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Probabilistic finite element modeling of aerospace engine components incorporating time-dependent inelastic properties for ceramic matrix composite (CMC) materials
Miller, Ian Timothy

2006, Master of Science, University of Akron, Applied Mathematics.
The research included in this abstract pertains to probabilistic finite-element creep analysis of a composite combustor liner. A composite combustor liner is an aerospace engine component that is subjected to very high temperatures, ranging between 1500 - 2100 degrees Fahrenheit. A creep analysis of this component is essential for rational design as creep (a slow time-dependent information under constant load) is prevalent at high temperatures. In a probabilistic analysis, many, if not all, of the state variables are represented by random variables with appropriate probability distributions incorporating relevant parameters. This formalism is much more realistic, as it more accurately describes the variability in properties and loadings that are inherent in the composition of aerospace materials and loadings encountered by aerospace components.
Ali Hajjafar (Advisor)
58 p.

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Miller, I. (2006). Probabilistic finite element modeling of aerospace engine components incorporating time-dependent inelastic properties for ceramic matrix composite (CMC) materials. (Electronic Thesis or Dissertation). Retrieved from https://etd.ohiolink.edu/

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Miller, Ian. "Probabilistic finite element modeling of aerospace engine components incorporating time-dependent inelastic properties for ceramic matrix composite (CMC) materials." Electronic Thesis or Dissertation. University of Akron, 2006. OhioLINK Electronic Theses and Dissertations Center. 15 Dec 2017.

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Miller, Ian "Probabilistic finite element modeling of aerospace engine components incorporating time-dependent inelastic properties for ceramic matrix composite (CMC) materials." Electronic Thesis or Dissertation. University of Akron, 2006. https://etd.ohiolink.edu/

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