International audienceLocal mechanical properties of submicron features are of particular interest due to their influence on macroscopic material performance and behaviour. This study is focused on local nanomechanical measurements, based on the latest Atomic Force Microscopy (AFM) mode, where the peak force set point is finely controlled at each pixel. After probe calibration, we evaluate the impact of spring constant of two AFM hand-crafted natural full diamond tips with steel cantilevers, used for mapping. Based on the fast capture of the cantilever deflection at each pixel and real time force curve analysis in the elastic region, AFM local measured contact moduli mappings of the silica beads ('50 GPa) incorporated in an epoxy resin matr...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
The accurate measurement of nanoscale mechanical characteristics is crucial in the emerging field of...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
International audienceLocal mechanical properties of submicron features are of particular interest d...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
The accurate measurement of nanoscale mechanical characteristics is crucial in the emerging field of...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
PeakForceTM quantitative nanomechanical mapping (QNMTM) is a new atomic force microscopy technique f...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...