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Mo-Ti系复合材料的特性波阻抗
引用本文:窦金锋,沈强,王传彬,张联盟. Mo-Ti系复合材料的特性波阻抗[J]. 武汉理工大学学报, 2002, 24(5): 1-4
作者姓名:窦金锋  沈强  王传彬  张联盟
作者单位:武汉理工大学
基金项目:国家自然科学基金资助 (5 0 1710 4 9),教育部重点基金资助
摘    要:采用放电等离子烧结技术,在相同的温度(1473K)及压力(30MPa)下,制备出不同配比的致密的Mo-Ti系复合材料。采用高精度超声波脉冲回波重合法,精确测量了样品的横、纵波声速,并由此计算得到其特性波阻抗的实验值。对样品的相组成分析及电子探针分析的结果表明,Mo-Ti系复合材料是通过Mo和Ti之间形成固溶体来实现烧结致密化的。选用混合物模型对其特性波阻抗值进行了理论预测,与实测值的比较表明该模型能对Mo-Ti系复合材料的特性波阻抗做出比较准确的预测。

关 键 词:Mo-Ti系复合材料 特性波阻抗 混合物模型 钼 钛 烧结致密化 功能梯度材料 梯度飞片
文章编号:1671-4431(2002)05-0001-04
修稿时间:2001-11-23

Characteristic Wave Impedance of Mo-Ti Composites
Dou Jinfeng Shen Qiang Wang Chuanbin Zhang Lianmeng M.S.,State Key Lab of Advanced Technology for Materials Synthesis and Processing,WUT,Wuhan ,China. Characteristic Wave Impedance of Mo-Ti Composites[J]. Journal of Wuhan University of Technology, 2002, 24(5): 1-4
Authors:Dou Jinfeng Shen Qiang Wang Chuanbin Zhang Lianmeng M.S.  State Key Lab of Advanced Technology for Materials Synthesis  Processing  WUT  Wuhan   China
Affiliation:Dou Jinfeng Shen Qiang Wang Chuanbin Zhang Lianmeng M.S.,State Key Lab of Advanced Technology for Materials Synthesis and Processing,WUT,Wuhan 430070,China
Abstract:Dense Mo Ti composites with different weight fractions of Mo and Ti were prepared at the same temperature (1 473 K) and pressure (30 MPa) by using spark plasma sintering technique. The transverse and longitudinal wave velocities of the samples were accurately measured using the ultrasonic pulse echo overlap method, by which the characteristic wave impedance values of the samples were then obtained. The analyzing results of phase composition and electron probe microscope analysis show that the formation of Mo Ti solid solution contributes to the sintering densification of Mo Ti composites. The mixture model was adopted to estimate the characteristic wave impedance of Mo Ti composites in this paper. Comparisons with the experimental results demonstrate that the suggested model is sufficiently accurate to predict the wave impedance value of Mo Ti composites.
Keywords:Mo Ti composites  characteristic wave impedance  mixture model
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