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프론트 너클 구조물의 L-PBF 3D 프린팅 제조 공정에서 열변형 해석Thermal Deformation Analysis in L-PBF 3D Printing Process of Front Knuckle Structure

Other Titles
Thermal Deformation Analysis in L-PBF 3D Printing Process of Front Knuckle Structure
Authors
양영수윤석철최균석배강열
Issue Date
Jun-2025
Publisher
한국기계가공학회
Keywords
3D Printing(3D 프린팅); L-PBF(레이저 분말 적층 융합); Thermo Elastoplastic Analysis(열탄소성 해석); Thermal Deformation(열변형); Finite Element Method(유한요소법)
Citation
한국기계가공학회지, v.24, no.6, pp 71 - 78
Pages
8
Indexed
KCI
Journal Title
한국기계가공학회지
Volume
24
Number
6
Start Page
71
End Page
78
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/79088
DOI
10.14775/ksmpe.2025.24.6.071
ISSN
1598-6721
2288-0771
Abstract
This study analyzed the causes of thermal deformation during additive manufacturing of a front knuckle structure using the laser powder bed fusion (L-PBF) process. Accordingly, a process simulation model was developed by increasing the layer thickness per scan while reducing the number of layers. Based on the proposed model, a finite element analysis (FEA) was conducted to perform heat transfer and thermo-elasto-plastic analyses. In addition, we propose a simplified process simulation model that incorporates the characteristics of rapid heating and cooling. Using this model, we conduct a thermal deformation analysis without a heat transfer analysis to investigate the deformation behavior. The proposed process simulation models, along with the FEA, effectively analyzed the thermal stress and deformation during the additive process. The results indicated that thermal deformation predominantly occurred in the build direction, with the largest deformation occurring at the edges. Moreover, most additively manufactured structures exhibit residual stress levels approaching the yield stress. Furthermore, the model that omitted the heat transfer analysis significantly reduced the computational time and data storage requirements.
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