4.7 Article

Thermo-viscoplastic behavior and constitutive relations for 304 austenitic stainless steel over a wide range of strain rates covering quasi-static, medium, high and very high regimes

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Simple shear behavior and constitutive modeling of 304 stainless steel over a wide range of strain rates and temperatures

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Summary: The deformation behavior of a 304 stainless steel under shear loadings was studied using a novel single shear specimen and a correction coefficient method. The effects of strain rate and temperature on flow stress curves were determined, showing decreased strain hardening rate with increasing strain rate or temperature, and rapid rise in flow stress at very high strain rates. The fracture morphology analysis revealed no well-developed adiabatic shear bands. The study also determined parameters of a modified Johnson-Cook model and found good agreement between experiments and model predictions. Analysis of stress and strain components in the shear zone of the specimen showed dominant roles of shear stress and shear strain, with a low stress triaxiality and Lode angle parameter.

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