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Mechanical equilibrium of thick hollow liquid membrane cylinders.

机译:厚空心液膜圆柱体的机械平衡。

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摘要

The mechanical equilibrium of bilayer membrane cylinders is analyzed. The analysis is motivated by the observation that mechanically formed membrane strands (tethers) can support significant axial loads and that the tether radius varies inversely with the axial force. Previously, thin shell theory has been used to analyze the tether formation process, but this approach is inadequate for describing and predicting the equilibrium state of the tether itself. In the present work the membrane is modeled as two adjacent, thick, anisotropic liquid shells. The analysis predicts an inverse relationship between axial force and tether radius, which is consistent with experimental observation. The area expansivity modulus and bending stiffness of the tether membrane are calculated using previously measured values of tether radii. These calculated values are consistent with values of membrane properties measured previously. Application of the analysis to precise measurements of the relationship between tether radius and axial force will provide a novel method for determining the mechanical properties of biomembrane.
机译:分析了双层膜圆柱体的机械平衡。分析的动机是观察到,机械形成的膜股(绳索)可以支撑显着的轴向载荷,并且绳索半径与轴向力成反比。以前,薄壳理论已用于分析绳索的形成过程,但是这种方法不足以描述和预测绳索本身的平衡状态。在本工作中,将膜建模为两个相邻的厚各向异性液体壳。该分析预测了轴向力和系绳半径之间的反比关系,这与实验观察一致。系绳膜的面积膨胀模量和弯曲刚度是使用系绳半径的先前测量值计算的。这些计算值与先前测量的膜性质的值一致。将分析应用于系绳半径和轴向力之间关系的精确测量将为确定生物膜的机械性能提供一种新颖的方法。

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