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고밀도 전자빔 조사 기반 대량의 미세홀 가공 실험 및 노이즈를 배제한 Micro CT 미세홀 형상 분석 연구Micro CT Analysis of Microholes Drilled by Focused Electron Beam Drilling Based on Image Noise Reduction Using Masking Layers

Other Titles
Micro CT Analysis of Microholes Drilled by Focused Electron Beam Drilling Based on Image Noise Reduction Using Masking Layers
Authors
박현민강준구김진석강은구박형욱서재우
Issue Date
Dec-2022
Publisher
한국생산제조학회
Keywords
Focused electron beam; Microhole drilling; Micro CT; Image processing; Nondestructive analysis
Citation
한국생산제조학회지, v.31, no.6, pp 388 - 395
Pages
8
Indexed
KCI
Journal Title
한국생산제조학회지
Volume
31
Number
6
Start Page
388
End Page
395
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/29433
DOI
10.7735/ksmte.2022.31.6.388
ISSN
2508-5093
2508-5107
Abstract
Focused electron beam drilling is an advanced manufacturing process for rapid and mass penetration of the microholes on a metallic substrate. A focused electron beam can generate tapered microholes on the metallic substrate based on an ablation process with high thermal energy absorptance. To improve the geometrical qualities of microhole by optimizing the process parameters related to the electron beam, analyzing many cases of the intact microholes is important. However, analyzing for the geometrical shapes of microholes without any damage or deformation of the drilled substrate is time-consuming and requires a certain level of proficiency. In this study, micro computed tomography (micro CT) analysis of microholes on stainless steel substrates that were drilled with a focused electron beam depending on the beam currents was conducted. Moreover, using the overlapping method of masking layers, X-ray diffraction noises in the cross-sectional images of the drilled substrates were excluded during the microhole analysis.
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공과대학 (기계융합공학과)
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