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밀링가공 시 공구 경로에 따른 채터링 분석Toolpath Dependent Chatter Stability analysis During Milling Process

Other Titles
Toolpath Dependent Chatter Stability analysis During Milling Process
Authors
김동은이재경서재우
Issue Date
Apr-2024
Publisher
한국생산제조학회
Keywords
Chatter; Milling process; Toolpath; Stability lobe diagram
Citation
한국생산제조학회지, v.33, no.2, pp 107 - 112
Pages
6
Indexed
KCI
Journal Title
한국생산제조학회지
Volume
33
Number
2
Start Page
107
End Page
112
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70309
DOI
10.7735/ksmte.2024.33.2.107
ISSN
2508-5093
2508-5107
Abstract
During the milling process, interaction between the cutting tool and workpiece can result in a chatter phenomenon. This not only adversely affects the workpiece's surface finish, but also the performance of the machine tool system. Stability lobe diagram is a widely accepted method to prevent chatter, in which the maximum permissible depth of cut is calculated for a given spindle speed. This paper introduces a comprehensive approach for deriving the stability lobe diagram using a simulation model. The method encompasses the dynamic identification of the tool tip, cutting force analysis, and stability calculations. Moreover, while most existing chatter prediction studies focus on slot milling, this paper uniquely offers a method to predict chatter stability, particularly during pocket milling processes.
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