About: Modelling Load-displacement Curve and the Onset of Pop-in during Nanoindentation Tests     Goto   Sponge   NotDistinct   Permalink

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  • The aim of this article is to present a simulation of the nanoindentation test in copper single crystal based on a nonlinear elastic finite element analysis coupled with both ab initio calculations of the ideal shear strength and crystallographic considerations. Calculated values of the critical indentation depth corresponding to the pop-in effect lie within the range of experimentally observed pop-ins in the copper crystal.
  • The aim of this article is to present a simulation of the nanoindentation test in copper single crystal based on a nonlinear elastic finite element analysis coupled with both ab initio calculations of the ideal shear strength and crystallographic considerations. Calculated values of the critical indentation depth corresponding to the pop-in effect lie within the range of experimentally observed pop-ins in the copper crystal. (en)
Title
  • Modelling Load-displacement Curve and the Onset of Pop-in during Nanoindentation Tests
  • Modelling Load-displacement Curve and the Onset of Pop-in during Nanoindentation Tests (en)
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  • Modelling Load-displacement Curve and the Onset of Pop-in during Nanoindentation Tests
  • Modelling Load-displacement Curve and the Onset of Pop-in during Nanoindentation Tests (en)
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  • RIV/00216305:26210/13:PU108620!RIV14-GA0-26210___
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  • P(GAP108/12/0144)
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  • RIV/00216305:26210/13:PU108620
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  • Modelling, Load-displacement Curve, Pop-in Effect, Nanoindentation Test (en)
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  • [0AF55BC0DA3C]
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  • Pokluda, Jaroslav
  • Černý, Miroslav
  • Horníková, Jana
  • Šandera, Pavel
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  • 26210
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