CN1250039A - In-situ hot pressing solid-liquid phase reaction process to prepare silicon titanium-carbide material - Google Patents

In-situ hot pressing solid-liquid phase reaction process to prepare silicon titanium-carbide material Download PDF

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Publication number
CN1250039A
CN1250039A CN 98114365 CN98114365A CN1250039A CN 1250039 A CN1250039 A CN 1250039A CN 98114365 CN98114365 CN 98114365 CN 98114365 A CN98114365 A CN 98114365A CN 1250039 A CN1250039 A CN 1250039A
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liquid phase
phase reaction
hot pressing
silicon titanium
reaction process
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CN 98114365
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CN1120817C (en
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周延春
孙志梅
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Institute of Metal Research of CAS
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Institute of Metal Research of CAS
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Abstract

The preparation process features that the materials Ti, Si and graphite powder in the non-stoichiometrical Ti-Si-C ratio of 1.5-2.5 to 1 to 1.7-2 are mixed and sintered at 1500-1650 deg.C temperature and 35-45 MPa pressure for 0.2-4 hr under the protective inert gas. The process can prepare Ti3SiC2 with high purity and stable mechanical performance and is suitable for production in industrial scale.

Description

Method for preparing titanium silicon carbide body material by in-situ hot pressing solid-liquid phase reaction
The invention relates to the preparation of ceramic materials, and particularly provides a method for preparing a silicon titanium carbide body material by in-situ hot pressing solid-liquid phase reaction.
Silicon titanium carbide (Ti)3SiC2) It is an outstanding high-temperature structure/function material, and organically integrates the characteristics of electric conduction, heat conduction, plasticity and easy processing of metal, high temperature resistance, oxidation resistance, high strength, low specific gravity and the like of ceramic materials. However, the synthesis of silicon titanocarbide is difficult, and document (1) describes the use of TiH2Si and graphite powder are reacted at 2000 ℃ to synthesize silicon titanocarbide, but this methodcan be limited to laboratory level. SiCl for document (2)4、TiCl4、CCL4And H2As a raw material, Ti is prepared by a vapor deposition method3SiC2A film. Document (3) production of Ti by self-mandril reaction plus hot isostatic pressing sintering3SiC2Bulk materials, the raw materials of choice are Ti, Si and carbon inks, but the reaction temperature and chemical composition of this method are difficult to control accurately and the process of hot isostatic pressing is not easy to achieve. Document (4) is a method of preparing Ti from raw powders of Ti, Si and carbon ink by arc melting and post-annealing3SiC2Bulk materials, but in bulk materialsHigh impurity content and difficult accurate control of reaction temperature.
The object of the present invention is to provide a Ti3SiC2Method for producing bulk material, Ti produced by the method3SiC2High purity and stable mechanical property, and is suitable for industrial large-scale production.
The invention provides a method for preparing a silicon titanium carbide body material by in-situ hot pressing solid-liquid phase reaction, which is characterized by comprising the following steps: mixing Ti, Si and graphite powder which are used as raw materials according to the components deviating from the stoichiometric ratio (the molar ratio is 1.5-2.5) to 1 (1.7-2), and carrying out hot-pressing sintering for 0.2-4 hours under the protection of inert gas at the temperature of 1500-1650 ℃ and the pressure of 35-45 MPa.
The essence of the invention is that the Ti is prepared by utilizing a solid-liquid phase reaction in-situ hot pressing3SiC2The bulk material and the liquid phase are generated by high-temperature melting of Si, and Ti and Care dissolved in liquid Si to generate Ti through chemical reaction3SiC2Then precipitating out. The reaction can be described as:
ti in the product of the invention3SiC2High content of Ti obtained3SiC2Bulk material density greater than 99%, bending strength sigmab≥500MPa,KIC≥10MPa·m1/2The superplastic deformation amount reaches 40 percent at 1150 ℃.
The innovation of the invention is that the melting point of Si is 1420 ℃, so that liquid phase Si is generated when the mixed powder of Ti, Si and C is added to the temperature of more than 1420 ℃, and the liquid phase Si can promote Ti3SiC2The synthesis reaction of (2) can also accelerate sintering, so that a compact block material can be obtained.
The present invention is described in detail below by way of examples.
Example 1
Ti, Si and C are 1.8: 1: 1.6 (mol)Ratio), ball milling for 10 hours, dry pressing for molding, putting into a graphite mold, introducing Ar for protection, putting into a graphite resistance furnace, reacting at 1570 ℃, keeping the temperature for 1 hour, keeping the pressure at 40MPa, and obtaining a block material with the density of 99.5 percent and Ti content3SiC2The content is 96%. Three point bending strength of sigmabMore than or equal to 520 MPa and fracture toughness KIC=10 MPa·m1/2
Example 2
Ti, Si and C are 1.9: 1: 1.65 (mol ratio), ball milling is carried out for10 hours, then dry pressing forming is carried out, the obtained product is put into a graphite die, Ar is introduced for protection, the obtained product is heated to 1600 ℃ in a graphite resistance furnace, heat preservation is carried out for 1 hour, the pressure is 40MPa, the density of the obtained block material is 99.8 percent, and Ti, Si and C are mixed according to the mol ratio3SiC2The content was 95%. Three point bending strength of sigmabMore than or equal to 540MPa and fracture toughness KIC=10MPa·m1/2

Claims (1)

1. A method for preparing a silicon titanium carbide body material by in-situ hot pressing solid-liquid phase reaction is characterized by comprising the following steps: mixing Ti, Si and graphite powder which are used as raw materials according to the components deviating from the stoichiometric ratio (the molar ratio is 1.5-2.5) to 1 (1.7-2), and carrying out hot-pressing sintering for 0.2-4 hours under the protection of inert gas at the temperature of 1500-1650 ℃ and the pressure of 35-45 MPa.
CN98114365A 1998-10-07 1998-10-07 In-situ hot pressing solid-liquid phase reaction process to prepare silicon titanium-carbide material Expired - Fee Related CN1120817C (en)

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CN98114365A CN1120817C (en) 1998-10-07 1998-10-07 In-situ hot pressing solid-liquid phase reaction process to prepare silicon titanium-carbide material

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Application Number Priority Date Filing Date Title
CN98114365A CN1120817C (en) 1998-10-07 1998-10-07 In-situ hot pressing solid-liquid phase reaction process to prepare silicon titanium-carbide material

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CN1250039A true CN1250039A (en) 2000-04-12
CN1120817C CN1120817C (en) 2003-09-10

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003000618A1 (en) * 2001-06-21 2003-01-03 Sandvik Ab A method of producing a metal-containing single-phase composition.
CN100455688C (en) * 2006-08-16 2009-01-28 中国科学院上海硅酸盐研究所 Preparation method of titanium carbosilicide based gradient material and in situ reaction
CN102992765A (en) * 2012-11-09 2013-03-27 航天材料及工艺研究所 Preparation method of tungsten-doped titanium-silicon-aluminum-carbon ceramic block body material
WO2016128653A1 (en) 2015-02-09 2016-08-18 Office National D'etudes Et De Recherches Aérospatiales (Onera) Cermet materials and method for making such materials
CN107319948A (en) * 2017-08-09 2017-11-07 泾县信达工贸有限公司 It is a kind of not glue nontoxic inner container of electric cooker coating
CN110128145A (en) * 2019-06-26 2019-08-16 辽宁工业大学 A kind of synthesis high-purity Ti3SiC2Method
CN111192707A (en) * 2020-01-06 2020-05-22 湖南湘江电缆有限公司 High-temperature-resistant and aging-resistant power cable
CN112331392A (en) * 2020-11-18 2021-02-05 湖南华菱线缆股份有限公司 Impact-resistant oxidation-resistant waterproof cable

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0772104B2 (en) * 1987-04-30 1995-08-02 敏雄 平井 Polycrystalline ceramics
US4961529A (en) * 1987-12-24 1990-10-09 Kernforschungsanlage Julich Gmbh Method and components for bonding a silicon carbide molded part to another such part or to a metallic part
FR2675141B1 (en) * 1991-04-09 1993-08-06 Europ Propulsion COMPOSITE MATERIAL WITH A CERAMIC MATRIX WITH LAMELLAR INTERPHASE BETWEEN REFRACTORY REINFORCEMENT FIBERS AND MATRIX, AND METHOD FOR THE PRODUCTION THEREOF.

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003000618A1 (en) * 2001-06-21 2003-01-03 Sandvik Ab A method of producing a metal-containing single-phase composition.
US6986873B2 (en) 2001-06-21 2006-01-17 Sandvik Ab Method of producing a metal-containing single-phase composition
CN1295190C (en) * 2001-06-21 2007-01-17 桑德维克知识产权股份公司 Metod of producing metal-containing single-phase composition
CN100455688C (en) * 2006-08-16 2009-01-28 中国科学院上海硅酸盐研究所 Preparation method of titanium carbosilicide based gradient material and in situ reaction
CN102992765A (en) * 2012-11-09 2013-03-27 航天材料及工艺研究所 Preparation method of tungsten-doped titanium-silicon-aluminum-carbon ceramic block body material
CN102992765B (en) * 2012-11-09 2014-03-05 航天材料及工艺研究所 Preparation method of tungsten-doped titanium-silicon-aluminum-carbon ceramic block body material
WO2016128653A1 (en) 2015-02-09 2016-08-18 Office National D'etudes Et De Recherches Aérospatiales (Onera) Cermet materials and method for making such materials
CN107319948A (en) * 2017-08-09 2017-11-07 泾县信达工贸有限公司 It is a kind of not glue nontoxic inner container of electric cooker coating
CN110128145A (en) * 2019-06-26 2019-08-16 辽宁工业大学 A kind of synthesis high-purity Ti3SiC2Method
CN111192707A (en) * 2020-01-06 2020-05-22 湖南湘江电缆有限公司 High-temperature-resistant and aging-resistant power cable
CN111192707B (en) * 2020-01-06 2020-09-29 湖南湘江电缆有限公司 High-temperature-resistant and aging-resistant power cable
CN112331392A (en) * 2020-11-18 2021-02-05 湖南华菱线缆股份有限公司 Impact-resistant oxidation-resistant waterproof cable

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