Creep studies have been performed on an SIC-C composite under flexural, compressive and tensile loading conditions. It has been found that the creep rates in all loadings are similar and consistent with deformation dominated by the fibers. The implication is that the C matrix is susceptible to extensive microcrack damage, causing all the stress to be borne by the fibers. The elevated stress on the fibers causes tensile creep rupture at small creep ductilities. This behavior has been attributed to slow crack growth in the fibers.X1110sciescopu
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
AbstractCreep models for unidirectional ceramic matrix composites reinforced by long creeping fibers...
International audienceThe creep behavior of Hi-Nicalon, Hi-Nicalon S and Tyranno SA3 fibers is inves...
The high temperature creep behaviour of a 2D SiC/C/SiC composite is studied at temperatures ranging ...
Fiber bonded silicon carbide ceramic materials provide cost-advantage over traditional ceramic matri...
International audienceThis paper deals with the creep mechanism for ceramic matrix composites reinfo...
In the as-produced condition the room temperature strength (approx. 6 GPa) of Textron Specialty Mate...
The tensile creep and creep-recovery behavior of a 0$\sp\circ$ HP SiC$\sb{\rm f}$/Si$\sb3$N$\sb4$ co...
In this study we investigated the stress-strain behavior at room and elevated temperatures and the t...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65852/1/j.1151-2916.1993.tb04005.x.pd
With the objective of seeking improved temperature capability for SiC/SiC CMC components in future a...
In this paper, the temperature-dependent matrix multicracking evolution of carbon-fiber-reinforced s...
The tensile creep and creep strain recovery behavior of 0" and Oo/900 Nicalon-fiber/calcium alu...
The main objective of this research effort was to examine the impact that cyclic loading frequency h...
The objective of this Cooperative Research and Development Agreement between Lockheed Martin Energy ...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
AbstractCreep models for unidirectional ceramic matrix composites reinforced by long creeping fibers...
International audienceThe creep behavior of Hi-Nicalon, Hi-Nicalon S and Tyranno SA3 fibers is inves...
The high temperature creep behaviour of a 2D SiC/C/SiC composite is studied at temperatures ranging ...
Fiber bonded silicon carbide ceramic materials provide cost-advantage over traditional ceramic matri...
International audienceThis paper deals with the creep mechanism for ceramic matrix composites reinfo...
In the as-produced condition the room temperature strength (approx. 6 GPa) of Textron Specialty Mate...
The tensile creep and creep-recovery behavior of a 0$\sp\circ$ HP SiC$\sb{\rm f}$/Si$\sb3$N$\sb4$ co...
In this study we investigated the stress-strain behavior at room and elevated temperatures and the t...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65852/1/j.1151-2916.1993.tb04005.x.pd
With the objective of seeking improved temperature capability for SiC/SiC CMC components in future a...
In this paper, the temperature-dependent matrix multicracking evolution of carbon-fiber-reinforced s...
The tensile creep and creep strain recovery behavior of 0" and Oo/900 Nicalon-fiber/calcium alu...
The main objective of this research effort was to examine the impact that cyclic loading frequency h...
The objective of this Cooperative Research and Development Agreement between Lockheed Martin Energy ...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
AbstractCreep models for unidirectional ceramic matrix composites reinforced by long creeping fibers...
International audienceThe creep behavior of Hi-Nicalon, Hi-Nicalon S and Tyranno SA3 fibers is inves...