医用碳纳米管/硅酮复合材料弹性模量建模

M. Barshutina, P. Musienko, A. Tkachev
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引用次数: 0

摘要

本文研究了基于碳纳米管的聚合物复合材料弹性模量的数学模型。这些复合材料具有导电性好、弹性模量低、生物相容性高等优点,是医用柔性植入物电极的理想材料。然而,为了实现这些复合材料对生物组织的高亲和力,有必要确保复合材料弹性模量与组织弹性模量的最大可能重叠。作为理论和实验研究的结果,我们获得了数学模型,可以计算复合材料中碳纳米管的最佳浓度,以达到特定组织的弹性模量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of Elastic Modulus of CNT/Silicone Composites Designed for Medical Applications
This paper deals with mathematical modeling of the elastic modulus of polymer composites based on carbon nanotubes. These composites are promising materials for electrodes of flexible medical implants due to their good conductivity, low elastic modulus and high biocompatibility. However, to achieve a high level of affinity of these composites to biological tissues, it is necessary to ensure the maximum possible overlapping of composite elastic moduli withelastic moduli of tissues. As a result of theoretical and experimental studies, we obtained the mathematical model that allows calculating the optimal concentrations of carbon nanotubes in composites to reach an elastic modulus of particular tissues.
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