Based on quasi‐static and dynamic experimental results, a novel strain‐rate–dependent model for ethylene–propylene–diene monomer (EPDM) rubber was developed. This model, composed of a base model and rate‐sensitivity terms, has a relatively simple form to be embedded in computer codes for numerical simulations. The base model combines a Maxwell model and a Mooney function. The Maxwell model is necessary to describe small‐strain behavior, whereas the Mooney function dominates the large‐strain behavior. Each of these two components is then multiplied by a rate‐sensitive term to describe the material's strain‐rate sensitivities at both small and large strains. This model gives a good description of EPDM response in both compression and tension over a wide range of strain rates with a minimum number of material constants.
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Song et al. (2004) studied this question.
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