Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools

This paper focuses on the development of Finite Element Method (FEM) inmodeling and simulation of coated cutting tools with multi-layer coats. A special FiniteElement code called (MSC.MARC mentat) is used in the numerical tests, the results arethen compared with experimental work. The paper studied...

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Main Authors: Maan Aabid Tawfiq, Zeena jumaa Ahmed
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2008-07-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_26654_3142fa7b2fcb4b82a53549dd0dab56c8.pdf
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author Maan Aabid Tawfiq
Zeena jumaa Ahmed
author_facet Maan Aabid Tawfiq
Zeena jumaa Ahmed
author_sort Maan Aabid Tawfiq
collection DOAJ
description This paper focuses on the development of Finite Element Method (FEM) inmodeling and simulation of coated cutting tools with multi-layer coats. A special FiniteElement code called (MSC.MARC mentat) is used in the numerical tests, the results arethen compared with experimental work. The paper studied the effect of number of coatsof cutting tools on the following field parameters; tool-chip contact length, chipcontraction coefficient and shear angle at similar machining conditions.The metal beingmachined is (AISI 1045 steel) with orthogonal machining conditions. The three cuttingtools and models are coated with (TiN, TiN/TiC, TiN/Al2O3/TiC), while the fourth oneis uncoated.The results show good agreement between the experimental and numericaltests. Some of the results are compared with other published papers. The comparison ofthe predicted results shows good agreement with experimental tests with maximumrelative difference of (18%) for the chip contraction coefficient and contact length, and(10 %) for the shear angle. The insert with double coats shows excellent result,compared to others from point of view of chip contraction coefficient, contact length andshear angle.
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spelling doaj.art-dac720a8777049e98f9ac8e2b4a768112024-02-04T17:53:32ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582008-07-0126782984110.30684/etj.26.7.926654Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated ToolsMaan Aabid TawfiqZeena jumaa AhmedThis paper focuses on the development of Finite Element Method (FEM) inmodeling and simulation of coated cutting tools with multi-layer coats. A special FiniteElement code called (MSC.MARC mentat) is used in the numerical tests, the results arethen compared with experimental work. The paper studied the effect of number of coatsof cutting tools on the following field parameters; tool-chip contact length, chipcontraction coefficient and shear angle at similar machining conditions.The metal beingmachined is (AISI 1045 steel) with orthogonal machining conditions. The three cuttingtools and models are coated with (TiN, TiN/TiC, TiN/Al2O3/TiC), while the fourth oneis uncoated.The results show good agreement between the experimental and numericaltests. Some of the results are compared with other published papers. The comparison ofthe predicted results shows good agreement with experimental tests with maximumrelative difference of (18%) for the chip contraction coefficient and contact length, and(10 %) for the shear angle. The insert with double coats shows excellent result,compared to others from point of view of chip contraction coefficient, contact length andshear angle.https://etj.uotechnology.edu.iq/article_26654_3142fa7b2fcb4b82a53549dd0dab56c8.pdffemtoolchipcontact lengthtool coatingsmultilayer
spellingShingle Maan Aabid Tawfiq
Zeena jumaa Ahmed
Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
Engineering and Technology Journal
fem
tool
chip
contact length
tool coatings
multi
layer
title Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
title_full Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
title_fullStr Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
title_full_unstemmed Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
title_short Finite Element Modeling and Simulation of Orthogonal Cutting With Multi Layer Coated Tools
title_sort finite element modeling and simulation of orthogonal cutting with multi layer coated tools
topic fem
tool
chip
contact length
tool coatings
multi
layer
url https://etj.uotechnology.edu.iq/article_26654_3142fa7b2fcb4b82a53549dd0dab56c8.pdf
work_keys_str_mv AT maanaabidtawfiq finiteelementmodelingandsimulationoforthogonalcuttingwithmultilayercoatedtools
AT zeenajumaaahmed finiteelementmodelingandsimulationoforthogonalcuttingwithmultilayercoatedtools