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Numerical simulation of displacement instabilities of surface grooves on an alumina forming alloy during thermal cycling oxidation Jun Ding
The Journal of Mechanical Science and Technology, vol. 23, no. 8, pp.2308-2319, 2009
Abstract : Displacement instability of the thermally grown oxide (TGO) is a fundamental source of failure in thermal barrier
systems. In this work, a finite element analysis has been performed to analyze the displacement instability occurring at
a heat resistant metal with superficial TGO subjected to thermal cycling. Lateral and in-plane growth of the TGO
which happens during high temperature is simulated by means of material property change from the substrate metal to
the TGO. Most of the material properties including the TGO growth are based on the results experimentally obtained
in-house. Results of the finite element analyses agree well with the experimental observation, which proves the accuracy
and validity of this simulation. The technique will be useful for future work on more complicated phenomena such
as deformation under thermo-mechanical cycling.
Keyword :
Displacement instabilities; Numerical simulation; Thermal cycling; Thermally grown oxide
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