The coordinated deformation behavior in double-curved bending of pure titanium square/rectangular plate with multiple radius ratios

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I whakaputaina i:Journal of Physics: Conference Series vol. 3068, no. 1 (Aug 2025), p. 012038
Kaituhi matua: Liu, Po
Ētahi atu kaituhi: Sun, Zhenhui, Li, Shutong, Wang, Runzheng, Qu, Jingjing, Han, Pengbiao
I whakaputaina:
IOP Publishing
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Urunga tuihono:Citation/Abstract
Full Text - PDF
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LEADER 00000nab a2200000uu 4500
001 3239110867
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022 |a 1742-6588 
022 |a 1742-6596 
024 7 |a 10.1088/1742-6596/3068/1/012038  |2 doi 
035 |a 3239110867 
045 2 |b d20250801  |b d20250831 
100 1 |a Liu, Po  |u Guangxi Key Laboratory of Special Engineering Equipment and Control, Guilin University of Aerospace Technology , Guilin, 541004, P.R. China 
245 1 |a The coordinated deformation behavior in double-curved bending of pure titanium square/rectangular plate with multiple radius ratios 
260 |b IOP Publishing  |c Aug 2025 
513 |a Journal Article 
520 3 |a To extensively investigate the bi-directional bending behavior of sheet metal, double-curved bending experiments with radius ratios ranging from 1:1 to 6:1 were conducted based on TA3 titanium alloy square and rectangular sheets. In combination with finite element simulation, the evolution trend of the blank-die contact area and material flow rule were investigated. The results show that the radius combination and specimen shape both have a remarkable effect on the evolution of blank-die contact area and bending deformation mode. The evolution trend of the contact area is mainly dependent on the combination of the bending radius. Material flows from the centre to its surrounding area in a double curvature bending process. The greater the sheet bending radius ratio, the more apparent the flowing phenomenon is observed along the larger curvature direction. The finite element predicted results agree well with experimental results. The new findings in this paper not only expand the bending theoretical basis but also provide valuable reference for the double-curved parts. 
653 |a Deformation effects 
653 |a Titanium base alloys 
653 |a Evolution 
653 |a Metal sheets 
653 |a Titanium alloys 
653 |a Bend radius 
653 |a Curvature 
653 |a Rectangular plates 
700 1 |a Sun, Zhenhui  |u Hebei University of Science and Technology, College of Materials Science and Engineering , Shijiazhuang, 050018, P.R. China; Hebei Key Laboratory of Near-Net Forming Technology of Materials , Shijiazhuang, 050018, P.R. China 
700 1 |a Li, Shutong  |u Hebei University of Science and Technology, College of Materials Science and Engineering , Shijiazhuang, 050018, P.R. China; Hebei Key Laboratory of Near-Net Forming Technology of Materials , Shijiazhuang, 050018, P.R. China 
700 1 |a Wang, Runzheng  |u Hebei University of Science and Technology, College of Materials Science and Engineering , Shijiazhuang, 050018, P.R. China; Hebei Key Laboratory of Near-Net Forming Technology of Materials , Shijiazhuang, 050018, P.R. China 
700 1 |a Qu, Jingjing  |u Guangxi Key Laboratory of Special Engineering Equipment and Control, Guilin University of Aerospace Technology , Guilin, 541004, P.R. China 
700 1 |a Han, Pengbiao  |u Hebei University of Science and Technology, College of Materials Science and Engineering , Shijiazhuang, 050018, P.R. China; Hebei Key Laboratory of Near-Net Forming Technology of Materials , Shijiazhuang, 050018, P.R. China 
773 0 |t Journal of Physics: Conference Series  |g vol. 3068, no. 1 (Aug 2025), p. 012038 
786 0 |d ProQuest  |t Advanced Technologies & Aerospace Database 
856 4 1 |3 Citation/Abstract  |u https://www.proquest.com/docview/3239110867/abstract/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch 
856 4 0 |3 Full Text - PDF  |u https://www.proquest.com/docview/3239110867/fulltextPDF/embedded/7BTGNMKEMPT1V9Z2?source=fedsrch