Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Yannick Guel"'
Autor:
null Badis Bendjemil, null Khaoula Safi, null Ilyas Kouahla, null Jacques Guillome Noudem, null Mohamed Mouyane, null Jérôme Bernard, null Yannick Guel, null David Houivet
Publikováno v:
Experimental and Theoretical NANOTECHNOLOGY. :1-32
The synthesis of β-type phase NbxTi (x= 50 at%) / SWCNTs (Single Walled Carbon Nanotubes) intermetallic matrix nanocomposite by mechanical alloying to ensure the effective distribution of (SWCNTs) within the matrix. It has been stated by several res
Autor:
Jacques G. Noudem, Yannick Guel, David Houivet, Mohamed Mouyane, Badis Bendjemil, Jérôme Bernard
Publikováno v:
Universal Journal of Materials Science. 8:17-31
The purpose of this work is to decrease or eliminate porosities of ETER-VC (Electrothermal Explosion Reaction-Volume Combustion) products with the sintering additives. The Ti–C system has been synthesized for its advantages for refractory, abrasive
Autor:
Badis Bendjemil, Mohamed Mouyane, Jacques G. Noudem, Jérôme Bernard, Jean Michel Reboul, Yannick Guel, David Houivet
Publikováno v:
Journal of Advances in Nanotechnology. 1:14-29
Cubic boron nitrid (cBN) bonded TiC and alloyed with single walled carbon nanotubes (SWCNTs or NC) ceramics matrix nanocomposites (CMNCs) tools were manufacturated by a field actived sparck plasma sintering processus (FASPS). The effects of cBN-TiC r
Autor:
Badis Bendjemil, Mohamed Mouyane, Jacques G. Noudem, Jérôme Bernard, Jean Michel Reboul, Yannick Guel, David Houivet
Publikováno v:
Experimental and Theoretical NANOTECHNOLOGY. :365-395
The purpose of this work is to decrease or eliminate porosities in electro-thermal explosion (ETE-VC) products with sintering additives. The Ti–C system has been synthesized for its advantages for refractory, abrasive and structural applications. W
Autor:
Jérôme Bernard, Jean Michel Reboul, Yannick Guel, Mohamed Mouyane, David Houivet, Jacques G. Noudem, Badis Bendjemil
Publikováno v:
Universal Journal of Materials Science. 6:119-132
Cubic boron nitrid (cBN) bonded TiC and alloyed with single walled carbon nanotubes (SWCNTs or NC) ceramics matrix nanocomposites (CMNC's) tools were fabricated by a field active sparck plasma sintering process (FASPS). The effects of cBN-TiC ratio,