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Indentation of elastically soft and plastically compressible solids

             

摘要

The effect of soft elasticity, i.e., a relatively small value of the ratio of Young's modulus to yield strength and plastic compressibility on the indentation of isotropically hardening elastic–viscoplastic solids is investigated. Calculations are carried out for indentation of a perfectly sticking rigid sharp indenter into a cylinder modeling indentation of a half space. The material is characterized by a finit strain elastic–viscoplastic constitutive relation that allows for plastic as well as elastic compressibility. Both soft elasticity and plastic compressibility significantl reduce the ratio of nominal indentation hardness to yield strength. A linear relation is found between the nominal indentation hardness and the logarithm of the ratio of Young's modulus to yield strength, but with a different coefficien than reported in previous studies.The nominal indentation hardness decreases rapidly for small deviations from plastic incompressibility and then decreases rather slowly for values of the plastic Poisson's ratio less than0.25. For both soft elasticity and plastic compressibility, the main reason for the lower values of indentation hardness is related to the reduction in the hydrostatic stress level in the material below the indenter.

著录项

  • 来源
    《力学学报:英文版 》 |2015年第004期|473-480|共8页
  • 作者单位

    Department of Materials Science and Engineering,Texas A&M University,College Station,TX 77843,USA;

    Department of Mechanical Engineering,The Technical University of Denmark,Lyngby,Denmark;

    Zernike Institute for Advanced Materials,University of Groningen,Nyenborgh 4,9747 AG Groningen,The Netherlands;

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  • 正文语种 eng
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