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Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer

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Zeitschriftentitel: Key Engineering Materials
Personen und Körperschaften: Feng, X.M., Tan, Guang Yu
In: Key Engineering Materials, 392-394, 2008, S. 724-728
Medientyp: E-Article
Sprache: Unbestimmt
veröffentlicht:
Trans Tech Publications, Ltd.
Schlagwörter:
author_facet Feng, X.M.
Tan, Guang Yu
Feng, X.M.
Tan, Guang Yu
author Feng, X.M.
Tan, Guang Yu
spellingShingle Feng, X.M.
Tan, Guang Yu
Key Engineering Materials
Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
Mechanical Engineering
Mechanics of Materials
General Materials Science
author_sort feng, x.m.
spelling Feng, X.M. Tan, Guang Yu 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.392-394.724 <jats:p>One main method of chip breaking is to use the grooves which can make chips be broken. 3D complex grooves meet the requirements of controllable chip breaking. It is too complicated to design 3D complex grooves using AutoCAD in short periods because each section of them is intricacy. Thus the author established the parametric model of the groove based on the advanced functions of Pro/Engineer, in which parameters can be obtained, transferred and modified through setting up parameter relations and compiling control programs. The combination of representative elements constituting the solid model of 3D complex grooves can be achieved by just inputting parameters, which can be directly transformed into 2D drawing accordingly; the heavy work of drawing complex surfaces using AutoCAD can be avoided; and the curvature of each normal profile of grooves are gotten. All such work lays a foundation for the groove design and optimization.</jats:p> Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer Key Engineering Materials
doi_str_mv 10.4028/www.scientific.net/kem.392-394.724
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series Key Engineering Materials
source_id 49
title Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_unstemmed Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_full Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_fullStr Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_full_unstemmed Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_short Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_sort parametric design on 3d complex groove of turning inserts using pro/engineer
topic Mechanical Engineering
Mechanics of Materials
General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.392-394.724
publishDate 2008
physical 724-728
description <jats:p>One main method of chip breaking is to use the grooves which can make chips be broken. 3D complex grooves meet the requirements of controllable chip breaking. It is too complicated to design 3D complex grooves using AutoCAD in short periods because each section of them is intricacy. Thus the author established the parametric model of the groove based on the advanced functions of Pro/Engineer, in which parameters can be obtained, transferred and modified through setting up parameter relations and compiling control programs. The combination of representative elements constituting the solid model of 3D complex grooves can be achieved by just inputting parameters, which can be directly transformed into 2D drawing accordingly; the heavy work of drawing complex surfaces using AutoCAD can be avoided; and the curvature of each normal profile of grooves are gotten. All such work lays a foundation for the groove design and optimization.</jats:p>
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author Feng, X.M., Tan, Guang Yu
author_facet Feng, X.M., Tan, Guang Yu, Feng, X.M., Tan, Guang Yu
author_sort feng, x.m.
container_start_page 724
container_title Key Engineering Materials
container_volume 392-394
description <jats:p>One main method of chip breaking is to use the grooves which can make chips be broken. 3D complex grooves meet the requirements of controllable chip breaking. It is too complicated to design 3D complex grooves using AutoCAD in short periods because each section of them is intricacy. Thus the author established the parametric model of the groove based on the advanced functions of Pro/Engineer, in which parameters can be obtained, transferred and modified through setting up parameter relations and compiling control programs. The combination of representative elements constituting the solid model of 3D complex grooves can be achieved by just inputting parameters, which can be directly transformed into 2D drawing accordingly; the heavy work of drawing complex surfaces using AutoCAD can be avoided; and the curvature of each normal profile of grooves are gotten. All such work lays a foundation for the groove design and optimization.</jats:p>
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spelling Feng, X.M. Tan, Guang Yu 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.392-394.724 <jats:p>One main method of chip breaking is to use the grooves which can make chips be broken. 3D complex grooves meet the requirements of controllable chip breaking. It is too complicated to design 3D complex grooves using AutoCAD in short periods because each section of them is intricacy. Thus the author established the parametric model of the groove based on the advanced functions of Pro/Engineer, in which parameters can be obtained, transferred and modified through setting up parameter relations and compiling control programs. The combination of representative elements constituting the solid model of 3D complex grooves can be achieved by just inputting parameters, which can be directly transformed into 2D drawing accordingly; the heavy work of drawing complex surfaces using AutoCAD can be avoided; and the curvature of each normal profile of grooves are gotten. All such work lays a foundation for the groove design and optimization.</jats:p> Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer Key Engineering Materials
spellingShingle Feng, X.M., Tan, Guang Yu, Key Engineering Materials, Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer, Mechanical Engineering, Mechanics of Materials, General Materials Science
title Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_full Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_fullStr Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_full_unstemmed Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_short Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
title_sort parametric design on 3d complex groove of turning inserts using pro/engineer
title_unstemmed Parametric Design on 3D Complex Groove of Turning Inserts Using Pro/Engineer
topic Mechanical Engineering, Mechanics of Materials, General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.392-394.724