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Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling

The micro-defects on KH(2)PO(4) (KDP) optic surfaces are mainly repaired by the micro-milling technique, while it is very easy to introduce brittle cracks on repaired surfaces, as KDP is soft and brittle. To estimate machined surface morphologies, the conventional method is surface roughness, but it...

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Autores principales: Liu, Qi, Cheng, Jian, Liao, Zhirong, Liu, Mingyu, Chen, Mingjun, Zhao, Linjie, Lei, Hongqin, Ding, Wenyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003917/
https://www.ncbi.nlm.nih.gov/pubmed/36902898
http://dx.doi.org/10.3390/ma16051782
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author Liu, Qi
Cheng, Jian
Liao, Zhirong
Liu, Mingyu
Chen, Mingjun
Zhao, Linjie
Lei, Hongqin
Ding, Wenyu
author_facet Liu, Qi
Cheng, Jian
Liao, Zhirong
Liu, Mingyu
Chen, Mingjun
Zhao, Linjie
Lei, Hongqin
Ding, Wenyu
author_sort Liu, Qi
collection PubMed
description The micro-defects on KH(2)PO(4) (KDP) optic surfaces are mainly repaired by the micro-milling technique, while it is very easy to introduce brittle cracks on repaired surfaces, as KDP is soft and brittle. To estimate machined surface morphologies, the conventional method is surface roughness, but it fails to distinguish ductile-regime machining from brittle-regime machining directly. To achieve this objective, it is of great significance to explore new evaluation methods to further characterize machined surface morphologies. In this study, the fractal dimension (F(D)) was introduced to characterize the surface morphologies of soft-brittle KDP crystals machined by micro bell-end milling. The 3D and 2D fractal dimensions of the machined surfaces and their typical cross-sectional contours have been calculated, respectively, based on Box-counting methods, and were further discussed comprehensively by combining the analysis of surface quality and textures. The 3D F(D) is identified to have a negative correlation with surface roughness (S(a) and S(q)), meaning the worse the surface quality the smaller the F(D). The circumferential 2D F(D) could quantitively characterize the anisotropy of micro-milled surfaces, which could not be analyzed by surface roughness. Normally, there is obvious symmetry of 2D F(D) and anisotropy on the micro ball-end milled surfaces generated by ductile-regime machining. However, once the 2D F(D) is distributed asymmetrically and the anisotropy becomes weaker, the assessed surface contours would be occupied by brittle cracks and fractures, and corresponding machining processes will be in a brittle regime. This fractal analysis would facilitate the accurate and efficient evaluation of the repaired KDP optics by micro-milling.
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spelling pubmed-100039172023-03-11 Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling Liu, Qi Cheng, Jian Liao, Zhirong Liu, Mingyu Chen, Mingjun Zhao, Linjie Lei, Hongqin Ding, Wenyu Materials (Basel) Article The micro-defects on KH(2)PO(4) (KDP) optic surfaces are mainly repaired by the micro-milling technique, while it is very easy to introduce brittle cracks on repaired surfaces, as KDP is soft and brittle. To estimate machined surface morphologies, the conventional method is surface roughness, but it fails to distinguish ductile-regime machining from brittle-regime machining directly. To achieve this objective, it is of great significance to explore new evaluation methods to further characterize machined surface morphologies. In this study, the fractal dimension (F(D)) was introduced to characterize the surface morphologies of soft-brittle KDP crystals machined by micro bell-end milling. The 3D and 2D fractal dimensions of the machined surfaces and their typical cross-sectional contours have been calculated, respectively, based on Box-counting methods, and were further discussed comprehensively by combining the analysis of surface quality and textures. The 3D F(D) is identified to have a negative correlation with surface roughness (S(a) and S(q)), meaning the worse the surface quality the smaller the F(D). The circumferential 2D F(D) could quantitively characterize the anisotropy of micro-milled surfaces, which could not be analyzed by surface roughness. Normally, there is obvious symmetry of 2D F(D) and anisotropy on the micro ball-end milled surfaces generated by ductile-regime machining. However, once the 2D F(D) is distributed asymmetrically and the anisotropy becomes weaker, the assessed surface contours would be occupied by brittle cracks and fractures, and corresponding machining processes will be in a brittle regime. This fractal analysis would facilitate the accurate and efficient evaluation of the repaired KDP optics by micro-milling. MDPI 2023-02-21 /pmc/articles/PMC10003917/ /pubmed/36902898 http://dx.doi.org/10.3390/ma16051782 Text en © 2023 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
Liu, Qi
Cheng, Jian
Liao, Zhirong
Liu, Mingyu
Chen, Mingjun
Zhao, Linjie
Lei, Hongqin
Ding, Wenyu
Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title_full Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title_fullStr Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title_full_unstemmed Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title_short Fractal Analysis on Machined Surface Morphologies of Soft-Brittle KDP Crystals Processed by Micro Ball-End Milling
title_sort fractal analysis on machined surface morphologies of soft-brittle kdp crystals processed by micro ball-end milling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003917/
https://www.ncbi.nlm.nih.gov/pubmed/36902898
http://dx.doi.org/10.3390/ma16051782
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