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An anisotropic micromechanics model for predicting the rafting direction in Ni-based single crystal superalloys

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Publication:739971
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DOI10.1007/S10409-015-0499-1zbMath1342.74127OpenAlexW2105109648MaRDI QIDQ739971

Ming-Xiang Chen, Wen-Ping Wu, Shuang-Yu Li

Publication date: 11 August 2016

Published in: Acta Mechanica Sinica (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s10409-015-0499-1


zbMATH Keywords

Stroh formalismequivalent inclusion theoryNi-based single crystal superalloysrafting


Mathematics Subject Classification ID

Micromechanics of solids (74M25)


Related Items (1)

Mathematical simulation of elastoplastic deformation in cubic materials with an account of anisotropic bulk compressibility




Cites Work

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  • Eshelby problem of polygonal inclusions in anisotropic piezoelectric full- and half-planes
  • Fatigue life evaluation of a single crystal Ni-base superalloy, accompanying with change of microstructural morphology




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