Skip to main content

Research Repository

Advanced Search

Outputs (3)

Localized Bulging Of Rotating Elastic Cylinders And Tubes (2017)
Journal Article
Fu, Y. (2017). Localized Bulging Of Rotating Elastic Cylinders And Tubes. Journal of Mechanics of Materials and Structures, 545 - 561. https://doi.org/10.2140/jomms.2017.12.545

We investigate axially symmetric localized bulging of an incompressible hyperelastic circular solid cylinder or tube that is rotating about its axis of symmetry with angular velocity ?. For such a solid cylinder, the homogeneous primary deformation i... Read More about Localized Bulging Of Rotating Elastic Cylinders And Tubes.

On the near-critical behavior of cavitation in elastic plane membranes (2017)
Journal Article
Fu, Y., Geng, Y., & Cai, Z. (2017). On the near-critical behavior of cavitation in elastic plane membranes. International Journal of Non-Linear Mechanics, 47-52. https://doi.org/10.1016/j.ijnonlinmec.2017.04.012

Material cavitation under tensile loading is often studied by assuming the pre-existence of a small void. In this case the void would initially grow but without significant change in its size, and cavitation is said to take place if this slow growth... Read More about On the near-critical behavior of cavitation in elastic plane membranes.

Effect of double-fibre reinforcement on localized bulging of an inflated cylindrical tube of arbitrary thickness (2017)
Journal Article
Fu, Y., & Wang, J. (2017). Effect of double-fibre reinforcement on localized bulging of an inflated cylindrical tube of arbitrary thickness. Journal of Engineering Mathematics, 21-30. https://doi.org/10.1007/s10665-017-9899-5

We consider localized bulging of an inflated cylindrical hyperelastic tube of arbitrary thickness that is helically reinforced by two families of fibres. It is shown that localized bulging may become impossible, irrespective of the end conditions, wh... Read More about Effect of double-fibre reinforcement on localized bulging of an inflated cylindrical tube of arbitrary thickness.