The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation

The spherical nanoindentation macroscopic stress–macroscopic strain relationship of hierarchical honeycomb nanoporous material is defined by combining the spherical nanoindentation simulation and the uniaxial compression simulation. At the same time, the macroscopic elastic modulus and the macroscop...

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Main Authors: Fue Han, Hongwei Zhang, Jingnan Zhang
Format: Article
Language:English
Published: MDPI AG 2025-04-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/15/7/544
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author Fue Han
Hongwei Zhang
Jingnan Zhang
author_facet Fue Han
Hongwei Zhang
Jingnan Zhang
author_sort Fue Han
collection DOAJ
description The spherical nanoindentation macroscopic stress–macroscopic strain relationship of hierarchical honeycomb nanoporous material is defined by combining the spherical nanoindentation simulation and the uniaxial compression simulation. At the same time, the macroscopic elastic modulus and the macroscopic yielding stress of the hierarchical material are obtained from the curves through different methods. The results show that the macroscopic stress–macroscopic strain curve of the hierarchical nanoporous materials nanoindented to a depth of 30 nm is basically consistent with the curve of the hierarchical nanoporous materials when uniaxially compressed down to 25 nm. Through the nanoindentation and uniaxial compression, the macroscopic elastic moduli and the macroscopic yielding stresses are also close to the scale formula.
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series Nanomaterials
spelling doaj-art-2d0c2c6ca0714175987f6c2c734b3e412025-08-20T03:03:24ZengMDPI AGNanomaterials2079-49912025-04-0115754410.3390/nano15070544The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation SimulationFue Han0Hongwei Zhang1Jingnan Zhang2School of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaThe spherical nanoindentation macroscopic stress–macroscopic strain relationship of hierarchical honeycomb nanoporous material is defined by combining the spherical nanoindentation simulation and the uniaxial compression simulation. At the same time, the macroscopic elastic modulus and the macroscopic yielding stress of the hierarchical material are obtained from the curves through different methods. The results show that the macroscopic stress–macroscopic strain curve of the hierarchical nanoporous materials nanoindented to a depth of 30 nm is basically consistent with the curve of the hierarchical nanoporous materials when uniaxially compressed down to 25 nm. Through the nanoindentation and uniaxial compression, the macroscopic elastic moduli and the macroscopic yielding stresses are also close to the scale formula.https://www.mdpi.com/2079-4991/15/7/544macroscopic stress–macroscopic strain relationshiphierarchical honeycomb nanoporous materialspherical nanoindentationuniaxial compression
spellingShingle Fue Han
Hongwei Zhang
Jingnan Zhang
The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
Nanomaterials
macroscopic stress–macroscopic strain relationship
hierarchical honeycomb nanoporous material
spherical nanoindentation
uniaxial compression
title The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
title_full The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
title_fullStr The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
title_full_unstemmed The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
title_short The Macroscopic Stress–Macroscopic Strain Relationship of the Hierarchical Honeycomb Nanoporous Materials by the Spherical Nanoindentation Simulation
title_sort macroscopic stress macroscopic strain relationship of the hierarchical honeycomb nanoporous materials by the spherical nanoindentation simulation
topic macroscopic stress–macroscopic strain relationship
hierarchical honeycomb nanoporous material
spherical nanoindentation
uniaxial compression
url https://www.mdpi.com/2079-4991/15/7/544
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