
252 第2の連絡通路の開口端
253 連絡通路の分岐部
254 チップシール格納溝底面
255 固定スクロール底面
260 吐出孔
270 チップシール巻始めスキマ
281 チップシール外側の最外周圧縮室
282 チップシール内側の最外周圧縮室
285 旋回スクロール巻終り端
286c チップシールの面取り部
292a(b、c) チップシール断面形状
293 チップシール格納溝底面の傾斜面
295 チップシール反シール面の傾斜面
DESCRIPTION OF SYMBOLS 201 Airtight container 202 Compression mechanism 203a, 203b Electric motor 206 Crankshaft 207 Oil reservoir 210 Fixed scroll 213 Orbiting scroll 214 Compression chamber 215 Rotation restraint component 218 Main shaft 219 Main bearing 221 Bearing component 222 Orbit drive shaft 223 Eccentric bearing 225 Sliding partition ring 241 First communication passage 242 Oil pump 244 Tip seal 245 Back pressure chamber 248 Second communication passage 251 Tip seal storage groove 252 Open end of second communication passage 253 Branch portion of communication passage 254 Tip seal storage groove bottom surface 255 Fixed Scroll bottom surface 260 Discharge hole 270 Tip seal winding start clearance 281 Outermost peripheral compression chamber 282 outside the tip seal 282 Outermost peripheral compression chamber 285 inside the tip seal 285 Orbiting scroll winding end 286c Tip seal chamfer 292a b, c) inclined surface of the tip seal cross-sectional shape 293 tip seal containing groove bottom
295 Inclined surface of chip seal anti-seal surface

Claims (1)

底部に潤滑油を溜める油溜を有し、吐出圧力が作用する密閉容器の内部動機と、この電動機で駆動する圧縮機構を配設し、前記圧縮機構を固定スクロールと、前記固定スクロールと噛み合い複数個の圧縮室を形成する旋回スクロールと、この旋回スクロールの自転を防止して旋回のみをさせる自転拘束部品と、前記旋回スクロールを旋回駆動するクランク軸と、このクランク軸に形成した主軸を支承する主軸受を有する軸受部品を含んで構成し、前記旋回スクロールの反ラップ側の鏡板背面に、前記クランク軸に設けた偏心駆動係合部に係合して前記旋回スクロールを旋回駆動する旋回駆動係合部を設け、この旋回駆動係合部の外方に前記鏡板背面に作用する圧力を前記鏡板背面の中心部に作用する吐出圧力と、前記鏡板背面の外周に作用する吐出圧力より低い圧力とに仕切る摺動仕切り環を配設し、前記鏡板背面の中心部に前記油溜りより高圧潤滑油を供給し、前記鏡板背面中心部と前記摺動仕切り環の外方の空間に形成される背圧室とを前記旋回スクロールの鏡板内部に形成される第1の連絡通路で連絡するとともに、この第1の連絡通路の途中から分岐し、前記旋回スクロールのラップ先端部に設けたチップシールを格納するチップシール格納溝の底面とを連絡する第2の連絡通路とを備え、前記旋回スクロール巻終わり端から巻始めにかけて概半巻きの区間は前記旋回スクロールのチップシール格納溝の底面に外壁側が内壁側よりも低くなるような傾斜面を設けるとともに、前記傾斜面に対向する部分の前記チップシールの反シール面は前記傾斜面にならうような傾斜面を設け、かつ外側に面取り状の逃げ部を設けるチップシール断面形状を有するスクロール圧縮機。
There is an oil reservoir for storing lubricating oil at the bottom, an internal motive of a sealed container on which discharge pressure acts, and a compression mechanism driven by this electric motor are arranged, and the compression mechanism is engaged with the fixed scroll and the fixed scroll. A rotating scroll that forms a single compression chamber, a rotation restraining part that prevents the rotating scroll from rotating and only rotates, a crank shaft that drives the rotating scroll to rotate, and a main shaft formed on the crank shaft are supported. An orbiting drive mechanism configured to include a bearing part having a main bearing and engaged with an eccentric drive engaging portion provided on the crankshaft on the back surface of the end plate on the side opposite to the orbiting of the orbiting scroll to rotate the orbiting scroll. A joint portion is provided, and the pressure acting on the back surface of the end plate on the outer side of the turning drive engagement portion acts on the discharge pressure acting on the center portion of the back surface of the end plate and the outer periphery of the back surface of the end plate. A sliding partition ring that divides into a pressure lower than the discharge pressure is disposed, and high-pressure lubricating oil is supplied from the oil reservoir to the center part of the back face of the end plate, The back pressure chamber formed in the space is communicated with a first communication passage formed inside the end plate of the orbiting scroll, and is branched from the middle of the first communication passage, and is connected to a lap front end portion of the orbiting scroll. And a second communication passage that communicates with the bottom surface of the tip seal storage groove for storing the provided tip seal, and an approximately half-turn section from the end of the orbiting scroll winding to the start of winding is the tip seal storage groove of the orbiting scroll. An inclined surface is provided on the bottom surface of the chip seal such that the outer wall side is lower than the inner wall side, and the anti-seal surface of the tip seal at the portion facing the inclined surface is an inclined surface that follows the inclined surface. Only, and the scroll compressor having a tip seal cross-sectional shape providing a chamfer-shaped relief portion outward.
JP2004259236A 2004-09-07 2004-09-07 Scroll compressor Pending JP2006077577A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2004259236A JP2006077577A (en) 2004-09-07 2004-09-07 Scroll compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2004259236A JP2006077577A (en) 2004-09-07 2004-09-07 Scroll compressor

Publications (1)

Publication Number Publication Date
JP2006077577A true JP2006077577A (en) 2006-03-23

Family

ID=36157251

Family Applications (1)

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Country Status (1)

Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016161488A3 (en) * 2015-04-09 2016-11-17 Atlas Copco Airpower, Naamloze Vennootschap Scroll type apparatus, method for manufacturing such a scroll type apparatus and seal for such a scroll type apparatus
BE1023333B1 (en) * 2015-04-09 2017-02-07 Atlas Copco Airpower, N.V. Spiral type device and method for the production of such device and seal for such device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016161488A3 (en) * 2015-04-09 2016-11-17 Atlas Copco Airpower, Naamloze Vennootschap Scroll type apparatus, method for manufacturing such a scroll type apparatus and seal for such a scroll type apparatus
BE1023333B1 (en) * 2015-04-09 2017-02-07 Atlas Copco Airpower, N.V. Spiral type device and method for the production of such device and seal for such device

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