Relation of elastic properties, yield stress and ultimate strength of polycrystalline metals to their melting and evaporation parameters with account ... View Full Text


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Article Info

DATE

2018-12

AUTHORS

Anatoly M. Polyanskiy, Vladimir A. Polyanskiy, Alexander K. Belyaev, Yury A. Yakovlev

ABSTRACT

The paper is concerned with the main factors that determine the mechanical characteristics of materials. The values of these factors are shown to be related to the size of structural elements. These elements are the lattice atoms in the case of calculation of Young’s modulus and the crystallites of various sizes in the case of determining the yield stress and ultimate strength. The models are constructed which allow obtaining fundamental relationships that adequately determine the mechanical characteristics of solid metals. Verification of the dependences is carried out on the basis of experimental data, and the adequacy of the proposed models is proved. More... »

PAGES

1-11

References to SciGraph publications

  • 2019-04. Molecular-continuum model for the prediction of stiffness, strength and toughness of nanomaterials in ACTA MECHANICA
  • 2008-01. Failure modes and effective strength of two-phase materials determined by means of numerical limit analysis in ACTA MECHANICA
  • 2015-04. Fundamental role of crystal structure curvature in plasticity and strength of solids in PHYSICAL MESOMECHANICS
  • 2017-12. An ellipsoidal yield criterion for porous metals with accurate descriptions of theoretical strength and Poisson’s ratio in ACTA MECHANICA
  • 1972-02. The theoretical strength of solids in JOURNAL OF MATERIALS SCIENCE
  • 2010-08. Foundations of physical mesomechanics of structurally inhomogeneous media in MECHANICS OF SOLIDS
  • 2006-05. On the temperature of melting of nanoparticles and nanocrystalline substances in TECHNICAL PHYSICS LETTERS
  • 2006-07. The calculation of the parameters of the Mie-Lennard-Jones potential in HIGH TEMPERATURE
  • 1999-09. A micromechanical method for predicting the precipitation hardening response of particle strengthened alloys hardened by ordered precipitates in ACTA MECHANICA
  • 1926-07. Zur Theorie der Elastizitätsgrenze und der Festigkeit kristallinischer Körper in ZEITSCHRIFT FÜR PHYSIK
  • 2016-10. Contribution of surface tension energy during plastic deformation of nanomaterials in DOKLADY PHYSICS
  • 1970-05. The relation between polycrystal deformation and single-crystal deformation in METALLURGICAL AND MATERIALS TRANSACTIONS B
  • 2016-06. Fitting of the strength hypotheses in ACTA MECHANICA
  • 2018-02. A multiscale homogenization model for strength predictions of fully and partially frozen soils in ACTA GEOTECHNICA
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  • 2007-01. Calculating the Tolman constant in TECHNICAL PHYSICS LETTERS
  • Journal

    TITLE

    Acta Mechanica

    ISSUE

    N/A

    VOLUME

    N/A

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/s00707-018-2262-8

    DOI

    http://dx.doi.org/10.1007/s00707-018-2262-8

    DIMENSIONS

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