Revisiting the wrinkling limit curve in sheet metal forming

被引:0
|
作者
Magrinho, J. P. [1 ]
Santos, J. A. O. [1 ]
Silva, M. B. [1 ]
机构
[1] Univ Lisbon, IDMEC, Inst Super Tecn, Ave Rovisco Pais, P-1049001 Lisbon, Portugal
关键词
Sheet metal forming; Wrinkling; Wrinkling limit curve; Stress state; Experimentation; INITIATION;
D O I
10.1016/j.tws.2025.113199
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The quest to minimise energy consumption in the manufacturing industry has prompted a shift towards the use of thinner sheet metals, which offer reduced energy requirements for forming operations and material usage. However, the increased susceptibility to failure, particularly by tearing and wrinkling, poses significant challenges. This study focuses on investigating the formability of aluminium AA1050-O sheets with a thickness of 1.5 mm, emphasising the determination of the onset of wrinkling, a critical parameter in sheet metal forming. Experimental tests, including the Yoshida Buckling Test, Shear Test, and Uniaxial Compression Test, were conducted to establish the onset of wrinkling under different stress states. The onset of wrinkling was determined using three different methodologies: position-dependent, physically-based, and energy-based. Notably, the authors proposed a physically-based methodology that utilises the in-plane minor strain analysis and demonstrates superior effectiveness in detecting wrinkling initiation compared to the traditional position-dependent methodology. This research provides valuable insights into enhancing the understanding and prediction of wrinkling behaviour in thin sheet metal forming processes and presents the Wrinkling Limit Curve (WLC) for the analysed aluminium sheet.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Predictive tool for delaying wrinkling and tearing failures in sheet metal forming
    Massachusetts Inst of Technology, Cambridge, United States
    J Eng Mater Technol Trans ASME, 4 (354-365):
  • [32] Forming Limit Prediction of Sheet Metals Subjected to Combined Loading Using Forming Limit Stress Curve
    Sugawara, Fuminori
    Yoshida, Kengo
    Kuwabara, Toshihiko
    Taomoto, Naoki
    Yanagi, Naoki
    INTERNATIONAL CONFERENCE ON ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES, PTS ONE AND TWO, 2010, 1315 : 383 - +
  • [33] Establishment of the unified critical wrinkling limit curve of thin-walled parts forming
    Du, Bing
    Yang, Hengyan
    Wang, Jingyan
    Liang, Jingyun
    Li, Han
    Zhao, Changcai
    ENGINEERING FAILURE ANALYSIS, 2022, 140
  • [34] A Path Independent Forming Limit Criterion for Sheet Metal Forming Simulations
    Zeng, Danielle
    Chappuis, Laurent
    Xia, Z. Cedric
    Zhu, Xinhai
    SAE INTERNATIONAL JOURNAL OF MATERIALS AND MANUFACTURING, 2009, 1 (01) : 809 - 817
  • [35] FORMING LIMIT DIAGRAM OF THE AMS 5599 SHEET METAL
    Fracz, W.
    Stachowicz, F.
    Trzepiecinski, T.
    Pieja, T.
    ARCHIVES OF METALLURGY AND MATERIALS, 2013, 58 (04) : 1213 - 1217
  • [36] Wrinkling prediction for GPa-grade steels in sheet metal forming process
    Chanhee Won
    Hyung-gyu Kim
    Seokryul Lee
    Dongjin Kim
    Sunghyuk Park
    Jonghun Yoon
    The International Journal of Advanced Manufacturing Technology, 2019, 102 : 3849 - 3863
  • [37] EFFECT OF PLASTIC ANISOTROPY ON FLANGE WRINKLING BEHAVIOUR DURING SHEET METAL FORMING
    NAZIRI, H
    PEARCE, R
    METALLURGIA ITALIANA, 1968, 60 (08): : 727 - &
  • [38] Influence of bending effect of low melting alloy on wrinkling for sheet metal forming
    Liyan Wang
    Shuangyu Liu
    Lei Zheng
    Lin Shao
    The International Journal of Advanced Manufacturing Technology, 2024, 130 : 1181 - 1194
  • [39] A neural networks approach to investigating the geometrical influence on wrinkling in sheet metal forming
    Wang, J
    Wu, X
    Thomson, PF
    Flitman, A
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2000, 105 (03) : 215 - 220
  • [40] Revisiting the wrinkling limits in flexible roll forming
    Kasaei, M. M.
    Naeini, H. Moslemi
    Liaghat, G. H.
    Silva, C. M. A.
    Silva, M. B.
    Martins, P. A. F.
    JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN, 2015, 50 (07): : 528 - 541