The aim of this study was to analyze the ultimate strength of stiffened aluminum panels by the non-linear finite element method. A new type of stiffened aluminum alloy panel has been designed which has fixed longitudinal and alternating floating transverse frames. Based on material tensile tests, the material properties of the aluminum alloy were obtained. Then, the simulation method of welding residual stresses and the effect of heat-affected zone are investigated. The FEA software ABAQUS V6.11 is used to estimate the ultimate strength of these stiffened panels under axial compression. The results show that: 1) The mechanical imperfections have significant effect on ultimate strength of stiffened panels; 2) residual stresses may have positive effect on ultimate strength; 3) the new stiffened panels also have good performance on ultimate bearing capacities.
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ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering
May 31–June 5, 2015
St. John’s, Newfoundland, Canada
Conference Sponsors:
- Ocean, Offshore and Arctic Engineering Division
ISBN:
978-0-7918-5649-9
PROCEEDINGS PAPER
FEM Analysis of the Ultimate Strength of Aluminum Stiffened Panels With Fixed and Floating Transverse Frames
Chenfeng Li,
Chenfeng Li
Harbin Engineering University, Harbin, China
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Huilong Ren,
Huilong Ren
Harbin Engineering University, Harbin, China
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Zhiyao Zhu,
Zhiyao Zhu
Harbin Engineering University, Harbin, China
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Carlos Guedes Soares
Carlos Guedes Soares
Universidade de Lisboa, Lisboa, Portugal
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Chenfeng Li
Harbin Engineering University, Harbin, China
Huilong Ren
Harbin Engineering University, Harbin, China
Zhiyao Zhu
Harbin Engineering University, Harbin, China
Carlos Guedes Soares
Universidade de Lisboa, Lisboa, Portugal
Paper No:
OMAE2015-41482, V003T02A101; 9 pages
Published Online:
October 21, 2015
Citation
Li, C, Ren, H, Zhu, Z, & Guedes Soares, C. "FEM Analysis of the Ultimate Strength of Aluminum Stiffened Panels With Fixed and Floating Transverse Frames." Proceedings of the ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering. Volume 3: Structures, Safety and Reliability. St. John’s, Newfoundland, Canada. May 31–June 5, 2015. V003T02A101. ASME. https://doi.org/10.1115/OMAE2015-41482
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