CN1455115A - Multi-chamber silencer for rotary compressor - Google Patents

Multi-chamber silencer for rotary compressor Download PDF

Info

Publication number
CN1455115A
CN1455115A CN 02117029 CN02117029A CN1455115A CN 1455115 A CN1455115 A CN 1455115A CN 02117029 CN02117029 CN 02117029 CN 02117029 A CN02117029 A CN 02117029A CN 1455115 A CN1455115 A CN 1455115A
Authority
CN
China
Prior art keywords
chamber
baffler
chambers
rotary compressor
refrigerant
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
CN 02117029
Other languages
Chinese (zh)
Other versions
CN1299008C (en
Inventor
李旺
张旭
黄协清
畅云峰
秦首伟
张铁山
赵呈国
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.)
LG Electronics Tianjin Appliances Co Ltd
Original Assignee
LG Electronics Tianjin Appliances Co 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 LG Electronics Tianjin Appliances Co Ltd filed Critical LG Electronics Tianjin Appliances Co Ltd
Priority to CNB021170290A priority Critical patent/CN1299008C/en
Publication of CN1455115A publication Critical patent/CN1455115A/en
Application granted granted Critical
Publication of CN1299008C publication Critical patent/CN1299008C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Applications Or Details Of Rotary Compressors (AREA)

Abstract

The multicavity noise suppressor of rotary compressor is characterized by that it has a thin wall cover shell, whose its external form is made into ring flat cylindrical form with hole in its middle part, its interior is formed into a ring hollow cavity, its lower portion has an opening, and is covered over the upper portion bearing, and the shaft neck portion of upper portion bearing is passed through the hole of middle portion of the noise compressor, and said noise suppressor can be fixed on the upper portion bearing by means of screw. The ring space of noise suppressor interior can be separated into several refrigerant expanded cavity chambers by means of partion boards, and on the partion board for connecting cavity chamber the air holes through which the refrigerant can be passed are set.

Description

The multi-chamber silencer of rotary compressor
Technical field
The present invention relates to a kind of compressor, particularly relate to the baffler of rotary compressor.
Background technique
Rotary compressor is widely used in various refrigerators, the air-conditioning, rotary compressor sucks the gaseous coolant through evaporator evaporation, after it is compressed to full resultant pressure, be discharged into the work system of refrigerant again, rotary compressor is the compressor that can suck and discharge refrigerant continuously.
Fig. 1 is the sectional arrangement drawing of existing compressor, the compressor of representing among Fig. 1 is the rolling rotor rotary compressor, as seen from Figure 1, rotary compressor has airtight casing 10, the stator 21 of rotary compressor motor and rotor 22 are installed in the top of casing 10, rotor 22 center fixed have eccentric shaft 30, cylinder of compressor body 40 is positioned at the bottom of airtight casing 10, the eccentric shaft part 31 that eccentric shaft 30 is arranged in the cylindrical cylinder hole of cylinder block 40 central authorities, on the external cylindrical surface of eccentric shaft part 31 rolling rotor is arranged, when eccentric shaft part 31 carries out the circular motion rotation with eccentric shaft 30 in cylinder-bore, the rolling rotor compression enters the gaseous coolant in the cylinder block 40, also has the height of separation in the cylinder block, the baffle plate (not shown) of low pressure area refrigerant, on the cylinder block 40, the lower end surface is fixed with blanket gas cylinder body end face, and supports the upper bearing 51 and the lower bearing 52 of eccentric shaft 30 rotations.
In the side of airtight casing 10 sucking pipe 60 is arranged, sucking pipe 60 enters in the pressing chamber 41 of compressor cylinder block 40 refrigerant.On the upper-end surface of upper bearing 51 by the drain tap (not shown) is housed, drain tap is discharged to the pressing chamber of refrigerant by cylinder block 40 in the baffler 80, again by being discharged in the baffler 80 in the airtight casing 10, there is outlet pipe 70 top of airtight casing 10, and outlet pipe 70 enters the refrigerant in the airtight casing 10 circulatory system of refrigerant.Baffler 80 is installed above upper bearing 51, baffler 80 is the thin-walled case, profile is the middle porose oblate cylindricality of ring-type, the inner cavity that forms annular, lower openings, cover on upper bearing 51 tops, penetrate the necked part of upper bearing 51 in the hole in the middle of the baffler, baffler is screwed on upper bearing 51.The upper-end surface of baffler 80 and upper bearing 51 surrounds cavity, and after being positioned at refrigerant that the drain tap of upper bearing upper-end surface discharges and entering the cavity of baffler 80, the outlet pipe through baffler 80 enters in the closed shell 10 again.
After the rolling rotor rotary compressor of said structure is connected power supply, rotor 22 rotations in the airtight casing 10, make the rotation of eccentric shaft 30 and rolling rotor, compression enters the refrigerant of cylinder block 40 in cylinder block 40, when the refrigerant in the pressing chamber 41 reaches certain pressure, the drain tap that is installed in upper bearing 51 upper-end surfaces is opened, compressed refrigerant enters baffler, pore through baffler enters in the closed shell 10 again, when the pressure of pressing chamber descends, drain tap is closed, and prevents that refrigerant from refluxing, and at this moment compressor is in the state that sucks refrigerant.
The flowing state that drain tap is discharged air-flow is the periodically pulsing air-flow, and air-flow has very big impact and variation in pressure.
During rotary compressor work, the switching that reaches drain tap of flowing of gaseous coolant all can cause very strong impact noise, and very wide frequency domain is arranged, it is the main noise source of rotary compressor, have the relatively simple for structure of baffler 80 now, erasure effect is bad, and especially to the noise of particular frequency bands, erasure effect is poorer.
Summary of the invention
Technical problem to be solved by this invention is, a kind of multi-chamber silencer of rotary compressor is provided, and the noise that mobile refrigerant and drain tap are produced is effectively decayed, and reduces the intensity of noise greatly.
The technical solution adopted in the present invention is: baffler is the thin-walled case, profile is the middle porose oblate cylindricality of ring-type, the inner cavity that forms annular, lower openings, cover on the upper bearing top, penetrate the necked part of upper bearing in the hole in the middle of the baffler, baffler is screwed on upper bearing.Improvement of the present invention is: the annular space in the baffler is divided into the chamber that a plurality of refrigerants are expanded with dividing plate, and the pore by refrigerant is arranged on the dividing plate in the middle of the chamber that is connected.First chamber links to each other with drain tap, and last chamber has the pore with airtight casing internal communication.
Described a plurality of chamber is two chambers, and the volume ratio of first chamber and second chamber is 1: 2.
Described a plurality of chamber is three chambers, and the volume ratio of first chamber, second chamber and the 3rd chamber is 1: 2: 4 or is 2: 1: 3.
Described a plurality of chamber is four chambers, and the volume ratio of first chamber, second chamber, the 3rd chamber and the 4th chamber is 2: 1: 3: 1.
Described dividing plate is a planar, is positioned at the baffler annular space radially.
The described last chamber and the pore of airtight casing internal communication are positioned on the sidewall of baffler.
Beneficial effect of the present invention is: gaseous coolant enters the multiple chamber of baffler, through expansion repeatedly, consumes the energy of noise, and effective attenuate acoustic noise reduces the intensity of noise greatly.
Description of drawings
Fig. 1 is the sectional arrangement drawing of rotary compressor;
Fig. 2 is first kind of embodiment's a front elevation;
Fig. 3 is first kind of embodiment's a sectional side view;
Fig. 4 is second kind of embodiment's a front elevation;
Fig. 5 is the third embodiment's a front elevation.
In the drawings: 10. the 4th chamber, the 3rd chamber 98., 96. second chambeies 97., 95. first chambeies, 94. second chambeies, 86. exhaust outlets, 87. pore 88. fixing threaded holes, 91. dividing plate 92. dividing plates, 93. first chambeies, the 3rd chamber, 84. second chambeies 85., airtight casing 21. stators, 22. rotor 30. eccentric shafts, 31. eccentric shaft part 40. cylinder block 41. discharge chambes, 51. upper bearing 52. lower bearings, 60. air intake duct 70. blast pipes, 80. muffler 82. dividing plates, 83. first chambeies 100. mufflers
Embodiment
The structure of compressor of the present invention is: rotary compressor has airtight casing 10, the stator 21 of rotary compressor motor and rotor 22 are installed in the top of casing 10, rotor 22 center fixed have eccentric shaft 30, cylinder of compressor body 40 is positioned at the bottom of airtight casing 10, the eccentric shaft part 31 that eccentric shaft 30 is arranged in the cylindrical cylinder hole of cylinder block 40 central authorities, on the external cylindrical surface of eccentric shaft part 31 rolling rotor is arranged, when eccentric shaft part 31 carries out the circular motion rotation with eccentric shaft 30 in cylinder-bore, the rolling rotor compression enters the gaseous coolant in the cylinder block 40, also has the height of separation in the cylinder block, the baffle plate (not shown) of low pressure area refrigerant, the upper and lower end face of cylinder block 40 is fixed with blanket gas cylinder body end face, and supports the upper bearing 51 and the lower bearing 52 of eccentric shaft 30 rotations.
In the side of airtight casing 10 sucking pipe 60 is arranged, sucking pipe 60 makes refrigerant enter the pressing chamber 41 of compressor cylinder block 40.On the upper-end surface of upper bearing 51 by the drain tap (not shown) is housed, drain tap is discharged to the pressing chamber of refrigerant by cylinder block 40 in the baffler 100, be discharged in the airtight casing 10 by baffler 100 again, there is outlet pipe 70 top of airtight casing 10, and outlet pipe 70 enters the refrigerant in the airtight casing 10 circulatory system of refrigerant.
Fig. 2 is first kind of embodiment's of the present invention a front elevation, Fig. 3 is first kind of embodiment's a sectional side view, baffler 100 is the thin-walled case in the drawings, profile is the middle porose oblate cylindricality of ring-type, the inner cavity that forms annular, lower openings covers on upper bearing 51 tops, penetrate the necked part of upper bearing 51 in the hole in the middle of the baffler, baffler is screwed on upper bearing 51.Annular space in the baffler 100 is divided into the chamber that a plurality of refrigerants are expanded with dividing plate, and the pore by refrigerant is arranged on the dividing plate in the middle of the chamber that is connected.First chamber links to each other with drain tap, makes refrigerant enter baffler, last chamber pore with airtight casing 10 internal communication arranged, refrigerant is entered airtight casing 10 by baffler.。
A plurality of chambers of first kind of embodiment are three chambers, and the volume ratio of first chamber 83, second chamber 84 and the 3rd chamber 85 is 1: 2: 4 or is 2: 1: 3.
A plurality of chambers of second kind of embodiment are two chambers, and the volume ratio of first chamber 93 and second chamber 94 is 1: 2.
A plurality of chambers of the third embodiment are four chambers, and the volume ratio of first chamber 95, second chamber 96, the 3rd chamber 97,98, four chambers of the 4th chamber is 2: 1: 3: 1.
Dividing plate is a planar, is positioned at the baffler annular space radially.
The pore of last chamber and airtight casing internal communication is positioned on the sidewall of baffler.
The clapboard parts of not addressing number is 82,91,92.
After the rolling rotor rotary compressor of said structure is connected power supply, rotor 22 rotations in the airtight casing 10, make the rotation of eccentric shaft 30 and rolling rotor, compression enters the refrigerant of cylinder block 40 in cylinder block 40, when the refrigerant in the pressing chamber 41 reaches certain pressure, the drain tap that is installed in upper bearing 51 upper ends is opened, compressed refrigerant enters baffler, pore through the baffler side enters in the closed shell 10 again, when the pressure of pressing chamber descends, drain tap is closed, and prevents that refrigerant from refluxing, and at this moment compressor is in the state that sucks refrigerant.
The present invention adopts multistage expanssion type noise-cancelling theory, and the periodically pulsing air communication that drain tap is discharged is crossed multistage expansion and reduced noise.The volume ratio of three chambers of first kind of embodiment is 2: 1: 3, there is the drain tap that is positioned at upper bearing 51 upper-end surfaces first chamber 83 belows, drain tap makes air-flow enter first chamber 83, air-flow enters second chamber 84 by first chamber 83 by the pore on the dividing plate 87, second chamber 84 is than the volume reducing of first chamber 83, and then enter the 3rd chamber 85 by the pore 87 on second dividing plate, the 3rd chamber 85 volume maximums, expand in first and the 3rd chamber by making air-flow, in second chamber, compress, the periodically pulsing air-flow forms the turbulent flow of not advising, collide mutually between the air-flow and mix, it is uniform and stable that air-flow becomes, and mobile damping has consumed the kinetic energy of air-flow, is converted to heat energy.Making by the air-flow after the multi-cavity expansion has increased transmission loss, reduces the vibration and the loss of air-flow.
In like manner, Fig. 4 represents second kind of embodiment's front elevation, and a plurality of chambers are two chambers, and the volume ratio of first chamber 93 and second chamber 94 is 1: 2.
Fig. 5 represents the third embodiment's front elevation, and a plurality of chambers are four chambers, and the volume ratio of first chamber 95, second chamber 96, the 3rd chamber 97 and the 4th chamber 98 is 2: 1: 3: 1.
The chamber of different size, structure and quantity, to the noise elimination effect difference of different frequency range noise, the structure of sound proof housing should adapt with the noise properties of compressor.

Claims (6)

1. the multi-chamber silencer of a rotary compressor, comprise baffler (100), baffler (100) is the thin-walled case, profile is the middle porose oblate cylindricality of ring-type, the inner cavity that forms annular, lower openings, cover on upper bearing (51) top, penetrate the necked part of upper bearing (51) in the hole in the middle of the baffler, baffler is screwed on upper bearing (51), it is characterized in that: the annular space in the baffler (100) is divided into a plurality of chambers that make the refrigerant expansion with dividing plate, and the pore by refrigerant is arranged on the dividing plate in the middle of the chamber that is connected.First chamber links to each other with drain tap, and last chamber has the pore with airtight casing internal communication.
2. the multi-chamber silencer of rotary compressor according to claim 1, it is characterized in that: a plurality of chambers are two chambers, first chamber (93) is 1: 2 with the volume ratio of second chamber (94).
3. the multi-chamber silencer of rotary compressor according to claim 1, it is characterized in that: a plurality of chambers are three chambers, the volume ratio of first chamber (83), second chamber (84) and the 3rd chamber (85) is 1: 2: 4 or is 2: 1: 3.
4. the multi-chamber silencer of rotary compressor according to claim 1, it is characterized in that: a plurality of chambers are four chambers, and the volume ratio of first chamber (95), second chamber (96), the 3rd chamber (97) and the 4th chamber (98) is 2: 1: 3: 1.
5. the multi-chamber silencer of rotary compressor according to claim 1, it is characterized in that: dividing plate is a planar, is positioned at the baffler annular space radially.
6. the multi-chamber silencer of rotary compressor according to claim 1, it is characterized in that: the pore of last chamber and airtight casing internal communication is positioned on the sidewall of baffler.
CNB021170290A 2002-04-29 2002-04-29 Multi-chamber silencer for rotary compressor Expired - Fee Related CN1299008C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB021170290A CN1299008C (en) 2002-04-29 2002-04-29 Multi-chamber silencer for rotary compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB021170290A CN1299008C (en) 2002-04-29 2002-04-29 Multi-chamber silencer for rotary compressor

Publications (2)

Publication Number Publication Date
CN1455115A true CN1455115A (en) 2003-11-12
CN1299008C CN1299008C (en) 2007-02-07

Family

ID=29257117

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB021170290A Expired - Fee Related CN1299008C (en) 2002-04-29 2002-04-29 Multi-chamber silencer for rotary compressor

Country Status (1)

Country Link
CN (1) CN1299008C (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100458165C (en) * 2005-10-26 2009-02-04 日立空调·家用电器株式会社 Rotary compressor
CN102499895A (en) * 2011-10-01 2012-06-20 韩杰 Silencer
CN104343692A (en) * 2013-08-07 2015-02-11 珠海格力节能环保制冷技术研究中心有限公司 Silencing component of compressor and compressor with the same
CN105221433A (en) * 2015-10-22 2016-01-06 安徽美芝精密制造有限公司 Baffler and there is its rotary compressor
CN106286310A (en) * 2016-10-31 2017-01-04 重庆凌达压缩机有限公司 A kind of temperature equipment, compressor and compressor silencer
CN110608170A (en) * 2019-10-30 2019-12-24 广东美芝精密制造有限公司 Amortization structure and compressor

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19639555C1 (en) * 1996-09-26 1997-11-20 Knf Neuberger Gmbh Reciprocating machine such as membrane pump or piston compressor
US5807081A (en) * 1997-01-06 1998-09-15 Carrier Corporation Combination valve for screw compressors
JP3728387B2 (en) * 1998-04-27 2005-12-21 株式会社豊田自動織機 Control valve
JP4181274B2 (en) * 1998-08-24 2008-11-12 サンデン株式会社 Compressor

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100458165C (en) * 2005-10-26 2009-02-04 日立空调·家用电器株式会社 Rotary compressor
CN102499895A (en) * 2011-10-01 2012-06-20 韩杰 Silencer
CN104343692A (en) * 2013-08-07 2015-02-11 珠海格力节能环保制冷技术研究中心有限公司 Silencing component of compressor and compressor with the same
CN104343692B (en) * 2013-08-07 2017-03-01 珠海格力节能环保制冷技术研究中心有限公司 The noise reduction assembly of compressor and there is its compressor
CN105221433A (en) * 2015-10-22 2016-01-06 安徽美芝精密制造有限公司 Baffler and there is its rotary compressor
CN105221433B (en) * 2015-10-22 2017-11-07 安徽美芝精密制造有限公司 Muffler and the rotary compressor with it
CN106286310A (en) * 2016-10-31 2017-01-04 重庆凌达压缩机有限公司 A kind of temperature equipment, compressor and compressor silencer
CN106286310B (en) * 2016-10-31 2019-06-21 重庆凌达压缩机有限公司 A kind of temperature equipment, compressor and compressor silencer
CN110608170A (en) * 2019-10-30 2019-12-24 广东美芝精密制造有限公司 Amortization structure and compressor

Also Published As

Publication number Publication date
CN1299008C (en) 2007-02-07

Similar Documents

Publication Publication Date Title
KR100269951B1 (en) Sucking muffler of a compressor
CN108915997B (en) Muffler, compressor assembly and refrigerator
JP2006083844A (en) Multi-cylinder rotary compressor
CN1749564A (en) Compressor having discharge mufflers
JP2000320479A (en) Multi-cylinder enclosed type compressor
CN1299008C (en) Multi-chamber silencer for rotary compressor
JP2008274840A (en) Air compressor
CN215370162U (en) Silencing structure for compressor
CN216518623U (en) Two-stage oil-free screw compressor
CN100343532C (en) Inner-intubation silencer for rotary compressor
CN100343531C (en) Micropole diffusor of rotary compressor
CN1542284A (en) Porous intervention type silencer for rotary compressor
CN1580574A (en) Silencing device of compressor
CN112483396A (en) Compressor pump body and compressor
US6374943B1 (en) Baffle plate of discharge muffler for hermetic reciprocating compressor
CN101063453A (en) Acoustic wave filter structure of rotation-type compressor
CN2816372Y (en) IC engine exhausting silencer for passenger and goods automobile
CN2816365Y (en) IC exhausting silencer for automobile
CN2816364Y (en) Ic engine exhausting silencer for automobile
CN1236209C (en) Discharge pulsating progressively decreasing apparatus for enclosed compressor
CN218093443U (en) Compressor and vehicle
CN2818809Y (en) Exhaust silencer of IC engine
CN101319676A (en) Silencing device on lower bearing of compressor
CN101398005A (en) Silencing apparatus of compressor
CN1580572A (en) Silencer of rotary compressor

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20070207