The optimization problems taken into consideration in this paper consist in finding the shape and the thickness distribution of elastic axisymmetric shells in the frame of membrane theory, loaded by fixed statical forces in such a way that the cost functional reaches a maximum, while satisfiyng some strentgh mechanics constraints; In this paper the mass effectiveness of the shell is considered as a cost function and as constraint we use the bounds on the maximum normal stress which is typical for shells made from brittle or quasi-brittle materials. The paper gives some possible formulations of optimal structural design problems. Analytical investigations and corresponding solutions are presented
A design problem of finding an optimally stiff membrane structure by selecting one–dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...
The optimization problems taken into consideration in this paper consist in finding the shape and th...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
The paper is devoted to the analytic optimization of the thickness distribution of axisymmetric vess...
International audienceThe present contribution aims at evaluating the limit load of axisymmetric she...
International audienceThe present contribution aims at evaluating the limit load of axisymmetric she...
The present paper deals with the thickness optimization of shells of revolution of various shapes an...
This paper describes a problem of axisymmetric shell optimization under fracture mechanics and geom...
This paper is concerned with determining the optimum conditions of steel cylindrical shells with tec...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
The surface stresses in band reinforced cylindrical pressure vessels are examined, and an equivalen...
A design problem of finding an optimally stiff membrane structure by selecting one–dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one–dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...
The optimization problems taken into consideration in this paper consist in finding the shape and th...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
The paper is devoted to the analytic optimization of the thickness distribution of axisymmetric vess...
International audienceThe present contribution aims at evaluating the limit load of axisymmetric she...
International audienceThe present contribution aims at evaluating the limit load of axisymmetric she...
The present paper deals with the thickness optimization of shells of revolution of various shapes an...
This paper describes a problem of axisymmetric shell optimization under fracture mechanics and geom...
This paper is concerned with determining the optimum conditions of steel cylindrical shells with tec...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
summary:Axisymmetric thin elastic shells of constant thickness are considered and the meridian curve...
The surface stresses in band reinforced cylindrical pressure vessels are examined, and an equivalen...
A design problem of finding an optimally stiff membrane structure by selecting one–dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one–dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...
A design problem of finding an optimally stiff membrane structure by selecting one-dimensional fiber...