R. K. Bordia, S. Kang, and E. A. Olevsky, Current understanding and future research directions at the onset of the next century of sintering science and technology, Journal of the American Ceramic Society, vol.100, issue.6, pp.2314-2352, 2017.

R. Orrù, R. Licheri, A. M. Locci, A. Cincotti, and G. Cao, Consolidation/synthesis of materials by electric current activated/assisted sintering, Materials Science and Engineering: R: Reports, vol.63, issue.4-6, pp.127-287, 2009.

U. Anselmi-tamburini, J. E. Garay, and Z. A. Munir, Fundamental investigations on the spark plasma sintering/synthesis process, Materials Science and Engineering: A, vol.407, issue.1-2, pp.24-30, 2005.

S. H. Risbud and Y. Han, Preface and historical perspective on spark plasma sintering, Scripta Materialia, vol.69, issue.2, pp.105-106, 2013.

O. Guillon, J. Gonzalez?julian, B. Dargatz, T. Kessel, G. Schierning et al., Field?Assisted Sintering Technology/Spark Plasma Sintering: Mechanisms, Materials, and Technology Developments, Advanced Engineering Materials, vol.16, issue.7, pp.830-849, 2014.

. Herrmann, Field-Assisted Sintering Technology/Spark Plasma Sintering: Mechanisms, Materials, and Technology Developments, pp.830-849, 2014.

B. Kim, K. Hiraga, K. Morita, and H. Yoshida, Spark plasma sintering of transparent alumina, Scripta Materialia, vol.57, issue.7, pp.607-610, 2007.

F. Naimi, L. Minier, S. Le-gallet, H. Couque, and F. Bernard, Dense Nanostructured Nickel Produced by SPS from Mechanically Activated Powders: Enhancement of Mechanical Properties, Journal of Nanomaterials, vol.2013, pp.1-11, 2013.

D. Kumar, Some Mechanical Properties of Carbon Nanotubes Heterojunctions, Journal of Nanomaterials & Molecular Nanotechnology, vol.03, issue.03, 2014.

S. H. Risbud, C. Shan, A. K. Mukherjee, M. J. Kim, J. S. Bow et al., Retention of nanostructure in aluminum oxide by very rapid sintering at 1150 °C, Journal of Materials Research, vol.10, issue.2, pp.237-239, 1995.

S. H. Risbud, C. Shan, A. K. Mukherjee, M. J. Kim, J. S. Bow et al., Retention of nanostructure in aluminum oxide by very rapid sintering at 1150 °C, Journal of Materials Research, vol.10, issue.2, pp.237-239, 1995.

C. Manière, L. Durand, A. Weibel, G. Chevallier, and C. Estournès, A sacrificial material approach for spark plasma sintering of complex shapes, Scripta Materialia, vol.124, pp.126-128, 2016.

C. Manière, L. Durand, A. Weibel, and C. Estournès, Spark-plasma-sintering and finite element method: From the identification of the sintering parameters of a submicronic ?-alumina powder to the development of complex shapes, Acta Materialia, vol.102, pp.169-175, 2016.

C. Manière, E. Nigito, L. Durand, A. Weibel, Y. Beynet et al., Spark plasma sintering and complex shapes: The deformed interfaces approach, Powder Technology, vol.320, pp.340-345, 2017.

T. Voisin, J. Monchoux, L. Durand, N. Karnatak, M. Thomas et al., An Innovative Way to Produce ?-TiAl Blades: Spark Plasma Sintering, Advanced Engineering Materials, vol.17, issue.10, pp.1408-1413, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01726307

T. Voisin, L. Durand, N. Karnatak, S. Le-gallet, M. Thomas et al., Temperature control during Spark Plasma Sintering and application to up-scaling and complex shaping, Journal of Materials Processing Technology, vol.213, issue.2, pp.269-278, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00789844

A. Castagné and . Couret, Temperature control during Spark Plasma Sintering and application to up-scaling and complex shaping, J. Mater. Process. Technol, pp.213-215, 2013.

C. Arnaud, C. Manière, G. Chevallier, C. Estournès, R. Mainguy et al., Dog-bone copper specimens prepared by one-step spark plasma sintering, Journal of Materials Science, vol.50, issue.22, pp.7364-7373, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01727547

S. Grasso, T. Saunders, H. Porwal, O. Cedillos-barraza, D. D. Jayaseelan et al., Flash Spark Plasma Sintering (FSPS) of Pure ZrB2, Journal of the American Ceramic Society, vol.97, issue.8, pp.2405-2408, 2014.

O. Vasylkiv, H. Borodianska, Y. Sakka, and D. Demirskyi, Flash spark plasma sintering of ultrafine yttria-stabilized zirconia ceramics, Scripta Materialia, vol.121, pp.32-36, 2016.

E. Zapata-solvas, D. Gómez-garcía, A. Domínguez-rodríguez, and R. I. Todd, Ultra-fast and energy-efficient sintering of ceramics by electric current concentration, Scientific Reports, vol.5, issue.1, 2015.

E. A. Olevsky, S. M. Rolfing, and A. L. Maximenko, Flash (Ultra-Rapid) Spark-Plasma Sintering of Silicon Carbide, Scientific Reports, vol.6, issue.1, p.33408, 2016.

S. Grasso, T. Saunders, H. Porwal, B. Milsom, A. Tudball et al., Flash Spark Plasma Sintering (FSPS) of ? and ? SiC, Journal of the American Ceramic Society, vol.99, issue.5, pp.1534-1543, 2016.

M. Yu, S. Grasso, R. Mckinnon, T. Saunders, and M. J. Reece, Review of flash sintering: materials, mechanisms and modelling, Advances in Applied Ceramics, vol.116, issue.1, pp.24-60, 2016.

D. Giuntini, E. Olevsky, C. Garcia-cardona, A. Maximenko, M. Yurlova et al., Localized Overheating Phenomena and Optimization of Spark-Plasma Sintering Tooling Design, Materials, vol.6, issue.7, pp.2612-2632, 2013.

G. Lee, M. S. Yurlova, D. Giuntini, E. G. Grigoryev, O. L. Khasanov et al., Densification of zirconium nitride by spark plasma sintering and high voltage electric discharge consolidation: A comparative analysis, Ceramics International, vol.41, issue.10, pp.14973-14987, 2015.

Y. Achenani, M. Saâdaoui, A. Cheddadi, G. Bonnefont, and G. Fantozzi, Finite element modeling of spark plasma sintering: Application to the reduction of temperature inhomogeneities, case of alumina, Materials & Design, vol.116, pp.504-514, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01804224

D. Giuntini, J. Raethel, M. Herrmann, A. Michaelis, and E. A. Olevsky, Advancement of Tooling for Spark Plasma Sintering, Journal of the American Ceramic Society, vol.98, issue.11, pp.3529-3537, 2015.

C. Manière, L. Durand, E. Brisson, H. Desplats, P. Carré et al., Contact resistances in spark plasma sintering: From in-situ and ex-situ determinations to an extended model for the scale up of the process, Journal of the European Ceramic Society, vol.37, issue.4, pp.1593-1605, 2017.

C. Manière, A. Pavia, L. Durand, G. Chevallier, K. Afanga et al., Finite-element modeling of the electro-thermal contacts in the spark plasma sintering process, Journal of the European Ceramic Society, vol.36, issue.3, pp.741-748, 2016.

A. Zavaliangos, J. Zhang, M. Krammer, and J. R. Groza, Temperature evolution during field activated sintering, Materials Science and Engineering: A, vol.379, issue.1-2, pp.218-228, 2004.

G. Maizza, S. Grasso, and Y. Sakka, Moving finite-element mesh model for aiding spark plasma sintering in current control mode of pure ultrafine WC powder, Journal of Materials Science, vol.44, issue.5, pp.1219-1236, 2009.

C. Maniere, A. Pavia, L. Durand, G. Chevallier, V. Bley et al., Pulse analysis and electric contact measurements in spark plasma sintering, Electric Power Systems Research, vol.127, pp.307-313, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01493438

X. Wei, D. Giuntini, A. L. Maximenko, C. D. Haines, and E. A. Olevsky, Experimental 14

X. Wei, D. Giuntini, A. L. Maximenko, C. D. Haines, and E. A. Olevsky, Experimental Investigation of Electric Contact Resistance in Spark Plasma Sintering Tooling Setup, Journal of the American Ceramic Society, vol.98, issue.11, pp.3553-3560, 2015.

K. Vanmeensel, A. Laptev, J. Hennicke, J. Vleugels, and O. Vanderbiest, Modelling of the temperature distribution during field assisted sintering, Acta Materialia, vol.53, issue.16, pp.4379-4388, 2005.

C. Manière, G. Lee, and E. A. Olevsky, Proportional integral derivative, modeling and ways of stabilization for the spark plasma sintering process, Results in Physics, vol.7, pp.1494-1497, 2017.

U. Anselmi-tamburini and J. R. Groza, Critical assessment 28: electrical field/current application ? a revolution in materials processing/sintering?, Materials Science and Technology, vol.33, issue.16, pp.1855-1862, 2017.

D. Demirskyi and O. Vasylkiv, Hot-spots generation, exaggerated grain growth and mechanical performance of silicon carbide bulks consolidated by flash spark plasma sintering, Journal of Alloys and Compounds, vol.691, pp.466-473, 2017.

E. Zapata-solvas, S. Bonilla, P. R. Wilshaw, and R. I. Todd, Preliminary investigation of flash sintering of SiC, Journal of the European Ceramic Society, vol.33, issue.13-14, pp.2811-2816, 2013.

E. Castle, R. Sheridan, S. Grasso, A. Walton, and M. Reece, Rapid sintering of anisotropic, nanograined Nd?Fe?B by flash-spark plasma sintering, Journal of Magnetism and Magnetic Materials, vol.417, pp.279-283, 2016.

B. Román-manso, M. Belmonte, M. I. Osendi, and P. Miranzo, Effects of Current Confinement on the Spark Plasma Sintering of Silicon Carbide Ceramics, Journal of the American Ceramic Society, vol.98, issue.9, pp.2745-2753, 2015.

C. Manière, G. Lee, and E. A. Olevsky, All-Materials-Inclusive Flash Spark Plasma Sintering, Scientific Reports, vol.7, issue.1, p.15071, 2017.

E. A. Olevsky, Theory of sintering: from discrete to continuum, Materials Science and Engineering: R: Reports, vol.23, issue.2, pp.41-100, 1998.

C. Manière, T. Zahrah, and E. A. Olevsky, Fully coupled electromagnetic-thermal-mechanical comparative simulation of direct vs hybrid microwave sintering of 3Y-ZrO2, Journal of the American Ceramic Society, vol.100, issue.6, pp.2439-2450, 2017.

E. A. Olevsky, C. Garcia-cardona, W. L. Bradbury, C. D. Haines, D. G. Martin et al.,

. Kapoor, Fundamental Aspects of Spark Plasma Sintering: II. Finite Element Analysis of Scalability, J. Am. Ceram. Soc, pp.95-103, 2012.

C. Manière, L. Durand, A. Weibel, and C. Estournès, A predictive model to reflect the final stage of spark plasma sintering of submicronic ?-alumina, Ceramics International, vol.42, issue.7, pp.9274-9277, 2016.

C. Manière, L. Durand, and C. Estournès, Powder/die friction in the spark plasma sintering process: Modelling and experimental identification, Scr. Mater, vol.116, pp.139-142, 2016.

A. Pavia, L. Durand, F. Ajustron, V. Bley, G. Chevallier et al., Electro-thermal measurements and finite element method simulations of a spark plasma sintering device, J. Mater. Process. Technol, pp.213-221, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00905512

R. M. German, Wiley Series in Probability and Statistics, pp.351-360, 2015.

J. Besson and M. Abouaf, Grain growth enhancement in alumina during hot isostatic pressing, Acta Metallurgica et Materialia, vol.39, issue.10, pp.2225-2234, 1991.

N. E. Hager and R. C. Steere, Radiant Heat Transfer in Fibrous Thermal Insulation, Journal of Applied Physics, vol.38, issue.12, pp.4663-4668, 1967.

N. E. Hager and R. C. Steere, Radiant Heat Transfer in Fibrous Thermal Insulation, Journal of Applied Physics, vol.38, issue.12, pp.4663-4668, 1967.