International audienceThe chemical vapour infiltration (CVI) process is used to fabricate the interphases and matrices of CMCs. This process involves complex physico-chemical phenomena such as the transport of precursor, carrier, and by-product gases in the reactor and inside a fibrous preform, chemical reactions (pyrolysis and deposition), and the structural evolution of the preform. It is able to provide high-quality materials because the process conditions are rather mild with respect to the fibres ; however it is expensive and sometimes difficult to optimize. Many variations of the basic concept have been proposed in the past decades, introducing thermal and pressure gradients, in order to increase the efficiency. This process has been ...
The forced flow/thermal gradient chemical vapor infiltration process (FCVI) can be used for fabricat...
23 pagesInternational audienceThree-dimensional carbon fibre preforms were infiltrated with pyrocarb...
Membres du jury : MM. C. BERNARD F. CHRISTIN R. NASLAIN J. SCHWARTZENTRUBER F. TEYSSANDIER L. VANDEN...
International audienceThe chemical vapour infiltration (CVI) process is used to fabricate the interp...
Chemical vapor infiltration is a unique method for preparing continuous fiber ceramic composites tha...
The internal architecture of a CVI reactor significantly influences the gas flow behavior, as well a...
International audienceThe chemical vapor infiltration (CVI) of pyrocarbon is used to produce carbon ...
Abstract. Numerical simulation of materials synthesis based on detailed models for the chemical kine...
Numerical simulation of materials synthesis based on detailed models for the chemical kinetics and t...
Chemical vapor infiltration (CVI) is simply chemical vapor deposition (CVD) on the internal surfaces...
[[abstract]]A model for the forced-flow/temperature-gradient chemical vapor infiltration (FCVI) proc...
International audienceThe chemical supercritical fluid infiltration process is a recent variation of...
The paper presents a model of the CVD- and CVI- proceses based on the principles for the description...
The chemical supercritical fluid infiltration process is a recent variation of the chemical vapor in...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
The forced flow/thermal gradient chemical vapor infiltration process (FCVI) can be used for fabricat...
23 pagesInternational audienceThree-dimensional carbon fibre preforms were infiltrated with pyrocarb...
Membres du jury : MM. C. BERNARD F. CHRISTIN R. NASLAIN J. SCHWARTZENTRUBER F. TEYSSANDIER L. VANDEN...
International audienceThe chemical vapour infiltration (CVI) process is used to fabricate the interp...
Chemical vapor infiltration is a unique method for preparing continuous fiber ceramic composites tha...
The internal architecture of a CVI reactor significantly influences the gas flow behavior, as well a...
International audienceThe chemical vapor infiltration (CVI) of pyrocarbon is used to produce carbon ...
Abstract. Numerical simulation of materials synthesis based on detailed models for the chemical kine...
Numerical simulation of materials synthesis based on detailed models for the chemical kinetics and t...
Chemical vapor infiltration (CVI) is simply chemical vapor deposition (CVD) on the internal surfaces...
[[abstract]]A model for the forced-flow/temperature-gradient chemical vapor infiltration (FCVI) proc...
International audienceThe chemical supercritical fluid infiltration process is a recent variation of...
The paper presents a model of the CVD- and CVI- proceses based on the principles for the description...
The chemical supercritical fluid infiltration process is a recent variation of the chemical vapor in...
Fabrication of silicon carbide fibres reinforced silicon carbide composite (SiC/SiC) by chemical vap...
The forced flow/thermal gradient chemical vapor infiltration process (FCVI) can be used for fabricat...
23 pagesInternational audienceThree-dimensional carbon fibre preforms were infiltrated with pyrocarb...
Membres du jury : MM. C. BERNARD F. CHRISTIN R. NASLAIN J. SCHWARTZENTRUBER F. TEYSSANDIER L. VANDEN...