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Pulsed electric current sintering

Nanko M, Dang KQ (2014) Two-step pulsed electric current sintering of transparent AI2O3 ceramics. Adv Appl Ceram 113 80-84... [Pg.79]

Anselmi-Tamburini U, Woolman JN, Munir ZA (2007) Transparent nanometric cubic and tetragonal zirconia obtained by high-pressure pulsed electric current sintering. Adv Funct Mater 17 3267-3273... [Pg.81]

Xie GQ, Ohashi O, Chiba K, Yamaguchi N, Song MH, Fumya K et al (2003) Frequency effect on pulse electric current sintering process of pure aluminum powder. Mater Sci Eng A-Stmct Mater Prop Microstmct Process 359 384—390... [Pg.462]

Vanmeensel K, Laptev A, Van der Biest O, Vleugels J (2007) The influence of percolation during pulsed electric current sintering of Zr02-TtN powder compacts with varying TiN content Acta Mater 55 1801-1811... [Pg.463]

Dang KQ, Takei S, Kawahara M, Nanko M (2011) Pulsed electric current sintering of transparent Cr-doped AI2O3. Ceram Int 37 957-963... [Pg.515]

Watanabe Y, Ikoma T, Monkawa A, Suetsugu Y, Yamada H, Tanaka J et al (2005) Fabrication of transparent hydroxyapatite sintered body with high crystal orientation by pulse electric current sintering. J Am Ceram Soc 88 243-245... [Pg.516]

Oh S T, Tajima K, Ando M, Ohji T (2000) Strengthening of porous alumina by pulse electric current sintering... [Pg.283]

Murayama, N. What can we do by pulsed electric current sintering Seramikkusu 32, 445-449 (1997). [Pg.80]

Yoshimura, M., Ohji, T., Sando, M. Nihara, K. Rapid rate sintering of nano-grained ZrOi-based composites using pulse electric current sintering method. Journal of Materials Science Letters 17,1389-1391 (1998). [Pg.82]

Zhou, Y., Hirao, K., Toriyama, M. Tanaka, H. Very rapid densification of nanometer silicon carbide powder by pulse electric current sintering. Journal of the American Ceramic Society 83, 654-656 (2000)... [Pg.82]

Thus, particle shape, size, and distribution affect the strengthening process of the MMCs (Dieter, 1961 Kumar, 2009 Cheng et al., 2001 Yu, 2010 Suresh et al., 2007 Rao et al., 2012 Goh et al., 2008). For example, in the case of pulsed electric current sintered CU-AI2O3 (5 vol%) composite, there is an increase in yield stress by 370 MPa due to grained boundary strengthening compared with the one without any particles, which is the case for pure Cu (ZeinEddine et al., 2013). [Pg.357]

ZeinEddine, W., Matteazzi, P., CeUs, J.P., 2013. Mechanical and tribological behaviour of nanostructured copper—alumina cermets obtained by pulsed electric current sintering. Wear 297, 762-773. [Pg.367]

Formation of MsSis type Si-Ti-Zr system intermetallic compounds by pulse electric current sintering with self-propagating high temperature... [Pg.81]

Keywords Pulse electric current sintering (PECS), reactive sintering, self-propagating high temperature synthesis (SHS)... [Pg.81]

Abstract. Pulse electric current sintering (PECS) is applied to synthesis MsSis type Si-Ti-Zr system intermetallic compounds, SisTixZr(5-x) x=0-5, directly from raw powders of silicon, titanium and zirconium. Almost full conversion to SisTixZr(5-x) are achieved by PECS method with self-propagating high temperature synthesis (SHS) reaction. The adiabatic temperatures are susceptible to sintering behaviors such as vacuum pressure in chamber and displacement of pressure axis on the PECS process. The large quantities of gases are released in Zr- rich samples. The bulk shapes with almost dense samples are obtained at Ti-rich samples. [Pg.81]

Y. Ikarashi and K. Ishizaki, Forming study on reactive sintering of SisZrs by pulse electric current sintering, ATM 1 (1998) 79-89. [Pg.84]

Munir, Z. A., Quach, D. V., Ohyanagi, M. (2011). Electric Current Activation of Sintering A Review of the Pulsed Electric Current Sintering Process. Journal of the American Ceramic Society, 94, 1-19. doi 10.1111/j.1551-2916.2010.04210.x. [Pg.299]

Ran, S., Van der Biest, O., Vleugels, J. (2010). ZrBj-SiC conposites prepared by reactive pulsed electric current sintering. Journal of the European Ceramic Society, 50(12), 2633-2642. doi 10.1016/j.jeurce-ramsoc.2010.05.012. [Pg.600]

TiAl3-matrix composite layers containing AI2O3 particles were also produced on Ti substrates by pulsed electric current sintering of mechanically alloyed powders [214]. The results showed that the oxidation and wear properties of TiAl3 coatings could be improved by the reinforcement of AI2O3 particles. [Pg.381]


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