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중공 잉곳을 이용한 대형 링 단조품 제조공정 설계 연구Process Design on Fabrication of Large Sized Ring by Mandrel Forging of Hollow Cast Ingot

Other Titles
Process Design on Fabrication of Large Sized Ring by Mandrel Forging of Hollow Cast Ingot
Authors
이승욱이영선이명원이동희김상식
Issue Date
2010
Publisher
한국소성가공학회
Keywords
Hollow Ingot; Ring Forging; FEM; Process Design; Material Utilization
Citation
소성가공, v.19, no.6, pp 329 - 336
Pages
8
Indexed
KCI
Journal Title
소성가공
Volume
19
Number
6
Start Page
329
End Page
336
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/25539
ISSN
1225-696X
2287-6359
Abstract
Ring forging process is more appropriate for high-length and thin walled ring, because it utilizes the forging press and hence does not require heavy-duty ring rolling mill. Although ring forging process is very simple and economic for facilities, the process is not efficient because of multi-forging-step and low material utilization. An effective ring forging process is developed using a hollow ingot. When a hollow ingot is used with a workpiece, the ingot can be forged into a final ring without multi-stage pre-forging process, such as, cogging, upsetting, and piercing, etc.. Finally it has advantages of the material utilization and process improvement because a few reheating and forging process are not necessary to make workpiece for ring forging. The important design variables are the applied plastic deformation energy to eliminate cast structure and make uniform properties. In this study, the mechanical properties after forging of hollow cast ingot were investigated from the experiment using circumferential sectional model. Also, the effects of process variables were studied by FEM simulation on the basis of thermo-visco-plastic constitutive equation. Applied strain is different at each position in length direction because diameter of hollow ingot is different in length direction. The different strain distribution become into a narrow gap by additional plastic deformation during diameter extension process.
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공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles

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대학원 (나노신소재융합공학과)
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