The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling

The mathematical modeling and detailed algorithms are derived in this paperto describe the geometrical shape of end mill cutters for multi-axis milling machining.Details of the geometry analysis techniques are presented to understand the effectivecutting shape. Three types of cutters are taken in th...

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Main Authors: Ahmed A.Abdulwahhab, Jamal H. Mohamed, Bahha I. Kazem
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2010-04-01
Series:Engineering and Technology Journal
Online Access:https://etj.uotechnology.edu.iq/article_27241_6809a94542c71f50663792697500e2b3.pdf
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author Ahmed A.Abdulwahhab
Jamal H. Mohamed
Bahha I. Kazem
author_facet Ahmed A.Abdulwahhab
Jamal H. Mohamed
Bahha I. Kazem
author_sort Ahmed A.Abdulwahhab
collection DOAJ
description The mathematical modeling and detailed algorithms are derived in this paperto describe the geometrical shape of end mill cutters for multi-axis milling machining.Details of the geometry analysis techniques are presented to understand the effectivecutting shape. Three types of cutters are taken in the present paper. Finally, theprocedures of finding the instantaneous cutting profile and local geometry analysis arediscussed. The techniques presented in this paper can be used to eliminate errors ofmilling tool path generation in the area of simultaneous multi-axis NC complex surfacemachining.
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spelling doaj.art-f82c114c707f49768493309f169d85842024-02-04T17:45:20ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582010-04-012881596161410.30684/etj.28.8.727241The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis MillingAhmed A.AbdulwahhabJamal H. MohamedBahha I. KazemThe mathematical modeling and detailed algorithms are derived in this paperto describe the geometrical shape of end mill cutters for multi-axis milling machining.Details of the geometry analysis techniques are presented to understand the effectivecutting shape. Three types of cutters are taken in the present paper. Finally, theprocedures of finding the instantaneous cutting profile and local geometry analysis arediscussed. The techniques presented in this paper can be used to eliminate errors ofmilling tool path generation in the area of simultaneous multi-axis NC complex surfacemachining.https://etj.uotechnology.edu.iq/article_27241_6809a94542c71f50663792697500e2b3.pdf
spellingShingle Ahmed A.Abdulwahhab
Jamal H. Mohamed
Bahha I. Kazem
The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
Engineering and Technology Journal
title The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
title_full The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
title_fullStr The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
title_full_unstemmed The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
title_short The Mathematical Description of End Mill Cutters and Effective Radius of Tool Geometry on Multi-Axis Milling
title_sort mathematical description of end mill cutters and effective radius of tool geometry on multi axis milling
url https://etj.uotechnology.edu.iq/article_27241_6809a94542c71f50663792697500e2b3.pdf
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