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An analytical dynamic model for single-cracked beams including bending, axial stiffness, rotational inertia, shear deformation and coupling effects

机译:包含弯曲,轴向刚度,旋转惯性,剪切变形和耦合效应的单裂纹梁的解析动力学模型

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This paper develops an analytical dynamic model for cracked beams including bending, axial stiffness, rotational inertia, shear deformation and the coupling of the last two effects. The damage is modelled using a rotational spring that simulates the crack based on fracture mechanics theory. The developed model is used to predict variations on natural frequencies for several crack sites and damage magnitude along the beam. The importance of this work lies in the development of an analytical model that has no approximation due to discretization of the displacement field. This initial theoretical approach describes the expected behaviour for changes in the natural frequencies for simply-supported and clamped-free beams with the precision that only analytical methods allow. The results provide a useful benchmark to compare with approximate numerical methods that can be used to model and analyse the problem. The model showed similar results for long span beams, but the inclusion of rotational inertia and shear deformation effects rendered improvements in the dynamic behaviour mainly in the case of slender and short span beams when compared with the simplified Euler-Bernoulli model.
机译:本文建立了裂纹梁的分析动力学模型,包括弯曲,轴向刚度,旋转惯性,剪切变形和最后两个作用的耦合。使用基于断裂力学理论模拟裂纹的旋转弹簧对损伤进行建模。所开发的模型用于预测几个裂纹部位的固有频率变化以及沿梁的破坏幅度。这项工作的重要性在于开发一个分析模型,该模型由于位移场的离散化而无法近似。这种最初的理论方法描述了简单支撑和自由夹持的梁的固有频率变化的预期行为,其精度只有分析方法所允许的。结果提供了有用的基准,可与可用于建模和分析问题的近似数值方法进行比较。该模型对于大跨度梁显示出相似的结果,但是与简化的Euler-Bernoulli模型相比,主要是在细长和短跨度梁的情况下,包括转动惯量和剪切变形效应在内的动态行为得到了改善。

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