CN105296827A - Bearing material good in performance and long in service life - Google Patents
Bearing material good in performance and long in service life Download PDFInfo
- Publication number
- CN105296827A CN105296827A CN201510782841.7A CN201510782841A CN105296827A CN 105296827 A CN105296827 A CN 105296827A CN 201510782841 A CN201510782841 A CN 201510782841A CN 105296827 A CN105296827 A CN 105296827A
- Authority
- CN
- China
- Prior art keywords
- parts
- powder
- performance
- service life
- prepared
- 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
Links
Landscapes
- Lubricants (AREA)
- Sliding-Contact Bearings (AREA)
Abstract
The invention discloses a bearing material good in performance and long in service life. The bearing material is prepared from, by weight, 85-90 parts of aluminum, 5-8 parts of zinc, 3-4 parts of sulfur, 1-2 parts of silver, 0.5-1 part of zirconium, 3-4 parts of polytetrafluoroethylene powder, 0.8-1.5 parts of molybdenum disulfide, 2-3 parts of stearic acid, 0.6-1 part of methylcellulose, 1-1.5 parts of graphite, 0.8-1.2 parts of magnesium hypophosphite, 0.4-0.6 part of bismuth oxide, 0.6-0.8 part of alums and an appropriate amount of oleic acid. The bearing material is reasonable in formula, and the prepared bearing material is high in strength, high in pressure bearing capacity, compact in structure, good in microstructure, excellent in rigidity, hardness, anti-fatigue performance, tensile strength and other performance, long in service life, small in environment pollution, simple in production step, high in efficiency and worthy of popularization.
Description
Technical field
The present invention relates to powder metallurgical technology, particularly relate to the bearing materials of the good long service life of a kind of performance.
Background technology
Metal sintering oil bearing is using metal-powder as raw material, the class agglomerated material made with powder metallurgical technique.Metal sintering oily preparation inherently porous, and have in the fabrication process can the quantity in free adjustment space, size and distribution advantage.Sintering metal oil bearing has been widely used in the various fields such as automobile, household electrical appliances, Transport Machinery, agricultural machine, instrument.The sintering metal oil bearing that modern industry mainly uses can be divided into copper base, iron-based, copper iron-based etc. by body material.Aluminium is one of the element the most widely that distributes in the earth's crust, and the content in the earth's crust is only second to oxygen and silicon, occupies the 3rd.In metal species, aluminium is the large metal of Equations of The Second Kind being only second to iron and steel.Aluminium is a kind of Industrial materials of widespread use, and fine aluminium is very soft, and intensity is not high, has good ductility, after adding the element such as copper, silicon, can effectively improve its mechanical property in aluminium.Aluminium base sliding surface bearing due to its density little, intensity is high, and rotproofness is good, and low cost and other advantages, and make it in some antifriction field, its Performance Ratio copper-based bearings material is more excellent.Although aluminum-based bearing material has a lot of excellent performance, but along with aluminum base powder metallurgy has the limitation of self, very large gap is also had from practical application, due to the problem in manufacturing process, the quality of burned product need to improve, and needs to improve performance scale operation further and expands its range of application.
Summary of the invention
The object of the invention is exactly the defect in order to make up prior art, provides the bearing materials of the good long service life of a kind of performance.
The present invention is achieved by the following technical solutions:
A bearing materials for the good long service life of performance, is made up of the raw material of following weight part: aluminium 85-90, zinc 5-8, sulphur 3-4, silver-colored 1-2, zirconium 0.5-1, polytetrafluoroethylene powder 3-4, molybdenumdisulphide 0.8-1.5, stearic acid 2-3, methylcellulose gum 0.6-1, graphite 1-1.5, magnesium hypophosphite 0.8-1.2, bismuth oxide 0.4-0.6, alum 0.6-0.8, oleic acid are appropriate;
The bearing materials of the good long service life of described a kind of performance, be made up of following concrete steps:
(1) aluminium, zinc, sulphur, silver and zirconium powder is poured in mortar ground and mixed even, again this mixed powder is added in ball mill, add appropriate alcohol and carry out wet ball grinding, ball milling speed is 20 revolutions per seconds, after ball milling 1-1.5h, mixed powder is added to placement after drying under 70 ° of C in vacuum drying oven for subsequent use;
(2) oleic acid and graphite mixing to be added in ultrasonic oscillation device ultrasonic disperse even, then to add mixed powder supersound process 30-45min prepared by step (1), for subsequent use after ultrasonic end solid-liquid separation;
(3) polytetrafluoroethylene powder is put into stirrer and mix 5-10min under 11000 revs/min, then add molybdenumdisulphide continuation mixing 10-15min, the powder mixed is placed in thermostatic drying chamber drying for standby under 80 ° of C;
(4) by stearic acid and methylcellulose gum Hybrid Heating, then add step (3) and all the other remaining mixing of materials stir, make particle, then mixed powder prepared by this particle and step (2) is added in mixer mixes;
(5) mixed powder prepared by step (4) is put into mould, pressure with 200-300Mpa in hydropress makes type, obtain green compact, green compact after shaping are sent in vacuum sintering furnace and sinters, agglomerating chamber's vacuum is 1.0 × 10-2-1.0 × 10-3Pa, sintering temperature heats up with the speed of 10 ° of C/min, is incubated 4-5 hour, cools to room temperature with the furnace afterwards when reaching 550-650 ° of C;
(6) blank prepared by step (5) is carried out surfacing, deburring process, then immersion oil can obtain bearing materials.
Advantage of the present invention is: the present invention adopts aluminium powder as matrix, add zinc, sulphur, silver and zirconium improve aluminium base intensity, relative density, porosity, the effect of crushing strength and reduction sintering temperature, the plasticity of aluminium is high, very easily be bonded on mould, cause demoulding difficulty, the present invention utilizes oleic acid and graphite to be mixed to form good adsorption and is coated on metal-powder surface, the problem that powder easily adheres to can be improved, the mixture of tetrafluoroethylene and molybdenumdisulphide is also adopted to make particle and metal powder mixed sintering, greatly strengthen the self-lubricity of aluminum-based bearing, reduce shrinkability, control pore size and the homogeneity of matrix, the magnesium hypophosphite added, bismuth oxide and alum can promote liquid phase sintering, improve homogeneity and the compactness of material, the present invention fills a prescription rationally, the bearing materials intensity manufactured is high, bearing pressure is strong, dense structure, microtexture is good, rigidity, hardness, fatigue performance, the excellent propertys such as tensile strength, long service life, environmental pollution is little, production stage is simple, efficiency is high, be worthy to be popularized.
Embodiment
A bearing materials for the good long service life of performance, is made up of the raw material of following weight part (kilogram): aluminium 85, zinc 5, sulphur 3, silver 1, zirconium 0.5, polytetrafluoroethylene powder 3, molybdenumdisulphide 0.8, stearic acid 2, methylcellulose gum 0.6, graphite 1, magnesium hypophosphite 0.8, bismuth oxide 0.4, alum 0.6, oleic acid are appropriate;
The bearing materials of the good long service life of described a kind of performance, be made up of following concrete steps:
(1) aluminium, zinc, sulphur, silver and zirconium powder is poured in mortar ground and mixed even, again this mixed powder is added in ball mill, add appropriate alcohol and carry out wet ball grinding, ball milling speed is 20 revolutions per seconds, after ball milling 1h, mixed powder is added to placement after drying under 70 ° of C in vacuum drying oven for subsequent use;
(2) oleic acid and graphite mixing to be added in ultrasonic oscillation device ultrasonic disperse even, then to add mixed powder supersound process 30min prepared by step (1), for subsequent use after ultrasonic end solid-liquid separation;
(3) polytetrafluoroethylene powder is put into stirrer and mix 5min under 11000 revs/min, then add molybdenumdisulphide continuation mixing 10min, the powder mixed is placed in thermostatic drying chamber drying for standby under 80 ° of C;
(4) by stearic acid and methylcellulose gum Hybrid Heating, then add step (3) and all the other remaining mixing of materials stir, make particle, then mixed powder prepared by this particle and step (2) is added in mixer mixes;
(5) mixed powder prepared by step (4) is put into mould, pressure with 200Mpa in hydropress makes type, obtain green compact, green compact after shaping are sent in vacuum sintering furnace and sinters, agglomerating chamber's vacuum is 1.0 × 10 × 10Pa, sintering temperature heats up with the speed of 10 ° of C/min, is incubated 4 hours, cools to room temperature with the furnace afterwards when reaching 550 ° of C;
(6) blank prepared by step (5) is carried out surfacing, deburring process, then immersion oil can obtain bearing materials.
Prepare volume aluminum-based bearing material according to embodiment, carry out performance test to it, result is as follows:
Vickers' hardness: 46, crushing strength: 190Mpa, tensile strength: 113Mpa, oleaginousness capacity: 18%.
Claims (2)
1. the bearing materials of the good long service life of performance, it is characterized in that, be made up of the raw material of following weight part: aluminium 85-90, zinc 5-8, sulphur 3-4, silver-colored 1-2, zirconium 0.5-1, polytetrafluoroethylene powder 3-4, molybdenumdisulphide 0.8-1.5, stearic acid 2-3, methylcellulose gum 0.6-1, graphite 1-1.5, magnesium hypophosphite 0.8-1.2, bismuth oxide 0.4-0.6, alum 0.6-0.8, oleic acid are appropriate.
2. the bearing materials of the good long service life of a kind of performance according to claim 1, is characterized in that, be made up of following concrete steps:
(1) aluminium, zinc, sulphur, silver and zirconium powder is poured in mortar ground and mixed even, again this mixed powder is added in ball mill, add appropriate alcohol and carry out wet ball grinding, ball milling speed is 20 revolutions per seconds, after ball milling 1-1.5h, mixed powder is added to placement after drying under 70 ° of C in vacuum drying oven for subsequent use;
(2) oleic acid and graphite mixing to be added in ultrasonic oscillation device ultrasonic disperse even, then to add mixed powder supersound process 30-45min prepared by step (1), for subsequent use after ultrasonic end solid-liquid separation;
(3) polytetrafluoroethylene powder is put into stirrer and mix 5-10min under 11000 revs/min, then add molybdenumdisulphide continuation mixing 10-15min, the powder mixed is placed in thermostatic drying chamber drying for standby under 80 ° of C;
(4) by stearic acid and methylcellulose gum Hybrid Heating, then add step (3) and all the other remaining mixing of materials stir, make particle, then mixed powder prepared by this particle and step (2) is added in mixer mixes;
(5) mixed powder prepared by step (4) is put into mould, pressure with 200-300Mpa in hydropress makes type, obtain green compact, green compact after shaping are sent in vacuum sintering furnace and sinters, agglomerating chamber's vacuum is 1.0 × 10-2-1.0 × 10-3Pa, sintering temperature heats up with the speed of 10 ° of C/min, is incubated 4-5 hour, cools to room temperature with the furnace afterwards when reaching 550-650 ° of C;
(6) blank prepared by step (5) is carried out surfacing, deburring process, then immersion oil can obtain bearing materials.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510782841.7A CN105296827A (en) | 2015-11-16 | 2015-11-16 | Bearing material good in performance and long in service life |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201510782841.7A CN105296827A (en) | 2015-11-16 | 2015-11-16 | Bearing material good in performance and long in service life |
Publications (1)
Publication Number | Publication Date |
---|---|
CN105296827A true CN105296827A (en) | 2016-02-03 |
Family
ID=55194640
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201510782841.7A Pending CN105296827A (en) | 2015-11-16 | 2015-11-16 | Bearing material good in performance and long in service life |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN105296827A (en) |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20060013719A1 (en) * | 2004-07-14 | 2006-01-19 | Junichi Ichikawa | Wear-resistant sintered aluminum alloy with high strength and manufacturing method thereof |
CN103071800A (en) * | 2012-11-23 | 2013-05-01 | 东睦(江门)粉末冶金有限公司 | Iron-based oil-containing bearing and manufacturing method thereof |
CN104759631A (en) * | 2014-01-03 | 2015-07-08 | 西华大学 | Sintered high-zinc aluminum-based oil bearing and preparation method thereof |
-
2015
- 2015-11-16 CN CN201510782841.7A patent/CN105296827A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20060013719A1 (en) * | 2004-07-14 | 2006-01-19 | Junichi Ichikawa | Wear-resistant sintered aluminum alloy with high strength and manufacturing method thereof |
CN103071800A (en) * | 2012-11-23 | 2013-05-01 | 东睦(江门)粉末冶金有限公司 | Iron-based oil-containing bearing and manufacturing method thereof |
CN104759631A (en) * | 2014-01-03 | 2015-07-08 | 西华大学 | Sintered high-zinc aluminum-based oil bearing and preparation method thereof |
Non-Patent Citations (1)
Title |
---|
李绍忠: "烧结含油轴承的特性与汽车设计制造的选择", 《汽车研究与开发》 * |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN105256186A (en) | Powder metallurgy bearing material and preparation method thereof | |
CN104759631A (en) | Sintered high-zinc aluminum-based oil bearing and preparation method thereof | |
CN102337423B (en) | Preparation method of ceramic-powder-enhanced zinc-aluminum alloy based composite material | |
CN106270494B (en) | Nonmagnetic steel product and its powder metallurgically manufacturing method | |
CN103602849B (en) | A kind of copper base alloy material for sliding bearing and preparation method thereof | |
CN106041047A (en) | Powder metallurgy high-strength bearing material and preparation method thereof | |
CN102921941A (en) | Piston rod of damper and preparation method of piston rod | |
CN103521757B (en) | Containing powder metallurgy iron copper base oil-containing antifriction material and the preparation method of rare earth oxide | |
CN106086556B (en) | A kind of low-noise wearable oiliness bearing | |
CN103537672A (en) | Powder metallurgy automobile engine connecting rod and manufacturing method thereof | |
CN105400978A (en) | Wide-adaptability double-mechanism self-lubricating bearing material | |
CN101758220A (en) | Powder metallurgy material for rotary compressor cylinder and processing technology thereof | |
CN105369087A (en) | Bearing material resistant to high temperature | |
CN105256200A (en) | Aluminum-based composite bearing material with high corrosion resistance | |
CN105400979A (en) | Porous high-aluminum zinc-based oil bearing material | |
CN104550906B (en) | A kind of premixing bronze powder, preparation method and applications | |
CN104493155A (en) | Manufacturing method of CuSn10 alloy bronze powder | |
CN105296828A (en) | Aluminum-based high-temperature self-lubrication bearing material with tungsten diselenide added | |
CN103934454A (en) | Manufacturing technology for small gasoline engine connecting rod workblank | |
CN103602927B (en) | A kind of Pb-free bearing steel and preparation method thereof | |
CN105401106A (en) | Composite metal bearing material and preparation method thereof | |
CN105256199A (en) | Bearing material with high running-in performance and low friction coefficient | |
CN105328180A (en) | High-strength wear-resisting aluminum-based powder metallurgy bearing material | |
CN105081309A (en) | Method for preparing iron-based powder metallurgy material containing molybdenum | |
CN102107278A (en) | Aluminum-bismuth-tin composite powder for oil bearing alloy and preparation method thereof |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
RJ01 | Rejection of invention patent application after publication | ||
RJ01 | Rejection of invention patent application after publication |
Application publication date: 20160203 |