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  • Quantum-mechanical approach fro determining theoretical (ideal) tensile and shear strength is briefly outlined and, as an example, tenslie test for defect-free MoSi2 is simulated. Theoretical values of tensile and shear strength are compared with those from loading of whiskers and from nanoindentation experiments. Possible sources of discrepancies are discussed.
  • Quantum-mechanical approach fro determining theoretical (ideal) tensile and shear strength is briefly outlined and, as an example, tenslie test for defect-free MoSi2 is simulated. Theoretical values of tensile and shear strength are compared with those from loading of whiskers and from nanoindentation experiments. Possible sources of discrepancies are discussed. (en)
Title
  • Theoretical strength and onset of yielding in nanoindentation.
  • Theoretical strength and onset of yielding in nanoindentation. (en)
skos:prefLabel
  • Theoretical strength and onset of yielding in nanoindentation.
  • Theoretical strength and onset of yielding in nanoindentation. (en)
skos:notation
  • RIV/68081723:_____/02:07023146!RIV/2003/GA0/A07003/N
http://linked.open.../vavai/riv/strany
  • 279;282
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  • P(GA106/02/0877), P(IAA1010817), P(OC 523.90), Z(AV0Z2041904)
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  • 666866
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  • RIV/68081723:_____/02:07023146
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  • theoretical strength; nanoindentation; ab initio calculations (en)
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  • [7CAF5267BBB0]
http://linked.open...v/mistoKonaniAkce
  • San Juan [US]
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  • Cambridge
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  • Computational Nanoscience and Nanotechnology /2./.
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  • Friák, Martin
  • Vitek, V.
  • Šob, Mojmír
  • Wang, L. G.
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http://linked.open.../riv/zahajeniAkce
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  • Computational Publications
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