유연 진공 지그 기반 박판 Al6061 스킨 밀링 시 두께 오차 발생 원인 분석Analysis of Thickness Error Mechanisms in Flexible Vacuum Fixture-Based Milling of Thin Al6061 Skins
- Other Titles
- Analysis of Thickness Error Mechanisms in Flexible Vacuum Fixture-Based Milling of Thin Al6061 Skins
- Authors
- 조동현; 김규민; 박수빈; 박준형; 허지훈; 김수진
- Issue Date
- Feb-2026
- Publisher
- 한국생산제조학회
- Keywords
- Flexible vacuum fixture; Thin plate machining; Aluminum skin milling; Thickness error; Cutting deformation; Machining strategy
- Citation
- 한국생산제조학회지, v.35, no.1, pp 68 - 76
- Pages
- 9
- Indexed
- KCI
- Journal Title
- 한국생산제조학회지
- Volume
- 35
- Number
- 1
- Start Page
- 68
- End Page
- 76
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/82436
- ISSN
- 2508-5093
2508-5107
- Abstract
- The mechanisms of thickness error occurring during the milling of 3.0 mm thin aluminum Al6061 skins were investigated using a flexible vacuum fixture with a 3 × 3 array of vacuum pads. The effects of fixture setting error, cutting-induced deformation, and post-machining thickness distribution were evaluated for three specimens. The correlation analysis between pin height setting error and pocket-milled thickness yielded no meaningful relationship with the resulting thickness error. However, the skin underwent repeated elastic deformation under cutting forces. Owing to lever-type deformation about the supporting pins, the measured displacement at a fixed location gradually increased, reaching approximately 0.06 mm on average. Process improvements, such as reducing tool-path interval and applying separated roughing and finishing, lowered the maximum-to-minimum thickness deviation from 1.49 to 0.83 mm and further to 0.27 mm. This study highlights the necessity of deformation-minimization techniques to achieve high thickness accuracy in vacuum-supported thin-plate milling processes.
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