An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods

With the increased requirement of miniaturization structures on hard and brittle substrates, micro abrasive air jet turning technology has become a promising machining technology for manufacturing miniaturization structures. This paper presents an investigation on multi-pass radial-mode micro abrasi...

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Published in:Machines
Main Authors: Ruibo Yang, Quanlai Li, Weipeng Zhang, Yafeng Deng, Jialin Li
Format: Article
Language:English
Published: MDPI AG 2023-01-01
Subjects:
Online Access:https://www.mdpi.com/2075-1702/11/2/164
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author Ruibo Yang
Quanlai Li
Weipeng Zhang
Yafeng Deng
Jialin Li
author_facet Ruibo Yang
Quanlai Li
Weipeng Zhang
Yafeng Deng
Jialin Li
author_sort Ruibo Yang
collection DOAJ
container_title Machines
description With the increased requirement of miniaturization structures on hard and brittle substrates, micro abrasive air jet turning technology has become a promising machining technology for manufacturing miniaturization structures. This paper presents an investigation on multi-pass radial-mode micro abrasive air jet turning of fused silica. The effect of machining parameters on the depth of cut and materials removal rate was analyzed. The waviness and striation formation mechanisms were studied. It was found that increasing the number of passes significantly increases the depth of cut and materials removal rate. When the surface speed is reduced, the depth of cut and materials removal rate significantly increases. The waviness may be attributed to the intersection and overlap of the adjoint jet footprint. The crossed striations have been found, which may lead to the elimination of the striation. A predictive model of the material removal rate was developed using the dimensional analysis method. The model was assessed and shown to be able to give adequate predictions.
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spelling doaj-art-55e7f08ee1894de2946addf876e813762025-08-19T21:58:30ZengMDPI AGMachines2075-17022023-01-0111216410.3390/machines11020164An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica RodsRuibo Yang0Quanlai Li1Weipeng Zhang2Yafeng Deng3Jialin Li4School of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, ChinaSchool of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, ChinaSchool of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, ChinaSchool of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, ChinaSchool of Artificial Intelligence, Beijing Technology and Business University, Beijing 100048, ChinaWith the increased requirement of miniaturization structures on hard and brittle substrates, micro abrasive air jet turning technology has become a promising machining technology for manufacturing miniaturization structures. This paper presents an investigation on multi-pass radial-mode micro abrasive air jet turning of fused silica. The effect of machining parameters on the depth of cut and materials removal rate was analyzed. The waviness and striation formation mechanisms were studied. It was found that increasing the number of passes significantly increases the depth of cut and materials removal rate. When the surface speed is reduced, the depth of cut and materials removal rate significantly increases. The waviness may be attributed to the intersection and overlap of the adjoint jet footprint. The crossed striations have been found, which may lead to the elimination of the striation. A predictive model of the material removal rate was developed using the dimensional analysis method. The model was assessed and shown to be able to give adequate predictions.https://www.mdpi.com/2075-1702/11/2/164micro abrasive air jetmulti-pass turningwavinessstriationmaterial removal ratedepth of cut
spellingShingle Ruibo Yang
Quanlai Li
Weipeng Zhang
Yafeng Deng
Jialin Li
An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
micro abrasive air jet
multi-pass turning
waviness
striation
material removal rate
depth of cut
title An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
title_full An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
title_fullStr An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
title_full_unstemmed An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
title_short An Investigation into the Multi-Pass Radial-Mode Micro Abrasive Air Jet Turning of Fused-Silica Rods
title_sort investigation into the multi pass radial mode micro abrasive air jet turning of fused silica rods
topic micro abrasive air jet
multi-pass turning
waviness
striation
material removal rate
depth of cut
url https://www.mdpi.com/2075-1702/11/2/164
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