Effect of Relatively Low Levels of Porosity on the Plasticity of Metals and Implications for Profilometry‐Based Indentation Plastometry

Herein, the effect of dispersed (relatively low levels of) porosity within a metal on its plastic deformation is examined. Stainless steel samples, made via additive manufacturing, are used in the work. It's found that porosity reduces stress levels during yielding and work hardening, approximately in proportion to the pore content. There is no significant difference between the strength of the effect during tension and compression, although porosity does reduce the tensile ductility. Finally, the profilometry‐based indentation plastometry (PIP) methodology (for obtaining stress–strain curves from indentation testing) are used. Porosity tends to bring the inferred yield stress down more strongly than during tensile testing and give higher initial rates of work hardening. This is associated with high local strains near the indenter causing closure of pores, so that volume is not conserved during the test. The resultant reduction in the pile‐up around the indent creates errors in the inferred stress–strain curve.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Effect of Relatively Low Levels of Porosity on the Plasticity of Metals and Implications for Profilometry‐Based Indentation Plastometry ; day:05 ; month:07 ; year:2022 ; extent:8
Advanced engineering materials ; (05.07.2022) (gesamt 8)

Creator
Reiff-Musgrove, Rebecca
Gu, Wenchen
Campbell, Jimmy E.
Reidy, John
Bose, Animesh
Chitrapur, Aadithya
Tang, Yuanbo
Burley, Max
Clyne, Trevor William

DOI
10.1002/adem.202200642
URN
urn:nbn:de:101:1-2022070615044107547329
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:21 AM CEST

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Associated

  • Reiff-Musgrove, Rebecca
  • Gu, Wenchen
  • Campbell, Jimmy E.
  • Reidy, John
  • Bose, Animesh
  • Chitrapur, Aadithya
  • Tang, Yuanbo
  • Burley, Max
  • Clyne, Trevor William

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