Stability of ball-end milling on warped surface: semi-analytical and experimental analysis
This paper presents a study of warped surface machining with ball-end milling. A specific model based on the classical stability lobe theory was used and improved with important aspects. The non-linear effect of radial allowance on the contact angle was integrated by an original averaging method. Th...
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Veröffentlicht in: | International journal of advanced manufacturing technology 2017-04, Vol.89 (9-12), p.2557-2569 |
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creator | Shtehin, O. O. Wagner, V. Seguy, S. Landon, Y. Dessein, G. Mousseigne, M. |
description | This paper presents a study of warped surface machining with ball-end milling. A specific model based on the classical stability lobe theory was used and improved with important aspects. The non-linear effect of radial allowance on the contact angle was integrated by an original averaging method. The cutting coefficients are updated in order to follow effective radius and cutting velocity. An original experimental procedure was developed in order to compute the cutting coefficient for various inclined surfaces. More complete experimental analysis was conducted in order to study the effect of machining parameters on the stability of inclined surface milling. The comparison between experiment and simulation shows good correlation for the prediction of stable cutting condition. |
doi_str_mv | 10.1007/s00170-016-9656-3 |
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The comparison between experiment and simulation shows good correlation for the prediction of stable cutting condition.</description><identifier>ISSN: 0268-3768</identifier><identifier>EISSN: 1433-3015</identifier><identifier>DOI: 10.1007/s00170-016-9656-3</identifier><language>eng</language><publisher>London: Springer London</publisher><subject>Ball-end milling ; CAE) and Design ; Computer simulation ; Computer-Aided Engineering (CAD ; Contact angle ; Cutting ; End milling ; Engineering ; Engineering Sciences ; Industrial and Production Engineering ; Mechanical Engineering ; Mechanics ; Media Management ; Milling (machining) ; Original Article ; Process parameters ; Stability analysis ; Surface stability</subject><ispartof>International journal of advanced manufacturing technology, 2017-04, Vol.89 (9-12), p.2557-2569</ispartof><rights>Springer-Verlag London 2016</rights><rights>Copyright Springer Science & Business Media 2017</rights><rights>The International Journal of Advanced Manufacturing Technology is a copyright of Springer, (2016). 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More complete experimental analysis was conducted in order to study the effect of machining parameters on the stability of inclined surface milling. The comparison between experiment and simulation shows good correlation for the prediction of stable cutting condition.</description><subject>Ball-end milling</subject><subject>CAE) and Design</subject><subject>Computer simulation</subject><subject>Computer-Aided Engineering (CAD</subject><subject>Contact angle</subject><subject>Cutting</subject><subject>End milling</subject><subject>Engineering</subject><subject>Engineering Sciences</subject><subject>Industrial and Production Engineering</subject><subject>Mechanical Engineering</subject><subject>Mechanics</subject><subject>Media Management</subject><subject>Milling (machining)</subject><subject>Original Article</subject><subject>Process parameters</subject><subject>Stability analysis</subject><subject>Surface stability</subject><issn>0268-3768</issn><issn>1433-3015</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2017</creationdate><recordtype>article</recordtype><sourceid>AFKRA</sourceid><sourceid>BENPR</sourceid><sourceid>CCPQU</sourceid><sourceid>DWQXO</sourceid><recordid>eNp9kTFv2zAQhYkgBeI6_QHdBHTKwPaOlCgym2E0cQEDHZIsWQiKolwatOSQchv_-9JVEHRJpgPuvvfeAY-QzwhfEaD-lgCwBgooqBKVoPyMzLDknHLA6pzMgAlJeS3kBfmY0jbTAoWckce70TQ--PFYDF3RmBCo69ti50Pw_aYY-uKPiXvXFukQO2PddZHczlPTm3AcvTWhMBl3z3sX_c71479FviWfLsmHzoTkPr3MOXm4-X6_XNH1z9sfy8Wa2pLhSCUHVTsHvLOyddA2XY1WisZUFROGqUYpzgWzlldlCaLpWstVzUtnARkvLZ-Tq8n3lwl6n98w8agH4_VqsdanHaBEVaH6jZn9MrH7ODwdXBr1djjE_HDSjAnGUEGp3qNQSswEY3WmcKJsHFKKrnsNR9CnUvRUSs4X-lSK5lnDJk3KbL9x8T_nN0V_Af0RjVM</recordid><startdate>20170401</startdate><enddate>20170401</enddate><creator>Shtehin, O. 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O. ; Wagner, V. ; Seguy, S. ; Landon, Y. ; Dessein, G. ; Mousseigne, M.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c421t-83097ee03fc8de0dbf71c86ba5526a29b993362cc354406bfdc39734ec01234c3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2017</creationdate><topic>Ball-end milling</topic><topic>CAE) and Design</topic><topic>Computer simulation</topic><topic>Computer-Aided Engineering (CAD</topic><topic>Contact angle</topic><topic>Cutting</topic><topic>End milling</topic><topic>Engineering</topic><topic>Engineering Sciences</topic><topic>Industrial and Production Engineering</topic><topic>Mechanical Engineering</topic><topic>Mechanics</topic><topic>Media Management</topic><topic>Milling (machining)</topic><topic>Original Article</topic><topic>Process parameters</topic><topic>Stability analysis</topic><topic>Surface stability</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Shtehin, O. 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subjects | Ball-end milling CAE) and Design Computer simulation Computer-Aided Engineering (CAD Contact angle Cutting End milling Engineering Engineering Sciences Industrial and Production Engineering Mechanical Engineering Mechanics Media Management Milling (machining) Original Article Process parameters Stability analysis Surface stability |
title | Stability of ball-end milling on warped surface: semi-analytical and experimental analysis |
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