High temperature nanoindentation is an emerging field with significant advances in instrumentation, calibration, and experimental protocols reported in the past couple of years. Performing stable and accurate measurements at elevated temperatures holds the key for small scale testing of materials at service temperatures. We report a novel high temperature vacuum nanoindentation system, High Temperature Ultra Nanoindentation Tester (UNHT 3 HTV), utilizing active surface referencing and non-contact heating capable of performing measurements up to 800 °C. This nanoindenter is based on the proven Ultra Nano-Hardness Tester (UNHT) design that uses two indentation axes: one for indentation and another for surface referencing. Differential displac...
Measuring of the high temperature mechanical behaviour of materials by local testing has become a ke...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...
Nanoindentation measurement capabilities at elevated temperatures have developed considerably over t...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
An instrument capable of performing nanoindentation at temperatures up to 500 °C in inert atmosphere...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
In this work a new ultra-high temperature (UHT) nanoindentation system for testing at up to 1100 °C ...
Nanoindentation has become an indispensable method for measuring the mechanical properties of small...
The capability for high temperature nanoindentation measurements to 950 ºC in high vacuum has been d...
Despite active development over the past 15 years, contemporary nanoindentation methods still suffer...
A finite element model is developed to investigate technical issues associated with hot nanoindentat...
Instrumented indentation testing is more advanced than conventional hardness testing in measuring va...
International audienceA new technique, High-Temperature Scanning Indentation (HTSI), is proposed to ...
Measuring of the high temperature mechanical behaviour of materials by local testing has become a ke...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...
Nanoindentation measurement capabilities at elevated temperatures have developed considerably over t...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
An instrument capable of performing nanoindentation at temperatures up to 500 °C in inert atmosphere...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
In this work a new ultra-high temperature (UHT) nanoindentation system for testing at up to 1100 °C ...
Nanoindentation has become an indispensable method for measuring the mechanical properties of small...
The capability for high temperature nanoindentation measurements to 950 ºC in high vacuum has been d...
Despite active development over the past 15 years, contemporary nanoindentation methods still suffer...
A finite element model is developed to investigate technical issues associated with hot nanoindentat...
Instrumented indentation testing is more advanced than conventional hardness testing in measuring va...
International audienceA new technique, High-Temperature Scanning Indentation (HTSI), is proposed to ...
Measuring of the high temperature mechanical behaviour of materials by local testing has become a ke...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...