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- W2103162413 abstract "ABSTRACT This paper presents an advanced resonant ultrasound spectroscopy (RUS) method to determine the elastic constants C ij of thin films. Polycrystalline thin films often exhibit elastic anisotropy between the film growth direction and the in‐plane direction, and they macroscopically show five independent elastic constants. Because all of the C ij of a deposited thin film affect the mechanical resonance frequencies of the film/substrate layer specimen, measuring resonance frequencies enables one to determine the C ij of the film with known density, dimensions and the C ij of the substrate. Resonance frequencies have to be measured accurately because of low sensitivity of the C ij of films to them. We achieved this by a piezoelectric tripod. Mode identification has to be made unambiguously. We made this measuring displacement–amplitude distributions on the resonated specimen surface by laser Doppler interferometry. We applied our technique to copper thin film and diamond thin film. They show elastic anisotropy and the C ij smaller than bulk values of C ij . Micromechanics calculations indicate the presence of incohesive bonded regions." @default.
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- W2103162413 date "2005-04-11" @default.
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- W2103162413 title "Advanced resonant ultrasound spectroscopy for measuring anisotropic elastic constants of thin films" @default.
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- W2103162413 doi "https://doi.org/10.1111/j.1460-2695.2005.00885.x" @default.
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