About: The Theoretical Strength of FCC Crystals under Uniaxial Compression with Superimposed Transverse Stresses     Goto   Sponge   NotDistinct   Permalink

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  • In this work, we study the dependence of the [100] uniaxial compressive stress (particularly its maximum value) on the superimposed transverse biaxial stresses for five face-centered cubic crystals (Al, Cu, Ag, Ir and Pt). A necessary relaxation procedure was based on first principles calculations of a stress tensor. A plane-wave pseudo-potential code Abinit is employed for this purpose. The results that the compressive strength linearly increases (decreases) with increasing compressive (tensile) superimposed transverse stresses.
  • In this work, we study the dependence of the [100] uniaxial compressive stress (particularly its maximum value) on the superimposed transverse biaxial stresses for five face-centered cubic crystals (Al, Cu, Ag, Ir and Pt). A necessary relaxation procedure was based on first principles calculations of a stress tensor. A plane-wave pseudo-potential code Abinit is employed for this purpose. The results that the compressive strength linearly increases (decreases) with increasing compressive (tensile) superimposed transverse stresses. (en)
Title
  • The Theoretical Strength of FCC Crystals under Uniaxial Compression with Superimposed Transverse Stresses
  • The Theoretical Strength of FCC Crystals under Uniaxial Compression with Superimposed Transverse Stresses (en)
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  • The Theoretical Strength of FCC Crystals under Uniaxial Compression with Superimposed Transverse Stresses
  • The Theoretical Strength of FCC Crystals under Uniaxial Compression with Superimposed Transverse Stresses (en)
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  • RIV/00216305:26210/10:PU88273!RIV11-GA0-26210___
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  • P(GA106/09/1524), P(GD106/09/H035)
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  • RIV/00216305:26210/10:PU88273
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  • stress coupling, theoretical strength, ab initio calculations (en)
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  • [B2051D30EB83]
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  • Pokluda, Jaroslav
  • Černý, Miroslav
  • Řehák, Petr
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  • 26210
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