Lifespan of super-alloy Waspaloy cutting tools

An airplane has about 6-million components and parts, mainly the engine, undercarriage, constructions and so on. Among them, nickel base materials are widely used, including engine, cartridge receiver, compressor drum and other industries application, such as energy, petrochemical industry, mould, e...

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Main Authors: Shao-Hsien Chen, Yu-Lun Ho
Format: Article
Language:English
Published: Elsevier 2019-04-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844018332705
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spelling doaj-7076f2e949b14d0b90c9b5f5d762c26e2020-11-25T03:16:26ZengElsevierHeliyon2405-84402019-04-0154e01388Lifespan of super-alloy Waspaloy cutting toolsShao-Hsien Chen0Yu-Lun Ho1The Graduate Institute of Precision Manufacturing, National Chin-Yi University of Technology, Tai-Chung, Taiwan, China; Corresponding author.Department of Mechanical Engineering, National Chin-Yi University of Technology, Tai-Chung, Taiwan, ChinaAn airplane has about 6-million components and parts, mainly the engine, undercarriage, constructions and so on. Among them, nickel base materials are widely used, including engine, cartridge receiver, compressor drum and other industries application, such as energy, petrochemical industry, mould, etc. Nickel base alloy, with anti-corrosion and thermo stability, has good mechanical properties under high temperature. Since 1950s, due to the development of precision casting technology, a series of cast nickel base super-alloy with high strength has been developed, namely the super-alloy complying with the above conditions. In recent years, with the changing of military and civil aerospace, the usage amount of nickel base super-alloy also increases along with the date. This research mainly used Waspaloy of nickel base material to do cutting research and uses regression analysis to find significant factor of cutting tool's life, and performs the optimization experiment. The cutting research mainly uses TiAlN to coat cutting tools. In the conclusion, it discusses main factors that influence the tool life, such as the cutting speed, depth, feed rate and so on. Finally it establishes tool life formula with regression analysis method, in this case when cutting speed V = 30.77 m/min and cutting depth dp = 0.0367mm, the minimum wear prediction can be obtained.http://www.sciencedirect.com/science/article/pii/S2405844018332705Materials scienceMechanical engineering
collection DOAJ
language English
format Article
sources DOAJ
author Shao-Hsien Chen
Yu-Lun Ho
spellingShingle Shao-Hsien Chen
Yu-Lun Ho
Lifespan of super-alloy Waspaloy cutting tools
Heliyon
Materials science
Mechanical engineering
author_facet Shao-Hsien Chen
Yu-Lun Ho
author_sort Shao-Hsien Chen
title Lifespan of super-alloy Waspaloy cutting tools
title_short Lifespan of super-alloy Waspaloy cutting tools
title_full Lifespan of super-alloy Waspaloy cutting tools
title_fullStr Lifespan of super-alloy Waspaloy cutting tools
title_full_unstemmed Lifespan of super-alloy Waspaloy cutting tools
title_sort lifespan of super-alloy waspaloy cutting tools
publisher Elsevier
series Heliyon
issn 2405-8440
publishDate 2019-04-01
description An airplane has about 6-million components and parts, mainly the engine, undercarriage, constructions and so on. Among them, nickel base materials are widely used, including engine, cartridge receiver, compressor drum and other industries application, such as energy, petrochemical industry, mould, etc. Nickel base alloy, with anti-corrosion and thermo stability, has good mechanical properties under high temperature. Since 1950s, due to the development of precision casting technology, a series of cast nickel base super-alloy with high strength has been developed, namely the super-alloy complying with the above conditions. In recent years, with the changing of military and civil aerospace, the usage amount of nickel base super-alloy also increases along with the date. This research mainly used Waspaloy of nickel base material to do cutting research and uses regression analysis to find significant factor of cutting tool's life, and performs the optimization experiment. The cutting research mainly uses TiAlN to coat cutting tools. In the conclusion, it discusses main factors that influence the tool life, such as the cutting speed, depth, feed rate and so on. Finally it establishes tool life formula with regression analysis method, in this case when cutting speed V = 30.77 m/min and cutting depth dp = 0.0367mm, the minimum wear prediction can be obtained.
topic Materials science
Mechanical engineering
url http://www.sciencedirect.com/science/article/pii/S2405844018332705
work_keys_str_mv AT shaohsienchen lifespanofsuperalloywaspaloycuttingtools
AT yulunho lifespanofsuperalloywaspaloycuttingtools
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