Cargando…

An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding

Subsurface damage of fused silica optics is one of the major factors restricting the performance of optical systems. The densification-affected deformation and fracture in fused silica under a sliding contact are investigated in this study, via three-dimensional finite element analysis (FEA). The fi...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Changsheng, Ma, Yushan, Sun, Lin, Zhang, Liangchi, Wu, Chuhan, Ding, Jianjun, Duan, Duanzhi, Wang, Xuepeng, Chang, Zhandong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317369/
https://www.ncbi.nlm.nih.gov/pubmed/35888923
http://dx.doi.org/10.3390/mi13071106
_version_ 1784755038592172032
author Li, Changsheng
Ma, Yushan
Sun, Lin
Zhang, Liangchi
Wu, Chuhan
Ding, Jianjun
Duan, Duanzhi
Wang, Xuepeng
Chang, Zhandong
author_facet Li, Changsheng
Ma, Yushan
Sun, Lin
Zhang, Liangchi
Wu, Chuhan
Ding, Jianjun
Duan, Duanzhi
Wang, Xuepeng
Chang, Zhandong
author_sort Li, Changsheng
collection PubMed
description Subsurface damage of fused silica optics is one of the major factors restricting the performance of optical systems. The densification-affected deformation and fracture in fused silica under a sliding contact are investigated in this study, via three-dimensional finite element analysis (FEA). The finite element models of scratching with 70.3° conical and Berkovich indenters are established. A refined elliptical constitutive model is used to consider the influence of densification. The finite element models are experimentally verified by elastic recovery, and theoretically verified by hardness ratio. Results of densification and plastic deformation distributions indicate that the accuracy of existent sliding stress field models may be improved if the spherical/cylindrical yield region is replaced by an ellipsoid/cylindroid, and the embedding of the yield region is considered. The initiation sequence, and the locations and stages of radial, median, and lateral cracks are discussed by analyzing the predicted sliding stress fields. Median and radial cracks along the sliding direction tend to be the first cracks that emerge in the sliding and unloading stages, respectively. They coalesce to form a big median–radial crack that penetrates through the entire yield region. The fracture behavior of fused silica revealed in this study is essential in the low-damage machining of fused silica optics.
format Online
Article
Text
id pubmed-9317369
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93173692022-07-27 An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding Li, Changsheng Ma, Yushan Sun, Lin Zhang, Liangchi Wu, Chuhan Ding, Jianjun Duan, Duanzhi Wang, Xuepeng Chang, Zhandong Micromachines (Basel) Article Subsurface damage of fused silica optics is one of the major factors restricting the performance of optical systems. The densification-affected deformation and fracture in fused silica under a sliding contact are investigated in this study, via three-dimensional finite element analysis (FEA). The finite element models of scratching with 70.3° conical and Berkovich indenters are established. A refined elliptical constitutive model is used to consider the influence of densification. The finite element models are experimentally verified by elastic recovery, and theoretically verified by hardness ratio. Results of densification and plastic deformation distributions indicate that the accuracy of existent sliding stress field models may be improved if the spherical/cylindrical yield region is replaced by an ellipsoid/cylindroid, and the embedding of the yield region is considered. The initiation sequence, and the locations and stages of radial, median, and lateral cracks are discussed by analyzing the predicted sliding stress fields. Median and radial cracks along the sliding direction tend to be the first cracks that emerge in the sliding and unloading stages, respectively. They coalesce to form a big median–radial crack that penetrates through the entire yield region. The fracture behavior of fused silica revealed in this study is essential in the low-damage machining of fused silica optics. MDPI 2022-07-14 /pmc/articles/PMC9317369/ /pubmed/35888923 http://dx.doi.org/10.3390/mi13071106 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Changsheng
Ma, Yushan
Sun, Lin
Zhang, Liangchi
Wu, Chuhan
Ding, Jianjun
Duan, Duanzhi
Wang, Xuepeng
Chang, Zhandong
An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title_full An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title_fullStr An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title_full_unstemmed An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title_short An Investigation into the Densification-Affected Deformation and Fracture in Fused Silica under Contact Sliding
title_sort investigation into the densification-affected deformation and fracture in fused silica under contact sliding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317369/
https://www.ncbi.nlm.nih.gov/pubmed/35888923
http://dx.doi.org/10.3390/mi13071106
work_keys_str_mv AT lichangsheng aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT mayushan aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT sunlin aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT zhangliangchi aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT wuchuhan aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT dingjianjun aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT duanduanzhi aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT wangxuepeng aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT changzhandong aninvestigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT lichangsheng investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT mayushan investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT sunlin investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT zhangliangchi investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT wuchuhan investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT dingjianjun investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT duanduanzhi investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT wangxuepeng investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding
AT changzhandong investigationintothedensificationaffecteddeformationandfractureinfusedsilicaundercontactsliding