Prediction of initial oxidation behavior of Ni-base single crystal superalloys by regression analysis

► Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ► Empirical equations applicable to all generations of Ni-base superalloys. ► Excellent agreement between observed and calculated weight changes. ► The alloys that were applicable for this equation had a composition...

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Published in:Scripta materialia Vol. 65; no. 1; pp. 49 - 52
Main Authors: Suzuki, A.S., Kawagishi, K., Yokokawa, T., Harada, H., Kobayashi, T.
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-06-2011
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Abstract ► Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ► Empirical equations applicable to all generations of Ni-base superalloys. ► Excellent agreement between observed and calculated weight changes. ► The alloys that were applicable for this equation had a compositional dependence. Regression analysis was performed for 63 binary, ternary and multi-component Ni-base superalloys to predict initial oxidation behavior. Empirical equations obtained from regression analysis, and used for predicting the weight change of alloys after one cycle at 1100 °C, could be applied to all generations of Ni-base superalloys. One equation exhibited excellent agreement between observed and calculated weight changes. The alloys that were applicable for this equation therefore had a compositional dependence.
AbstractList ► Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ► Empirical equations applicable to all generations of Ni-base superalloys. ► Excellent agreement between observed and calculated weight changes. ► The alloys that were applicable for this equation had a compositional dependence. Regression analysis was performed for 63 binary, ternary and multi-component Ni-base superalloys to predict initial oxidation behavior. Empirical equations obtained from regression analysis, and used for predicting the weight change of alloys after one cycle at 1100 °C, could be applied to all generations of Ni-base superalloys. One equation exhibited excellent agreement between observed and calculated weight changes. The alloys that were applicable for this equation therefore had a compositional dependence.
Highlights ao Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ao Empirical equations applicable to all generations of Ni-base superalloys. ao Excellent agreement between observed and calculated weight changes. ao The alloys that were applicable for this equation had a compositional dependence. Regression analysis was performed for 63 binary, ternary and multi-component Ni-base superalloys to predict initial oxidation behavior. Empirical equations obtained from regression analysis, and used for predicting the weight change of alloys after one cycle at 1100ADGC, could be applied to all generations of Ni-base superalloys. One equation exhibited excellent agreement between observed and calculated weight changes. The alloys that were applicable for this equation therefore had a compositional dependence.
Author Suzuki, A.S.
Yokokawa, T.
Kobayashi, T.
Kawagishi, K.
Harada, H.
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Keywords Nickel-base superalloy
Oxidation behavior
Initial oxidation
Prediction
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Snippet ► Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ► Empirical equations applicable to all generations of Ni-base...
Highlights ao Regression analysis for Ni-base superalloys to predict initial oxidation behavior. ao Empirical equations applicable to all generations of...
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StartPage 49
SubjectTerms Alloys
Empirical equations
Initial oxidation
Mathematical analysis
Nickel
Nickel base alloys
Nickel-base superalloy
Oxidation
Oxidation behavior
Prediction
Regression analysis
Superalloys
Title Prediction of initial oxidation behavior of Ni-base single crystal superalloys by regression analysis
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