Analysis of an inextensible spinning fluid-conveying pipe with pinned-roller supports yields an elliptical stability boundary in the flow-velocity--rotational-speed plane, requiring ninth-order Galerkin terms and validated by a modified Hencky bar-chain model.
StabilityoptimizationofspinningFGMpipesconveyingfluidviaintermediateelastic supports,
2 Pith papers cite this work, alongside 19 external citations. Polarity classification is still indexing.
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UNVERDICTED 2representative citing papers
A Total Lagrangian finite element framework is derived for finite-deformation multibody dynamics with joints, contacts, and common material models.
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Large post-critical dynamics of an inextensible spinning fluid-conveying pipe with pinned-roller supports: high-order Galerkin and a modified Hencky bar-chain framework
Analysis of an inextensible spinning fluid-conveying pipe with pinned-roller supports yields an elliptical stability boundary in the flow-velocity--rotational-speed plane, requiring ninth-order Galerkin terms and validated by a modified Hencky bar-chain model.
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A Total Lagrangian Finite Element Framework for Multibody Dynamics: Part I -- Formulation
A Total Lagrangian finite element framework is derived for finite-deformation multibody dynamics with joints, contacts, and common material models.