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A Constitutive Model of Plate-Like Entangled Metallic Wire Material in Wide Temperature Range

机译:宽温度范围内板状缠结金属丝材料的本构模型

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摘要

Entangled metallic wire material (EMWM) is a kind of porous damping material. To promote the engineering application of EMWM, it is necessary to establish the constitutive model of EMWM to estimate its mechanical properties. In this paper, a series of quasi-static compression experiments for plate-like EMWM specimens made of austenitic stainless steel wire (06Cr19Ni10) with different densities were carried out in the temperature range of 20–500 °C. It was found that the stiffness of the plate-like EMWM would increase with the increases in the ambient temperature. The non-linear characteristics of the force–displacement curve of the plate-like EMWM would be weakened. Taking the spatial structural characteristics of the plate-like EMWM and the influence of the thermal expansion of the structure into account, a new constitutive model for plate-like EMWM was presented by the combination of the Johnson–Cook model and the Sherwood–Frost constitutive framework model. The accuracy of the model was verified by the experimental data under different temperatures. The results show that the calculated results of the model are consistent with the experimental results. This model can provide an effective theoretical basis for predicting the mechanical properties of plate-like EMWM and guiding its design.
机译:缠绕金属线材(EMWM)是一种多孔阻尼材料。为了促进EMWM的工程应用,有必要建立EMWM的本构模型来估算其力学性能。本文在20–500°C的温度范围内,对不同密度的奥氏体不锈钢丝(06Cr19Ni10)制成的板状EMWM标本进行了一系列准静态压缩实验。发现板状EMWM的刚度将随着环境温度的增加而增加。板状EMWM力-位移曲线的非线性特性将被削弱。考虑到板状EMWM的空间结构特征以及结构热膨胀的影响,结合Johnson-Cook模型和Sherwood-Frost本构关系提出了板状EMWM的本构模型。框架模型。通过在不同温度下的实验数据验证了模型的准确性。结果表明,该模型的计算结果与实验结果吻合。该模型可以为预测板状EMWM的力学性能和指导其设计提供有效的理论基础。

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