The physical model for tow behavior, developed previously by the authors, is used to study the performance of two woven CMC laminates: a carbon fiber/carbon—SiC matrix (C/C—SiC) plain weave laminate — DLR-XT; and a carbon fiber— carbon matrix (C/C) 8-Harness Satin weave laminate — HITCO. For both materials, room temperature stress—strain curves and transverse thermal conductivity—strain curves are available from a previous experimental investigation; these curves have been used as benchmarks to assess the fidelity of the models. The tow model has first been used to develop relationships for 0°/90° uni-directional unit cells, and then adapted to cater for unit cells of the DLR-XT and HITCO woven composites. For both materials, acceptable pre...
Woven ceramic matrix composites (CMCs) hot-section components will sustain spatially non-uniform str...
Thermal cycles ranging from room temperature to 400°F and from room temperature to 550°F were perfor...
The successful application of fiber-reinforced ceramic matrix composites (CMC) depends strongly on m...
AbstractA computationally economic finite-element-based stress analysis model, developed previously ...
behavior of a Nicalon-CAS 0–90 ceramic matrix composite from constituent materials properties C. Ta...
behavior of a Nicalon-CAS 0–90 ceramic matrix composite from constituent materials properties C. Ta...
A physical model, previously developed by one of the authors, has been extended to cover thermal con...
AbstractA computationally economic finite-element-based stress analysis model, developed previously ...
The paper addresses the numerical modeling of the coupling between mechanical strain and thermal co...
Carbon-fiber/SiC-matrix composites are under development for applications in hypersonic vehicles due...
Carbon-fiber/SiC-matrix composites are under development for applications in hypersonic vehicles due...
Ceramic composite materials have been developed for use at high temperatures and are subjected to cy...
The directional thermal conductivity of composite parts and moulds has a strong effect on out-of aut...
Woven ceramic matrix composites (CMCs) hot-section components will sustain spatially non-uniform str...
OAK B188 Failure Mechanisms for Ceramic Matrix Textile Composites at High Temperature. This summary ...
Woven ceramic matrix composites (CMCs) hot-section components will sustain spatially non-uniform str...
Thermal cycles ranging from room temperature to 400°F and from room temperature to 550°F were perfor...
The successful application of fiber-reinforced ceramic matrix composites (CMC) depends strongly on m...
AbstractA computationally economic finite-element-based stress analysis model, developed previously ...
behavior of a Nicalon-CAS 0–90 ceramic matrix composite from constituent materials properties C. Ta...
behavior of a Nicalon-CAS 0–90 ceramic matrix composite from constituent materials properties C. Ta...
A physical model, previously developed by one of the authors, has been extended to cover thermal con...
AbstractA computationally economic finite-element-based stress analysis model, developed previously ...
The paper addresses the numerical modeling of the coupling between mechanical strain and thermal co...
Carbon-fiber/SiC-matrix composites are under development for applications in hypersonic vehicles due...
Carbon-fiber/SiC-matrix composites are under development for applications in hypersonic vehicles due...
Ceramic composite materials have been developed for use at high temperatures and are subjected to cy...
The directional thermal conductivity of composite parts and moulds has a strong effect on out-of aut...
Woven ceramic matrix composites (CMCs) hot-section components will sustain spatially non-uniform str...
OAK B188 Failure Mechanisms for Ceramic Matrix Textile Composites at High Temperature. This summary ...
Woven ceramic matrix composites (CMCs) hot-section components will sustain spatially non-uniform str...
Thermal cycles ranging from room temperature to 400°F and from room temperature to 550°F were perfor...
The successful application of fiber-reinforced ceramic matrix composites (CMC) depends strongly on m...