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TiB2-TiC复相陶瓷的结构与性能研究
引用本文:王业亮,傅正义,王皓,张金咏. TiB2-TiC复相陶瓷的结构与性能研究[J]. 复合材料学报, 2003, 20(1): 22-26
作者姓名:王业亮  傅正义  王皓  张金咏
作者单位:武汉理工大学,材料复合新技术国家重点实验室,武汉,430070
基金项目:国家自然科学基金,国家自然科学基金,59925207,59872024,,
摘    要:TiB2-TiC复合粉制备的TiB2-TiC复相陶瓷的相对密度达99.8%,硬度为 93.2HRA,断裂韧性为5.53MPa·m1/2。显微结构研究表明:TiB2-TiC烧结体体内的位错和残余气孔影响材料性能。复合粉烧结体晶粒尺寸细小,大小分布均匀,晶粒之间界面干净,无杂质沉积,烧结体中TiB2和TiC两相界面接合处元素B,C,Ti的含量存在梯度变化,都有利于烧结体性能提高。TiB2晶粒生长存在取向性。

关 键 词:TiB2-TiC复相陶瓷  力学性能  显微结构
文章编号:1000-3851(2003)01-0022-05
收稿时间:2001-08-08
修稿时间:2001-08-08

STUDY ON THE STRUCTURE AND PROPERTIES OF TiB2-TiC MULTIPHASE CERAMICS
WANG Yeliang,FU Zhengyi,WANG Hao,ZHANG Jinyong. STUDY ON THE STRUCTURE AND PROPERTIES OF TiB2-TiC MULTIPHASE CERAMICS[J]. Acta Materiae Compositae Sinica, 2003, 20(1): 22-26
Authors:WANG Yeliang  FU Zhengyi  WANG Hao  ZHANG Jinyong
Affiliation:State Key Lab of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070,China
Abstract:By hot-pressing method, TiB2-TiC multiphase ceramics were fabricated from TiB2-TiC composites powders under the following sintering conditions: sintering temperature: 1700℃ and 1800℃, pressure: 30MPa, sintering time: 60min. The relative density, the hardness and fracture toughness of TiB2-TiC multiphase ceramic at room temperature were 99.8%, 93.2HRA and 5.53MPa·m1/2 respectively. The residual porosities and dislocation in sintered ceramics went against the performance. The microstructure of TiB2-TiC multiphase ceramics from composite powders had smaller and more symmetrical grains than the TiB2-TiC ceramics sintered from the mixtures of TiB2 and TiC powders. The elements of B, C and Ti at the interface of TiB2 and TiC were distributed gradually. There were no impurities at the interface and the bonds between phases were strong, which probably has relation to the higher properties of TiB 2-TiC multiphase ceramics. The growth of TiB2 in different crystal directions was different in TiB2-TiC multiphase ceramics.
Keywords:titanium diboride-titanium carbide multiphase ceramics  mechanical properties  microstructure
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