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온간 굽힘 성형에서 시간을 고려한 마그네슘 합금 판재(AZ31B)의 스프링백 특성 분석

Analysis of Springback Characteristics of Magnesium Alloy Sheet (AZ31B) Considering Time-Dependence in Warm Bending

Journal of the Korean Society for Precision Engineering 2020;37(3):201-207.
Published online: March 1, 2020

1 서울과학기술대학교 기계디자인금형공학과

1 Department of Mechanical Design & Manufacturing Engineering, Seoul National University of Science &Technology

#E-mail: cwlee@seoultech.ac.kr, TEL: +82-2-970-9822
• Received: July 31, 2019   • Revised: November 18, 2019   • Accepted: December 31, 2019

Copyright © The Korean Society for Precision Engineering

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Citations

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  • Analysis of acoustic emission signals during bending deformation of magnesium alloy sheet
    Jae-Hyeong Yu, In-Gyu Choi, Jung-Sik Yoon, John S. Kang, Wan-Jin Chung, Chang-Whan Lee
    Nondestructive Testing and Evaluation.2025; : 1.     CrossRef
  • Analysis on the Warm Bending Process of Magnesium Alloy Sheet Using Additively Manufactured Polymer Die-Set
    Hyung-Won Youn, Jun-Hyun Kyeong, Keun Park, Chang-Whan Lee
    Journal of the Korean Society for Precision Engineering.2021; 38(10): 775.     CrossRef
  • Study on the Time-Dependent Mechanical Behavior and Springback of Magnesium Alloy Sheet (AZ31B) in Warm Conditions
    Jae-Hyeong YU, Chang-Whan Lee
    Materials.2021; 14(14): 3856.     CrossRef

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Analysis of Springback Characteristics of Magnesium Alloy Sheet (AZ31B) Considering Time-Dependence in Warm Bending
J. Korean Soc. Precis. Eng.. 2020;37(3):201-207.   Published online March 1, 2020
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Analysis of Springback Characteristics of Magnesium Alloy Sheet (AZ31B) Considering Time-Dependence in Warm Bending
J. Korean Soc. Precis. Eng.. 2020;37(3):201-207.   Published online March 1, 2020
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Analysis of Springback Characteristics of Magnesium Alloy Sheet (AZ31B) Considering Time-Dependence in Warm Bending
Image Image Image Image Image Image Image Image Image Image Image Image Image Image
Fig. 1 True stress–true strain graph of AZ31 at various temperature
Fig. 2 The specimen of (a) L-bending and (b) V-bending.
Fig. 3 The die of (a) L-bending and (b) V-bending
Fig. 4 Deformation workpiece (a) without springback and (b) with springback in L-bending
Fig. 5 Deformation workpiece (a) without springback and (b) with springback in V-bending
Fig. 6 The temperature of material on plastic deformation region
Fig. 7 Microstructure observation region in V-bending specimen
Fig. 8 Material shape of (a) L-bending and (b) V-bending according to temperature at punch holding time 0 s
Fig. 9 Springback of AZ31B at temperature in each process
Fig. 10 The microstructure of AZ31B after V-bending process at (a) R.T., Compression zone, (b) R.T., Tension zone, (c) 250°C, Compression zone and (d) 250°C, Tension zone
Fig. 11 Material shape of (a) L-bending and (b) V-bending according to punch holding time at 150°C
Fig. 12 The springback of (a) L-bending process and (b) V-bending according to punch holding time and temperature
Fig. 13 The microstructure of AZ31B after V-bending process according to material holding time (a) 0 s, Compression zone, (b) 1000 s, Compression zone, (c) 0 s, Tension zone and (d) 1000 s, Tension zone in room temperature
Fig. 14 The microstructure of AZ31B after V-bending process according to material holding time (a) 0 s, Compression zone, (b) 1000 s, Compression zone, (c) 0 s, Tension zone and (d) 1000 s, Tension zone in 250°C
Analysis of Springback Characteristics of Magnesium Alloy Sheet (AZ31B) Considering Time-Dependence in Warm Bending
Density
(kg/m3)
Poissons
ratio
Yield stress
(MPa)
Elastic modulus
(GPa)
1850 0.35 231.1 39.2
Material L-bending
length × width
(mm)
V-bending
length × width
(mm)
Thickness
(mm)
AZ31B 60 × 30 200 × 30 1
Table 1 The mechanical properties of AZ31B at room temperature
Table 2 The specimen size of each process