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Mechanical properties of bulk single crystalline nanoporous gold investigated by millimetre-scale tension and compression testing

  • Nicolas J. Briot
  • , Tobias Kennerknecht
  • , Christoph Eberl
  • , T. John Balk

Producción científica: Articlerevisión exhaustiva

108 Citas (Scopus)

Resumen

In this work, the mechanical behaviour of millimetre-scale, bulk single crystalline, nanoporous gold at room temperature is reported for the first time. Tension and compression tests were performed with a custom-designed test system that accommodates small-scale samples. The absence of grain boundaries in the specimens allowed measurement of the inherent strength of millimetre-scale nanoporous gold in tension. The elastic modulus and strength values in tension and compression were found to be significantly lower than values measured with nanoindentation-based techniques and previously reported in the literature, but close to those reported for millimetre-scale polycrystalline samples tested using traditional compression techniques. Fracture toughness was found to be very low, in agreement with the macroscopic brittleness of nanoporous gold, but this is due to the localization of deformation to a narrow zone of ligaments, which individually exhibit significant plasticity and necking.

Idioma originalEnglish
Páginas (desde-hasta)847-866
Número de páginas20
PublicaciónPhilosophical Magazine
Volumen94
N.º8
DOI
EstadoPublished - mar 14 2014

Nota bibliográfica

Funding Information:
This material is based upon work supported by the National Science Foundation [grant number DMR-0847693]. C.E. and T.K. would also like to thank the German Science Foundation (DFG) [grant number SFB499/N01] and the Fraunhofer Society (Fraunhofer Gesellschaft, through Attract Microreliability at the IWM) for their funding.

Financiación

This material is based upon work supported by the National Science Foundation [grant number DMR-0847693]. C.E. and T.K. would also like to thank the German Science Foundation (DFG) [grant number SFB499/N01] and the Fraunhofer Society (Fraunhofer Gesellschaft, through Attract Microreliability at the IWM) for their funding.

FinanciadoresNúmero del financiador
Fraunhofer-Gesellschaft
National Science Foundation (NSF)0847693, DMR-0847693
Deutsche ForschungsgemeinschaftSFB499/N01
Fraunhofer-Gesellschaft

    ASJC Scopus subject areas

    • Condensed Matter Physics

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