New closed-form expressions are introduced for ax-symmetric progressive axial collapse of pipes that use a plastic folding mechanism based on variable length of an active plastic hinge zone. A procedure for determination of a load—displacement curve of axial pipe collapse is presented. Theoretical predictions give a good agreement with the experimental results owing to the influence of presented new refinements.
AbramowiczW.JonesN., ‘Dynamic axial crushing of circular tubes’Int. J. Impact Eng.2 (1984): 263–281.
2.
MamalisA. G.JohnsonW., ‘The quasi-static crumpling of thin walled circular cylinders and frusta under axial compression’Int. J. Mech. Sci.25 (1983): 713–732.
3.
WierzbickiT.BhatS. U.AbramowiczW.BrodkinD., ‘Alexander revisited – a two folding element model of progressively crushing of tubes’Int. J. Solid Struct.2924 (1992): 3269–3288.
4.
AbramowiczW.JonesN., ‘Dynamic progressive buckling of circular and square tubes’Int. J. Impact Eng.44 (1986): 243–270.
5.
GrzebietaR. H.MurrayN. W., ‘Rigid-plastic collapse behavior of an axially crushed stocky tubes’ In Proceedings of the Recent Advances in Impact Dynamics of Engineering Structures, New York, USA, 1989.
6.
GrzbietaR. H., ‘An alternative method for determining the behavior of round stocky tubes subjected to an axial crush load’Thin-Walled Struct.9 (1990): 61–89.
7.
El-SobkyH.SingaceA. A.PetsiosM., ‘Mode of collapse and absorption characteristics of constrained frusta under impact loading’Int. J. Mech. Sci.43 (2001): 743–757.
8.
VaughnD. G.CanningJ. M., ‘Coupling plastic wave propagation and column buckling’J. Appl. Mech.72 (2005): 139–146.
9.
TarfaouiM.GningP. B.CollombetF.BoukharoubaT.Elbouj-dainiM.PluvinageG., ‘Damage modeling of impacted tubular structures by using material property degradation approach’Damage and fracture mechanics (The Netherlands: Springer2009): 227–235.
10.
DrusinaN.MahapatraR.Abdul-LatifA.BalehR.WilhelmC.StoyanovP.Es-SaidO. S., ‘Microstructure analysis of aluminum alloy and copper alloy circular shells after multiaxial plastic buckling’J. Mater. Engng Performance175 (2008): 755–766.