A Method and Device for 3D Recognition of Cutting Edge Micro Geometry

A very useful method was successfully applied in the investigation of tools for machining wood and wood based composites. It allows scanning of the cutting edge micro geometry in three dimensions and reproducing it in a virtual space as a 3D surface. The application of the method opens new possibili...

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Autores principales: Bartosz Palubicki, Michal Szulc, Gerhard Sinn, Kazimierz Orlowski, Jakub Sandak
Formato: article
Lenguaje:EN
Publicado: University of Zagreb, Faculty of Forestry and Wood Technology 2014
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Acceso en línea:https://doaj.org/article/1e25a14703514c4696740d4ad9481db1
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spelling oai:doaj.org-article:1e25a14703514c4696740d4ad9481db12021-12-02T01:55:00ZA Method and Device for 3D Recognition of Cutting Edge Micro Geometry10.5552/drind.2014.12550012-67721847-1153https://doaj.org/article/1e25a14703514c4696740d4ad9481db12014-04-01T00:00:00Zhttp://hrcak.srce.hr/file/175772https://doaj.org/toc/0012-6772https://doaj.org/toc/1847-1153A very useful method was successfully applied in the investigation of tools for machining wood and wood based composites. It allows scanning of the cutting edge micro geometry in three dimensions and reproducing it in a virtual space as a 3D surface. The application of the method opens new possibilities of studying tool wear by scanning, including the calculation of volume loss and other analysis of tool wedge geometry along and perpendicularly to the cutting edge. Effectiveness of the method and scanner were successfully verified by a reference ESEM (Environmental Scanning Electron Microscopy) method.Bartosz PalubickiMichal SzulcGerhard SinnKazimierz OrlowskiJakub SandakUniversity of Zagreb, Faculty of Forestry and Wood Technologyarticlecutting tool wear3D scannermicro geometryForestrySD1-669.5ENDrvna Industrija, Vol 65, Iss 1, Pp 11-19 (2014)
institution DOAJ
collection DOAJ
language EN
topic cutting tool wear
3D scanner
micro geometry
Forestry
SD1-669.5
spellingShingle cutting tool wear
3D scanner
micro geometry
Forestry
SD1-669.5
Bartosz Palubicki
Michal Szulc
Gerhard Sinn
Kazimierz Orlowski
Jakub Sandak
A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
description A very useful method was successfully applied in the investigation of tools for machining wood and wood based composites. It allows scanning of the cutting edge micro geometry in three dimensions and reproducing it in a virtual space as a 3D surface. The application of the method opens new possibilities of studying tool wear by scanning, including the calculation of volume loss and other analysis of tool wedge geometry along and perpendicularly to the cutting edge. Effectiveness of the method and scanner were successfully verified by a reference ESEM (Environmental Scanning Electron Microscopy) method.
format article
author Bartosz Palubicki
Michal Szulc
Gerhard Sinn
Kazimierz Orlowski
Jakub Sandak
author_facet Bartosz Palubicki
Michal Szulc
Gerhard Sinn
Kazimierz Orlowski
Jakub Sandak
author_sort Bartosz Palubicki
title A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
title_short A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
title_full A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
title_fullStr A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
title_full_unstemmed A Method and Device for 3D Recognition of Cutting Edge Micro Geometry
title_sort method and device for 3d recognition of cutting edge micro geometry
publisher University of Zagreb, Faculty of Forestry and Wood Technology
publishDate 2014
url https://doaj.org/article/1e25a14703514c4696740d4ad9481db1
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