About: Effect of Crystallographic Orientation on Hardness and Indentation Modulus in Austenitic Stainless Steel     Goto   Sponge   Distinct   Permalink

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  • The most commonly used method for the analysis of instrumented indentation test (Oliver-Pharr) is based on isotropic elastic solution of contact problem which is not necessarily valid when indenting at the scale of one (anisotropic) grain. In this paper, we performed the grid indentation method at the sub-micron scale (at low indentation load and depth of penetration) on an area containing several grains with different crystallographic orientation which was simultaneously characterized by electron back-scattered diffraction. Measured dependencies of hardness and indentation modulus on crystallographic orientation were compared with analytical solution and finite element simulations.
  • The most commonly used method for the analysis of instrumented indentation test (Oliver-Pharr) is based on isotropic elastic solution of contact problem which is not necessarily valid when indenting at the scale of one (anisotropic) grain. In this paper, we performed the grid indentation method at the sub-micron scale (at low indentation load and depth of penetration) on an area containing several grains with different crystallographic orientation which was simultaneously characterized by electron back-scattered diffraction. Measured dependencies of hardness and indentation modulus on crystallographic orientation were compared with analytical solution and finite element simulations. (en)
Title
  • Effect of Crystallographic Orientation on Hardness and Indentation Modulus in Austenitic Stainless Steel
  • Effect of Crystallographic Orientation on Hardness and Indentation Modulus in Austenitic Stainless Steel (en)
skos:prefLabel
  • Effect of Crystallographic Orientation on Hardness and Indentation Modulus in Austenitic Stainless Steel
  • Effect of Crystallographic Orientation on Hardness and Indentation Modulus in Austenitic Stainless Steel (en)
skos:notation
  • RIV/68407700:21340/14:00223382!RIV15-GA0-21340___
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  • P(GA101/09/0702)
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  • 13202
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  • RIV/68407700:21340/14:00223382
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  • nanoindentation; austenitic stainless steel; anisotropy; elastic contact (en)
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  • [59C082F8D232]
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  • Levoča
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  • Zürich
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  • 9th International Conference on Local Mechanical Properties
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  • Haušild, Petr
  • Nohava, J.
  • Materna, Aleš
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  • 000336633500008
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issn
  • 1013-9826
number of pages
http://bibframe.org/vocab/doi
  • 10.4028/www.scientific.net/KEM.586.31
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  • Transtech Publications
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  • 978-3-03785-876-9
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  • 21340
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