微孔聚氨酯弹性材料的力学性能研究
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中央财政创新团队专项基金资助项目(0420036017),湖南省十二五机械工程重点学科基金资助项目(湘教发[2011]76号)


Research of Mechanical Properties of Microcellular Polyurethane Elastic Material
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    摘要:

    为了分析微孔聚氨酯弹性材料的力学性能,分别对微孔聚氨酯弹性材料式样进行了拉伸和压缩试验;再利用拉伸与压缩试验数据对常见的经典超弹本构模型进行拟合,得出了相应的本构模型参数;通过误差分析对各种本构模型在不同应变条件下的适用性进行了分析探讨;最后,用拟合出的本构参数对高铁轨道用WJ-8扣件的微孔聚氨酯弹性垫板的静刚度进行数值模拟,有限元仿真结果与产品试验结果进行对比,说明了Yeoh模型、Van der Waals模型和Ogden N=3模型的预测值与试验值的相对误差分别为8.44%,7.83%和5.93%, Ogden N=3模型相对于其他模型具有更高的预测精度。

    Abstract:

    In order to analyze the mechanical properties of microcellular polyurethane elastic materials, the tensile and compression experiments were carried out. The experimental data was used to fit the classic hyperelastic constitutive models, and the parameters of the constitutive models were obtained . Through the error analysis, the applicability of constitutive models was discussed under different strain conditions. The fitted constitutive parameters were applied to simulate the static stiffness of WJ-8 fastner polyurethane elastic pad used for high speed railway, and the finite elemental simulation results were compared with the product test results, it showed that the relative errors between the tested values and the predicted values of Yeoh model, Van der Waals model and Ogden N=3 model were 8.44%,7.83% and 5.93% respectively, and the Ogden N=3 model had higher prediction accuracy than other models.

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白晓鹏,丁智平,唐先贺,黄友剑,穆龙海.微孔聚氨酯弹性材料的力学性能研究[J].湖南工业大学学报,2014,28(6):32-37.

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  • 收稿日期:2014-09-24
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  • 在线发布日期: 2015-09-02
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