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首页> 外文期刊>Acta biomaterialia >Prediction of the frictional behavior of mammalian tissues against biomaterials.
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Prediction of the frictional behavior of mammalian tissues against biomaterials.

机译:哺乳动物组织对生物材料的摩擦行为的预测。

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Frictional and adhesion properties are important characteristics to be assessed in the development of new materials for biological applications, particularly for medical devices such as catheters. In this work a new computational method that predicts frictional and adhesive forces is presented. A multi-asperities adhesion model, based on the JKR theory, coupled with a Monte Carlo method was employed, together with a three components friction model. This takes into account interfacial adhesion, asperities deformation and viscous lubricant film shearing action. We have estimated the frictional coefficients of silicone and polyurethane (common materials in catheters) against aorta and vena cava. In order to do this, we have measured the surface properties of the two blood vessels tissues, such as surface energy components, asperity height distribution and asperity radius of curvature. These data have not been previously reported. The predictions in both the dry and in lubricated (with blood) cases are in very good agreement with our published experimental data of the same materials/tissue combinations.
机译:摩擦和粘附特性是在开发用于生物应用,特别是用于医疗设备(例如导管)的新材料时要评估的重要特性。在这项工作中,提出了一种预测摩擦力和粘附力的新计算方法。采用了基于JKR理论的多孔隙粘附模型,结合蒙特卡罗方法,以及三组分摩擦模型。这考虑了界面粘附,粗糙变形和粘性润滑剂膜的剪切作用。我们估计了有机硅和聚氨酯(导管中的常见材料)对主动脉和腔静脉的摩擦系数。为此,我们测量了两个血管组织的表面特性,例如表面能分量,粗糙高度分布和粗糙曲率半径。这些数据以前没有报告过。在干燥和润滑(有血液)情况下的预测与我们发表的相同材料/组织组合的实验数据非常吻合。

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