Effects of anisotropy on single-crystal SiO in nano-metric cutting
The nano-metric cutting process of single-crystal SiO 2 was studied using molecular dynamics simulation, where the effects of anisotropy on material removal and surface integrity were analyzed. The typical crystal directions on different crystal planes of SiO 2 were selected as cutting directions. T...
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Series: | Advances in Mechanical Engineering |
Online Access: | https://doi.org/10.1177/1687814019895163 |
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doaj-45e02bb8c8e64445894da32cc329fd9b2020-11-25T03:51:43ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402020-02-011210.1177/1687814019895163Effects of anisotropy on single-crystal SiO in nano-metric cuttingJiaxuan Chen0Mayan Li1Fang Wang2Lihua Lu3Jianbo Qin4Qiqi Shang5Xinxiang Miao6Longfei Niu7Hao Liu8Guorui Zhou9Xiaodong Yuan10Hongmin Pen11Center for Precision Engineering, Harbin Institute of Technology, Harbin, ChinaCenter for Precision Engineering, Harbin Institute of Technology, Harbin, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaCenter for Precision Engineering, Harbin Institute of Technology, Harbin, ChinaCenter for Precision Engineering, Harbin Institute of Technology, Harbin, ChinaCenter for Precision Engineering, Harbin Institute of Technology, Harbin, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaLaser Fusion Research Center, China Academy of Engineering Physics, Mianyang, ChinaTianjin Institute of Aerospace Mechanical and Electrical Equipment, Tianjin, ChinaThe nano-metric cutting process of single-crystal SiO 2 was studied using molecular dynamics simulation, where the effects of anisotropy on material removal and surface integrity were analyzed. The typical crystal directions on different crystal planes of SiO 2 were selected as cutting directions. The results show that the chip formation, temperature distribution in the machined area, cutting force, phase transformation and damage layer thickness vary according to the cutting direction. The crystal orientation of (110) [00−1] exhibits a large range of damage expansion while (110) [1−10] exhibits the smallest range. In addition, the radial distribution function results show that SiO 2 workpieces cut in different directions vary in crystal phase type and content to some degree, while a new phase is produced in the cutting direction of (111) [−101]. Therefore, the anisotropy of the selection of crystal planes and crystal directions is of great significance for the nano-metric cutting of SiO 2 to obtain quality machined surfaces of SiO 2 .https://doi.org/10.1177/1687814019895163 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiaxuan Chen Mayan Li Fang Wang Lihua Lu Jianbo Qin Qiqi Shang Xinxiang Miao Longfei Niu Hao Liu Guorui Zhou Xiaodong Yuan Hongmin Pen |
spellingShingle |
Jiaxuan Chen Mayan Li Fang Wang Lihua Lu Jianbo Qin Qiqi Shang Xinxiang Miao Longfei Niu Hao Liu Guorui Zhou Xiaodong Yuan Hongmin Pen Effects of anisotropy on single-crystal SiO in nano-metric cutting Advances in Mechanical Engineering |
author_facet |
Jiaxuan Chen Mayan Li Fang Wang Lihua Lu Jianbo Qin Qiqi Shang Xinxiang Miao Longfei Niu Hao Liu Guorui Zhou Xiaodong Yuan Hongmin Pen |
author_sort |
Jiaxuan Chen |
title |
Effects of anisotropy on single-crystal SiO in nano-metric cutting |
title_short |
Effects of anisotropy on single-crystal SiO in nano-metric cutting |
title_full |
Effects of anisotropy on single-crystal SiO in nano-metric cutting |
title_fullStr |
Effects of anisotropy on single-crystal SiO in nano-metric cutting |
title_full_unstemmed |
Effects of anisotropy on single-crystal SiO in nano-metric cutting |
title_sort |
effects of anisotropy on single-crystal sio in nano-metric cutting |
publisher |
SAGE Publishing |
series |
Advances in Mechanical Engineering |
issn |
1687-8140 |
publishDate |
2020-02-01 |
description |
The nano-metric cutting process of single-crystal SiO 2 was studied using molecular dynamics simulation, where the effects of anisotropy on material removal and surface integrity were analyzed. The typical crystal directions on different crystal planes of SiO 2 were selected as cutting directions. The results show that the chip formation, temperature distribution in the machined area, cutting force, phase transformation and damage layer thickness vary according to the cutting direction. The crystal orientation of (110) [00−1] exhibits a large range of damage expansion while (110) [1−10] exhibits the smallest range. In addition, the radial distribution function results show that SiO 2 workpieces cut in different directions vary in crystal phase type and content to some degree, while a new phase is produced in the cutting direction of (111) [−101]. Therefore, the anisotropy of the selection of crystal planes and crystal directions is of great significance for the nano-metric cutting of SiO 2 to obtain quality machined surfaces of SiO 2 . |
url |
https://doi.org/10.1177/1687814019895163 |
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