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Numerical Analysis of Nonlinear Properties of Rail Fastening Systems

机译:轨固定系统非线性性能的数值分析

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Higher demand on vibration isolation of track structure in nowadays leads to a trend of lower stiffness of rail fastening system accompanied with larger deformation of its rubber component. Nonlinear properties of rubber material under large deformation thus should be taken into account. Uniaxial tension, uniaxial compression and planar tension experiments of a rubber material were carried out to defined mathematical material models by using Abaqus. Accuracy of the material model and model coefficients were supported by good agreement between measured and simulated results. A shear type and a bonded compressed type of rail fastening system are designed and produced with the same rubber material. Quasi-static experiment of these two rail fastening systems were performed and simulated as well. Predictions of the preload dependent nonlinear properties of the two different rail fastening systems by Abaqus were found to be in good agreement with experiments. Nonlinearities of the two specimens, due both to the intrinsic rubber material properties and the geometric characteristics, were well analyzed and explained. This is believed to contribute to product designing and geometrical optimization with rubber component under general or local large deformation.
机译:轨道结构的振动隔离需求更高导致轨道紧固系统较低刚度的趋势,伴随其橡胶部件的较大变形。因此,应考虑在大变形下橡胶材料的非线性性质。通过使用ABAQU进行橡胶材料的单轴张力,单轴压缩和平面张力实验,以定义数学材料模型。通过测量和模拟结果之间的良好一致性,支持材料模型和模型系数的准确性。用相同的橡胶材料设计和生产剪切型和粘合压缩类型的轨道紧固系统。还进行并模拟了这两个轨道紧固系统的准静态实验。发现ABAQUS的两种不同轨固定系统的预加载依赖性非线性性能的预测与实验吻合良好。两种样本的非线性,由于内在橡胶材料特性和几何特征,并分析并解释。据信这有助于在一般或局部大变形下用橡胶成分的产品设计和几何优化。

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