Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformation and buckling behaviour under static pressure. In pressure vessel Design by Analysis, the designer is required to assess both of these behaviour modes when specifying the allowable static load. The EN and ASME boiler and pressure vessel codes permit the use of inelastic analysis in design by analysis, known as the direct route in the EN Code. In this paper, plastic collapse or gross plastic deformation loads are evaluated for two sample torispherical heads by 2D and 3D FEA based on an elastic-perfectly plastic material model. Small and large deformation effects are considered in the 2D analyses and the effect of geometry and load perturbat...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical press...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
An investigation of three simple structures is conducted to identify and characterise the condition ...
An investigation of three simple structures is conducted to identify and characterise the condition ...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical press...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformat...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
In ASME Design by Analysis, the plastic load of pressure vessels is established using the Twice Elas...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical pressu...
An investigation of three simple structures is conducted to identify and characterise the condition ...
An investigation of three simple structures is conducted to identify and characterise the condition ...
The gross plastic deformation and associated plastic loads of four axisymmetric torispherical press...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...
The allowable plastic load in pressure vessel design by analysis is determined by applying a graphic...