Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting

Aluminum alloy materials are very difficult to break in the processing process; chip accumulation leads to poor processing stability. In this paper, a coated composite micro–textured tool is presented. The influence of coated composite micro–textured tool on chip shape and cutting force under the sa...

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Main Authors: Qinghua Li, Chunlu Ma, Lintao Xie, Baizhong Wang, Shihong Zhang
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Machines
Subjects:
Online Access:https://www.mdpi.com/2075-1702/11/4/439
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author Qinghua Li
Chunlu Ma
Lintao Xie
Baizhong Wang
Shihong Zhang
author_facet Qinghua Li
Chunlu Ma
Lintao Xie
Baizhong Wang
Shihong Zhang
author_sort Qinghua Li
collection DOAJ
description Aluminum alloy materials are very difficult to break in the processing process; chip accumulation leads to poor processing stability. In this paper, a coated composite micro–textured tool is presented. The influence of coated composite micro–textured tool on chip shape and cutting force under the same cutting parameters is studied. Firstly, the combination of cutting force and cutting temperature is optimized based on cutting test. Secondly, combined with the finite element simulation technology, three kinds of composite micro–texture tools are tested to determine the same cutting parameters, tools and workpiece materials, and optimize the composite micro–texture combination from the angle of chip shape, cutting temperature and cutting force. Finally, on the basis of optimizing the microstructure combination, the optimization of the cutting performance of aluminum alloy by coating material is studied. It was found that the chip was more easily broken in the composite microstructure when two tools were used. The cutting force decreased by 25% and the cutting temperature decreased by 9.09% compared with the non–micro–texture tools. The cutting temperature and cutting force decreased by 3% and 4.99% compared with those of uncoated composite microstructure.
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spelling doaj.art-bf164a1e199b48ef9a0428b1ef8133ea2023-11-17T20:08:36ZengMDPI AGMachines2075-17022023-03-0111443910.3390/machines11040439Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy CuttingQinghua Li0Chunlu Ma1Lintao Xie2Baizhong Wang3Shihong Zhang4School of Mechanical and Vehicular Engineering, Changchun University, Changchun 130022, ChinaSchool of Mechanical and Vehicular Engineering, Changchun University, Changchun 130022, ChinaSchool of Mechanical and Vehicular Engineering, Changchun University, Changchun 130022, ChinaSchool of Mechanical and Vehicular Engineering, Changchun University, Changchun 130022, ChinaSchool of Mechanical and Vehicular Engineering, Changchun University, Changchun 130022, ChinaAluminum alloy materials are very difficult to break in the processing process; chip accumulation leads to poor processing stability. In this paper, a coated composite micro–textured tool is presented. The influence of coated composite micro–textured tool on chip shape and cutting force under the same cutting parameters is studied. Firstly, the combination of cutting force and cutting temperature is optimized based on cutting test. Secondly, combined with the finite element simulation technology, three kinds of composite micro–texture tools are tested to determine the same cutting parameters, tools and workpiece materials, and optimize the composite micro–texture combination from the angle of chip shape, cutting temperature and cutting force. Finally, on the basis of optimizing the microstructure combination, the optimization of the cutting performance of aluminum alloy by coating material is studied. It was found that the chip was more easily broken in the composite microstructure when two tools were used. The cutting force decreased by 25% and the cutting temperature decreased by 9.09% compared with the non–micro–texture tools. The cutting temperature and cutting force decreased by 3% and 4.99% compared with those of uncoated composite microstructure.https://www.mdpi.com/2075-1702/11/4/439composite micro–texturecutting forcechipcoatingcutting temperature
spellingShingle Qinghua Li
Chunlu Ma
Lintao Xie
Baizhong Wang
Shihong Zhang
Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
Machines
composite micro–texture
cutting force
chip
coating
cutting temperature
title Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
title_full Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
title_fullStr Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
title_full_unstemmed Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
title_short Effect of Coated Composite Micro–Texture Tool on Cutting Shape and Cutting Force during Aluminum Alloy Cutting
title_sort effect of coated composite micro texture tool on cutting shape and cutting force during aluminum alloy cutting
topic composite micro–texture
cutting force
chip
coating
cutting temperature
url https://www.mdpi.com/2075-1702/11/4/439
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AT chunluma effectofcoatedcompositemicrotexturetooloncuttingshapeandcuttingforceduringaluminumalloycutting
AT lintaoxie effectofcoatedcompositemicrotexturetooloncuttingshapeandcuttingforceduringaluminumalloycutting
AT baizhongwang effectofcoatedcompositemicrotexturetooloncuttingshapeandcuttingforceduringaluminumalloycutting
AT shihongzhang effectofcoatedcompositemicrotexturetooloncuttingshapeandcuttingforceduringaluminumalloycutting