Javascript must be enabled to continue!
Effects of Cumulative Buckling Deformation Formed by Cyclic Loading on Ultimate Strength of Stiffened Panel
View through CrossRef
In this study, for the stiffened panels subjected to the in-plane cyclic compression loads, the two followings are clarified. One is a generating process of the cumulative buckling deformation at panel parts of stiffened panels. The other is the effect of the cumulative buckling deformation on the ultimate strength of stiffened panels. To clarify them, the cyclic compression loading experiments were carried out with two stiffened panel specimens by using Multi Axis Loading System in National Maritime Research Institute (NMRI) in Japan. For one stiffened panel specimen, the thirty-one sets of compression test cases were conducted with different strokes and for each case. The number of cycles in each set was 100. While, for the other, it was subjected to the cyclic compression loads until it collapsed. In addition, Finite Element Method (FEM) analyses for stiffened panels subjected cyclic compression loads are carried out with the same condition as the experiments by using commercial FEM software, LS-DYNA.
American Society of Mechanical Engineers
Title: Effects of Cumulative Buckling Deformation Formed by Cyclic Loading on Ultimate Strength of Stiffened Panel
Description:
In this study, for the stiffened panels subjected to the in-plane cyclic compression loads, the two followings are clarified.
One is a generating process of the cumulative buckling deformation at panel parts of stiffened panels.
The other is the effect of the cumulative buckling deformation on the ultimate strength of stiffened panels.
To clarify them, the cyclic compression loading experiments were carried out with two stiffened panel specimens by using Multi Axis Loading System in National Maritime Research Institute (NMRI) in Japan.
For one stiffened panel specimen, the thirty-one sets of compression test cases were conducted with different strokes and for each case.
The number of cycles in each set was 100.
While, for the other, it was subjected to the cyclic compression loads until it collapsed.
In addition, Finite Element Method (FEM) analyses for stiffened panels subjected cyclic compression loads are carried out with the same condition as the experiments by using commercial FEM software, LS-DYNA.
Related Results
A study of parametric instability of eccentrically stiffened rectangular plates
A study of parametric instability of eccentrically stiffened rectangular plates
The purpose of the investigation was to determine the onset of parametric instability for a simply-supported rectangular stiffened plate subjected to periodic in-plane loads. The s...
Experimental Study Of Curvature And Frictional Effects On Buckling
Experimental Study Of Curvature And Frictional Effects On Buckling
ABSTRACT
Buckling and post-buckling lock-up place a limit on the reach of extended-reach and horizontal wells. Although buckling has received considerable theoret...
Buckling Analysis in Creep Conditions: Review and Comparison
Buckling Analysis in Creep Conditions: Review and Comparison
In the case of structures operating at high temperature in normal or accidental conditions, the influence of creep has to be considered at the design stage because this phenomenon ...
Comparative Study of Post-Buckling Load Redistribution in Stiffened Aircraft Panel With and Without Material Nonlinearity
Comparative Study of Post-Buckling Load Redistribution in Stiffened Aircraft Panel With and Without Material Nonlinearity
In this article, a comparative study is presented on the post-buckling load redistribution in stiffened aircraft panels modeled with and without material nonlinearity. In the first...
Buckling Design of Ring-Stiffened Cylinders
Buckling Design of Ring-Stiffened Cylinders
ABSTRACT
The paper reports on a study carried out by J.P. Kenny & Partners on behalf of the U.K. Department of Energy to update the Guidance Notes relating to...
A Simple Design Formula to Estimate the Ultimate Strength of Stiffened Panels Under Bi-Axial Compression Mainly in Transverse Direction
A Simple Design Formula to Estimate the Ultimate Strength of Stiffened Panels Under Bi-Axial Compression Mainly in Transverse Direction
Most of stiffened panels subjected to bi-axial compression mainly in transverse direction collapse with the buckling deformation of one times one half-wave in a local panel between...
Buckling and Post-Buckling Strength of Circular Tubular Sections
Buckling and Post-Buckling Strength of Circular Tubular Sections
ABSTRACT
Results of axial load tests carried out on (8 5/8 in.×0.219 in.) seamless and (12 3/4 in.×0.250 in.) electric-weld Grade B line-pipes with slenderness ra...
FABRICATION OF COMPOSITE STIFFENED PANEL
FABRICATION OF COMPOSITE STIFFENED PANEL
A Composite materials are widely used in aerospace structures due to their high strength-to weight ratio and high stiffness-to-weight ratio as compared to conventional materials.We...

