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Assessment of the viscoelastic mechanical properties of polycarbonate urethane for medical devices

机译:用于医疗器械聚碳酸酯氨基甲酸酯的粘弹性机械性能的评估

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摘要

The underlying research work introduces a study of the mechanical properties of polycarbonate urethane (PCU), used in the construction of various medical devices. This comprises the discussion of a suitable material model, the application of elemental experiments to identify the related parameters and the numerical simulation of the applied experiments in order to calibrate and validate the mathematical model. In particular, the model of choice for the simulation of PCU response is the non-linear viscoelastic Bergstrom-Boyce material model, applied in the finite-element (FE) package Abaqus. For the parameter identification, uniaxial tension and unconfined compression tests under in-laboratory physiological conditions were carried out. The geometry of the samples together with the applied loadings were simulated in Abaqus, to insure the suitability of the modelling approach. The obtained parameters show a very good agreement between the numerical and the experimental results.
机译:基础研究工作介绍了用于建造各种医疗装置的聚碳酸酯聚氨酯(PCU)的机械性能研究。 这包括对合适的材料模型的讨论,用于识别相关参数的基本实验和应用实验的数值模拟,以便校准并验证数学模型。 特别地,PCU响应模拟的选择模型是非线性粘弹性伯格泡杆菌材料模型,适用于有限元(Fe)封装ABAQUS。 对于参数鉴定,进行了在实验室生理条件下的单轴张力和无束缚的压缩试验。 在ABAQUS中模拟了样品的几何形状与所施加的载荷,以确保建模方法的适用性。 所获得的参数显示了数值和实验结果之间非常良好的一致性。

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