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  • This paper is devoted to the assessment of effective elastic properties on several typical structural composites with heterogeneous microstructure. Nanoindentation is utilized to measure intrinsic phase properties at the scale below one micron. Statistical approach and deconvolution methodology are applied. Based on nanoindentation data, micromechanical properties are up-scaled (homogenized) within the representative volume element (RVE) by means of an analytical method and numerical FFT-based scheme. Good correlation of the methods was found for the tested materials due to the close-to-isotropic nature of the composites in the RVE.
  • This paper is devoted to the assessment of effective elastic properties on several typical structural composites with heterogeneous microstructure. Nanoindentation is utilized to measure intrinsic phase properties at the scale below one micron. Statistical approach and deconvolution methodology are applied. Based on nanoindentation data, micromechanical properties are up-scaled (homogenized) within the representative volume element (RVE) by means of an analytical method and numerical FFT-based scheme. Good correlation of the methods was found for the tested materials due to the close-to-isotropic nature of the composites in the RVE. (en)
Title
  • Methods of Micromechanics and Nanoindentation Applied to Heterogeneous Structural Materials
  • Methods of Micromechanics and Nanoindentation Applied to Heterogeneous Structural Materials (en)
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  • Methods of Micromechanics and Nanoindentation Applied to Heterogeneous Structural Materials
  • Methods of Micromechanics and Nanoindentation Applied to Heterogeneous Structural Materials (en)
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  • RIV/68407700:21110/11:00182128!RIV12-MSM-21110___
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  • P(GA103/09/1748), S, Z(MSM6840770003)
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  • 211829
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  • RIV/68407700:21110/11:00182128
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  • Micromechanics; Nanoindentation; Heterogeneous materials; Homogenization; FFT (en)
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  • [3DCDF5B9C96D]
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  • Znojmo
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  • Brno
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  • Experimentální analýza napětí 2011
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  • Králík, Vlastimil
  • Němeček, Jiří
  • Vondřejc, Jaroslav
  • Němečková, Jitka
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  • Vysoké učení technické v Brně
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  • 978-80-214-4275-7
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  • 21110
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