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[期刊论文] 作者:Gerd Kaupp, 来源:理论数学进展(英文) 年份:2020
The original online version of this article (Gerd Kaupp 2020) Valid Geometric Solutions for Indentations with Algebraic Calculations, (Volume, 10, 322-336, http...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2020
The Berkovich indentation loading curves of the initially only extraterrestrial available polymorphs of SiO2 are physically analyzed by applying the now well es...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2020
Spherical indentations that rely on original date are analyzed with the physically correct mathematical formula and its integration that take into account the r...
[期刊论文] 作者:Gerd Kaupp, 来源:理论数学进展(英文) 年份:2020
This paper analyzes the force vs depth loading curves of conical, pyramidal, wedged and for spherical indentations on a strict mathematical basis by explicit us...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2019
The purpose of this paper is the physical deduction of the loading curves for spherical and flat punch indentations, in particular as the parabola assumption fo...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2019
Non-iterative analysis of indentation results allows for the detection of phase transitions under load and their transition energy. The closed algebraic equatio...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2019
-The ISO standard 14577 is challenged for its violation of the energy law, its wrong relation of normal force FN with impression depth h, and for its iterative...
[期刊论文] 作者:Gerd Kaupp, 来源:材料物理与化学进展(英文) 年份:2021
The Nanoindentation is a precise technique for the elucidation of mechanical properties. But such elucidation requires physically based interpretation of the lo...
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