Nanoindenters - Nanohardness tester
Today's nanoindenters offer more than nanoindentation. They allow further nano- and micro-tribological measurement methods like for example scratch tests and are universal platforms for complex, mechanical material characterizations.
Nanoindentation, or depth-sensing hardness testing, is a method to mechanically characterize the micro structures of materials and to analyze thin films.
The ...
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Today's nanoindenters offer more than nanoindentation. They allow further nano- and micro-tribological measurement methods like for example scratch tests and are universal platforms for complex, mechanical material characterizations.
Nanoindentation, or depth-sensing hardness testing, is a method to mechanically characterize the micro structures of materials and to analyze thin films.
The Nanohardness Tester NanoTest offers other unique tribological measurement options: a patented nano-impact test which works like a nano-mechanical charpy test, nano fretting tests for high-cycle wear tests, and more.
NanoTest is the unparalleled testing platform for the nano and micro mechanical characterization of all sorts of materials: From metals and alloys over ceramics and polymers all the way to thin and ultra-thin films.
Properties that can be measured:
- Nanohardness
- Elastic modulus
- 3D-Mapping of mechanical properties
- Creep, elastic recovery and plasticity index
- Dynamic nanohardness
- Coefficient of friction and adhesion
- High and low cycle fatigue
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Instrumented indentation tests, commonly known as nanoindentation, allow the precise application of a defined force of an indenter tip while simultaneously measuring the indentation depth into the ...
The nanoindenter NanoTest Vantage is a comprehensive nanomechanical testing platform which provides a variety of different techniques such as nanoindentation/nanohardness testing as well as ...
The nanoindenter NanoText Xtreme is the first commercially available vacuum-nanoindenter with a unique temperature range, intended to measure at the forefront of high temperature nanoindentation for ...