Identification of microstructural mechanisms during densification of a TiAl alloy by spark plasma sintering

被引:64
作者
Jabbar, Houria [1 ,2 ]
Couret, Alain [1 ,2 ]
Durand, Lise [1 ,2 ]
Monchoux, Jean-Philippe [1 ,2 ]
机构
[1] CNRS, CEMES UPR 8011, Ctr Elaborat Mat & Etud Struct, F-31055 Toulouse, France
[2] Univ Toulouse, UPS, F-31055 Toulouse, France
关键词
Intermetallics; Titanium aluminides; Powder metallurgy; Precipitation; Plastic deformation; Electron microscopy; HIGH-TEMPERATURE DEFORMATION; STABILITY; PHASE;
D O I
10.1016/j.jallcom.2011.08.008
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
This work aims at identifying, by coupled scanning and transmission electron microscopy (SEM and TEM) observations, the densification mechanisms occurring when an atomized Ti-47Al-1W-1Re-0.2Si powder is densified by spark plasma sintering (SPS). For this purpose, interruptions of the SPS cycle have been performed to follow the evolution of the microstructure step by step. The powder particles exhibit a classical dendritic microstructure containing a large amount of out-of-equilibrium. phase. During heating-up, the microstructure undergoes successive transformations. At T = 525-875 degrees C the alpha phase transforms into gamma. The gamma phase formed is supersaturated in W and Re. It de-saturates for T above 875 degrees C by discontinuous precipitation of W and Re-rich B2 phase. Densification takes place for T between 900 degrees C and 1150 degrees C by plastic deformation of the powder particles. TEM observations show that the repartition of the plastic deformation is correlated to the dendritic microstructure, and that dynamic recrystallization mechanisms occur. Microstructural phenomena directly resulting from the high currents involved in the SPS process have not been observed. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:9826 / 9835
页数:10
相关论文
共 28 条
[1]  
Adda Y., 1966, DIFFUSION SOLIDES, VI
[2]  
CHARPENTIER M, 2003, THESIS I NATL POLYTE
[3]   Microstructures and mechanical properties of TiAl alloys consolidated by spark plasma sintering [J].
Couret, Alain ;
Molenat, Guy ;
Galy, Jean ;
Thomas, Marc .
INTERMETALLICS, 2008, 16 (09) :1134-1141
[4]   Power metallurgical processing of intermetallic gamma titanium aluminides [J].
Gerling, R ;
Clemens, H ;
Schimansky, FP .
ADVANCED ENGINEERING MATERIALS, 2004, 6 (1-2) :23-38
[5]   The effect of heat treatments on the microstructural stability of the intermetallic Ti-46.5Al-2W-0.5Si [J].
Gil, I ;
Muñoz-Morris, MA ;
Morris, DG .
INTERMETALLICS, 2001, 9 (05) :373-385
[6]   Influence of microstructure on tensile and creep properties of a new castable TiAl-based alloy [J].
Grange, M ;
Raviart, JL ;
Thomas, M .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2004, 35A (07) :2087-2102
[7]   Synthesis of bulk FeAl nanostructured materials by HVOF spray forming and Spark Plasma Sintering [J].
Grosdidier, Thierry ;
Ji, Gang ;
Bernard, Frederic ;
Gaffet, Eric ;
Munir, Zuhair A. ;
Launois, Sebastien .
INTERMETALLICS, 2006, 14 (10-11) :1208-1213
[8]  
Habel U, 1999, GAMMA TITANIUM ALUMINIDES 1999, P301
[9]   MICROSTRUCTURE DEVELOPMENT DURING FINAL INTERMEDIATE STAGE SINTERING .1. PORE GRAIN-BOUNDARY SEPARATION [J].
HSUEH, CH ;
EVANS, AG ;
COBLE, RL .
ACTA METALLURGICA, 1982, 30 (07) :1269-1279
[10]  
JABBAR H, 2010, THESIS U TOULOUSE 3