Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials

The determination of the performance of materials requires the characterization of materials at scales: macro, micro and nanoscale. Among the most common experimental methods one can find the instrumented indentation test for determining the contact stiffness and contact depth and analyzing the char...

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Main Authors: L. Aminallah, S. Habibi
Format: Article
Language:English
Published: D. G. Pylarinos 2016-08-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:https://etasr.com/index.php/ETASR/article/view/692
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spelling doaj-8f89910560d943b797ec91268a8ed7f02020-12-02T13:46:03ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362016-08-0164Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of MaterialsL. Aminallah0S. Habibi1Department of Mechanics, Mustapha Stambouli University, Faculty of Science and Technology, AlgeriaDepartment of Mechanics, Mustapha Stambouli University, Faculty of Science and Technology, AlgeriaThe determination of the performance of materials requires the characterization of materials at scales: macro, micro and nanoscale. Among the most common experimental methods one can find the instrumented indentation test for determining the contact stiffness and contact depth and analyzing the characteristic curve by nanoindentation load on the penetration of the indentor. Through statistical processing of the experimental results, the rigidity of contact on the contact depth is investigated, depending on the indentation load, for bronze, brass and copper. A mathematical model is adopted to describe the polynomial regression by the method of least squares growth rigidity with one or more geometric parameters representative of the size of the footprint. This study allows us to identify factors that influence the rigidity of the materials examined and the sensitivity of the used indenters. https://etasr.com/index.php/ETASR/article/view/692nanoindentationmodelingpower lawcontact stiffnesscontact depth
collection DOAJ
language English
format Article
sources DOAJ
author L. Aminallah
S. Habibi
spellingShingle L. Aminallah
S. Habibi
Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
Engineering, Technology & Applied Science Research
nanoindentation
modeling
power law
contact stiffness
contact depth
author_facet L. Aminallah
S. Habibi
author_sort L. Aminallah
title Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
title_short Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
title_full Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
title_fullStr Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
title_full_unstemmed Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials
title_sort exploitation of nanoindentation and statistical tools to investigate the behavior of materials
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 2241-4487
1792-8036
publishDate 2016-08-01
description The determination of the performance of materials requires the characterization of materials at scales: macro, micro and nanoscale. Among the most common experimental methods one can find the instrumented indentation test for determining the contact stiffness and contact depth and analyzing the characteristic curve by nanoindentation load on the penetration of the indentor. Through statistical processing of the experimental results, the rigidity of contact on the contact depth is investigated, depending on the indentation load, for bronze, brass and copper. A mathematical model is adopted to describe the polynomial regression by the method of least squares growth rigidity with one or more geometric parameters representative of the size of the footprint. This study allows us to identify factors that influence the rigidity of the materials examined and the sensitivity of the used indenters.
topic nanoindentation
modeling
power law
contact stiffness
contact depth
url https://etasr.com/index.php/ETASR/article/view/692
work_keys_str_mv AT laminallah exploitationofnanoindentationandstatisticaltoolstoinvestigatethebehaviorofmaterials
AT shabibi exploitationofnanoindentationandstatisticaltoolstoinvestigatethebehaviorofmaterials
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