Metal-ceramics based on nanostructured boron carbide

被引:9
作者
Antadze, M. [1 ]
Chedia, R. [2 ]
Tsagareishvili, O.
Mikeladze, A.
Gacheciladze, A.
Margiev, B.
Gabunia, D.
Tsuladze, T.
Khantadze, D.
机构
[1] F Tavadze Inst Met & Mat Sci, Lab Boron Borides & Related Cpds, GE-0160 Tbilisi, Georgia
[2] P Melikishvili Inst Phys & Organ Chem, Tbilisi, Georgia
关键词
Nanostructured boron carbide; Heteromodulus metal-ceramics; Binding material; SPS method; Adhesion;
D O I
10.1016/j.solidstatesciences.2012.08.004
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Boron carbide has unique physicochemical and mechanical properties such as: high modulus of elasticity, high value of a strength-to-density ratio, heightened wear-resistance in unfriendly environment, etc., however dense product of boron carbide is not widely used in the area of engineering due to low impact strength, brittleness and low thermal conductivity of this material. Recent efforts of the scientists working in this area are focused on creating the so-called hetero-modulus metal-ceramic composite materials comprised of high-modulus ceramic and a metallic phase as an elastic binder. Creation of effective boron carbide based hetero-modulus materials is possible when a) boron carbide has a high degree of dispersion: b) metallic binder has a high adhesion ability and low reactivity toward boron carbide. The technology developed for producing boron carbide based metal-ceramic materials provides pyrolysis (900-1100 degrees C) of the precursors comprised of amorphous boron, carbon-chain polymers and appropriate metal salts. Each particle of the obtained powder contains both - nanostructured components of boron carbide and of a binding metallic phase. The fabricated metal-ceramic product has heightened parameters of impact strength and thermal conductivity in parallel with the retained unique properties of boron carbide. (C) 2012 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:1725 / 1728
页数:4
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