Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling
In this study, the wear resistance of micro-textured tools was explored. Micro-textured tools with different morphologies were used in turning GH4169 during spray cooling. The tool wear on the rake face of the different micro-texture morphologies was investigated through simulation and experiments....
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Format: | Article |
Language: | English |
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MDPI AG
2023-10-01
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Series: | Lubricants |
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Online Access: | https://www.mdpi.com/2075-4442/11/10/439 |
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author | Jingshu Hu Jiaxuan Wei Xinmin Feng Zhiwei Liu |
author_facet | Jingshu Hu Jiaxuan Wei Xinmin Feng Zhiwei Liu |
author_sort | Jingshu Hu |
collection | DOAJ |
description | In this study, the wear resistance of micro-textured tools was explored. Micro-textured tools with different morphologies were used in turning GH4169 during spray cooling. The tool wear on the rake face of the different micro-texture morphologies was investigated through simulation and experiments. Firstly, based on the existing research on bionics, micro-textures with five different morphologies were designed on the rake face of carbide tools. A simulation model of cutting GH4169 during spray cooling was established, and the tools with designed micro-textures were used in it. The influence of the different micro-texture morphologies on the tool wear was analyzed. Secondly, the designed micro-textured tools with five different morphologies were produced using a femtosecond laser. Cutting experiments were conducted using the micro-textured tools during spray cooling. The wear area of the rake face was measured based on the infinitesimal method, and the optimal morphology with the best anti-wear ability was obtained. This study provides technical support for the design and development of micro-textured tools with an improved cutting performance, and contribute to the promotion and application of micro-textured tools. |
first_indexed | 2024-03-10T21:06:56Z |
format | Article |
id | doaj.art-7bb9591b8ccf4236aca9d7ed1a11bab8 |
institution | Directory Open Access Journal |
issn | 2075-4442 |
language | English |
last_indexed | 2024-03-10T21:06:56Z |
publishDate | 2023-10-01 |
publisher | MDPI AG |
record_format | Article |
series | Lubricants |
spelling | doaj.art-7bb9591b8ccf4236aca9d7ed1a11bab82023-11-19T17:07:52ZengMDPI AGLubricants2075-44422023-10-01111043910.3390/lubricants11100439Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray CoolingJingshu Hu0Jiaxuan Wei1Xinmin Feng2Zhiwei Liu3Key Laboratory of Advanced Manufacturing Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, ChinaKey Laboratory of Advanced Manufacturing Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, ChinaKey Laboratory of Advanced Manufacturing Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, ChinaKey Laboratory of Advanced Manufacturing Intelligent Technology, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, ChinaIn this study, the wear resistance of micro-textured tools was explored. Micro-textured tools with different morphologies were used in turning GH4169 during spray cooling. The tool wear on the rake face of the different micro-texture morphologies was investigated through simulation and experiments. Firstly, based on the existing research on bionics, micro-textures with five different morphologies were designed on the rake face of carbide tools. A simulation model of cutting GH4169 during spray cooling was established, and the tools with designed micro-textures were used in it. The influence of the different micro-texture morphologies on the tool wear was analyzed. Secondly, the designed micro-textured tools with five different morphologies were produced using a femtosecond laser. Cutting experiments were conducted using the micro-textured tools during spray cooling. The wear area of the rake face was measured based on the infinitesimal method, and the optimal morphology with the best anti-wear ability was obtained. This study provides technical support for the design and development of micro-textured tools with an improved cutting performance, and contribute to the promotion and application of micro-textured tools.https://www.mdpi.com/2075-4442/11/10/439micro-texture morphologyGH4169tool wearspray cooling |
spellingShingle | Jingshu Hu Jiaxuan Wei Xinmin Feng Zhiwei Liu Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling Lubricants micro-texture morphology GH4169 tool wear spray cooling |
title | Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling |
title_full | Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling |
title_fullStr | Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling |
title_full_unstemmed | Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling |
title_short | Research on Wear of Micro-Textured Tools in Turning GH4169 during Spray Cooling |
title_sort | research on wear of micro textured tools in turning gh4169 during spray cooling |
topic | micro-texture morphology GH4169 tool wear spray cooling |
url | https://www.mdpi.com/2075-4442/11/10/439 |
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