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The emphasis is on spherical and flat punch probes.
An approximate analytical solution is found with a certain iterative method for a flat punch.
A nanoindentation-based flat punch method was used to determine the stress-strain behavior of particles in compression.
Solutions are obtained for both the cylindrical indenter and the flat punch with rounded edges.
Thirdly, the voluntary application of a tilting moment on the flat punch during an experiment gives rise to potential capabilities of the flat punch for the determination of the material microstructural characteristic lengths.
A flat punch with rounded corners and a half-plane are regarded as an indenter and a substrate, respectively.
Similar(8)
Recently, a nanoindentation-based flat-punch experimental technique was developed to characterize the mechanical properties of isolated micron-sized polymeric particles [19, 20].
The MD models are used to examine the compressive flat-punch behavior of PE nanoparticles with linear, branched, and cross-linked chains.
In this study, we perform comparative two-scale and full-scale analyses of elastoplastic regular hexagonal honeycomb blocks subjected to in-plane flat-punch indentation.
In this study, classical molecular dynamics techniques are employed to predict the effect of chain architecture on the compression behavior of nanoscale polyethylene particles subjected to simulated flat-punch testing.
For the flat-punch MD simulations, rigid plates were placed at the top and bottom of the prepared PE particle model with a gap of 5 Å, as depicted in Figure 4a.
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