The effect of trepanning parameters on wear of tool and surface quality of titanium alloy

There is a growing interest in developing an advanced technique to manufacture titanium alloy for larger holes in the aviation and marine industries. While the application of larger holes is limited due to the low machinability and high cost. The deep-hole trepanning is investigated to manufacture t...

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Main Authors: Yazhou Feng, Huan Zheng, Xiaolan Han, Zhanfeng Liu
Format: Article
Language:English
Published: SAGE Publishing 2022-08-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/16878132221114719
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author Yazhou Feng
Huan Zheng
Xiaolan Han
Zhanfeng Liu
author_facet Yazhou Feng
Huan Zheng
Xiaolan Han
Zhanfeng Liu
author_sort Yazhou Feng
collection DOAJ
description There is a growing interest in developing an advanced technique to manufacture titanium alloy for larger holes in the aviation and marine industries. While the application of larger holes is limited due to the low machinability and high cost. The deep-hole trepanning is investigated to manufacture the titanium alloy in a high-efficient low-cost manner, and the technical challenges during the deep-hole trepanning process are studied in this article. Designs of the deep-hole trepanning tool and experiments under different cutting speeds and feed are carried out. Chip morphology, axial cutting force, and tool wear are analyzed. The optimal process parameters are achieved. This study provides a practical solution to process titanium alloy for potential industrial applications.
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spelling doaj.art-0010bf215bc94c7094f73e9f84ec17cb2022-12-22T03:43:34ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402022-08-011410.1177/16878132221114719The effect of trepanning parameters on wear of tool and surface quality of titanium alloyYazhou FengHuan ZhengXiaolan HanZhanfeng LiuThere is a growing interest in developing an advanced technique to manufacture titanium alloy for larger holes in the aviation and marine industries. While the application of larger holes is limited due to the low machinability and high cost. The deep-hole trepanning is investigated to manufacture the titanium alloy in a high-efficient low-cost manner, and the technical challenges during the deep-hole trepanning process are studied in this article. Designs of the deep-hole trepanning tool and experiments under different cutting speeds and feed are carried out. Chip morphology, axial cutting force, and tool wear are analyzed. The optimal process parameters are achieved. This study provides a practical solution to process titanium alloy for potential industrial applications.https://doi.org/10.1177/16878132221114719
spellingShingle Yazhou Feng
Huan Zheng
Xiaolan Han
Zhanfeng Liu
The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
Advances in Mechanical Engineering
title The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
title_full The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
title_fullStr The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
title_full_unstemmed The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
title_short The effect of trepanning parameters on wear of tool and surface quality of titanium alloy
title_sort effect of trepanning parameters on wear of tool and surface quality of titanium alloy
url https://doi.org/10.1177/16878132221114719
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