Comparison of densification kinetics of a TiAl powder by spark plasma sintering and hot pressing

被引:49
作者
Trzaska, Zofia [1 ,2 ]
Bonnefont, Guillaume [3 ]
Fantozzi, Gilbert [3 ]
Monchoux, Jean-Philippe [1 ,2 ]
机构
[1] CNRS, CEMES, BP 94347,29 Rue J Marvig, F-31055 Toulouse, France
[2] Univ Toulouse, UPS, F-31055 Toulouse, France
[3] INSA Lyon, MATEIS, 7 Ave J Capelle, F-69621 Villeurbanne, France
关键词
Spark plasma sintering; Hot pressing; Plasticity; Titanium aluminides; LOW-TEMPERATURE SUPERPLASTICITY; MECHANICAL-PROPERTIES; ELECTRIC-FIELD; ALLOY; MICROSTRUCTURES; BEHAVIOR; CONSOLIDATION; PRESSURE; DIAGRAMS; SYSTEM;
D O I
10.1016/j.actamat.2017.06.004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Densification kinetics by spark plasma sintering (SPS) and hot pressing (HP) have been compared, under isothermal conditions and with heating rates of 20 degrees C/min. Careful calibration of sample temperature has been carried out to obtain comparable results. In all cases, densification kinetics did not exhibit significant differences, ruling out any influence of the SPS current. The stress exponent n and the activation energy Q of the Norton law describing deformation at high temperature of the powder particles have been determined by isothermal experiments at different stresses and temperatures, respectively. The values obtained, n = 1.9 +/- 0.3 and Q = 308 +/- 20 kJ/mol for SPS, n = 1.5 +/- 0.3 and Q = 276 +/- 40 kJ/mol for HP, come close in both techniques. Using these values, anisothermal densification kinetics at heating rates of 20 degrees C/min and 100 degrees C/min, typical of the SPS, could be analytically reproduced, using literature models. The activation parameters suggest that SPS densification kinetics occurs by dislocation climb controlled by AI bulk diffusion, that is, by classical metallurgical mechanisms. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
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页码:1 / 13
页数:13
相关论文
共 46 条
[21]   Improvement of the creep properties of TiAl alloys densified by Spark Plasma Sintering [J].
Jabbar, Houria ;
Monchoux, Jean-Philippe ;
Thomas, Marc ;
Pyczak, Florian ;
Couret, Alain .
INTERMETALLICS, 2014, 46 :1-3
[22]   Identification of microstructural mechanisms during densification of a TiAl alloy by spark plasma sintering [J].
Jabbar, Houria ;
Couret, Alain ;
Durand, Lise ;
Monchoux, Jean-Philippe .
JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (41) :9826-9835
[23]   The mechanisms of microstructure formation in a nanostructured oxide dispersion strengthened FeAl alloy obtained by spark plasma sintering [J].
Ji, Gang ;
Grosdidier, Thierry ;
Bozzolo, Nathalie ;
Launois, Sebastien .
INTERMETALLICS, 2007, 15 (02) :108-118
[24]   Decoupling the effects of pressure and current in spark plasma sintering: Synthesis of CU0.9V2O5 [J].
Jouan, Gauthier ;
Dolle, Mickael ;
Monchoux, Jean-Philippe .
SOLID STATE IONICS, 2013, 236 :5-10
[25]   Superplasticity in a large-grained TiAl alloy [J].
Lin, DL ;
Sun, F .
INTERMETALLICS, 2004, 12 (7-9) :875-883
[26]   Numerical model for sparking and plasma formation during spark plasma sintering of ceramic compacts [J].
Marder, R. ;
Estournes, C. ;
Chevallier, G. ;
Chaim, R. .
JOURNAL OF MATERIALS SCIENCE, 2015, 50 (13) :4636-4645
[27]   Spark and plasma in spark plasma sintering of rigid ceramic nanoparticles: A model system of YAG [J].
Marder, R. ;
Estournes, C. ;
Chevallier, G. ;
Chaim, R. .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2015, 35 (01) :211-218
[28]   Plasma in spark plasma sintering of ceramic particle compacts [J].
Marder, R. ;
Estournes, C. ;
Chevallier, G. ;
Chaim, R. .
SCRIPTA MATERIALIA, 2014, 82 :57-60
[29]   Observation of internal pulsed current flow through the ZnO specimen in the spark plasma sintering method [J].
Misawa, Tatsuya ;
Shikatani, Noboru ;
Kawakami, Yuji ;
Enjoji, Takashi ;
Ohtsu, Yasunori ;
Fujita, Hiroharu .
JOURNAL OF MATERIALS SCIENCE, 2009, 44 (06) :1641-1651
[30]   The effect of electric field and pressure on the synthesis and consolidation of materials: A review of the spark plasma sintering method [J].
Munir, ZA ;
Anselmi-Tamburini, U ;
Ohyanagi, M .
JOURNAL OF MATERIALS SCIENCE, 2006, 41 (03) :763-777