O.F. Schirmer, W. Berlinger, et al.
Solid State Communications
A conventional microhardness tester has been instrumented with a piezoelectric load cell and capacitance displacement gages to measure load and displacement during indentation. As in other recently-developed load and displacing sensing indentation instruments, the new device can be used to measure a variety of mechanical properties, but has the advantage of being relatively inexpensive to assemble since many of its components are standard equipment. Tests were performed on soda-lime glass and an aluminum alloy, demonstrating the diversity of material elastic-plastic responses under indentation, particularly in the unloading cycle. The data suggest that models of elastic unloading based on invariant indenter-surface contact area may not be general, and may lead to underestimates of hardness and modulus. © 1990, Materials Research Society. All rights reserved.
O.F. Schirmer, W. Berlinger, et al.
Solid State Communications
R.J. Gambino, N.R. Stemple, et al.
Journal of Physics and Chemistry of Solids
Shu-Jen Han, Dharmendar Reddy, et al.
ACS Nano
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APS Global Physics Summit 2025