Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica

Abstract The nanoindentation loading curves measured on fused silica were analyzed based on the theoretical relationship derived by Malzbender et al. (J Mater Res 2000, 15: 1209–1212). It was found that the ratio of the applied load to the square of the displacement, P/(h + h d)2, does not keep cons...

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Main Authors: Yunbiao Duan, Danyu Jiang, Jin Hu
Format: Article
Language:English
Published: Tsinghua University Press 2019-12-01
Series:Journal of Advanced Ceramics
Subjects:
Online Access:https://doi.org/10.1007/s40145-019-0355-z
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author Yunbiao Duan
Danyu Jiang
Jin Hu
author_facet Yunbiao Duan
Danyu Jiang
Jin Hu
author_sort Yunbiao Duan
collection DOAJ
description Abstract The nanoindentation loading curves measured on fused silica were analyzed based on the theoretical relationship derived by Malzbender et al. (J Mater Res 2000, 15: 1209–1212). It was found that the ratio of the applied load to the square of the displacement, P/(h + h d)2, does not keep constant during loading segment of the nanoindentation test. Considering the existence of the indentation size effect, an empirical method for the determination of the load-independent hardness by analyzing the nanoindentation loading curves was proposed.
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spelling doaj.art-6769878ac7274bfca464faafcda8e5a92023-08-02T03:37:55ZengTsinghua University PressJournal of Advanced Ceramics2226-41082227-85082019-12-018458358610.1007/s40145-019-0355-zDetermination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silicaYunbiao Duan0Danyu Jiang1Jin Hu2Faculty of Materials Science and Engineering, Kunming University of Science and TechnologyState Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of CeramicsFaculty of Materials Science and Engineering, Kunming University of Science and TechnologyAbstract The nanoindentation loading curves measured on fused silica were analyzed based on the theoretical relationship derived by Malzbender et al. (J Mater Res 2000, 15: 1209–1212). It was found that the ratio of the applied load to the square of the displacement, P/(h + h d)2, does not keep constant during loading segment of the nanoindentation test. Considering the existence of the indentation size effect, an empirical method for the determination of the load-independent hardness by analyzing the nanoindentation loading curves was proposed.https://doi.org/10.1007/s40145-019-0355-znanoindentationloading curveindentation size effect (ISE)fused silica
spellingShingle Yunbiao Duan
Danyu Jiang
Jin Hu
Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
Journal of Advanced Ceramics
nanoindentation
loading curve
indentation size effect (ISE)
fused silica
title Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
title_full Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
title_fullStr Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
title_full_unstemmed Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
title_short Determination of the load-independent hardness by analyzing the nanoindentation loading curves: A case study on fused silica
title_sort determination of the load independent hardness by analyzing the nanoindentation loading curves a case study on fused silica
topic nanoindentation
loading curve
indentation size effect (ISE)
fused silica
url https://doi.org/10.1007/s40145-019-0355-z
work_keys_str_mv AT yunbiaoduan determinationoftheloadindependenthardnessbyanalyzingthenanoindentationloadingcurvesacasestudyonfusedsilica
AT danyujiang determinationoftheloadindependenthardnessbyanalyzingthenanoindentationloadingcurvesacasestudyonfusedsilica
AT jinhu determinationoftheloadindependenthardnessbyanalyzingthenanoindentationloadingcurvesacasestudyonfusedsilica