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The Effect of Interface Roughness and Oxide Film Thickness on the Inelastic Response of Thermal Barrier Coatings to Thermal Cycling

The Effect of Interface Roughness and Oxide Film Thickness on the Inelastic Response of Thermal Barrier Coatings to Thermal Cycling

          
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About the Book

The effects of interfacial roughness and oxide film thickness on thermally-induced stresses in plasma-sprayed thermal barrier coatings subjected to thermal cycling are investigated using the recently developed higher-order theory for functionally graded materials. The higher-order theory is shown to be a viable alternative to the finite-element approach, capable of modeling different interfacial roughness architectures in the presence of an aluminum oxide layer and capturing the high stress gradients that occur at the top coat/bond coat interface. The oxide layer thickness is demonstrated to have a substantially greater effect on the evolution of residual stresses than local variations in interfacial roughness. Further, the location of delamination initiation in the top coat is predicted to change with increasing oxide layer thickness. This result can be used to optimize the thickness of a pre-oxidized layer introduced at the top coat/bond coat interface in order to enhance TBC durability as suggested by some researchers. The results of our investigation also support a recently proposed hypothesis regarding delamination initiation and propagation in the presence of an evolving bond coat oxidation, while pointing to the importance of interfacial roughness details and specimen geometry in modeling this phenomenon.Pindera, Marek-Jerzy and Aboudi, Jacob and Arnold, Steven M.Glenn Research CenterINTERFACES; OXIDE FILMS; THICKNESS; SURFACE ROUGHNESS; TEMPERATURE EFFECTS; STRESS DISTRIBUTION; FILM THICKNESS; THERMAL CYCLING TESTS; THERMAL CONTROL COATINGS; SPRAYED COATINGS; SPECIMEN GEOMETRY; RESIDUAL STRESS; POSITION (LOCATION); PLASMA LAYERS; JOINTS (JUNCTIONS); FINITE ELEMENT METHOD; DURABILITY; ALUMINUM OXIDES...


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Product Details
  • ISBN-13: 9781723767135
  • Publisher: Independently Published
  • Publisher Imprint: Independently Published
  • Height: 280 mm
  • No of Pages: 42
  • Spine Width: 2 mm
  • Width: 216 mm
  • ISBN-10: 1723767131
  • Publisher Date: 17 Sep 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 122 gr


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The Effect of Interface Roughness and Oxide Film Thickness on the Inelastic Response of Thermal Barrier Coatings to Thermal Cycling
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