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High Strain-Rate Compressive Behavior and Constitutive Modeling of Selected Polymers using Modified Ramberg-Osgood Equation

机译:使用改性Ramberg-OSGood方程的高应变率压缩行为和所选聚合物的本构模拟

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The present paper is concerned with constitutive modeling of the compressive stress-strain behavior of selected polymers at strain rates from 10-3 to 103/s using a modified Ramberg-Osgood equation. High strain-rate compressive stress-strain curves up to strains of nearly 0.08 for four different commercially available extruded polymers were determined on the standard split Hopkinson pressure bar (SHPB). The low and intermediate strain-rate compressive stress-strain relations were measured in an Instron testing machine. Six parameters in the modified Ramberg-Osgood equation were determined by fitting to the experimental stress-strain data using a least-squares fit. It was shown that the monotonic compressive stress-strain behavior over a wide range of strain rates can successfully be described by the modified Ramberg-Osgood constitutive model. The limitations of the model were discussed.
机译:本文涉及使用改性的ramberg-Osgood方程的10-3至103 / s在应变速率下所选聚合物的压缩应力 - 应变行为的组成型建模。在标准分裂霍普金森压力棒(SHPB)上测定高应变率压缩应力 - 应变曲线达到近0.08的株近0.08株。在Instron试验机中测量了低和中间应变率压缩应力 - 应变关系。通过使用最小二乘拟合对实验应力 - 应变数据配合来确定改进的ramberg-OSGood方程中的六个参数。结果表明,改性的ramberg-OSGood结构型模型可以成功地描述在广泛的应变速率范围内的单调压缩应力 - 应变行为。讨论了模型的局限性。

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