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Analysis of Coupled Transverse and Axial Vibrations of Euler Bernoulli and Timoshenko Beams with Longitudinal Crack for Its Detection

机译:具有纵向裂纹的Euler Bernoulli和Timoshenko梁耦合横向和轴振动的分析

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This paper presents a method to analyze the vibration of monolithic beams with longitudinal cracks for its detection. Both forward problem of determination of natural frequencies knowing the beam and crack geometry details as well as inverse problem of detection of crack with the knowledge of changes in the beam natural frequencies has been examined. Both long (Euler-Bernoulli) and short (Timoshenko) beams have been studied. For modeling a crack located at the free end of a cantilever, the beam is divided into three segments. For an internal crack located away from the free end of the beam, it is split into four segments. In both cases, two of the segments take care of beam portions above and below the crack. The cracked segments are constrained to have the same transverse displacements but different axial movements. The modeling shows good accuracy for both the forward and inverse problems. The formulation predicts the first five fundamental natural frequencies in the forward problems with a maximum difference of 5% with reference to finite element solutions for short beams with edge or inner cracks. Further, in the case of inverse problems, edge crack with sizes varying 5 to 50% of the beam length has been detected with errors less than 3% in both short as well as long beams. In the case of inner crack located at the mid-span with sizes varying from 5 to 45% of the beam length has been detected with errors less than 3% in location and 6% in size. The results thus show encouraging possibility of exploitation of the proposed method for crack detection in practice.
机译:本文介绍了分析具有纵向裂缝的整体梁的振动的方法。已经研究了了解光束和裂纹几何细节的自然频率的前向问题以及通过光束自然频率的变化的知识检测裂缝的逆问题。已经研究了长(Euler-Bernoulli)和短(Timoshenko)梁。为了对位于悬臂的自由端的裂缝进行建模,梁分为三个段。对于远离梁的自由端的内部裂缝,它分成四个段。在这两种情况下,两个段都在裂缝上方和下方照顾梁部分。裂缝的段被约束成具有相同的横向位移,而是不同的轴向运动。模型显示前向和逆问题的良好准确性。该配方在前向问题中预测前五个基本自然频率,最大差异为5%,参考具有边缘或内裂纹的短梁的有限元件。此外,在逆问题的情况下,在短的和长光束中的误差中检测到具有5至50%的尺寸不同5至50%的边缘裂缝。在位于跨度的内裂的情况下,在尺寸的尺寸范围内,在梁长度的5%到45%的情况下被检测到位置,误差在位置小于3%和6%的尺寸。因此,结果表明令人振奋的可能性利用所提出的裂纹检测方法的方法。

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