Analytical and Finite Element Solution for Functionally Graded Pressure Vessels Subjected to Finite Strain Coupled Axial and Torsional Deformations

  • Shojaeifard, Mohammad
  • Valiollahi, Arash
  • Rahmatabadi, Davood
  • Taheri, Ali
  • Choi, Eunsoo
  • 외 2명
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초록

This study presents an analytical solution to examine the mechanical behavior of an incompressible, functionally graded hyperelastic cylinder under combined extension and torsion. The exp-exp strain energy density function characterizes the hyperelastic material, with parameters varying exponentially along the radial direction. To validate the solution, finite element simulations using a custom UHYPER in ABAQUS are performed. The analytical and numerical results show strong agreement across different stretch and twist levels. The stress distribution and maximum stress are significantly influenced by the exponential parameter governing material gradients. Unlike axial stretch, torsion induces a more intricate longitudinal stress distribution, with large twisting producing two extrema that shift toward the cylinder's center and outer surface. Longitudinal stress primarily governs von Mises stress and strain energy density variations across the radial direction. A critical axial stretch is identified, below which torsion-induced axial force transitions to compression, elongating the cylinder during twisting. Beyond this stretch, the axial force shifts from tensile to compressive with increasing twist, causing initial shortening before further elongation.

키워드

extension-torsion of rubber-like cylinderfunctionally graded materialhyperelastic materialinvariant-based analytical solutionfinite element methodRUBBER-LIKE MATERIALSHYPERELASTIC CONSTITUTIVE MODELSTRESS-ANALYSISEXTENSIONELASTICITYCYLINDERSBEHAVIOR
제목
Analytical and Finite Element Solution for Functionally Graded Pressure Vessels Subjected to Finite Strain Coupled Axial and Torsional Deformations
저자
Shojaeifard, MohammadValiollahi, ArashRahmatabadi, DavoodTaheri, AliChoi, EunsooOstadrahimi, AlirezaBaghani, Mostafa
DOI
10.3390/ma18092136
발행일
2025-05-06
유형
Article
저널명
Materials
18
9