The large discrepancies between observed buckling loads for thin shells and the predictions of the classical theory have been a great challenge to many researchers since the 1920s. In this paper, the basic behaviour and characteristics are described and recent research, mainly from the last 10 years, is reviewed. The focus is on cylindrical shells and on the influence of initial imperfections on the buckling behaviour
From soda cans to space rockets, thin-walled cylindrical shells are abundant, offering exceptional l...
Reliable and accurate method of the experimental buckling prediction of thin-walled cylindrical shel...
Some of the knock-down factors applied in design of rocket launcher structures are based on design r...
The large discrepancies between observed buckling loads for thin shells and the predictions of the c...
An experimental and theoretical investigation of the effect of a specific type of initial imperfecti...
This paper investigates issues that have arisen in recent efforts to revise long-standing knockdown ...
In an earlier report (TAM Report No. 80), the authors considered the buckling and post-buckling beha...
The widely accepted theory of buckling of thin cylindrical shells under axial compressive loading em...
The strength of thin shells, under external pressure, is highly dependent by the nature of imperfect...
Thin-walled structures are capable of carrying loads very efficiently. However, they are prone to bu...
Shell structure is widely used in engineering area. The purpose of this dissertation is to show the ...
The worst geometric imperfection is a mathematical concept which should deliver in theory a lower bo...
p. 2511-2522The application of thin-walled cylindrical shells, as the essential structural members, ...
The present paper investigates structural response and buckling of long unstiffened thin-walled cyli...
The present paper investigates structural response and buckling of long unstiffened thin-walled cyli...
From soda cans to space rockets, thin-walled cylindrical shells are abundant, offering exceptional l...
Reliable and accurate method of the experimental buckling prediction of thin-walled cylindrical shel...
Some of the knock-down factors applied in design of rocket launcher structures are based on design r...
The large discrepancies between observed buckling loads for thin shells and the predictions of the c...
An experimental and theoretical investigation of the effect of a specific type of initial imperfecti...
This paper investigates issues that have arisen in recent efforts to revise long-standing knockdown ...
In an earlier report (TAM Report No. 80), the authors considered the buckling and post-buckling beha...
The widely accepted theory of buckling of thin cylindrical shells under axial compressive loading em...
The strength of thin shells, under external pressure, is highly dependent by the nature of imperfect...
Thin-walled structures are capable of carrying loads very efficiently. However, they are prone to bu...
Shell structure is widely used in engineering area. The purpose of this dissertation is to show the ...
The worst geometric imperfection is a mathematical concept which should deliver in theory a lower bo...
p. 2511-2522The application of thin-walled cylindrical shells, as the essential structural members, ...
The present paper investigates structural response and buckling of long unstiffened thin-walled cyli...
The present paper investigates structural response and buckling of long unstiffened thin-walled cyli...
From soda cans to space rockets, thin-walled cylindrical shells are abundant, offering exceptional l...
Reliable and accurate method of the experimental buckling prediction of thin-walled cylindrical shel...
Some of the knock-down factors applied in design of rocket launcher structures are based on design r...