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Experimental Study of Material Removal Process of Fused Silica Glass Using MR Jet Polishing System
Recently,there has been an investigation of polishing processes that has considered new ultra-precision polishing technology for micro parts and optical parts such as those with aspheric and complex shapes.One suitable means of polishing complex shapes is to use a jet of abrasive fluid.However,aerod...
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Published in: | 钢铁研究学报:英文版 2012 (S1), p.604-607 |
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creator | LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo |
description | Recently,there has been an investigation of polishing processes that has considered new ultra-precision polishing technology for micro parts and optical parts such as those with aspheric and complex shapes.One suitable means of polishing complex shapes is to use a jet of abrasive fluid.However,aerodynamic disturbances and radial spreading are generated by the unstable polishing process of the jet on the surface of the workpiece when it is being polished.A method of jet stabilization has been proposed in which the original nozzle form of a jet of magnetorheological(MR)fluid contains abrasive particles that are magnetized using a magnetic.This paper details the design of an MR jet polishing system that uses an electromagnet,a nozzle,and a hydraulic unit to stabilize a slurry jet based on MR fluid,Second,for silica glass,the polishing spot and section profile are analyzed and the effect of the MR fluid jet polishing process is evaluated.The results of the experiment show that the removal profile is W-shaped and that,in this case,a stable can be proof of a distance of several tens of millimeters from the nozzle.Such results show the possibility of applying the proposed polishing method using MR fluids in ultra-precision micro and optical parts production processes.MR jet polishing shows great potential for use as a new type of precision surface polishing technology.In particular,this is a highly valuable process for the polishing of complex shapes such as micro parts,concaves parts,and cavities. |
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CHOI Seung-Bok CHO Myeong-Woo</creator><creatorcontrib>LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo</creatorcontrib><description>Recently,there has been an investigation of polishing processes that has considered new ultra-precision polishing technology for micro parts and optical parts such as those with aspheric and complex shapes.One suitable means of polishing complex shapes is to use a jet of abrasive fluid.However,aerodynamic disturbances and radial spreading are generated by the unstable polishing process of the jet on the surface of the workpiece when it is being polished.A method of jet stabilization has been proposed in which the original nozzle form of a jet of magnetorheological(MR)fluid contains abrasive particles that are magnetized using a magnetic.This paper details the design of an MR jet polishing system that uses an electromagnet,a nozzle,and a hydraulic unit to stabilize a slurry jet based on MR fluid,Second,for silica glass,the polishing spot and section profile are analyzed and the effect of the MR fluid jet polishing process is evaluated.The results of the experiment show that the removal profile is W-shaped and that,in this case,a stable can be proof of a distance of several tens of millimeters from the nozzle.Such results show the possibility of applying the proposed polishing method using MR fluids in ultra-precision micro and optical parts production processes.MR jet polishing shows great potential for use as a new type of precision surface polishing technology.In particular,this is a highly valuable process for the polishing of complex shapes such as micro parts,concaves parts,and cavities.</description><identifier>ISSN: 1006-706X</identifier><identifier>EISSN: 2210-3988</identifier><language>eng</language><subject>fused ; glass ; jet ; magnetorheological(MR)fluids ; material ; optical ; part ; polishing ; rate ; removal ; silica ; system</subject><ispartof>钢铁研究学报:英文版, 2012 (S1), 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spreading are generated by the unstable polishing process of the jet on the surface of the workpiece when it is being polished.A method of jet stabilization has been proposed in which the original nozzle form of a jet of magnetorheological(MR)fluid contains abrasive particles that are magnetized using a magnetic.This paper details the design of an MR jet polishing system that uses an electromagnet,a nozzle,and a hydraulic unit to stabilize a slurry jet based on MR fluid,Second,for silica glass,the polishing spot and section profile are analyzed and the effect of the MR fluid jet polishing process is evaluated.The results of the experiment show that the removal profile is W-shaped and that,in this case,a stable can be proof of a distance of several tens of millimeters from the nozzle.Such results show the possibility of applying the proposed polishing method using MR fluids in ultra-precision micro and optical parts production processes.MR jet polishing shows great potential for use as a new type of precision surface polishing technology.In particular,this is a highly valuable process for the polishing of complex shapes such as micro parts,concaves parts,and cavities.</description><subject>fused</subject><subject>glass</subject><subject>jet</subject><subject>magnetorheological(MR)fluids</subject><subject>material</subject><subject>optical</subject><subject>part</subject><subject>polishing</subject><subject>rate</subject><subject>removal</subject><subject>silica</subject><subject>system</subject><issn>1006-706X</issn><issn>2210-3988</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2012</creationdate><recordtype>article</recordtype><recordid>eNqdjlsKwjAQRYMoWLR7yAYKadNH8i0-EASxCv6VWKNG0qZ2UrG7NwVX4PwcOPdemBHyoigkAeWMjZEXEpIGGUnPU-QDPMlwPKUR89Bl-WlkqypZW6Fxbrtrj80N74R11pmDrMzbcd-aUgIM2aoDecW50qoUeK2FsydQ9R3vDngrLd4breAxiLwHK6s5mtyEBun_OEN0tTwuNkH5MPX95YpF4z4QbV8wntGMZWFCYhbzhDAac8cwieh_qy_kl01I</recordid><startdate>2012</startdate><enddate>2012</enddate><creator>LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo</creator><scope>2RA</scope><scope>92L</scope><scope>CQIGP</scope><scope>W92</scope><scope>~WA</scope></search><sort><creationdate>2012</creationdate><title>Experimental Study of Material Removal Process of Fused Silica Glass Using MR Jet Polishing System</title><author>LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-chongqing_primary_897378715048495083494951523</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2012</creationdate><topic>fused</topic><topic>glass</topic><topic>jet</topic><topic>magnetorheological(MR)fluids</topic><topic>material</topic><topic>optical</topic><topic>part</topic><topic>polishing</topic><topic>rate</topic><topic>removal</topic><topic>silica</topic><topic>system</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo</creatorcontrib><collection>维普_期刊</collection><collection>中文科技期刊数据库-CALIS站点</collection><collection>中文科技期刊数据库-7.0平台</collection><collection>中文科技期刊数据库-工程技术</collection><collection>中文科技期刊数据库- 镜像站点</collection><jtitle>钢铁研究学报:英文版</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>LEE Jung-Won CHO Yong-Kyu CAI Yue CHOI Seung-Bok CHO Myeong-Woo</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Experimental Study of Material Removal Process of Fused Silica Glass Using MR Jet Polishing System</atitle><jtitle>钢铁研究学报:英文版</jtitle><addtitle>Journal of Iron and Steel Research</addtitle><date>2012</date><risdate>2012</risdate><issue>S1</issue><spage>604</spage><epage>607</epage><pages>604-607</pages><issn>1006-706X</issn><eissn>2210-3988</eissn><abstract>Recently,there has been an investigation of polishing processes that has considered new ultra-precision polishing technology for micro parts and optical parts such as those with aspheric and complex shapes.One suitable means of polishing complex shapes is to use a jet of abrasive fluid.However,aerodynamic disturbances and radial spreading are generated by the unstable polishing process of the jet on the surface of the workpiece when it is being polished.A method of jet stabilization has been proposed in which the original nozzle form of a jet of magnetorheological(MR)fluid contains abrasive particles that are magnetized using a magnetic.This paper details the design of an MR jet polishing system that uses an electromagnet,a nozzle,and a hydraulic unit to stabilize a slurry jet based on MR fluid,Second,for silica glass,the polishing spot and section profile are analyzed and the effect of the MR fluid jet polishing process is evaluated.The results of the experiment show that the removal profile is W-shaped and that,in this case,a stable can be proof of a distance of several tens of millimeters from the nozzle.Such results show the possibility of applying the proposed polishing method using MR fluids in ultra-precision micro and optical parts production processes.MR jet polishing shows great potential for use as a new type of precision surface polishing technology.In particular,this is a highly valuable process for the polishing of complex shapes such as micro parts,concaves parts,and cavities.</abstract></addata></record> |
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subjects | fused glass jet magnetorheological(MR)fluids material optical part polishing rate removal silica system |
title | Experimental Study of Material Removal Process of Fused Silica Glass Using MR Jet Polishing System |
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