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Tripping of Asymmetrical Stiffeners Under Combined Loading

机译:复合加载下非对称加劲肋的跳闸

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Presented is a study of the tripping strength of asymmetrical longitudinal plate stiffeners subjected to a combination of axial and lateral loads. The loaded edges were taken to be simply supported. The method of analysis is based on the principle of minimum total potential, and ten displacement functions were used to describe the deformations of the plate and stiffeners. First yielding was used as the criterion of ultimate strength. Instability under axial loading was investigated for the symmetrical (Tee) and asymmetrical (Angle) stiffeners. Angle stiffeners showed greater capacity than Tee stiffeners for lower values of the slenderness ratio (L/r), but lower capacity for higher values of the slenderness ratio, especially, after consideration of the deformations of the stiffener web. A modified effective width concept was introduced into into the analysis to consider the effect of postbuckling plate deformations under combined loading condition. A relationship for the interaction between the axial and lateral loads when the lateral loading is applied in the direction from plate to stiffener. When the lateral loading is applied in the other direction, the interaction is almost linear. The computer program developed during the study was the main tool to provide the needed numerical results.

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