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알루미늄 고정 스크롤 열간 단조공정의 금형 파괴 원인 및 실용적 대책open access Reason of Die Fracture in Hot Forging of an Aluminum Fixed Scroll and Its Practical Measures

Other Titles
Reason of Die Fracture in Hot Forging of an Aluminum Fixed Scroll and Its Practical Measures
Authors
김영신전만수
Issue Date
2017
Publisher
한국소성가공학회
Keywords
Die Fracture; Fixed Scroll; Aluminum Hot Forging; Optimized Initial Material
Citation
소성가공, v.26, no.3, pp 156 - 161
Pages
6
Indexed
KCI
Journal Title
소성가공
Volume
26
Number
3
Start Page
156
End Page
161
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/14537
DOI
10.5228/kstp.2017.26.3.156
ISSN
1225-696X
2287-6359
Abstract
In this study, the reason of die fracture occurring in hot forging of an aluminum fixed scroll was studied, based on experiments and finite element predictions. The material is assumed to be rigid-viscoplastic, and the die is rigid for the finite element predictions. The stress in the tension at the wrap root is known to cause brittle fracture, and the increase in the tensile stress is owing to the unbalanced filling of material into the die cavities between both sides of the warp. Based on the empirical and numerical achievements, the effects of geometrical parameters of the material on the die fracture were examined to find practical measures for elongated die life. It has been shown from the parametric study that the material with the optimized trapezoidal cross-section, which can be easily made during cutting or the optimized cylindrical billet with its eccentric placement in the die cavity, can considerably reduce the magnitude of the tensile stress around the die corner fractured, indicating that economical manufacturing with reduced number of stages and elongated die life can be realized at once using the optimized practical initial material.
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