A nanoindentation study of attenuation in geological materials

Fuente: arXiv
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Main Authors: Badt, Nir Z., Maor, Ron, Goldsby, David L.
Format: Preprint
Published: 2024
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author Badt, Nir Z.
Maor, Ron
Goldsby, David L.
author_facet Badt, Nir Z.
Maor, Ron
Goldsby, David L.
contents Viscoelastic behavior in geological materials controls a wide range of geophysical phenomena, such as mantle convection. We present a new method for measuring attenuation in single crystals of minerals and in reference materials over a frequency range of 1-1e-4 Hz via nanoindentation. In the experiments, we calculate the phase lag between a sinusoidal load applied to the tip of the nanoindenter and its displacement into and out of the tested sample, which provides a measure of the inverse quality factor 1/Q (i.e., attenuation) of the sample. Experiments were conducted on polymethyl methacrylate (PMMA), indium, halite, olivine and quartz. Attenuation spectrum from our tests on PMMA and indium are in excellent agreement with reported values from past studies. We quantified the natural damping of the nanoindenter and show that it becomes comparable to that of the samples at frequencies greater than 0.1 Hz, but is much lower at lower frequencies.
format Preprint
id arxiv_https___arxiv_org_abs_2406_14707
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A nanoindentation study of attenuation in geological materials
Badt, Nir Z.
Maor, Ron
Goldsby, David L.
Geophysics
Viscoelastic behavior in geological materials controls a wide range of geophysical phenomena, such as mantle convection. We present a new method for measuring attenuation in single crystals of minerals and in reference materials over a frequency range of 1-1e-4 Hz via nanoindentation. In the experiments, we calculate the phase lag between a sinusoidal load applied to the tip of the nanoindenter and its displacement into and out of the tested sample, which provides a measure of the inverse quality factor 1/Q (i.e., attenuation) of the sample. Experiments were conducted on polymethyl methacrylate (PMMA), indium, halite, olivine and quartz. Attenuation spectrum from our tests on PMMA and indium are in excellent agreement with reported values from past studies. We quantified the natural damping of the nanoindenter and show that it becomes comparable to that of the samples at frequencies greater than 0.1 Hz, but is much lower at lower frequencies.
title A nanoindentation study of attenuation in geological materials
topic Geophysics
url https://arxiv.org/abs/2406.14707