An atomic force microscopy (AFM) based technique is proposed for the characterization of both indentation modulus and hardness of compliant materials. A standard AFM tip is used as an indenter to record force versus indentation curves analogous to those obtained in standard indentation tests. In order to overcome the lack of information about the apex geometry, the proposed technique requires calibration using a set of reference samples whose mechanical properties have been previously characterized by means of an independent technique, such as standard indentation. Due to the selected reference samples, the technique has been demonstrated to allow reliable measurements of indentation modulus and hardness in the range of 0.3–4.0 GPa and 15–2...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy is a dynamical AFM-based technique developed for non-destructive ch...
International audienceIn the indentation test, the hardness and the elastic modulus depend strongly ...
An atomic force microscopy (AFM) based technique is proposed for the characterization of both indent...
An atomic force microscopy AFM based technique is proposed for the characterization of both indentat...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
Examples for applications of an atomic force microscope (AFM) in indentation testing are discussed. ...
The feasibility of using a Scanning Probe Microscope to measure nanomechanical properties of thin fi...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy is a dynamical AFM-based technique developed for non-destructive ch...
International audienceIn the indentation test, the hardness and the elastic modulus depend strongly ...
An atomic force microscopy (AFM) based technique is proposed for the characterization of both indent...
An atomic force microscopy AFM based technique is proposed for the characterization of both indentat...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
We propose a nanoindentation technique based on atomic force microscopy (AFM) that allows one to ded...
Examples for applications of an atomic force microscope (AFM) in indentation testing are discussed. ...
The feasibility of using a Scanning Probe Microscope to measure nanomechanical properties of thin fi...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy AFAM is a dynamical AFM-based technique very promising for nonde...
Atomic force acoustic microscopy is a dynamical AFM-based technique developed for non-destructive ch...
International audienceIn the indentation test, the hardness and the elastic modulus depend strongly ...