CN1487106A - High-toughness self-lubricating solid Ni-Cu material and its prepn process - Google Patents

High-toughness self-lubricating solid Ni-Cu material and its prepn process Download PDF

Info

Publication number
CN1487106A
CN1487106A CNA031252672A CN03125267A CN1487106A CN 1487106 A CN1487106 A CN 1487106A CN A031252672 A CNA031252672 A CN A031252672A CN 03125267 A CN03125267 A CN 03125267A CN 1487106 A CN1487106 A CN 1487106A
Authority
CN
China
Prior art keywords
graphite
alloy
self
piece
pure
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
CNA031252672A
Other languages
Chinese (zh)
Other versions
CN1218056C (en
Inventor
朱定一
关翔锋
兑卫真
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.)
Fuzhou University
Original Assignee
Fuzhou University
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 Fuzhou University filed Critical Fuzhou University
Priority to CN 03125267 priority Critical patent/CN1218056C/en
Publication of CN1487106A publication Critical patent/CN1487106A/en
Application granted granted Critical
Publication of CN1218056C publication Critical patent/CN1218056C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Manufacture Of Alloys Or Alloy Compounds (AREA)
  • Powder Metallurgy (AREA)
  • Sliding-Contact Bearings (AREA)

Abstract

The high-toughness self-lubricating solid material has graphite component, Ni 0-50 wt% and Cu 3.5 wt%, and is prepared through simple smelting process in great amount. It has high corrosion resistance, high high-temperature oxidation resistance, homogeneously distributed graphite and compact structure. It may be pressed into V-shaped without brittle fracture in three-point bending test and may be forged and rolled at 850-900 deg.c, and has compact toughness ak value over 102.6 j/sq cm. It has friction coifficient maintained stably in 0.17-0.35.

Description

A kind of Ni-Cu high tenacity solid self-lubricant material and preparation method
Technical field: the present invention relates to a kind of Ni-Cu-graphite high tenacity solid self-lubricant material and preparation method.Be applicable to chemical machinary material and high-temperature engine material in the self-lubricating bearing material of in high temperature oxidation and corrosive environment, working, conduction sliding material, pyrometallurgy mechanical material, the corrosive environment.
Technical background: high temperature self-lubricating composite and self-lubricating electro-conductive material are parts in addition important in industrial circle and the modern high-tech field, at the high temperature oil-less self-lubricating bearing, piston, piston ring, distributing valve seat, the charged slide plate of bullet train, high temperature steel-making machinery, high-temperature boiler, process furnace planker machinery, the chemical machinery in the high temperature strong corrosion environment, the textile manufacturing machine in the no oil pollution environment, the submarine sealing bearing all has significant application value in the high-tech areas such as computer, printer high speed vibrationproof slide block and military aerospace aviation.
At present in graphitiferous solid self-lubricant material, kinds such as pure graphite mould and metal/graphite type are arranged, do not having under the condition of oil lubrication, when pure graphite and the friction of most of metal parts, have low frictional coefficient, but that its shortcoming is a matter is crisp, intensity is low, shock resistance is poor, the wear loss of pure graphite bearing in the unit time is also big, after metallic substance and graphite are compound, can effectively overcome above-mentioned shortcoming.That has researched and developed at present has Cu-graphite, bronze-graphite, Ag-graphite, Al-graphite, Ni alloy-graphite, Fe-graphite, solid self-lubricant materials such as Zn-graphite, but above-mentioned materials mainly adopts the powder metallurgy process preparation, exists Graphite Distribution and is difficult for evenly, graphite with basic between engage not tight, porous in the material, stopping property is poor, impelling strength is lower, the preparation cost height of metal powder, operation is various, easily brings shortcomings such as oxide compound and impurity in the preparation into.For density and the intensity that improves sintered metal product, some product also will be through repeatedly pressing sintering again.
The Ni base-graphite self-lubricating material has resistance to high temperature oxidation, the advantage that erosion resistance is strong, the Ni base-graphite of having reported at present all adopts powder metallurgy sintered method preparation from moistening material, Niu Shuqin, the Pei of Zhu family, Ou Yangjinlin. the development of several high temperature self-lubricating composite materials and performance study. the tribology journal, 1995,15 (4): 324-332, Ni-Cr-graphite openly reported in one literary composition, Ni-Cr-Ag-graphite, Ni-Cr-PbO-Sb-graphite, preparation method and the composition and the performance of multiple solid self-lubricant materials such as Ni-Cr-SiC-graphite, the preparation method is with Ni, Cr, Ag, PbO, Sb, SiC, after powder such as graphite mix by a certain percentage, coldmoulding in mould, installing is then having the coil central authorities of vacuum Frequency Induction Heating, carries out Thermocompressed sintering and forming under the pressure condition of 1100 ℃-1250 ℃ and 10-25MPa.Wherein Ni-Cr-graphite series material at room temperature with the Mo-0.5Ti-0.08Zr alloy to the mill, coefficientoffriction is 0.37-0.46; Ni-Cr-Ag-graphite series material coefficientoffriction at room temperature is 0.32-0.43; Ni-Cr-PbO-Sb-graphite series material coefficientoffriction at room temperature is 0.35-0.43; Ni-Cr-SiC-graphite series material coefficientoffriction at room temperature is 0.30-0.32.The notched bar impact strength of above-mentioned all material is all at 1.02-3.76J/cm 2In the scope.Table 1 is the partial properties that Ni-Cr-Ag-graphite series alloy material has.Its result of study shows that along with the increase of content of graphite in this material, the density of material, hardness, impelling strength, ultimate compression strength all reduce, and frictional coefficient increases.The minimum value of frictional coefficient is 0.32, and maximum impact toughness is less, and 2.88J/cm is only arranged 2, this is the inevitable outcome that graphitiferous type mmaterial porous and tiny crack exist.The Ni base solid self-lubricating material of other powder metallurgic method preparation has Ni-LaF 3, Ni-MoS 2Deng.
The performance of table 1 document [1] Ni alloy-Ag-graphite solid self-lubricating material
Form wt% Density g/cm 3 Hardness HB/MPa Impelling strength J/cm 2 Crushing strength MPa Coefficientoffriction in the time of 20 ℃
Ni alloy: Ag: graphite=84: 10: 6 Ni alloy: Ag: graphite=80: 10: 10 Ni alloy: Ag: graphite=75: 10: 15 Ni alloy: Ag: graphite=73: 10: 17 Ni alloy: Ag: graphite=70: 10: 20 ????7.07 ????6.47 ????5.84 ????5.63 ????5.33 ????140 ????86 ????76 ????69 ????40 ????2.88 ????2.16 ????1.60 ????1.35 ????1.08 ????693 ????443 ????290 ????210 ????148 ????0.32 ????0.36 ????0.38 ????0.41 ????0.43
The graphitiferous type two-phase alloy material that the objective of the invention is to develop Ni-Cu-graphite series high tenacity solid self-lubricant material and go out to have high-density, high impact toughness, good plastotype, good self-lubricating property by smelting method for preparing.Do not see at present any relevant report that adopts smelting method for preparing Ni-Cu-graphite solid self-lubricating material.
Summary of the invention is in order to realize above purpose, the invention provides one group of Ni-Cu-graphite high tenacity solid self-lubricant material, it is characterized in that: added constituent element graphite in this series alloy, and adopted smelting process to be prepared, the material component proportioning is Ni-(0~a 50) wt%Cu-3.5wt% graphite.
In order to realize above purpose, the invention provides a kind of preparation method of Ni-Cu-graphite high tenacity solid self-lubricant material, its step is as follows:
(1) raw material: employing purity is 99.8% industrial electrolysis Ni piece, and purity is 98.5% technical pure Cu, and purity is 99% pure Graphite Powder 99.
(2) adopt the heating of industrial vacuum medium-frequency induction furnace, the melting heating crucible is pure plumbago crucible in the stove.
(3) the configuration alloy compositions claims above-mentioned Ni, copper, graphite to join by ratio requirement.
(4) at first Graphite Powder 99 is positioned over the bottom of plumbago crucible, places metal Ni piece then at an upper portion thereof, with claiming the Cu piece for preparing to be placed in the feed hopper of induction furnace, to be added.
(5) in the stove through take out rough vacuum handle after (1.25 * 10 -1Pa), charge into argon gas protection.
(6) the heating smelting temperature was higher than 1650 ℃, to temperature back insulation 8-10 minute.
(7) from feed hopper, metal Cu piece is added in the molten metal, treat that the gentle boil phenomenon appears in molten metal after, be incubated 3~5 minutes.
(8) powered-down, treat the molten metal calmness after, be cast in the casting mold.
The present invention adopts smelting method for preparing Ni-Cu-graphite two-phase solid self-lubricant material, because homogeneous microstructure, non-microcracked, add that the Ni-Cu alloy substrate itself has high toughness and infinitely dissolves each other and be single-phased alloy, the alloy of all series components of being developed does not all have hard crisp second phase, therefore the series alloys such as Ni-Cu-graphite of the present invention's development all have high impelling strength and good plastic deformation ability, and notched bar impact strength all reaches 102.6J/cm 2More than (seeing Table 2), notched bar impact strength is higher than the Ministry of Railways to Material for Pantograph Slide ministerial standard (TB1824-87) index (5J/cm 2) more than 20 times, exceed it more than 27 times than the maximum impact toughness value of the multiple solid self-lubricant material of above-mentioned document.And it is simple to have method, and a batch is big, can conveniently be cast into the different shapes advantage of part in addition.
Description of drawings
Fig. 1. with the Ni-3.5wt% Graphite Binary alloy structure pattern of smelting method for preparing, employing be the graphite mould cast, graphite is pattern in the form of sheets, dense structure.
Fig. 2. use the tissue topography of the Ni-20wt%Cu-3.5wt% graphite ternary alloy of smelting method for preparing, be short-movie shape graphite mould looks, Graphite Distribution is even, dense structure.
Fig. 3. with the tissue topography of the Ni-34wt%Cu-3.5wt% graphite ternary alloy of smelting method for preparing, except that flake graphite, part graphite because of the increase of copper amount by nodularization, Graphite Distribution is even, dense structure.
Fig. 4. use the tissue topography of the Ni-50wt%Cu-3.5wt% graphite ternary alloy of smelting method for preparing, the graphite mould cast is except that flake graphite, because the further increase of copper content, globular graphite quantity further increases, structure refinement, Graphite Distribution is even, dense structure.
Fig. 5 .Ni-20wt%Cu-3.5wt% graphite, Ni-34wt%Cu-3.5wt% graphite, Ni-50wt%Cu-3.5wt% graphite alloy are behind the three-point bending performance test, and the distortion pattern of sample all can bend into V-shape and brittle rupture does not take place.
Fig. 6 .Ni-graphite alloy bulk is at the macroscopic deformation pattern after beating repeatedly under 850 ℃-900 ℃.Compress variation reaches 70%.Show that this material has good plastic deformation ability.
After 70% compression set, the graphite of former any orientation is compressed into the fibrous tissue that is arranged in parallel to Fig. 7 .Ni-graphite alloy bulk under 850 ℃-900 ℃.
Fig. 8. the frictional coefficient curve during with 45# annealed steel dry friction and wear.Curve 1 is the frictional coefficient curve of Ni-20wt%Cu-3.5wt% graphite alloy; Curve 2 is frictional coefficient curves of Ni-34wt%Cu-3.5wt% graphite alloy; Curve 3 is frictional coefficient curves of Ni-3.5wt% graphite alloy; Curve 4 is frictional coefficient curves of Ni-50wt%Cu-3.5wt% graphite alloy.
Fig. 9. the friction curve during with GGr15 bearing steel (HRC=58) dry friction and wear.Curve 1 is the frictional coefficient curve of Ni-20wt%Cu-3.5wt% graphite alloy; Curve 2 is frictional coefficient curves of Ni-3.5wt% graphite alloy; Curve 3 is frictional coefficient curves of Ni-34wt%Cu-3.5wt% graphite alloy; Curve 4 is frictional coefficient curves of Ni-50wt%Cu-3.5wt% graphite alloy.
Embodiment: the invention will be further described by embodiment and comparative example below in conjunction with accompanying drawing.
Embodiment 1. gets following proportioning components and the above-mentioned processing step of root a tree name prepares high temperature self-lubricating composite: the Ni-20wt%Cu-3.5wt% graphite alloy.
Embodiment 2. gets following proportioning components and the above-mentioned processing step of root a tree name prepares high temperature self-lubricating composite: the Ni-34wt%Cu-3.5wt% graphite alloy.
Embodiment 3. gets following proportioning components and the above-mentioned processing step of root a tree name prepares high temperature self-lubricating composite: the Ni-50wt%Cu-3.5wt% graphite alloy.
Embodiment 4. gets following proportioning components and the above-mentioned processing step of root a tree name prepares high temperature self-lubricating composite: the Ni-3.5wt% graphite alloy.
Comparative example
1, the experiment of three-point bending that this experiment is done shows, all series alloys of being developed all can bend into V-shape and the brittle rupture (see figure 5) does not take place.Forge compressible distortion 40-70% through inhomogeneous under 850 ℃ of-900 ℃ of temperature, distortion back graphite is fibrous arrangement, and (see Fig. 6, Fig. 7), therefore this material has good plastic forming ability.In cast iron and similar graphitiferous type powder metallurgy self-lubricating sample, all show as brittle rupture, its reason is because the plasticity and toughness height of Ni-Cu matrix on the one hand, be because the melting preparation improves the whole bonding strength of material on the other hand, no interface micropore defective, the hard crisp phase of carbides-free, combine closely between graphite and the matrix, toughness remains on higher level.
2, the material of being developed has good self-lubricating property, by annealed state 45# steel (HRC=28) and hardness high GCr15 bearing steel (HRC=58) dry friction and wear low with hardness, frictional coefficient remain on respectively 0.17-0.35 and 0.12-0.25 than low value (seeing Table 2), and stablize constant.
3, according to the difference of service requirements, can select the alloy of heterogeneity.The matrix hardness of the material of developing and intensity increase gradually along with increasing of Cu add-on in the alloy; Resistivity increases along with increasing of Cu add-on in the alloy.Impelling strength reduces along with increasing of Cu add-on in the alloy.
(1) experiment show electroconductibility best be pure Ni-graphite alloy, electricalresistivity=0.24 Ω mm 2m -1(seeing Table 1) reached the Ministry of Railways to Material for Pantograph Slide ρ '<0.35 Ω mm 2m -1Ministerial standard (TB1824-87) requirement, thereby this material can be used as the electroconductibility self-lubricating material and uses.
(2) the Ni matrix is after constituent element Cu solution strengthening, and intensity, the hardness of material are improved, and the adhesive wear between the even part weakens, and frictional coefficient reduces, and self-lubricating property improves.Wherein Ni-20wt%Cu-3.5wt% graphite alloy and 45# steel to the mill, frictional coefficient remains on 0.20, with the GCr15 bearing steel to the mill, frictional coefficient remains on 0.12; Ni-34wt%Cu-3.5wt% graphite alloy and 45# steel to the mill, frictional coefficient remains on 0.18, with the GCr15 bearing steel to the mill, frictional coefficient remains on 0.12 low value (seeing Table 2).More than two kinds of bill of material reveal good self-lubricating property, far below minimized friction coefficient 0.30 value of multiple solid self-lubricant materials such as the serial Ni-Cr-graphite of above-mentioned bibliographical information, Ni-Cr-Ag-graphite, Ni-Cr-PbO-Sb-graphite, Ni-Cr-SiC-graphite.Therefore to the demanding alloy of selecting to add the Cu solution strengthening of self-lubricating property.
The physical parameter of table 2.Ni-Cu-graphite alloy
Ni-3.5wt% graphite Ni-20wt%Cu-Ni-34wt%Cu-Ni-50wt%Cu-
3.5wt% graphite 3.5wt% graphite 3.5wt% graphite
Electricalresistivity (Ω/mm -2M) 2.4 5.8 7.1 5.3
Density (g/cm 3) 8.25 8.47 8.61 8.77
The area percent % 22.35 23.62 19.37 15.84 of graphite
Hardness (HB) 90.0 97.3 98.6 11 3.6
Impelling strength a k(J/cm 2) 121.8 117.5 110.2 102.6
Three-point bending strength σ Bb(MPa) 492 50.8 52.5 65.1
The dry friction and wear performance of table 3.Ni-Cu-graphite series alloy
Material With the coefficientoffriction of 45# steel to mill Coefficientoffriction with the GCr15 bearing steel
Ni-3.5wt% graphite ????0.25 ????0.15
Ni-20wt%Cu-3.5wt% graphite ????0.20 ????0.12
Ni-34wt%Cu-3.5wt% graphite ????0.18 ????0.16
Ni-50wt%Cu-3.5wt% graphite ????0.35 ????0.25
Although the present invention has done detailed explanation and exemplified out some object lessons, the present invention is not limited to these scopes, and the Ni-Cu-graphite self-lubricating material of every employing smelting method for preparing all belongs to protection scope of the present invention.

Claims (3)

1, a kind of Ni-Cu high tenacity solid self-lubricant material is characterized in that: added constituent element graphite in this series alloy and adopted smelting process to be prepared.
2, according to claim 1 described a kind of Ni-Cu high tenacity solid self-lubricant material, it is characterized in that: series alloy material component proportioning is Ni-(0~a 50) wt%Cu-3.5wt% graphite.
3, the smelting preparation method by claim 1 described a kind of Ni-Cu high tenacity solid self-lubricant material is characterized in that: the step of its preparation method is as follows:
(1) raw material: employing purity is 99.8% industrial electrolysis Ni piece, and purity is 98.5% technical pure Cu, and purity is 99% pure Graphite Powder 99.
(2) adopt the heating of industrial vacuum medium-frequency induction furnace, the melting heating crucible is pure plumbago crucible in the stove.
(3) the configuration alloy compositions claims above-mentioned Ni, copper, graphite to join by ratio requirement.
(4) at first Graphite Powder 99 is positioned over the bottom of plumbago crucible, places metal Ni piece then at an upper portion thereof,
With claiming the Cu piece for preparing to be placed in the feed hopper of induction furnace, to be added.
(5) in the stove through take out rough vacuum handle after (1.25 * 10 -1Pa), charge into argon gas protection.
(6) the heating smelting temperature was higher than 1650 ℃, to temperature back insulation 8-10 minute.
(7) from feed hopper, metal Cu piece is added in the molten metal, treat that the gentle boil phenomenon appears in molten metal after, be incubated 3-5 minute.
(8) powered-down, treat the molten metal calmness after, be cast in the casting mold.
CN 03125267 2003-08-12 2003-08-12 High-toughness self-lubricating solid Ni-Cu material and its prepn process Expired - Fee Related CN1218056C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 03125267 CN1218056C (en) 2003-08-12 2003-08-12 High-toughness self-lubricating solid Ni-Cu material and its prepn process

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 03125267 CN1218056C (en) 2003-08-12 2003-08-12 High-toughness self-lubricating solid Ni-Cu material and its prepn process

Publications (2)

Publication Number Publication Date
CN1487106A true CN1487106A (en) 2004-04-07
CN1218056C CN1218056C (en) 2005-09-07

Family

ID=34153002

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 03125267 Expired - Fee Related CN1218056C (en) 2003-08-12 2003-08-12 High-toughness self-lubricating solid Ni-Cu material and its prepn process

Country Status (1)

Country Link
CN (1) CN1218056C (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103952586A (en) * 2004-08-27 2014-07-30 大冶美有限公司 Sintered Cu alloy bearing having high strength and exhibiting excellent abrasion resistance in high-temperature environment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103952586A (en) * 2004-08-27 2014-07-30 大冶美有限公司 Sintered Cu alloy bearing having high strength and exhibiting excellent abrasion resistance in high-temperature environment
CN103952586B (en) * 2004-08-27 2016-03-23 大冶美有限公司 High strength and the sintered Cu alloy bearing of excellent in wear resistance in high temperature environments

Also Published As

Publication number Publication date
CN1218056C (en) 2005-09-07

Similar Documents

Publication Publication Date Title
CN102409220B (en) High-strength vermicular cast iron
CN1888458A (en) Double-metal solid bearing cage and producing process thereof
CN101736211B (en) SiC crystal whisker reinforced and toughened Mo2FeB2 matrix metal ceramic and preparation method thereof
CN107099719A (en) A kind of Strengthening and Toughening base titanium carbonitride and preparation method
CN100342052C (en) Metamorphic hot-work die steel
CN103567433A (en) Powder metallurgy valve seat and preparation method thereof
CN104889405B (en) A kind of powder metallurgy Langaloy bearing material
CN1058650C (en) Manufacture method of powder metallurgy valve seat
CN107299300A (en) A kind of heavy load low abrasion copper base friction material and preparation method thereof
EP1198601A1 (en) Sintered steel material
CN1218056C (en) High-toughness self-lubricating solid Ni-Cu material and its prepn process
CN1218057C (en) High-temp Ni-Al self-lubricating material and preparation thereof
Sridhar et al. Effect of silicon carbide on microstructural, mechanical and corrosion behavior of electrolytic copper matrix composite produced by the powder metallurgy route
CN110318012A (en) A kind of self-lubricating nickel-based composite and preparation method thereof
CN1056929A (en) Combined metal-porcelain crucible and preparation method thereof
CN1974827A (en) Cold and hot shearing edge steel for shearing thick plate
CN111304491B (en) Copper-based self-lubricating composite material capable of being used at room temperature to 500 ℃ and preparation method and application thereof
CN1736946A (en) Iron carbon molybdenum boron zirconia ceramet material and its preparation process
CN101050510A (en) New type roller made from hard material suitable to tandem mill for bars and wire rods, and manufacturing method
CN113151706A (en) Low friction coefficient WB2Preparation method of/CuSn 10 composite material
CN112981168A (en) Powder hot-forged copper-based pantograph slide plate material and preparation method thereof
CN1054402C (en) Tungsten-copper-nickel-carbon high-temp. wear-resistant alloy
CN115341127B (en) Self-lubricating high-entropy alloy and preparation method and application thereof
CN1040627A (en) Self-lubricating iron-base wear-resistant alloy
CN106636996A (en) Dense black-spot-free iron-based powdery metallurgical self-lubricating CNG engine valve seat ring 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
C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee