Nanoporous metals have attracted attention in various research fields in the past years since their unique microstructures make them favorable for catalytic, sensory or microelectronic applications. Moreover, the refinement of the ligaments down to the nanoscale leads to an exceptionally high strength. To guarantee a smooth implementation of nanoporous metals into modern devices their thermo-mechanical behavior must be properly understood. Within this study the mechanical flow properties of nanoporous Au were investigated at elevated temperatures up to 300 °C. In contrast to the conventional synthesis by dealloying of AuAg precursors, the present foam was fabricated via severe plastic deformation of an AuFe nanocomposite and subsequent ...
Recent nanomechanical tests on submicron metal columns and wires have revealed a dramatic increase i...
We find that hardness of nanoporous gold (np-Au) measured by nanoindentation tends to increase with ...
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 ...
AbstractModern design and engineering of highly efficient devices and machines demand innovative mat...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
Nanoscale metallic foams display mechanical properties which make them attractive for a variety of t...
Nanoporous gold (np-Au) has been extensively studied for catalyst, sensor, actuator and other applic...
To enhance mechanical properties of solid metals, defects such as grain boundary, twin boundary, and...
Metallic foams, or nanoporous (NP) metals as it is widely referred to in literature, with ligament s...
The present work focuses on the development of a theoretical model aimed at relating the mechanical ...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
Nanoporous gold (np-Au) is a kind of metallic foam that has nanoscale ligaments and pores. Based on ...
Nanoporous gold (np-Au) made by dealloying is composed of a bicontinuous network of ligaments (solid...
Chemical dealloying was used to fabricate nanoporous Au samples with fine ligaments. The samples wer...
Recent nanomechanical tests on submicron metal columns and wires have revealed a dramatic increase i...
We find that hardness of nanoporous gold (np-Au) measured by nanoindentation tends to increase with ...
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 ...
AbstractModern design and engineering of highly efficient devices and machines demand innovative mat...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
Nanoscale metallic foams display mechanical properties which make them attractive for a variety of t...
Nanoporous gold (np-Au) has been extensively studied for catalyst, sensor, actuator and other applic...
To enhance mechanical properties of solid metals, defects such as grain boundary, twin boundary, and...
Metallic foams, or nanoporous (NP) metals as it is widely referred to in literature, with ligament s...
The present work focuses on the development of a theoretical model aimed at relating the mechanical ...
Modern design and engineering of highly efficient devices and machines demand innovative materials t...
Nanoporous gold (np-Au) is a kind of metallic foam that has nanoscale ligaments and pores. Based on ...
Nanoporous gold (np-Au) made by dealloying is composed of a bicontinuous network of ligaments (solid...
Chemical dealloying was used to fabricate nanoporous Au samples with fine ligaments. The samples wer...
Recent nanomechanical tests on submicron metal columns and wires have revealed a dramatic increase i...
We find that hardness of nanoporous gold (np-Au) measured by nanoindentation tends to increase with ...
Nanoporous gold (np-Au) made by dealloying is composed of a bicontinuous network of ligaments (solid...