Microstructure of spark sintered titanium-aluminide compacts

被引:24
作者
Matsugi, K
Ishibashi, N
Hatayama, T
Yanagisawa, O
机构
[1] Faculty of Engineering, Hiroshima University, Higashi-hiroshima
关键词
titanium-aluminides based on TiAl; intermetallics; powder metallurgy; sintering; microstructure;
D O I
10.1016/0966-9795(96)00026-X
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The microstructural properties have been investigated for titanium-aluminide (Ti-53mol%Al) compacts spark sintered at four temperatures: 1573, 1623, 1648, and 1673 K after pulsed electrical discharge. The microstructure changes with sintering temperature and is classified into two groups. (1) Group 1: for specimens spark sintered at 1573-1648 K, the structure consists of three different grains which represent the core grain (core consisting of alpha-Ti and Tl3Al, surrounding grain consisting of Tl3Al), lamellar grain (Ti3Al/TiAl) and equiaxed grain (TiAl). The structure of the core grain is the same as that of the as-received pre-alloy powder produced by combustion synthesis. (2) Group 2: for specimens spark sintered at 1673 K, the structure consists of two different grains which represent the lamellar (Ti3Al/TiAl) and equiaxed (TiAl) grains. The grain growth is prevented during spark sintering. Vickers microhardness values of each phase in the spark sintered specimens are almost the same as those in specimens produced by other manufacturing methods. A simple rule of mixtures can be applied for the hardness of Ti3Al/TiAl lamellar grains in spark sintered specimens. Specimens with high densities and approaching the equilibrium state can be obtained in a shorter time by spark sintering than conventional sintering. Such shorter high temperature exposure is important to prevent grain growth. Copyright (C) 1996 Elsevier Science Ltd
引用
收藏
页码:457 / 467
页数:11
相关论文
共 32 条
[11]  
KIM YW, 1989, JOM-J MIN MET MAT S, V41, P24
[12]   PROGRESS IN THE UNDERSTANDING OF GAMMA TITANIUM ALUMINIDES [J].
KIM, YW ;
DIMIDUK, DM .
JOM-JOURNAL OF THE MINERALS METALS & MATERIALS SOCIETY, 1991, 43 (08) :40-47
[13]  
Mabuchi H., 1991, B JPN I MET, V30, P24
[14]  
MASSALSKI TB, 1990, BINARY ALLOY PHASE D, P225
[15]   EFFECT OF DIRECT-CURRENT PULSE DISCHARGE ON SPECIFIC RESISTIVITY OF COPPER AND IRON-POWDER COMPACTS [J].
MATSUGI, K ;
HATAYAMA, T ;
YANAGISAWA, O .
JOURNAL OF THE JAPAN INSTITUTE OF METALS, 1995, 59 (07) :740-745
[16]  
MATSUGI K, 1966, J JPN I MET, V60, P301
[17]   PRODUCTION OF HIGHLY DENSIFIED TIAL BY DIE COMPACTION-SINTERING METHOD [J].
MURAMATSU, Y ;
OHKOSHI, T ;
SUGA, H .
JOURNAL OF THE JAPAN INSTITUTE OF METALS, 1993, 57 (08) :944-951
[18]  
Saji S., 1994, Journal of Japan Institute of Light Metals, V44, P152, DOI 10.2464/jilm.44.152
[19]   MANUFACTURE OF TIAL BY EXTRUSION OF BLENDED ELEMENTAL POWDERS [J].
SCHAFRIK, RE .
METALLURGICAL TRANSACTIONS B-PROCESS METALLURGY, 1976, 7 (04) :713-716
[20]   PLASTIC-DEFORMATION OF TIAL [J].
SHECHTMAN, D ;
BLACKBURN, MJ ;
LIPSITT, HA .
METALLURGICAL TRANSACTIONS, 1974, 5 (06) :1373-1381