STRAIN RATE–DEPENDENT BEHAVIOR OF UNCURED RUBBER: EXPERIMENTAL INVESTIGATION AND CONSTITUTIVE MODELING

Author:

Kim Sanghyeub12,Berger Thomas1,Kaliske Michael1

Affiliation:

1. 1 Institute for Structural Analysis, Technische Universität Dresden, 01062 Dresden, Germany

2. 2 Hankook Tire & Technology Co., Ltd., 50 Yuseong-daero 935 beon-gil, Daejeon, South Korea

Abstract

ABSTRACT The strain rate dependence of uncured rubber is investigated through a series of tensile tests (monotonic, multistep relaxation, cyclic creep tests) at different strain rates. In addition, loading/unloading tests in which the strain rate is varied every cycle are carried out to observe their dependence on the deformation history. A strain rate–dependent viscoelastic–viscoplastic constitutive model is proposed with the nonlinear viscosity and process-dependent recovery properties observed in the test results. Those properties are implemented by introducing evolution equations for additional internal variables. The identified material parameters capture the experiments qualitatively well. The proposed model is also evaluated by finite element simulations of the building process of a tire, followed by the in-molding.

Publisher

Rubber Division, ACS

Subject

Materials Chemistry,Polymers and Plastics

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