CN1145349A - Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material - Google Patents

Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material Download PDF

Info

Publication number
CN1145349A
CN1145349A CN 95109247 CN95109247A CN1145349A CN 1145349 A CN1145349 A CN 1145349A CN 95109247 CN95109247 CN 95109247 CN 95109247 A CN95109247 A CN 95109247A CN 1145349 A CN1145349 A CN 1145349A
Authority
CN
China
Prior art keywords
intermetallic compound
whisker
clamp dog
powder
metal
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
CN 95109247
Other languages
Chinese (zh)
Other versions
CN1060533C (en
Inventor
武高辉
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.)
Harbin Institute of Technology
Original Assignee
Harbin Institute of Technology
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 Harbin Institute of Technology filed Critical Harbin Institute of Technology
Priority to CN95109247A priority Critical patent/CN1060533C/en
Publication of CN1145349A publication Critical patent/CN1145349A/en
Application granted granted Critical
Publication of CN1060533C publication Critical patent/CN1060533C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

A compound material based on ceramic whisker strengthened (toughened) intermetallic compound is made up through mixing the whisker with high-smelting-point metal powder in intermetallic compound, by the reaction of intermetallic compound to create thermodynamic condition, penetrating the low-smelting-point metal in intermetallic compound into the mixture in simple pressure casting apparatus by external pressure, and reaction to generate intermetallic compound containing a certain quantity of whiskers.

Description

A kind of ceramic whisker strengthens the preparation method of (tough) intermetallic compound based composite material
The present invention proposes a kind of manufacture method of intermetallic compound based composite material.Ceramic whisker is (as SiC, SiN, Al 2O 3Deng) have excellent specific tenacity, than characteristics such as stiffness, high heat resistances, mostly be used for light metal (as Al, Mg and alloy thereof) compoundly at present, make metal-base composites, use in that field of aerospace is existing abroad.Calculate the tensile strength of SiC whisker at 1200kgf/mm through theory 2About, but because matrix strength and thermotolerance are too wide in the gap by comparison, adopt so the every high-performance of whisker can't give full play of.
Intermetallic compound has excellent hot strength characteristic, adopting next aeroengine, turbine blade, aerospace vehicle etc. to heat-resisting, lightweight has on the parts of requirement tempting application prospect is arranged, and the world several advanced technology country is all in throwing the huge fund research and development at present.
Yet the maximum drawback of intermetallic compound is that fragility is big, difficult processing, and many for this reason investigators have used the method for alloying to improve its fragility, and this is an effective means but also very limited comparatively, and the part loss of strength is arranged.
Promptly can give full play to the intensity of whisker, macrostructure's structure that stiffness characteristics can change intermetallic compound again to increase toughness if in intermetallic compound, add whisker, cooperate the method for toughening of alloying will obtain high performance intermetallic compound based composite material more simultaneously.
The preparation technology of compound is very complicated between metal current, and cost is very high, if the preparation intermetallic compound based composite material must have breakthrough on preparation technology.
The present invention seeks at the intermetallic compound complicated process of preparation, apparatus expensive and intermetallic fragility are big, are difficult to practical problem and propose.
Specific tasks are: will make the clamp dog that gives of definite shape from the melting point metals powder mixes in whisker and the intermetallic compound, utilize the reaction of intermetallic compound to generate thermodynamic condition on open-and-shut pressure die casting equipment, by ambient pressure the low melting point metal in the intermetallic compound is penetrated into giving in the clamp dog of mixture, reaction simultaneously generates the intermetallic compound that is mingled with whisker, thereby obtain high strength, high tenacity and intermetallic compound based composite material cheaply.
Detailed content of the present invention is: preparation method of the present invention carries out under the device of Fig. 1.Wherein 1 is drift, and 2 is metallic solution, and 3 is prefabricated section, and 4 is mould, and 5 is the pressing machine table top, and 6 is electric furnace.Concrete preparation method carries out according to the following steps:
(1) at first with silicon carbide whisker SiC and the refractory metal powder titanium Ti powder of forming intermetallic compound, mixed by 1: 5~1: 20, looking material malleableize design needs to add 1~5% the malleableize metal element powder that is equivalent to titanium valve such as chromium Cr or niobium Nb or silicon Si, manganese Mn, vanadium V, molybdenum Mo etc., forms and gives clamp dog.The volume fraction of giving clamp dog is as the criterion with the atomic ratio that satisfies intermetallic compound and form, if wish to get the TiAl base, when whisker content is 5% matrix material, gives the clamp dog volume fraction and is about 51.6%.
The refractory metal powder can also adopt nickel, niobium Nb, manganese Mn, iron Fe, according to the above ratio with silicon nitride SiN or aluminium oxide Al 2O 3Whisker mixes, and also can add above-mentioned wherein a kind of malleableize element.
(2) will give clamp dog then is positioned over and is heated to proper temperature (as 680 ℃~700 ℃) in the metal mould.
(3) will form low melting point metal (as the Al) fusing of intermetallic compound again, be warmed up to proper temperature (as 780 ℃~840 ℃).
(4) adopt squeeze casting method, mould is placed on the pressing machine, cast low melting point metal solution pressurizes and solution is penetrated into give clamp dog inside, and when infiltrating, at high temperature solution and metal-powder react, the generation intermetallic compound.
(5) (after naturally cooling to certain temperature (as 400 ℃) as 40~50MPa), the intermetallic compound based composite material with definite shape is taken out in the demoulding when keep-uping pressure.
The invention provides high-level efficiency, the low cost of compound-base composite material between a novel whisker reinforcedmetal of preparation, the novel method of good reliability.Can obtain the high strength of this matrix material, high tenacity, high-quality close property with this method.
Advantage such as the present invention also has, and equipment is simple, but the easy once-forming of technology, cost inferior quality are good is for new way has been created in the exploitation of intermetallic compound based composite material.
Fig. 1 is a principle of device structure iron provided by the invention.
Embodiment 1:
The metal-powder that the embodiment of the invention adopted is Ti powder (purity is 99.9%), and molten metal is that commercial-purity aluminium Al (purity is 99.7%) whisker is SiN.
(1) at first whisker is mixed by 5: 51 volume ratios with the Ti powder, make the clamp dog that gives of Φ 32 * 20mm.Giving the clamp dog volume fraction is about 53.6%.
(2) will have the mold heated to 680 of giving clamp dog then and ℃ simultaneously Al liquid will be heated to 840 ℃.
(3) on pressing machine, pour into a mould, add pressure solution and ooze (plus-pressure is 40MPa).
(4) keep-up pressure be cooled to 400 ℃ after, the demoulding.
Obtain the whisker volume fraction and be about 5%, matrix is the matrix material (photo such as Fig. 2) of Ti-48Al intermetallic compound.
Embodiment 2:
(1) metal-powder that the embodiment of the invention adopted is Ti powder (purity is 99.9%) and SiC whisker, industry system aluminium Al (99.7%) and chromium Cr powder.
(2) earlier the Cr powder of sneaking into 1% weight ratio in the Ti powder is mixed with Ti, Cr powder mix the SiC whisker by 5: 49 volume ratios again, make the sub-clamp dog of Φ 32 * 20mm.Give the clamp dog volume fraction and be about 52%.
(3) will have the mold heated to 700 ℃ of giving clamp dog, simultaneously aluminium liquid will be heated to 840 ℃.
(4) add pressure solution after cast on the pressing machine and ooze, plus-pressure is 40MPa.
(5) keep-up pressure, be cooled to 450 ℃ after the demoulding.
Obtain SiC whisker volume fraction and be about 5%, matrix is the matrix material of TiAl intermetallic compound.
Embodiment 3:
(1) raw material adopts Ni powder (purity is 99.9%) SiC whisker, industry system aluminium Al (99.7%) and chromium Cr powder.
(2) SiC whisker and Ni powder were pressed 1.1: 8: 8, volume ratio is mixed, and makes the clamp dog that gives of φ 32 * 20mm.Give the clamp dog volume fraction and be about 37.8%.
(3) will fill the mold heated to 700 ℃ of giving clamp dog, simultaneously aluminium liquid will be heated to 860 ℃.
(4) after cast on the pressing machine, add pressure solution and ooze, plus-pressure is 30MPa.
(5) keep-up pressure, be cooled to 450 ℃ after the demoulding.
Obtaining the whisker volume fraction is that 5% matrix is the matrix material of NiAl intermetallic compound.

Claims (3)

1. a ceramic whisker strengthens the preparation method of (tough) intermetallic compound based composite material, it is characterized in that: realize according to the following steps:
(a) at first will form a kind of refractory metal powder titanium Ti of intermetallic compound and the mixed that whisker silicon carbide SiC presses 1: 5~1: 20, looking the design of material malleableize needs also can add the metal-powder of an amount of malleableize elements such as chromium Cr, make and give clamp dog, the volume fraction of giving clamp dog is looked the composition of the intermetallic compound of wishing to get and is regulated, usually can be about 46~55%.
(b) then, will give clamp dog is positioned over and is heated to 680 ℃~700 ℃ temperature Celsius in the metal mould.
(c) the low melting point metal Al that will form intermetallic compound dissolves, and is warming up to proper temperature such as 780 ℃~840 ℃ Celsius.
(d) adopt squeeze casting method, mould is placed on the pressing machine, cast low melting point metal solution.Pressurization penetrates into its solution and gives clamp dog inside again.
(e) keep-uping pressure in 40~50MPa, naturally cool to about 400 ℃ of temperature after, the intermetallic based composites with definite shape is taken out in the demoulding.
2. preparation method according to claim 1 is characterized in that: the refractory metal powder can also be nickel, niobium Nb, manganese Mn, iron Fe.
3. preparation method according to claim 1 is characterized in that: whisker can also be silicon nitride SiN or manganese oxide Al 2O 3Deng cermet material.
CN95109247A 1995-09-13 1995-09-13 Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material Expired - Fee Related CN1060533C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN95109247A CN1060533C (en) 1995-09-13 1995-09-13 Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN95109247A CN1060533C (en) 1995-09-13 1995-09-13 Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material

Publications (2)

Publication Number Publication Date
CN1145349A true CN1145349A (en) 1997-03-19
CN1060533C CN1060533C (en) 2001-01-10

Family

ID=5077092

Family Applications (1)

Application Number Title Priority Date Filing Date
CN95109247A Expired - Fee Related CN1060533C (en) 1995-09-13 1995-09-13 Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material

Country Status (1)

Country Link
CN (1) CN1060533C (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101386949B (en) * 2007-09-12 2010-04-14 中国科学院金属研究所 High-strength and high damping compound material and preparation method thereof
CN105346162A (en) * 2015-12-08 2016-02-24 太仓斯普宁精密机械有限公司 Low-density composite metal material
CN106853530A (en) * 2017-01-13 2017-06-16 哈尔滨工业大学 A kind of method that powdering hot pressed sintering prepares stratiform titanium matrix composite
CN109227973A (en) * 2018-08-20 2019-01-18 杨燕军 A kind of compound ultrahigh hardness saw blade of aluminium base diamond and its manufacturing method

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4685357B2 (en) * 2004-01-20 2011-05-18 本田技研工業株式会社 Molding method for metal matrix composite moldings

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1100154A (en) * 1993-09-08 1995-03-15 哈尔滨工业大学 Method for blackening crystal whisker reinforced aluminium-based composite
CN1100353A (en) * 1993-09-16 1995-03-22 哈尔滨工业大学 Producing method of prefabricated crystal whisker block for metal-base composite

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101386949B (en) * 2007-09-12 2010-04-14 中国科学院金属研究所 High-strength and high damping compound material and preparation method thereof
CN105346162A (en) * 2015-12-08 2016-02-24 太仓斯普宁精密机械有限公司 Low-density composite metal material
CN106853530A (en) * 2017-01-13 2017-06-16 哈尔滨工业大学 A kind of method that powdering hot pressed sintering prepares stratiform titanium matrix composite
CN106853530B (en) * 2017-01-13 2019-04-16 哈尔滨工业大学 A kind of method of powdering-hot pressed sintering preparation stratiform titanium composite material
CN109227973A (en) * 2018-08-20 2019-01-18 杨燕军 A kind of compound ultrahigh hardness saw blade of aluminium base diamond and its manufacturing method
CN109227973B (en) * 2018-08-20 2020-09-29 杨燕军 Aluminum-based diamond composite ultra-high hardness scribing cutter and manufacturing method thereof

Also Published As

Publication number Publication date
CN1060533C (en) 2001-01-10

Similar Documents

Publication Publication Date Title
Chen et al. Microstructure and properties of in situ Al/TiB 2 composite fabricated by in-melt reaction method
CN109207829B (en) High-entropy alloy and multicomponent carbide cocrystallizing type composite material and its in-situ preparation method
CN1325681C (en) Ceramic granule reinforced aluminium-base composite material and its preparing method
CN1281053A (en) Process for preparing ceramic-phase diffusion enhanced alloy and particle enhanced metal-base composition
CN113046595B (en) High-strength and high-toughness titanium alloy with good additive manufacturing forming performance and used at high temperature of 600 DEG C
CN1108389C (en) Process for in-situ alloying and reaction particles reiforced metal-base composition
CN109182802B (en) Preparation method of carbon material reinforced copper/aluminum-based composite material
CN100453666C (en) Pressure-free impregnation preparation method for Al2O3 particle reinforced aluminum base composite material
CN101921930A (en) Multicomponent microalloyed titanium alloy and preparation method thereof
Hynes et al. Production of aluminium metal matrix composites by liquid processing methods
CN110042329A (en) A kind of high intensity Cf/Al composite material and preparation method
CN111690840B (en) Amorphous phase silicate particle and SiC particle reinforced aluminum matrix composite material and preparation
CN113817933B (en) Ceramic reinforced titanium-based composite material, preparation method and application thereof
US20210062315A1 (en) Preparation method of a lithium-containing magnesium/aluminum matrix composite
CN1060533C (en) Method for prepn. ceramic crystal whisker strengthened metallic compound-base composite material
CN108179296A (en) A kind of high heat-resistant aluminium alloy material and preparation method thereof
CN101956118A (en) Preparation method of magnesium-based composite material containing various in-situ enhancing particles of rare earth
CN1060979C (en) Pressureless penetration casting method for aluminium-base composite material
CN1563455A (en) Method for fabricating aluminum based composite material through composite reinforcement by in situ titanium diboride and dialuminum dioxide
Yin et al. Impacts of interface modification by Ni coating on the property of Cu matrix composites reinforced by β-Si3N4 whiskers
CN1193846C (en) Grain-rein forced gradient composite material and preparation method thereof
CN1089118C (en) Telchnique for preparing in-situ authigenic metal-base composite material
CN1297682C (en) Preparation method for reinforced aluminum base composite material composed by in situ alpha-Al2O3 crystal whisker and TiC grain
CN1605648A (en) Low expansion superhigh silicon aluminum alloy and method for making same
JPH0581654B2 (en)

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