Influence of flexural stiffness ratio on the buckling behavior of a stiffened plate
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摘要: 以一大型薄壁鋼結構的加勁板為研究對象,采用有限元方法,考慮了13種不同的剛度比、多種不同的加勁肋布置方式以及邊界條件等因素,分析了加勁板線性屈曲和非線性屈曲性能.抗彎剛度比對加勁板的屈曲性能影響顯著,加勁板最佳抗彎剛度比將其線性屈曲模態劃分為整體屈曲和局部屈曲,其值為10~20.加勁板非線性屈曲荷載隨抗彎剛度比增大而提高.另外,在加載方向增加加勁肋布置可以提高加勁板局部屈曲荷載,在非加載方向增加加勁肋布置對加勁板的局部屈曲性能影響較小.Abstract: With the consideration of 13 different stiffness ratios, different stiffener arrangements and boundary conditions, the linear buckling and non-linear buckling behaviors of a stiffened plate with large-scale thin-walled steel structure were investigated using a finite element method. It is found that the effect of flexural stiffness ratio on the buckling performance of the stiffened plate is significant. At the critical stiffness ratio, which is ranging from 10 to 20, the buckling modes of the stiffened plate are divided into two main types, overall buckling and local buckling. The non-linear buckling load increases with the flexural stiffness ratio of the stiffened plate increasing. The increment of stiffeners in the loading direction can increase the local buckling load of the stiffened plate; however the increase of stiffeners in the non-loading direction has little effect on the local buckling behavior of the stiffened plate.
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Key words:
- steel structures /
- stiffened plates /
- stiffness /
- buckling /
- finite element method
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