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Stress in Thin Films;Diffraction Elastic Constants and Grain Interaction
作者姓名:U.Welzel  M.Leoni
作者单位:MaxPlanckInstituteforMetalsResearch,Seestrasse92,D-70174Stuttgart,Germany
摘    要:Untextured bulk polycrystals usually possess macroscopically isotropic elastic properties whereas for most thin films transvers isotropy is expected,owing to the limited dimenionlity .The usually applied models for the calculation of elstic constants of polycrystals from single crystal elastic contants(so-called grain interaction models)erroneously predict macroscopic isotropy for an(untextured) thin film.This paper presents a summary of recent work where it has been demonstrated for the first time by X-ray diffraction analysis of stresses in thin films that elastic grain interaction can lead to macroscopically anisotropic behaviour (shown by non-linear sin^2φ plots).A new grain interaction model,predictin the macroscopically anisotropic behaviour of thin films,is proposed.

关 键 词:薄膜  结构  X射线衍射  弹性常数  性质

Stress in Thin Fil ms; Diffraction Elastic Constants and Grain Interaction
U.Welzel,M.Leoni,P.Lamparter,E.J.Mittemeijer.Stress in Thin Films;Diffraction Elastic Constants and Grain Interaction[J].Journal of Materials Science & Technology,2002,18(2):121-124.
Authors:UWelzel  MLeoni  PLamparter  EJMittemeijer
Affiliation:Max Planck Institute for Metals Research, Seestrasse 92, D-70174 Stuttgart, Germany
Abstract:Untextured bulk polycrystals usually possess macroscopically isotropic elastic properties whereas for most thin films transverse isotropy is expected, owing to the limited dimensionality. The usually applied models for the calculation of elastic constants of polycrystals from single crystal elastic constants (so-called grain interaction models) erroneously predict macroscopic isotropy for an (untextured) thin film. This paper presents a summary of recent work where it has been demonstrated for the first time by X-ray diffraction analysis of stresses in thin films that elastic grain interaction can lead to macroscopically elastically anisotropic behaviour (shown by non-linear sin2ψ plots). A new grain interaction model, predicting the macroscopically anisotropic behaviour of thin films, is proposed.
Keywords:Thin film  Elastic constant  Grain interaction  X-ray diffraction
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