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Buckling analysis of cracked column structures and piezoelectric-based repair and enhancement of axial load capacity

机译:裂纹柱结构的屈曲分析和基于压电的修复及轴向载荷能力的增强

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摘要

Decreased flexural and buckling capacity of composite structures due to the development of fatigue cracks is a serious issue in a variety of fields. This paper discusses the buckling capacity and piezoelectric material enhancement of cracked column structures. A model of the rotational discontinuity at the crack location is used to develop analytical buckling solutions and the effect of crack location and intensity on the buckling capacity of the damaged columns is investigated. Small piezoelectric patches are employed to induce local moments to compensate for the decreased buckling capacity of column structures, using a mechanical model coupled with piezoelectric strain-voltage relations. The voltages required to enhance the buckling capacity are analytically determined and the general relationship between crack location and voltage developed. The primary advantage of the piezoelectric-based repair approach presented is the ability to use a single small patch, with different applied voltages, to repair cracks of a wide variety of depths, intensities and locations passive design solutions would require custom designs to restore the axial load capacity for each case.
机译:由于疲劳裂纹的发展,复合结构的挠曲和屈曲能力降低是许多领域中的严重问题。本文讨论了开裂柱结构的屈曲能力和压电材料的增强。使用裂纹位置处的旋转不连续性模型来开发解析屈曲解,并研究裂纹位置和强度对损坏柱的屈曲能力的影响。使用与压电应变-电压关系耦合的机械模型,使用小的压电贴片来引起局部力矩,以补偿圆柱结构的屈曲能力降低。分析确定增强屈曲能力所需的电压,并确定裂纹位置与电压之间的一般关系。所介绍的基于压电的修复方法的主要优点是能够使用单个小贴片(具有不同的施加电压)修复各种深度,强度和位置的裂纹,无源设计解决方案将需要定制设计来恢复轴向应力。每种情况下的负载能力。

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