CN101334015A - Star shaped compressing mechanism - Google Patents

Star shaped compressing mechanism Download PDF

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Publication number
CN101334015A
CN101334015A CNA2008100700855A CN200810070085A CN101334015A CN 101334015 A CN101334015 A CN 101334015A CN A2008100700855 A CNA2008100700855 A CN A2008100700855A CN 200810070085 A CN200810070085 A CN 200810070085A CN 101334015 A CN101334015 A CN 101334015A
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CN
China
Prior art keywords
cylinder
level
air
compression chamber
compressor housing
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
CNA2008100700855A
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Chinese (zh)
Inventor
冀庆康
刘萍
周月华
张文华
谭科学
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.)
CHONGQING YUEJIN MACHINERY Co Ltd
Original Assignee
CHONGQING YUEJIN MACHINERY 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.)
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Application filed by CHONGQING YUEJIN MACHINERY Co Ltd filed Critical CHONGQING YUEJIN MACHINERY Co Ltd
Priority to CNA2008100700855A priority Critical patent/CN101334015A/en
Publication of CN101334015A publication Critical patent/CN101334015A/en
Pending legal-status Critical Current

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  • Compressors, Vaccum Pumps And Other Relevant Systems (AREA)

Abstract

The invention relates to a star-shaped compressing mechanism. Four air cylinders are positioned on an identical plane inside a compressor casing body and present star-shaped distribution on the periphery of a working cavity, wherein, the inner diameters of the four air cylinders are gradually reduced from the first class to the fourth class; the main axle of the motor extends into the working cavity inside the compressor casing body, and a driving wheel is installed at the inner end of the main axle of the motor; an air inlet opening of the first-class air cylinder compressing cavity is communicated with an air inlet pipe, an air outlet opening of the first-class air cylinder compressing cavity is connected with an air inlet opening of the second-class air cylinder compressing cavity, an air outlet opening of the third-class air cylinder compressing cavity is connected with an air inlet opening of the fourth-class air cylinder compressing cavity, and an air outlet opening of the fourth-class air cylinder compressing cavity is connected with the air outlet pipe. The star-shaped compressing mechanism has the advantages that all of the air cylinders present star-shaped distribution on the identical plane, both the balance and the reliability during the operating process are good, the operation of the whole mechanism is stable, the vibration is small, the noise is low, and the efficiency of the compressed air transmitted to the next level through being compressed is high.

Description

A kind of star shaped compressing mechanism
Technical field
The present invention relates to a kind of compressor, relate in particular to the star shaped compressing mechanism of compressor.
Background technique
Air compressor is as the power source of all kinds of Pneumatic actuator, and application area is very extensive.The compressing mechanism of conventional air compressor generally is made of parts such as compressor housing, electric machine main shaft, bent axle, connecting rod and cylinders, wherein the bent axle in electric machine main shaft and the compressor housing is connected, cylinder arrangement is on the next door of bent axle, the piston rod of cylinder links to each other with bent axle by connecting rod, and cylinder is L-shaped or " V " shape or the setting of " H " shape.The driven by motor crankshaft rotating, the drivening rod motion did reciprocating linear motion piston when bent axle rotated in cylinder body, and the gas that the linear reciprocating motion of piston will suck cylinder compresses step by step, finally reaches desired gas pressure.Adopt the deficiency of the air compressor existence of above compressing mechanism to be:
1, each cylinder is not arranged in same plane, and equilibrium of forces and reliability are relatively poor in the process of running, and can produce bigger vibration and noise.
2, the pressurized air efficient that passes to next stage by compression is lower, and the heat load height, is easy to generate the valve block carbon distribution, and the working life of valve block is short.
3, complex structure, manufacture cost height, the replacing of component, maintenance be difficulty relatively.
4, bulk is bigger, and floor space is wide.
Summary of the invention
Technical problem to be solved by this invention is to provide a kind of motion steadily reliable star shaped compressing mechanism.
Technological scheme of the present invention is as follows: a kind of star shaped compressing mechanism, comprise compressor housing, electric machine main shaft, the one-level cylinder, secondary cylinder, three-stage cylinder and level Four cylinder, its key is: the middle part in described compressor housing has active chamber, described four cylinders are positioned on the same plane of compressor housing, and be star in the periphery of active chamber and distribute, the open-mouth end of four cylinders all communicates with active chamber, wherein one, the shaft axis of three-stage cylinder is on same straight line, two, the shaft axis of level Four cylinder on same straight line, and the internal diameter of one-level cylinder greater than the internal diameter of secondary cylinder greater than the internal diameter of three-stage cylinder internal diameter greater than the level Four cylinder; Described electric machine main shaft stretches in the interior active chamber of compressor housing, in the inner of electric machine main shaft driving wheel is installed, and when this driving wheel rotated under the drive of electric machine main shaft, the piston that can promote each cylinder did reciprocating linear motion in cylinder body; The suction port of described one-level cylinder compression chamber communicates with suction tude, the relief opening of one-level cylinder compression chamber joins by the suction port of first breathing pipe and secondary cylinder compression chamber, the relief opening of secondary cylinder compression chamber joins by the suction port of second breathing pipe and three-stage cylinder compression chamber, the relief opening of three-stage cylinder compression chamber joins by the suction port of the 3rd breathing pipe and level Four cylinder compression chamber, and the relief opening of level Four cylinder compression chamber is connected with outlet pipe.
Adopt above technological scheme, motor drives the driving wheel rotation by main shaft, and the piston of each cylinder is done reciprocating linear motion, and the to-and-fro motion of four cylinder pistons will suck separately that the gas of compression chamber compresses step by step, finally reach required gas pressure, stay by the air cylinder storage.The flow direction of gas is: when the piston of one-level cylinder moves toward the lower dead center direction, the compression chamber volume of one-level cylinder increases, suck air by suction tude from the external world, when the piston of one-level cylinder moves toward the top dead center direction, because in the suction tude one-way valve is housed, gas can not reflux, this moment, the compression chamber volume of one-level cylinder diminished, gas is pressed in the compression chamber of secondary cylinder by first breathing pipe, and just in time the piston of corresponding secondary cylinder moves toward the lower dead center direction; In like manner, when the piston of secondary cylinder moves toward the top dead center direction, because the air pressure in the secondary cylinder is less than the air pressure of one-level cylinder but greater than the air pressure of three-stage cylinder, therefore the piston of secondary cylinder is pressed into gas in the compression chamber of three-stage cylinder by second breathing pipe, the piston of three-stage cylinder further compresses gas again, is pressed in the level Four cylinder by the 3rd breathing pipe, at last by outlet pipe input air cylinder, one-way valve is installed, to prevent gas backstreaming in the outlet pipe.
For the reliability that further improves each cylinder piston motion and pressurized air pass to the efficient of next stage by compression, above-mentioned driving wheel is ellipse or cydariform.
In order to make more compact structure, dismounting more convenient, above-mentioned four cylinders are installed in respectively in the holding cavity in the compressor housing, and the outer end of each holding cavity is by end bracket enclosed, and this end cap fixes by screw and compressor housing.
The invention has the beneficial effects as follows:
1, each cylinder is star arrangement in same plane, equilibrium of forces and good reliability in the process of running, and the entire mechanism motion is steadily, vibration is little, noise is low.
2, every cylinder is independent, and pressurized air passes to the efficient height of next stage by compression, and heat load is low, can effectively reduce the valve block carbon distribution, the long service life of valve block.
3, easy accessibility, low cost of manufacture, the replacing of component, maintenance are than being easier to.
4, compact structure, bulk are less, and floor space is few.
Description of drawings
Fig. 1 is a structural representation of the present invention.
Embodiment
The invention will be further described below in conjunction with drawings and Examples:
As shown in Figure 1, the present invention is by compressor housing 1, electric machine main shaft 2, driving wheel 3, one-level cylinder 4, secondary cylinder 5, three-stage cylinder 6, level Four cylinder 7, end cap 8, suction tude 10, first breathing pipe 11, second breathing pipe 12, parts such as the 3rd breathing pipe 13 and outlet pipe 14 constitute, wherein the middle part in the compressor housing 1 is an active chamber 9, the periphery of this active chamber 9 has the holding cavity that four air feed cylinders are installed, these four holding cavities are cross and are symmetrically distributed, the inner of each holding cavity is communicated with active chamber 9, the outer end of holding cavity is by end cap 8 sealings, and this end cap 8 fixes by screw and compressor housing 1.Motor (not drawing among the figure) is installed in the outside of compressor housing 1, and the main shaft 2 of this motor stretches in the active chamber 9 in the compressor housing 1, in the inner of electric machine main shaft 2 driving wheel 3 is installed, and this driving wheel 3 be ellipse or cydariform or other suitable shape.Described four cylinders 4,5,6,7 are installed in respectively in the holding cavity in the compressor housing 1, four cylinders 4,5,6,7 are in the same plane, and be star in the periphery of active chamber 9 and distribute, the open-mouth end of four cylinders 4,5,6,7 all communicates with active chamber 9, wherein one, the shaft axis of three-stage cylinder 4,6 is on same straight line, two, the shaft axis of level Four cylinder 5,7 is on same straight line, and the internal diameter of one-level cylinder 4 greater than the internal diameter of secondary cylinder 5 greater than the internal diameter of three-stage cylinder 6 internal diameter greater than level Four cylinder 7.
As can be known from Fig. 1, the suction port of described one-level cylinder 4 compression chambers communicates with suction tude 10, in suction tude 10, one-way valve is housed, with guarantee gas from suction tude 10 towards one-level cylinder 4 one-way flow, the relief opening of one-level cylinder 4 compression chambers joins by the suction port of first breathing pipe 11 with secondary cylinder 5 compression chambers, the relief opening of secondary cylinder 5 compression chambers joins by the suction port of second breathing pipe 12 with three-stage cylinder 6 compression chambers, the relief opening of three-stage cylinder 6 compression chambers joins by the suction port of the 3rd breathing pipe 13 with level Four cylinder 7 compression chambers, the relief opening of level Four cylinder 7 compression chambers is connected with outlet pipe 14, one-way valve also is housed in outlet pipe 14, with guarantee gas from level Four cylinder 7 towards outlet pipe 14 one-way flow.
Working principle of the present invention is:
Motor drives driving wheel 3 rotations by main shaft 2, the piston that driving wheel 3 promotes each cylinder does reciprocating linear motion by replacing rule, the to-and-fro motion of four cylinder pistons will suck separately that the gas of compression chamber compresses step by step, finally reach required gas pressure, be stayed by the air cylinder storage.The flow direction of gas is: when the piston of one-level cylinder 4 moves toward the lower dead center direction, the compression chamber volume of one-level cylinder 4 increases, suck air from the external world by suction tude 10, when the piston of one-level cylinder 4 moves toward the top dead center direction, because in the suction tude 10 one-way valve is housed, gas can not reflux, the compression chamber volume of one-level cylinder 4 diminishes at this moment, gas is pressed in the compression chamber of secondary cylinder 5 by first breathing pipe 11, and the piston of just in time corresponding secondary cylinder 5 is toward the motion of lower dead center direction; In like manner, when the piston of secondary cylinder 5 moves toward the top dead center direction, because the air pressure in the secondary cylinder 5 is less than the air pressure of one-level cylinder 4 but greater than the air pressure of three-stage cylinder 6, therefore the piston of secondary cylinder 5 is pressed into gas in the compression chamber of three-stage cylinder 6 by second breathing pipe 12, and the piston of just in time corresponding three-stage cylinder 6 is toward the motion of lower dead center direction, when the piston of three-stage cylinder 6 moves toward the top dead center direction, because the air pressure in the three-stage cylinder 6 is less than the air pressure of secondary cylinder 5 but greater than the air pressure of level Four cylinder 7, therefore the piston of three-stage cylinder 6 is pressed into gas in the compression chamber of level Four cylinder 7 by the 3rd breathing pipe 13, and the piston of just in time corresponding level Four cylinder 7 is toward the motion of lower dead center direction, when the piston of level Four cylinder 7 moves toward the top dead center direction, one-way valve opens in the outlet pipe 14, after gas in the level Four cylinder 7 is further compressed like this, in outlet pipe 14 input air cylinders.Driving wheel 3 whenever rotates a circle just has corresponding pressurized gas to be pressed in the air cylinder, and along with the continuous rotation of driving wheel 3, pressurized gas also can continue to import in the air cylinder.

Claims (3)

1, a kind of star shaped compressing mechanism, comprise compressor housing (1), electric machine main shaft (2), one-level cylinder (4), secondary cylinder (5), three-stage cylinder (6) and level Four cylinder (7), it is characterized in that: the middle part in described compressor housing (1) has active chamber (9), described four cylinders (4,5,6,7) be positioned on the same plane of compressor housing (1), and be star in the periphery of active chamber (9) and distribute, four cylinders (4,5,6,7) open-mouth end all communicates with active chamber (9), wherein one, three-stage cylinder (4,6) shaft axis is on same straight line, two, level Four cylinder (5,7) shaft axis on same straight line, and the internal diameter of one-level cylinder (4) greater than the internal diameter of secondary cylinder (5) greater than the internal diameter of three-stage cylinder (6) internal diameter greater than level Four cylinder (7); Described electric machine main shaft (2) stretches in the interior active chamber (9) of compressor housing (1), driving wheel (3) is installed in the inner at electric machine main shaft (2), when this driving wheel (3) rotated under the drive of electric machine main shaft (2), the piston that can promote each cylinder did reciprocating linear motion in cylinder body; The suction port of described one-level cylinder (4) compression chamber communicates with suction tude (10), the relief opening of one-level cylinder (4) compression chamber joins by the suction port of first breathing pipe (11) with secondary cylinder (5) compression chamber, the relief opening of secondary cylinder (5) compression chamber joins by the suction port of second breathing pipe (12) with three-stage cylinder (6) compression chamber, the relief opening of three-stage cylinder (6) compression chamber joins by the suction port of the 3rd breathing pipe (13) with level Four cylinder (7) compression chamber, and the relief opening of level Four cylinder (7) compression chamber is connected with outlet pipe (14).
2, a kind of star shaped compressing mechanism according to claim 1 is characterized in that: described driving wheel (3) is ellipse or cydariform.
3, a kind of star shaped compressing mechanism according to claim 1 and 2, it is characterized in that: described four cylinders (4,5,6,7) are installed in respectively in the interior holding cavity of compressor housing (1), the outer end of each holding cavity is by end cap (8) sealing, and this end cap (8) fixes by screw and compressor housing (1).
CNA2008100700855A 2008-08-05 2008-08-05 Star shaped compressing mechanism Pending CN101334015A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102200108A (en) * 2011-01-21 2011-09-28 佛山市广顺电器有限公司 Cross compressor
CN102477972A (en) * 2010-11-30 2012-05-30 方保林 Double-elliptic-orbit-groove double-row piston (or diaphragm) compressor
CN103437973A (en) * 2013-09-18 2013-12-11 安徽华晶机械股份有限公司 Vertical star-shape high-pressure air compressor
CN103452798A (en) * 2013-09-18 2013-12-18 安徽华晶机械股份有限公司 Transmission device of vertical star-like high-pressure air compressor
CN107269487A (en) * 2016-04-08 2017-10-20 方保林 Double-elliptic-orbit-groove double reciprocal transmission piston type, membrane compressor
CN108050041A (en) * 2018-01-25 2018-05-18 刘硕毅 Coplanar multi-cylinder Direct Action Type gas compression mechanism

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102477972A (en) * 2010-11-30 2012-05-30 方保林 Double-elliptic-orbit-groove double-row piston (or diaphragm) compressor
CN102477972B (en) * 2010-11-30 2014-06-25 方保林 Double-elliptic-orbit-groove double-row piston (or diaphragm) compressor
CN102200108A (en) * 2011-01-21 2011-09-28 佛山市广顺电器有限公司 Cross compressor
CN102200108B (en) * 2011-01-21 2014-12-31 佛山市广顺电器有限公司 Cross compressor
CN103437973A (en) * 2013-09-18 2013-12-11 安徽华晶机械股份有限公司 Vertical star-shape high-pressure air compressor
CN103452798A (en) * 2013-09-18 2013-12-18 安徽华晶机械股份有限公司 Transmission device of vertical star-like high-pressure air compressor
CN103437973B (en) * 2013-09-18 2015-12-30 安徽华晶机械股份有限公司 Vertical star-like high-pressure air compressor
CN107269487A (en) * 2016-04-08 2017-10-20 方保林 Double-elliptic-orbit-groove double reciprocal transmission piston type, membrane compressor
CN108050041A (en) * 2018-01-25 2018-05-18 刘硕毅 Coplanar multi-cylinder Direct Action Type gas compression mechanism

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Open date: 20081231