Buckling behavior of thin steel sheets with ribbed stiffeners in a selective catalytic reactor
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摘要: 通過有限元方法分析了大型反應器鋼結構體系的受力與變形的薄弱位置,并對反應器中大量使用的加勁薄鋼板的屈曲性能進行了研究.在此基礎上,實驗分析了加勁板的穩定性.結果表明:矩形薄鋼板開孔周圍加加勁肋時,加勁肋對板起到嵌固作用;對于此反應器整體結構來說,薄板選擇L形加勁肋最優;對于帶有加勁肋的薄板,邊界約束條件越強,臨界屈曲荷載越大,板越不易發生屈曲.實驗和數值結果有較好的一致性.Abstract: The finite element method was used to analyze weak positions of load and deformation in the steel structure system of a large-scale selective catalytic reactor and study the buckling behavior of thin steel sheets with ribbed stiffeners. Based on these simulations, the stability of the sheets was discussed by experiment. The results indicate that the sheets are strengthened when rectangular holes are attached to ribbed stiffeners, which should choose L-ribbed stiffeners for the whole structure. The stronger the boundary constraint condition of thin steel sheets with ribbed stiffeners is, the bigger the critical buckling loading is, and the more difficult to buckle the sheets are. The experimental data are in better agreement with the simulation results.
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Key words:
- reactor /
- thin sheet /
- stiffening rib /
- reinforcement /
- buckling eigenvalue
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