The physical foundation of F N = kh 3/2 for conical/pyramidal indentation loading curves
Author:
Affiliation:
1. University of Oldenburg, Faculty 5EdewechtGermany
Publisher
Wiley
Subject
Instrumentation,Atomic and Molecular Physics, and Optics
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/sca.21223
Reference14 articles.
1. The exponent 3/2 at pyramidal nanoindentations
2. Reactive milling with metals for environmentally benign sustainable production
3. Penetration resistance: A new approach to the energetics of indentations
4. Activation energy of the low-load NaCl transition from nanoindentation loading curves
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1. Unexpected Twinning and Phase-Transition of the Indentation Standards, Their Transition Energies, and Scientific Dichotomy;Journal of Applied Mathematics and Physics;2024
2. Phase-Transitions at High, Very High, and Very Low Temperatures upon Nano-Indentations: Onset Forces and Transition Energies;Advances in Materials Physics and Chemistry;2023
3. Exciting News from Indentations onto Silicon, Copper, and Tungsten;Journal of Applied Mathematics and Physics;2023
4. The Non-Equivalence of Pyramids and Their Pseudo-Cones: Important New Insights;Journal of Applied Mathematics and Physics;2022
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