2021
DOI: 10.4236/ampc.2021.112005
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Undue Hardness/Modulus Ratio Claims instead of Physical Penetration Resistance and Applications with Mollusk Shells

Abstract: The Nanoindentation is a precise technique for the elucidation of mechanical properties. But such elucidation requires physically based interpretation of the loading curves that is widely still not practiced. The use of indentation hardness H and indentation modulus E r is unphysical and cannot detect the most important phase-transitions under load that very often occur. The claim that H versus E plots relate linearly for all different materials is neither empirically found nor correctly deduced. It is most da… Show more

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Cited by 1 publication
(2 citation statements)
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“…non-linear force application). The kink is sharp, but there might be some short soft transitions in buffering biological materials [7] or at too rapid penetration. The bearing analysis routine [8] [9] is used for the measurement of depression and pile-up volumes with respect to the plane through the respective edges and corners.…”
Section: Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…non-linear force application). The kink is sharp, but there might be some short soft transitions in buffering biological materials [7] or at too rapid penetration. The bearing analysis routine [8] [9] is used for the measurement of depression and pile-up volumes with respect to the plane through the respective edges and corners.…”
Section: Methodsmentioning
confidence: 99%
“…The latter is subtracted from full W applied to obtain the transition work W transition up to h 2 [1] [6] (h 2 is freely chosen; perhaps at the depth where another kink deviation starts). The transition-energy is calculated according to (7). Its normalization is now by division through the depth difference (8) (no longer through the force difference) for better comparison of different indenter tips.…”
Section: Iso and Astm Hardness And Modulusmentioning
confidence: 99%