Journal Article

·2015

Modelling of biaxial ratcheting behaviour of ultrahigh‐molecular‐weight polyethylene with viscoplasticity theory based on overstress for polymers

Özgen Ü. Çolak YTU , Kerem Asmaz YTU

Polymer International

Abstract

Abstract Biaxial ratcheting behaviour of ultrahigh‐molecular‐weight polyethylene ( UHMWPE ) has been modelled using the viscoplasticity theory based on overstress for polymers ( VBOP ) with the modified Chaboche kinematic hardening rule. Investigated loading condition is: axial strain‐controlled cyclic loading of thin‐walled tubular specimen in the presence of constant pressure. To improve the circumferential strain ratcheting response of UHMWPE , changes designed to account for kinematic hardening and tangent modulus effects are proposed. Numerical results are compared with previously obtained experimental data. It is shown that modified tangent modulus improves the model responses. The biaxial ratcheting behaviour of UHMWPE is modelled quantitatively with VBOP . © 2015 Society of Chemical Industry

Keywords

Viscoplasticity Materials science Tangent modulus Composite material Ultra-high-molecular-weight polyethylene Tangent Polyethylene Modulus Strain hardening exponent Polymer Hardening (computing) Constitutive equation Structural engineering Finite element method Mathematics Engineering

Subject Areas

Fatigue and fracture mechanics ·Mechanics of Materials ·Physical Sciences
Structural Behavior of Reinforced Concrete ·Building and Construction ·Physical Sciences
Elasticity and Material Modeling ·Biomedical Engineering ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Industry, innovation and infrastructure 49%