We investigated the analytic relation between hardness and compressive yield stress using an expanding cavity model (ECM) for nanoporous gold (np-Au). We prepared three np-Au samples with ligament sizes 30.61, 59.36 and 116.33 nm by free-corrosion dealloying and post heat treatment. The indentation contact morphology was examined to estimate the hardness accurately from the nanoindentation load-depth curve. Unlike conventional dense metals, the deformation was confined to the projected contact area, and the center of the residual impression was dominated by densification. The projected contact area estimated by the Oliver-Pharr method was overestimated, so that a new contact area function was proposed that considered the indentation contact...
Chemical dealloying was used to fabricate nanoporous Au samples with fine ligaments. The samples wer...
The strength of nanoporous gold (npg) has been shown to be strongly dependent on the length-scale of...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
We find that hardness of nanoporous gold (np-Au) measured by nanoindentation tends to increase with ...
We find that the indentation size effect (ISE) occurs during spherical indentation on nanoporous gol...
Nanoporous gold (np-Au) is a kind of metallic foam that has nanoscale ligaments and pores. Based on ...
To enhance mechanical properties of solid metals, defects such as grain boundary, twin boundary, and...
Mechanical behavior of nanoporous gold (np-Au) has been extensively studied by nanoindentation test,...
Ligament-size-dependent strength in np-Au, strength increases with decreasing ligament size like as ...
We report the results of computational tensile and compressive tests for model bi-continuous nanop...
Nanoporous (NP) metals with ligament sizes up to a few tens of nm show exceptional mechanical proper...
Nanoporous gold (np-Au) made by dealloying is composed of a bicontinuous network of ligaments (solid...
Nanoporous metals have attracted attention in various research fields in the past years since their ...
Nanoporous (np) materials are a class of high strength and low density materials that have unique me...
Significant attention in the literature is directed toward the development of scaling relations that...
Chemical dealloying was used to fabricate nanoporous Au samples with fine ligaments. The samples wer...
The strength of nanoporous gold (npg) has been shown to be strongly dependent on the length-scale of...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
We find that hardness of nanoporous gold (np-Au) measured by nanoindentation tends to increase with ...
We find that the indentation size effect (ISE) occurs during spherical indentation on nanoporous gol...
Nanoporous gold (np-Au) is a kind of metallic foam that has nanoscale ligaments and pores. Based on ...
To enhance mechanical properties of solid metals, defects such as grain boundary, twin boundary, and...
Mechanical behavior of nanoporous gold (np-Au) has been extensively studied by nanoindentation test,...
Ligament-size-dependent strength in np-Au, strength increases with decreasing ligament size like as ...
We report the results of computational tensile and compressive tests for model bi-continuous nanop...
Nanoporous (NP) metals with ligament sizes up to a few tens of nm show exceptional mechanical proper...
Nanoporous gold (np-Au) made by dealloying is composed of a bicontinuous network of ligaments (solid...
Nanoporous metals have attracted attention in various research fields in the past years since their ...
Nanoporous (np) materials are a class of high strength and low density materials that have unique me...
Significant attention in the literature is directed toward the development of scaling relations that...
Chemical dealloying was used to fabricate nanoporous Au samples with fine ligaments. The samples wer...
The strength of nanoporous gold (npg) has been shown to be strongly dependent on the length-scale of...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...