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受压弯多组分半刚性柱在轴向荷载和共轭反伸作用下的反应——机械性能预测及其对结构设计的意义。

Compression-bending of multi-component semi-rigid columns in response to axial loads and conjugate reciprocal extension-prediction of mechanical behaviours and implications for structural design.

机构信息

Department of Cardiology, Royal Victoria Hospital, Grosvenor Road, Belfast BT12 6BA, UK.

出版信息

J Mech Behav Biomed Mater. 2013 Jan;17:112-25. doi: 10.1016/j.jmbbm.2012.08.015. Epub 2012 Sep 18.

DOI:10.1016/j.jmbbm.2012.08.015
PMID:23127643
Abstract

The mathematical modelling of column buckling or beam bending under an axial or transverse load is well established. However, the existent models generally assume a high degree of symmetry in the structure of the column and minor longitudinal and transverse displacements. The situation when the column is made of several components with different mechanical properties asymmetrically distributed in the transverse section, semi-rigid, and subjected to multiple axial loads with significant longitudinal and transverse displacements through compression and bending has not been well characterised. A more comprehensive theoretical model allowing for these possibilities and assuming a circular arc contour for the bend is developed, and used to establish the bending axes, balance between compression and bending, and equivalent stiffness of the column. In certain situations, such as with pull cable catheters commonly used for minimally invasive surgical procedures, the compression loads are applied via cables running through channels inside a semi-rigid column. The model predicts the mathematical relationships between the radius of curvature of the bend and the tension in and normal force exerted by such cables. Conjugate extension with reciprocal compression-bending is a special structural arrangement for a semi-rigid column such that extension of one segment is linked to compression-bending of another by inextensible cables running between them. Leads are cords containing insulated electrical conductor coil and cables between the heart muscle and cardiac implantable electronic devices. Leads can behave like pull cable catheters through differential component pulling, providing a possible mechanism for inside-out abrasion and conductor cable externalisation. Certain design features may predispose to this mode of structural failure.

摘要

轴向或横向载荷下的柱屈曲或梁弯曲的数学建模已经很成熟。然而,现有的模型通常假设柱的结构具有高度的对称性和较小的纵向和横向位移。当柱由几个具有不同机械性能的组件组成,这些组件在横截面上不对称分布、半刚性、并承受多个轴向载荷,同时发生显著的纵向和横向位移通过压缩和弯曲时,这种情况尚未得到很好的描述。本文开发了一个更全面的理论模型,允许这些可能性,并假设弯曲的弧形轮廓,用于建立弯曲轴、压缩和弯曲之间的平衡以及柱的等效刚度。在某些情况下,例如在微创手术中常用的拉索导管,压缩载荷通过穿过半刚性柱内部通道的电缆施加。该模型预测了弯曲半径与这种电缆的张力和法向力之间的数学关系。共轭延伸与相互压缩弯曲是半刚性柱的一种特殊结构布置,使得一个段的延伸与另一个段的压缩弯曲通过在它们之间延伸的不可伸缩电缆连接。导联是包含绝缘导体线圈的绳索和心脏肌肉与心脏植入式电子设备之间的电缆。导联可以通过不同组件的拉动像拉索导管一样作用,为内部磨损和导体电缆外部化提供了一种可能的机制。某些设计特点可能使这种结构失效模式更容易发生。

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