𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Bifurcations of thick-walled hollow cylinders of geomaterials under axisymmetric compression

✍ Scribed by Chau, K. T.; Choi, S. K.


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
188 KB
Volume
22
Category
Article
ISSN
0363-9061

No coin nor oath required. For personal study only.

✦ Synopsis


This paper derives analytically the condition for the onset of diffuse mode bifurcations in thick-walled hollow cylinders with internal radius a, external radius b and length ¸under axial compression and confining pressure. The thick-walled cylindrical specimens are made of geomaterial characterized by Rudnicki's constitutive model, and the method of solution for the governing equations is the velocity potential approach employed by Chau. Numerical results show that thick-walled cylinders are stronger than thin-walled cylinders against diffuse mode bifurcations, including both buckling, axisymmetric and non-axisymmetric deformations. In contrast to the conclusion for solid cylinders (Chau), no buckling solution is found for "m a/¸smaller than about 0)7 under compression for a fixed and finite value of a/b (i.e. no buckling for long and slender hollow cylinders with small a/¸and fixed b/a). When 0)7( (0)9, buckling is the expected first bifurcation; whereas, when '0)9, bulging or barrelling is anticipated. The exact value of that excludes buckling and separates the buckling and barrelling phenomena depends on the current values of the constitutive parameters of the solid. Hollow cylinders with higher degree of anisotropy, disobeying normality flow rule, and subjected to confining pressure are more conducive to bifurcations than cylinders made of materials with isotropy, obeying normality, and subjected to no confining pressure. In addition, diffuse mode bifurcations are found possible in the pre-peak regime of the stress-strain curve.


📜 SIMILAR VOLUMES


Analysis of thick cylinder under non-axi
✍ Y.S. Lai 📂 Article 📅 1977 🏛 Elsevier Science 🌐 English ⚖ 386 KB

Ah&@-The thick cylinder under non-axisymmetric loads was treated by means of the stress function method. This p~icu1~ problem was aIso analyzed by using fhe ANSYS finite element program and the KALNINS shell program. It was found that the stresses conveniently obtained by the stress function method