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티타늄 합금(Ti-6A1-4V)의 밀링가공에서 L자형 얇은 벽 구조의 가공품질 향상open accessImproving Machining Quality of L-Shaped Thin-Walled Structure in Milling Process of Ti-Alloy (Ti–6Al–4V)

Other Titles
Improving Machining Quality of L-Shaped Thin-Walled Structure in Milling Process of Ti-Alloy (Ti–6Al–4V)
Authors
김종민구준영전차수
Issue Date
2021
Publisher
한국기계가공학회
Keywords
티타늄 합금; 밀링가공 얇은 벽 구조; 절삭 신호; 가공표면; 공구마모; Ti-alloy; Milling Process; Thin-walled Structure; Cutting Signal; Machined Surface; Tool Wear
Citation
한국기계가공학회지, v.20, no.11, pp.52 - 59
Indexed
KCI
Journal Title
한국기계가공학회지
Volume
20
Number
11
Start Page
52
End Page
59
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/4821
DOI
10.14775/ksmpe.2021.20.11.052
ISSN
1598-6721
Abstract
Titanium alloy (Ti-alloy) is widely used as a material for core parts of aircraft structures and engines thatrequire both lightweight and heat-resistant properties owing to their high specific stiffness. Most parts used inaircraft have I-, L-, and H-shaped thin-walled structures for weight reduction. It is difficult to machinethin-walled structures owing to vibrations and deformations during machining. In particular, cutting tooldamage occurs in the corners of thin-walled structures owing to the rapid increase in cutting force andvibration, and machining quality deteriorates because of deep tool marks on machined surfaces. In this study,milling experiments were performed to derive an effective method for machining a L-shaped thin-walledstructure with Ti-alloy (Ti 6Al 4V). – – Three types of machining experiment were performed. The surfacequality, tool wear, cutting force, and vibration were analyzed comprehensively, and an effective machiningmethod in terms of tool life and machining quality was derived.
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