International audienceA new technique, High-Temperature Scanning Indentation (HTSI), is proposed to investigate metallurgical evolution occurring during anisothermal heat treatments. This technique is based on the use of high-speed nanohardness measurements carried out during linear thermal ramping of the system with appropriate settings. A specific high-speed loading procedure, based on a quarter sinus loading function, a creep segment and a three-step unloading method, permits the measurement of elastic, plastic and creep properties. The indentation cycle lasts one second to minimize thermal drift issues. This approach enables quasi-continuous measurements of elastic modulus and hardness as a function of temperature in much shorter times ...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
International audienceA new technique, High-Temperature Scanning Indentation (HTSI), is proposed to ...
The High-Temperature Scanning Indentation (HTSI) method enables the continuous monitoring of various...
International audienceThe High-Temperature Scanning Indentation (HTSI) method enables the continuous...
Thanks to recent developments in high temperature nanoindentation testing, investigation of thermall...
The efficiency of gas turbines and jet engines used for energy generation and transportation can be ...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
International audienceStatic recrystallization kinetics, at 300 °C, of a hot rolled commercial purit...
Nanoindentation measurement capabilities at elevated temperatures have developed considerably over t...
Measuring of the high temperature mechanical behaviour of materials by local testing has become a ke...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
Instrumented indentation testing is more advanced than conventional hardness testing in measuring va...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
International audienceA new technique, High-Temperature Scanning Indentation (HTSI), is proposed to ...
The High-Temperature Scanning Indentation (HTSI) method enables the continuous monitoring of various...
International audienceThe High-Temperature Scanning Indentation (HTSI) method enables the continuous...
Thanks to recent developments in high temperature nanoindentation testing, investigation of thermall...
The efficiency of gas turbines and jet engines used for energy generation and transportation can be ...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
International audienceStatic recrystallization kinetics, at 300 °C, of a hot rolled commercial purit...
Nanoindentation measurement capabilities at elevated temperatures have developed considerably over t...
Measuring of the high temperature mechanical behaviour of materials by local testing has become a ke...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
Instrumented indentation testing is more advanced than conventional hardness testing in measuring va...
One of the primary motivations for development of instrumented indentation was to measure the mechan...
The integrity of thermal barrier coating systems is strongly influenced by the mechanical properties...
Relating the creep response observed with high temperature instrumented indentation experiments to m...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...