CN202165436U - Self-lubricating alloy bearing - Google Patents

Self-lubricating alloy bearing Download PDF

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Publication number
CN202165436U
CN202165436U CN 201120247303 CN201120247303U CN202165436U CN 202165436 U CN202165436 U CN 202165436U CN 201120247303 CN201120247303 CN 201120247303 CN 201120247303 U CN201120247303 U CN 201120247303U CN 202165436 U CN202165436 U CN 202165436U
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China
Prior art keywords
bearing
outside
liner
self
hole
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Expired - Fee Related
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CN 201120247303
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Chinese (zh)
Inventor
张攻坚
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Zhuhai run Bearing Technology Co., Ltd.
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张攻坚
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Priority to CN 201120247303 priority Critical patent/CN202165436U/en
Application granted granted Critical
Publication of CN202165436U publication Critical patent/CN202165436U/en
Priority to PCT/CN2012/076198 priority patent/WO2013007136A1/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C17/00Sliding-contact bearings for exclusively rotary movement
    • F16C17/02Sliding-contact bearings for exclusively rotary movement for radial load only
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C33/00Parts of bearings; Special methods for making bearings or parts thereof
    • F16C33/02Parts of sliding-contact bearings
    • F16C33/04Brasses; Bushes; Linings
    • F16C33/20Sliding surface consisting mainly of plastics
    • F16C33/203Multilayer structures, e.g. sleeves comprising a plastic lining
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2202/00Solid materials defined by their properties
    • F16C2202/50Lubricating properties

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sliding-Contact Bearings (AREA)

Abstract

The utility model discloses a self-lubricating alloy bearing, which has high precision, silence effect, long service and low cost. Allowance precision of a shaft hole of the self-lubricating alloy bearing can be controlled within 8 micrometers to 15 micrometers, thereby being capable of meeting the requirement of a micromotor for the bearing precision. The self-lubricating alloy bearing comprises a bearing lining (1) and a bearing outer sleeve (2). The bearing lining (1) is a cylinder, and the shaft hole (3) is arranged on the axis. A through hole (4) is arranged on the axis of the bearing outer casing (2), and the shape and size of the through hole (4) are matched with the shape and size of the outside of the bearing lining (1). The bearing lining (1) is made of self-lubricating engineering plastics, and the bearing outer sleeve (2) is made of metal materials. The bearing outer sleeve (2) is located on the periphery of the lateral wall of the bearing lining (1) and is integrated with the bearing lining (1) in compositing mode, and the shaft hole (3) is finally formed through precise mechanical processing. The self-lubricating alloy bearing can be widely used in the field of bearings.

Description

The self-lubrication alloy bearing
Technical field
The utility model relates to a kind of bearing, relates in particular to a kind of self-lubrication alloy bearing.
Background technique
Bearing is mechanical parts commonly used of going up revolving meber in order to bearing journal or axle, can be divided into rolling friction bearing (rolling bearing) and sliding friction bearing (sliding bearing) according to the working principle of bearing.Rolling bearing mainly is a ball bearing, and ball bearing is a general purpose accessory, and advantage is that the life-span is long, but that inferior position is a noise is big relatively, and bearing is more little simultaneously, and difficulty of processing is big more, and cost is high more.
Sliding bearing is widely used in the micro motor field; This bearing generally adopts the powder metallurgical technique manufacturing, and advantage is that cost is low, and precision is high; Inferior position is that the life-span is short relatively; Shorter in the following life-span of high temperature condition, it is poor to require motor (as being applied to the motor in the radiation fan) harsh and that have the long lifetime to require to show to sound, and these pluses and minuses are mainly determined by its structure and lubrication principle.Oil-impregnated bearing constitutes through powder die-casting sintering and soaking by lubricating oil; Body interior has a lot of micropores with soaking by lubricating oil; The axis hole internal surface have much can seepage lubricant oil micropore, in use, the lubricant oil of impregnation forms the skim oil film at the axis hole internal surface and lubricates realizing.The initial noise of this oil-containing sliding bearing is more much lower than rolling bearing, but its shortcoming is that the life-span is not enough, and reason is that lubricant oil can run off from the hole of bearing and volatilization.If oil mass is more in addition, " getting rid of oil " phenomenon can appear, particularly small motor (like the motor in the computer heat radiation fan), getting rid of oil can pollute, and dust accretion can stuck bearing.Because oil-impregnated bearing is a kind of bearing of boundary lubrication, can inevitably produce metal shaft and contact with the direct of bearing, consequent noise is inevitable, therefore is difficult to satisfy the usage requirement to the demanding motor of noise control.
Also occurred the engineering plastic bearing that adopts self lubricating material to make in the market, it is normally sold as the liner parts separately, and the axle sleeve that is used for low speed, heavy duty is used more; Engineering plastic bearing has many good qualities; Simple such as assembling, can satisfy various rigorous environment, metal and plastic friction sound are low; Even quiet, the ability of bearing outside contamination (like contamination by dust) is strong.But the shortcoming of existing engineering plastic bearing is: this engineering plastics axle sleeve can produce contraction when assembling and assembling, cause losing the precision of axis hole, is difficult to satisfy the usage requirement of motor.Particularly in the micro motor field; Axle requires very strictness with the matching gap of bearing, can reach 7~8 microns, for the tolerance of bulk article axis hole at 8 microns~15 microns (promptly in 0.008~0.015mm); Even in 8 microns, could satisfy the design and use requirement of micro motor.If the bearing tolerance is excessive, short-term operation will produce the swing wearing and tearing, and workpiece can not be run well, and causes the bearing premature failure, and the life-span is short, even can't assemble motor at all and use.
The model utility content
The utility model technical problem to be solved is the deficiency that overcomes on the existing technology, and the self-lubrication alloy that a kind of precision is high, quiet, the life-span is long, cost is low bearing is provided.
First kind of technological scheme that the utility model adopted is: the utility model comprises bearing liner, bearing outside; Said bearing liner is the cylinder that the axle center is provided with axis hole; The axle center of said bearing outside is provided with through hole; The shape and the size of the outside of the shape of said through hole and size and said bearing liner are suitable, and said bearing liner adopts the selflubricating engineering plastics to process, and said bearing outside adopts metallic material to process; Said bearing outside be positioned at said bearing liner side wall perimeter and with compound the becoming one of said bearing liner, said axis hole is through precision optical machinery processing final molding.
Said bearing liner is pressed in the said through hole through the interference drive fit, with compound the becoming one of said bearing outside assembling.
The tolerance grade of said axis hole is in 8~15 microns.
Said bearing outside employing copper or iron or Bearing Steel or powdered metallurgical material are processed.
Said bearing liner employing modified polyimide or modified polyetheretherketonefiber or modified polyacetal or modification of nylon 66 are processed.
The profile of said through hole and said bearing liner all is cylindric or is oval column or is the multiaspect column.
Said bearing outside is cylindric or is drum type or stepped.
Second kind of technological scheme that the utility model adopted is: the utility model comprises bearing liner, bearing outside; Said bearing liner is the cylinder that the axle center is provided with axis hole; The axle center of said bearing outside is provided with through hole; The shape and the size of the outside of the shape of said through hole and size and said bearing liner are suitable, and said bearing liner adopts the selflubricating engineering plastics to process, and said bearing outside adopts metallic material to process; Said bearing outside be positioned at said bearing liner side wall perimeter and with compound the becoming one of said bearing liner, said axis hole is through precision optical machinery processing final molding.
Said bearing liner becomes one with said bearing outside is compound through being injected and molded in the said through hole.
The tolerance grade of said axis hole is in 8~15 microns.
Said bearing outside employing copper or iron or Bearing Steel or powdered metallurgical material are processed.
Said bearing liner employing modified polyimide or modified polyetheretherketonefiber or modified polyacetal or modification of nylon 66 are processed.
The profile of said through hole and said bearing liner all is cylindric or is oval column or is the multiaspect column.
Said bearing outside is cylindric or is drum type or stepped.
The third technological scheme that the utility model adopted is: the utility model comprises bearing liner, bearing outside; Said bearing liner is the cylinder that the axle center is provided with axis hole; The axle center of said bearing outside is provided with through hole; The shape and the size of the outside of the shape of said through hole and size and said bearing liner are suitable, and said bearing liner adopts the selflubricating engineering plastics to process, and said bearing outside adopts metallic material to process; Said bearing outside be positioned at said bearing liner side wall perimeter and with compound the becoming one of said bearing liner, said axis hole is through precision optical machinery processing final molding.
Said bearing liner directly becomes one with said bearing outside is compound through die press technology for forming.
The tolerance grade of said axis hole is in 8~15 microns.
Said bearing outside employing copper or iron or Bearing Steel or powdered metallurgical material are processed.
Said bearing liner employing modified polyimide or modified polyetheretherketonefiber or modified polyacetal or modification of nylon 66 are processed.
The profile of said through hole and said bearing liner all is cylindric or is oval column or is the multiaspect column.
Said bearing outside is cylindric or is drum type or stepped.
The beneficial effect of the utility model is: because the utility model comprises bearing liner, bearing outside; Said bearing liner is the cylinder that the axle center is provided with axis hole; The axle center of said bearing outside is provided with through hole; The shape and the size of the outside of the shape of said through hole and size and said bearing liner are suitable, and said bearing liner adopts the selflubricating engineering plastics to process, and said bearing outside adopts metallic material to process; Said bearing outside be positioned at said bearing liner side wall perimeter and with compound the becoming one of said bearing liner, said axis hole is through precision optical machinery processing final molding; In the utility model; Said bearing outside is processed by metallic material, can be through the machining moulding or by the powder metallurgical technique moulding, as the overcoat that guarantees bearing integral structural strength and structure shape; The structure shape flexible design of said bearing outside; Outer shape can be according to cooperating motor configuration to do respective design with it, like column, drum type, structure shape such as stepped, and other possible complicated shapes; Said bearing liner is processed by the selflubricating engineering plastics; As the inner core-body of the friction pair that cooperates with metal shaft, can give full play to the characteristic of self lubricating material, its noise in operating is extremely low; Can be applied in the selflubricating in the hot environment; Can accomplish the long lifetime, can accomplish anti-solvent, avoid corrosion according to the material chosen difference; Therefore the utility model does not need soaking by lubricating oil in addition, does not need extra interpolation lubricant oil yet, has avoided the appearance phenomenon of " getting rid of oil ", and the oiling agent of also having avoided adopting lubricant oil to bring runs off; Said bearing outside and compound the becoming one of said bearing liner, compound mode has multiplely between the two, comprises complex methods such as interference fit, molding and forming, die press technology for forming; The tolerance grade of said axis hole can be controlled in 8~15 microns, so just can satisfy the requirement of micro motor to bearing accuracy; The manufacturing of the utility model is uncomplicated; Be easy to guarantee precision, simultaneously processing cost is low, through being positioned at the dimensional changes that outside said bearing outside restriction of being processed by metallic material is positioned at the inner said bearing liner of being processed by the selflubricating engineering plastics; When Production of bearing; The machining accuracy of said axis hole can be guaranteed, when bearing is assemblied on the motor, the structural strength of bearing can be guaranteed; Especially guarantee that said axis hole does not produce distortion, guarantee that the dimensional accuracy of said axis hole does not change; Through test; The utility model can guarantee the precision of bearing fully; Noise is low; Satisfied the requirement of design and use; Avoided the excessive swing wearing and tearing that bring of tolerance and the bearing premature failure and the lost of life, can be widely used in and require quiet, long-life radiator fan motor or use motor such as the H level cover level motor under hot environment and be applied in the places such as motor such as automobile fuel pump motor in the solvent environment, so the utility model precision is high, quiet, the life-span is grown, cost is lower than ball bearing.
Description of drawings
Fig. 1 is the cross-sectional configuration schematic representation of the utility model embodiment one self-lubrication alloy bearing;
Fig. 2 is the cross-sectional configuration schematic representation of the utility model embodiment one bearing outside;
Fig. 3 is the cross-sectional configuration schematic representation of the utility model embodiment two self-lubrication alloy bearings;
Fig. 4 is the cross-sectional configuration schematic representation of the utility model embodiment two bearing outsides;
Fig. 5 is the cross-sectional configuration schematic representation of the utility model embodiment three self-lubrication alloy bearings;
Fig. 6 is the cross-sectional configuration schematic representation of the utility model embodiment three bearing outsides.
Embodiment
Embodiment one:
Like Fig. 1, shown in Figure 2; The self-lubrication alloy bearing of present embodiment comprises bearing liner 1, bearing outside 2, and said bearing liner 1 is provided with the cylinder of axis hole 3 for the axle center, and the axle center of said bearing outside 2 is provided with through hole 4; The axle center of said bearing outside 2 is provided with through hole 4; The shape and the size of the outside of the shape of said through hole 4 and size and said bearing liner 1 are suitable, and in the present embodiment, the profile of said through hole 4 and said bearing liner 1 all is cylindric; Certainly; The profile of said through hole 4 and said bearing liner 1 also can be oval column and be multiaspect column or other columns, and said bearing liner 1 adopts modified polyimide (PI) to process, and the said bearing liner 1 of stating also can adopt modified polyetheretherketonefiber (PEEK) or modified polyacetal (POM) or modification of nylon 66 (PA66) to wait other selflubricating engineering plastics to process certainly; Material modification is generally the aforementioned body material through adding other reinforcing materials such as carbon fibre or glass; Add self lubricating material such as teflon or graphite or molybdenum disulfide etc. simultaneously or add lubricant modified forming, said bearing outside 2 adopts powdered metallurgical material to process, and certain said bearing outside 2 also can adopt other metallic material such as copper or iron or Bearing Steel etc. to process; Said bearing outside 2 is cylindric; Said bearing outside 2 be positioned at said bearing liner 1 side wall perimeter and with said bearing liner 1 compound becoming one, specifically, said bearing liner 1 is pressed in the said through hole 4 through the interference drive fit; With compound the becoming one of said bearing outside 2 assemblings; Be combined into integrally-built bearing and adopt the precision optical machinery processing technology to arrive needed tolerance range final molding to the dimensioned of said axis hole 3 again, the tolerance grade of said axis hole 3 can be controlled in 8~15 microns, so just can satisfy the requirement of micro motor to bearing accuracy.
Embodiment two:
Like Fig. 3, shown in Figure 4, present embodiment and embodiment's one difference part is: in the present embodiment, said bearing outside 2 is drum type.
All the other characteristics of present embodiment are with embodiment one.
Embodiment three:
Like Fig. 5, shown in Figure 6, present embodiment and embodiment's one difference part is: in the present embodiment, said bearing outside 2 is stepped.
All the other characteristics of present embodiment are with embodiment one.
Embodiment four:
Present embodiment and embodiment's one difference part is: the complex method between said bearing outside 2 and the said bearing liner 1; In the present embodiment; Said bearing liner 1 is through being injected and molded in the said through hole 4; With said bearing outside 2 compound becoming one, be combined into integrally-built bearing and adopt the precision optical machinery processing technology to arrive needed tolerance range final molding to the dimensioned of said axis hole 3 again, the tolerance grade of said axis hole 3 can be controlled in 8~15 microns.
All the other characteristics of present embodiment are with embodiment one.
Embodiment five:
Present embodiment and embodiment's four difference part is: the complex method between said bearing outside 2 and the said bearing liner 1; In the present embodiment; Said bearing liner 1 is direct and said bearing outside 2 compound becoming one through die press technology for forming; Be combined into integrally-built bearing and adopt the precision optical machinery processing technology to arrive needed tolerance range final molding to the dimensioned of said axis hole 3 again, the tolerance grade of said axis hole 3 can be controlled in 8~15 microns.
All the other characteristics of present embodiment are with embodiment four.
In the utility model; Said bearing outside 2 plays the effect that keeps structural strength and structure shape through metal machining moulding or by powder metallurgy forming, and said bearing liner 1 is processed by the selflubricating engineering plastics; It is main friction means; Its noise in operating is low, and material wear-resistant, high temperature resistant has long lifetime, quiet characteristics under hot environment.The manufacturing of the utility model is uncomplicated, is easy to guarantee precision, and processing cost is low simultaneously.Through being positioned at the dimensional changes that outside said bearing outside 2 restrictions of being processed by metallic material are positioned at the inner said bearing liner of being processed by the selflubricating engineering plastics 1; When producing; Can guarantee the machining accuracy of said axis hole 3; When assembling, can guarantee that said axis hole 3 does not produce distortion, guarantee that precision does not change.Through test; The utility model can guarantee the precision of bearing fully; Noise is low; Long lifetime, satisfied the requirement of design and use, avoided the excessive swing wearing and tearing that bring of tolerance and the bearing premature failure and the lost of life; Be the selflubricating oilless bearing that a kind of precision is high, quiet, the life-span is long, cost is low, can be widely used in and require quiet, long-life radiator fan motor or use motor such as the H level cover level motor under hot environment and be applied in the places such as motor such as automobile fuel pump motor in the solvent environment.In addition, the designability of the utility model is strong, and said bearing outside 2 can be made into multiple shape, satisfies different usage requirements.
The utility model can be widely used in field of bearings.
Under the situation that does not break away from the utility model thought, all application the utility model specifications and accompanying drawing content and the various equivalences of being done change, and all reason is with being contained in the claim scope of the utility model.

Claims (9)

1. self-lubrication alloy bearing; It is characterized in that: comprise bearing liner (1), bearing outside (2); Said bearing liner (1) is provided with the cylinder of axis hole (3) for the axle center, and the axle center of said bearing outside (2) is provided with through hole (4), and the shape and the size of the outside of the shape of said through hole (4) and size and said bearing liner (1) are suitable; Said bearing liner (1) adopts the selflubricating engineering plastics to process; Said bearing outside (2) adopts metallic material to process, said bearing outside (2) be positioned at said bearing liner (1) side wall perimeter and with compound the becoming one of said bearing liner (1), said axis hole (3) is through precision optical machinery processing final molding.
2. self-lubrication alloy bearing according to claim 1 is characterized in that: said bearing liner (1) is pressed in the said through hole (4) through the interference drive fit, with compound the becoming one of said bearing outside (2) assembling.
3. self-lubrication alloy bearing according to claim 1 is characterized in that: said bearing liner (1) is through being injected and molded in the said through hole (4), with compound the becoming one of said bearing outside (2).
4. self-lubrication alloy bearing according to claim 1 is characterized in that: said bearing liner (1) is direct and compound the becoming one of said bearing outside (2) through die press technology for forming.
5. according to any described self-lubrication alloy bearing of claim 1 to 4, it is characterized in that: the tolerance grade of said axis hole (3) is in 8~15 microns.
6. according to any described self-lubrication alloy bearing of claim 1 to 4, it is characterized in that: said bearing outside (2) employing copper or iron or Bearing Steel or powdered metallurgical material are processed.
7. according to any described self-lubrication alloy bearing of claim 1 to 4, it is characterized in that: said bearing liner (1) employing modified polyimide or modified polyetheretherketonefiber or modified polyacetal or modification of nylon 66 are processed.
8. according to any described self-lubrication alloy bearing of claim 1 to 4, it is characterized in that: the profile of said through hole (4) and said bearing liner (1) all is cylindric or is oval column or is the multiaspect column.
9. according to any described self-lubrication alloy bearing of claim 1 to 4, it is characterized in that: said bearing outside (2) is cylindric or is drum type or stepped.
CN 201120247303 2011-07-13 2011-07-13 Self-lubricating alloy bearing Expired - Fee Related CN202165436U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN 201120247303 CN202165436U (en) 2011-07-13 2011-07-13 Self-lubricating alloy bearing
PCT/CN2012/076198 WO2013007136A1 (en) 2011-07-13 2012-05-29 Self-lubricating alloy bearing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201120247303 CN202165436U (en) 2011-07-13 2011-07-13 Self-lubricating alloy bearing

Publications (1)

Publication Number Publication Date
CN202165436U true CN202165436U (en) 2012-03-14

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WO (1) WO2013007136A1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102345679A (en) * 2011-08-19 2012-02-08 张攻坚 Self-lubricating alloy bearing
WO2013007136A1 (en) * 2011-07-13 2013-01-17 Zhang Gongjian Self-lubricating alloy bearing
CN103133535A (en) * 2013-03-06 2013-06-05 北京工业大学 Hydraulic plunger pump sliding bearing and machining method thereof
US20220048374A1 (en) * 2020-08-12 2022-02-17 Schaeffler Technologies AG & Co. KG Electric transmission assembly including hydrodynamic bearing

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5877916A (en) * 1981-10-31 1983-05-11 Matsushita Electric Ind Co Ltd Sliding part bearing device and manufacture thereof
JP3696666B2 (en) * 1995-09-19 2005-09-21 淡路産業株式会社 Spherical sliding bearing
CN2551800Y (en) * 2002-07-16 2003-05-21 朴日山 Self-lubricating sliding bearing of metal and polymer plastic alloy composite
TW200804697A (en) * 2006-07-04 2008-01-16 Yun-Ru Chen A self-lubricating bearing and manufacturing method thereof
CN100510457C (en) * 2007-12-04 2009-07-08 东风汽车有限公司 Rubber-plastic composite bushing
CN201377515Y (en) * 2009-04-23 2010-01-06 贵州航天精工制造有限公司 Sliding bearing
CN202165436U (en) * 2011-07-13 2012-03-14 张攻坚 Self-lubricating alloy bearing
CN102345679A (en) * 2011-08-19 2012-02-08 张攻坚 Self-lubricating alloy bearing

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013007136A1 (en) * 2011-07-13 2013-01-17 Zhang Gongjian Self-lubricating alloy bearing
CN102345679A (en) * 2011-08-19 2012-02-08 张攻坚 Self-lubricating alloy bearing
CN103133535A (en) * 2013-03-06 2013-06-05 北京工业大学 Hydraulic plunger pump sliding bearing and machining method thereof
US20220048374A1 (en) * 2020-08-12 2022-02-17 Schaeffler Technologies AG & Co. KG Electric transmission assembly including hydrodynamic bearing
US11827085B2 (en) * 2020-08-12 2023-11-28 Schaeffler Technologies AG & Co. KG Electric transmission assembly including hydrodynamic bearing

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C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20161027

Address after: 519000 Guangdong city of Zhuhai Province town Harbour Road Technology Road No. 10 building fourth layer 405B

Patentee after: Zhuhai run Bearing Technology Co., Ltd.

Address before: Xiangzhou District of Guangdong city in Zhuhai Province before 519000 Cuiwei Hill Road No. 8 Garden 8 Building 3 unit 203

Patentee before: Zhang Gongjian

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120314

Termination date: 20180713