Abstract <p>Finite-element modeling of reverse burnishing is used to determine the tensor components and residual stress as a function of the hardening parameters. The influence of the reverse burnishing parameters on the hardness and the depth of the hardened (surface) layer is established. A correlation is found between the maximum component of the compressive residual stress, its depth, the maximum hardness, and the depth of the hardened layer. The influence of the residual stress on the hardness of the hardened layer is studied.</p>

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Assessing the Residual Stress from the Hardness of the Surface Layer after Reverse Burnishing

  • Huu Hai Nguyen,
  • S. A. Zaides

摘要

Abstract

Finite-element modeling of reverse burnishing is used to determine the tensor components and residual stress as a function of the hardening parameters. The influence of the reverse burnishing parameters on the hardness and the depth of the hardened (surface) layer is established. A correlation is found between the maximum component of the compressive residual stress, its depth, the maximum hardness, and the depth of the hardened layer. The influence of the residual stress on the hardness of the hardened layer is studied.