Title of article :
Dual-indentation technique for the assessment of strength properties of cohesive-frictional materials
Author/Authors :
F.P. Ganneau، نويسنده , , G. Constantinides، نويسنده , , F.-J. Ulm، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
We propose a dual indentation technique for the assessment of the cohesion and friction angle of cohesive-frictional
materials of the Mohr–Coulomb type. The technique is based on a computational implementation of the yield design
theorems applied to conical indentation tests with different apex angles. The upper bound solutions are found to be very
close to flat indentation solutions available for cohesive-frictional materials. On this basis we derive fundamental hardness-
to-cohesion solutions in function of the friction angle and the apex angle. By studying the property of these dimensionless
relations, we show that the ratio of two hardness measurements obtained from indentation tests with different
apex angles, allows one to determine the friction angle. This dual indentation method is applied to Berkovich and Corner
Cube indenter assimilated to equivalent cones of different apex angle. The method is validated for a model material,
metallic glass, which has recently been identified as a cohesive-frictional materials. The only input to the method
are two hardness values which we obtain by microindentation on metallic glass. The outcome are values of the cohesion
and friction angle, which are found to be in excellent agreement with reported cohesion and friction angle values of
metallic glass obtained by macroscopic triaxial testing and comprehensive finite-element backanalysis of indentation
curves.
Keywords :
Indentation analysis , Yield design solution , Dual indentation technique , Cohesive-frictional materials , hardness
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures