Combinatorial Investigation of the Ni-Ta System via Correlated High-Speed Nanoindentation and EDX Mapping.

Small Methods

ETH Zurich, Department of Materials, Laboratory for Nanometallurgy, 8093, Zürich, Switzerland.

Published: February 2022

AI Article Synopsis

  • - The study uses a combined approach of high-speed nanoindentation and energy-dispersive spectroscopy to examine the Ni-Ta alloy system, identifying all seven phases present and analyzing their mechanical properties and composition ranges.
  • - The results matched predictions from advanced computational models, especially for most phases, except for the NiTa phase, indicating room for further exploration.
  • - The researchers developed a straightforward correlation method for overlaying data, simplifying the analysis and segmentation of complex data without needing complicated statistical techniques, highlighting its potential for future research on intricate microstructures.

Article Abstract

Correlated high-speed nanoindentation and energy-dispersive spectroscopy are applied in a combinatorial investigation of the Ni-Ta system. All seven phases in the system are clearly resolved in the resulting maps, and the mechanical properties and composition ranges for each phase are determined. Good agreement with ab initio calculations is generally observed with some exceptions, most notably NiTa . This is achieved using a simple correlation method utilizing directly overlaid data matrices to allow compositional labeling of mechanical data. This allows easy data segmentation without requiring complicated statistical deconvolution methods. Without this correlative method, phase deconvolution of the Ni-Ta system would be challenging due to several phases possessing adjacent compositions and mechanical properties. This demonstrates the potential of this new correlative approach for future investigations, particularly those involving complex microstructures and/or compositional variation.

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Source
http://dx.doi.org/10.1002/smtd.202101084DOI Listing

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