Thermal Fracture of Multilayer Ceramic Thermal Barrier Coatings
Yoshimi TAKEUCHI, Klod Kokini
Abstract
Yoshimi TAKEUCHI, Klod Kokini
Abstract
Controlled experiments and a corresponding analytical model were developed to investigate the reasons for crack initiation in multilayer ceramic thermal barrier coatings. The experiments and model determined that surface cracks form as a result of tensile stresses created following stress relaxation in the ceramic at steady state high temperatures (about 900°C-1100°C). Interface cracks generated by out of plane stresses are affected by the presence of these surface cracks and thermal transients and, possibly, edge effects.
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Controlled experiments and a corresponding analytical model were developed to investigate the reasons for crack initiation in multilayer ceramic thermal barrier coatings. The experiments and model determined that surface cracks form as a result of tensile stresses created following stress relaxation in the ceramic at steady state high temperatures (about 900°C-1100°C). Interface cracks generated by out of plane stresses are affected by the presence of these surface cracks and thermal transients and, possibly, edge effects.
Key concepts: Materials science, Ceramic, Composite material, Thermal barrier coating, Thermal, Enhanced Data Rates for GSM Evolution, Relaxation (psychology), Stress (linguistics)