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CN101776080A - Spindle bearing device of rotary screw rod compressor - Google Patents

Spindle bearing device of rotary screw rod compressor Download PDF

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Publication number
CN101776080A
CN101776080A CN 201010127329 CN201010127329A CN101776080A CN 101776080 A CN101776080 A CN 101776080A CN 201010127329 CN201010127329 CN 201010127329 CN 201010127329 A CN201010127329 A CN 201010127329A CN 101776080 A CN101776080 A CN 101776080A
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CN
China
Prior art keywords
contact ball
bearing
screw rod
spindle
main shaft
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Application number
CN 201010127329
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Chinese (zh)
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CN101776080B (en
Inventor
张炯焱
吴常洪
陈刚
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Ningbo Baosi Compressor Co Ltd
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Ningbo Baosi Compressor Co Ltd
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Priority to CN2010101273296A priority Critical patent/CN101776080B/en
Publication of CN101776080A publication Critical patent/CN101776080A/en
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Publication of CN101776080B publication Critical patent/CN101776080B/en
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  • Applications Or Details Of Rotary Compressors (AREA)
  • Rolling Contact Bearings (AREA)

Abstract

The invention relates to a spindle bearing device of a rotary screw rod compressor, which comprises a shell and a pair of rotors which are mutually meshed, wherein one rotor forms a spindle, and the rear end thereof is provided with two journal bearing surfaces with different diameters, wherein a heavy radial roller bearing and a four-point contact ball bearing are sequentially lined and deployed on the large-diameter journal bearing surface and the outer diameters thereof are fixed on a shell supporting hole, and an angle contact ball bearing is deployed on the small-diameter journal bearing surface; the outer side of the outer diameter of the four-point contact ball bearing is provided with an isolation cover; the outer side of the isolation cover is provided with a butterfly spring; the angle contact ball bearing is arranged on the outer side of the butterfly spring, and is connected with the spindle of the screw rod compressor through a second set nut; the device has the advantages of good structural rigidity and motion rigidity, higher radial and axial integrated bearing capability, and good work stability; and secondly, the operation efficiency is higher, and the operation precision and the service life can be significantly improved.

Description

A kind of spindle bearing device of rotary screw rod compressor
Technical field
The present invention relates to a kind of compressor main shaft technical field of structures, particularly relate to a kind of spindle bearing device of rotary screw rod compressor.
Background technique
Current, the most employings of rotary helical screw compressor both at home and abroad are installed in a pair of structures with intermeshing rotor of special screw rod line style in the housing; Wherein, the front end of a rotor is driven by driving machine, thereby constitutes the helical-lobe compressor main shaft, and the rear end of this helical-lobe compressor main shaft is provided with Main axis surpporting device; This Main axis surpporting device is used to bear radial effect power and the axial force under the helical-lobe compressor main shaft operating conditions; So the structure of screw compression spindle bearing device will directly have influence on the running precision and the operating life thereof of described helical-lobe compressor.
For example, the Main axis surpporting device of the CF1000 type rotary helical screw compressor that Germany GHH company produces is to adopt the tapered roller bearing that a pair of reversed arrangement is set in the rear end of main shaft, the internal diameter of this tapered roller bearing matches with described main shaft, the inner ring end face of this tapered roller bearing then offsets by a Balance disc and described main shaft end face, with bear this main shaft mainly radially with axial force; The inner ring end face of another tapered roller bearing of reversed arrangement is positioned at the end of described main shaft by locking nut, auxiliary bear this main shaft radially with axial force; The outer ring of described tapered roller bearing is an end that is fixed on described housing, and the adjusting that realizes axial clearance by multilayer wavy spring and pressure ring with fix, as shown in Figure 2.
The advantage of the Main axis surpporting device of above-mentioned CF1000 type rotary helical screw compressor be structure comparatively simple, install with adjustment more convenient; Yet its deficiency is that the bearing capacity of tapered roller bearing is lower, motion rigidity is relatively poor, thereby influences its running precision and working life.
Summary of the invention
Technical problem to be solved by this invention is the situation at prior art, and the spindle bearing device of rotary screw rod compressor that a kind of bearing capacity is big, working life is long is provided.
The present invention solves the problems of the technologies described above the technological scheme that is adopted: a kind of spindle bearing device of rotary screw rod compressor, comprise a housing, the a pair of intermeshing rotor of configuration in this housing, the front end of one of them rotor is driven by driving machine, thereby constitute described helical-lobe compressor main shaft, this rear-end of spindle is provided with a Balance disc, it is characterized in that:
The rear end of described helical-lobe compressor main shaft is provided with the journal rest face of two different-diameters, be arranged in order on the wherein large diameter journal rest face and dispose heavy radial roller bearing and four-point contact ball, and dispose angular contact ball bearing on the small diameter shaft neck supporting surface;
The external diameter of described heavy radial roller bearing is fixed in the matching hole of described housing, and the inner side end of this heavy type radial roller bearing and described Balance disc end face offset.
The present invention adopts above structural arrangements, makes the operating radial effect power of helical-lobe compressor be born separately by heavy radial roller bearing, and the operating axial force of helical-lobe compressor is then born separately by four-point contact ball and angular contact ball bearing; Thereby improve helical-lobe compressor radially with axial comprehensive load capacity and motion rigidity, promptly realized the running precision and the operating life thereof of further lift-bolt compressor.
The purpose that disposes an angular contact ball bearing by described four-point contact ball rear portion again is in order to share the axial bearing capacity of a part of four-point contact ball, to have the lasting operating accuracy life-span at a high speed with under the high loading operating conditions to guarantee this four-point contact ball.
The internal diameter arranged outside of described four-point contact ball has first locknut that is connected with described helical-lobe compressor main shaft; The external diameter arranged outside of described four-point contact ball has separation sleeve, is set to be slidingly matched between the external diameter of this separation sleeve and the described housing matching hole.The function of first locknut is to be used to adjust with correct location be arranged in order the heavy radial roller bearing of configuration and the working clearance of four-point contact ball; especially four-point contact ball is as the thrust-bearing that bears the operating axial force of helical-lobe compressor; should have certain working clearance between its Internal and external cycle, to prevent because of the thermal expansion in the work of helical-lobe compressor main shaft irregular wear even machine halt trouble taking place between the bearing enclose.
Described separation sleeve arranged outside has butterfly spring; Described angular contact ball bearing is installed in the outside of described butterfly spring, and is connected with described helical-lobe compressor main shaft by second locknut.
The function of this butterfly spring is to be used for giving described angular contact ball bearing with the operating a part of thrust load distribution and transmission of helical-lobe compressor, make the operating thrust load of helical-lobe compressor between four-point contact ball and angular contact ball bearing, reasonably distribute, with further raising its working life.
Compared with prior art, advantage of the present invention is: the first, have higher radially with axial comprehensive load capacity and motion rigidity thereof, good operating stability; The second, operational efficiency is higher, and can significantly improve running precision and operating life thereof.
Description of drawings
Fig. 1 is a structural representation of the present invention;
Fig. 2 is a kind of prior art constructions schematic representation;
Embodiment
Embodiment describes in further detail the present invention below in conjunction with accompanying drawing.
Fig. 1 illustrates one embodiment of the present of invention, and it comprises the housing 1 that disposes a pair of intermeshing rotor; The front end of one of them rotor can be driven by driving machines such as motor or various internal-combustion engines, constitutes the main shaft 2 of helical-lobe compressor, and another rotor constitutes the driven axle 11 of helical-lobe compressor.
The rear end of main shaft 2 is provided with the journal rest face of two different-diameters, is arranged in order on the wherein large diameter journal rest face to dispose heavy radial roller bearing 4 and four-point contact ball 5, and disposes angular contact ball bearing 9 on the small diameter shaft cervical branch bearing surface; The external diameter of heavy radial roller bearing 4 is fixed in the matching hole of housing 1, and the inner side end of this heavy type radial roller bearing and Balance disc 3 end faces offset.Another end face of this Balance disc 3 is resisted against on the middle part end face of main shaft 2.Like this, operating radial effect power of helical-lobe compressor and axial force are born by heavy radial roller bearing and four-point contact ball, angular contact ball bearing respectively; Thereby improve helical-lobe compressor radially with axial comprehensive load capacity and motion rigidity; This structure is the running precision and the operating life thereof of lift-bolt compressor further.
It is in order to share the axial bearing capacity of a part of four-point contact ball, to have the lasting operating accuracy life-span at a high speed with under the high loading operating conditions to guarantee this four-point contact ball that the four-point contact ball rear portion disposes an angular contact ball bearing again.
The internal diameter arranged outside of four-point contact ball 5 has first locknut 8 that is connected with main shaft 2; The external diameter arranged outside of this four-point contact ball 5 has separation sleeve 6, is set to be slidingly matched between the external diameter of this separation sleeve and housing 1 matching hole.Separation sleeve 6 can slippage in housing 1.
Separation sleeve 6 arranged outside have butterfly spring 7.
Angular contact ball bearing 9 is installed in the outside of described butterfly spring 7, and is connected with main shaft 2 by second locknut 10.
First locknut is to be used to adjust and the correct working clearance of locating heavy radial roller bearing and four-point contact ball; Four-point contact ball requires to have certain working clearance between the inside and outside circle of its ball bearing as the thrust-bearing function, to prevent because of the thermal expansion in the work of helical-lobe compressor main shaft heel and toe wear even machine halt trouble taking place between the inside and outside circle of bearing.
Described separation sleeve arranged outside has butterfly spring; Described angular contact ball bearing is installed in the outside of described butterfly spring, and is connected with described helical-lobe compressor main shaft by second locknut.
The function of this butterfly spring is to be used for giving described angular contact ball bearing with the operating a part of thrust load distribution and transmission of helical-lobe compressor, make the operating thrust load of helical-lobe compressor between four-point contact ball and angular contact ball bearing, reasonably distribute, with further raising its working life.
Be respectively arranged with protecgulum 12 and bonnet 13 at the two ends of housing 1, be provided with the cylinder rolling bearing 14 that is used for the supporting spindle front end in the protecgulum 12, the front end of this cylinder rolling bearing 14 promptly connects the output shaft of driving machines such as motor or various internal-combustion engines.The function of bonnet 13 is the lubrication and seals to heavy radial roller bearing 4, four-point contact ball 5 and angular contact ball bearing 9, to guarantee that the present invention has good lubricating condition and lubricating status all the time; Thereby increase the service life.
The present invention is supporting to be applied in the secondary main frame of press in the bottle blowing, and its working pressure is that 3.5Mpa, productivity are 12m 3Before and after/the min, main frame pressure reduction be 〉=operating mode of 2.1Mpa under, the operating life of its bearing can reach about 20,000 hours; And the prior art under the identical operating mode, the operating life of its bearing is only about 8,000 hours as calculated.
Because the present invention has good structural rigidity and motion rigidity, therefore, obtain its working life to significantly improve; And it is particularly useful under the bigger operating mode of load change.

Claims (4)

1. a spindle bearing device of rotary screw rod compressor comprises a housing, a pair of intermeshing rotor of configuration in this housing, the front end of one of them rotor is driven by driving machine, thereby constitute described helical-lobe compressor main shaft, this rear-end of spindle is provided with a Balance disc, it is characterized in that:
The rear end of described helical-lobe compressor main shaft (2) is provided with the journal rest face of two different-diameters, wherein be arranged in order on the major diameter journal rest face and dispose heavy radial roller bearing (4) and four-point contact ball (5), and dispose angular contact ball bearing (9) on the small diameter shaft cervical branch bearing surface;
The external diameter of described heavy radial roller bearing (4) is fixed in described housing (1) matching hole, and the inner side end of this heavy type radial roller bearing (4) and described Balance disc (3) end face offset.
2. spindle bearing device of rotary screw rod compressor according to claim 1 is characterized in that: the internal diameter arranged outside of described four-point contact ball (5) has first locknut (8) that is connected with described helical-lobe compressor main shaft (2); The external diameter arranged outside of described four-point contact ball has separation sleeve (6), is set to be slidingly matched between the external diameter of this separation sleeve and described housing (1) matching hole.
3. spindle bearing device of rotary screw rod compressor according to claim 2 is characterized in that: described separation sleeve (6) arranged outside has butterfly spring (7).
4. according to claim 1 or 3 described spindle bearing device of rotary screw rod compressor, it is characterized in that: described angular contact ball bearing (9) is installed in the outside of described butterfly spring (7), and is connected with described helical-lobe compressor main shaft (2) by second locknut (10).
CN2010101273296A 2010-03-15 2010-03-15 Spindle bearing device of rotary screw rod compressor Active CN101776080B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010101273296A CN101776080B (en) 2010-03-15 2010-03-15 Spindle bearing device of rotary screw rod compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010101273296A CN101776080B (en) 2010-03-15 2010-03-15 Spindle bearing device of rotary screw rod compressor

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CN101776080A true CN101776080A (en) 2010-07-14
CN101776080B CN101776080B (en) 2012-04-18

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104325406A (en) * 2014-09-19 2015-02-04 新昌县嘉瑞机械有限公司 Dresser self-warning device for groove grinder on outer ring of ball bearing
CN109058103A (en) * 2018-09-25 2018-12-21 宁波鲍斯能源装备股份有限公司 Water jet helical-lobe compressor

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1047133A (en) * 1989-05-06 1990-11-21 瑞典转子机械公司 Pressure charging valve in the rotary screw
CN1253239A (en) * 1998-09-17 2000-05-17 株式会社日立制作所 Oilless lubricating screw type compressor
CN1388868A (en) * 2000-08-16 2003-01-01 毕彻制冷机有限公司 Screw-type compressor
CN101334027A (en) * 2007-06-29 2008-12-31 上海汉钟精机股份有限公司 Frequency conversion screw type cold compressor three-support structure
CN201723447U (en) * 2010-03-15 2011-01-26 宁波鲍斯压缩机有限公司 Main shaft supporting device of rotary helical screw compressor

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1047133A (en) * 1989-05-06 1990-11-21 瑞典转子机械公司 Pressure charging valve in the rotary screw
CN1253239A (en) * 1998-09-17 2000-05-17 株式会社日立制作所 Oilless lubricating screw type compressor
CN1388868A (en) * 2000-08-16 2003-01-01 毕彻制冷机有限公司 Screw-type compressor
CN101334027A (en) * 2007-06-29 2008-12-31 上海汉钟精机股份有限公司 Frequency conversion screw type cold compressor three-support structure
CN201723447U (en) * 2010-03-15 2011-01-26 宁波鲍斯压缩机有限公司 Main shaft supporting device of rotary helical screw compressor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104325406A (en) * 2014-09-19 2015-02-04 新昌县嘉瑞机械有限公司 Dresser self-warning device for groove grinder on outer ring of ball bearing
CN109058103A (en) * 2018-09-25 2018-12-21 宁波鲍斯能源装备股份有限公司 Water jet helical-lobe compressor

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Inventor after: Zhang Jiongyan

Inventor after: Wu Changhong

Inventor after: Chen Gang

Inventor after: Jia Anquan

Inventor after: Fan Yonghai

Inventor after: Zhou Fusheng

Inventor before: Zhang Jiongyan

Inventor before: Wu Changhong

Inventor before: Chen Gang

COR Change of bibliographic data

Free format text: CORRECT: INVENTOR; FROM: ZHANG JIONGYAN WU CHANGHONG CHEN GANG TO: ZHANG JIONGYAN WU CHANGHONG CHEN GANG JIA ANQUAN FAN YONGHAI ZHOU FUSHENG

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Address after: 315505 Zhejiang Province, Ningbo city Fenghua District streets Xiwu Shang Qiao Road No. 18

Patentee after: NINGBO BAOSI ENERGY EQUIPMENT Co.,Ltd.

Address before: 315505 Zhejiang province Fenghua city streets Xiwu Shang Qiao Road No. 18

Patentee before: NINGBO BAOSI ENERGY EQUIPMENT Co.,Ltd.