A DIRECT BASED METHOD WITH AN ANALYTICAL CAPABILITY PARAMETER TO DETECT OPEN CRACKS ON FREE VIBRATING BEAMS

Marcos Ruben Carrizo, J. Raffo
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Abstract

This paper presents analysis of a mechanical system composed of free vibration of an Euler-Bernoulli beam with an open crack. Two new proposals have been presented to analyse such systems: a direct crack identification method to obtain the crack properties and a theoretical margin of detection parameter to quantify the capability of the theoretical model used to detect a single crack. The direct crack identification method uses first three natural frequencies of a cracked beam to obtain the unknown crack location and depth without solving the inverse vibration problem. On the other hand, the theoretical margin of detection parameter provides capability to the analytical model to detect the location and depth of an open crack using the first three natural frequencies as a function of crack location and depth for different end conditions. To show the robustness of the direct crack identification method, errors on the first three exact values of the natural frequency parameters of the cracked beam are induced before applying the proposed method and the resulting errors were calculated. Contour plots have been developed for classical and elastically restrained end conditions to predict the detectable zones as a function of crack location and depth. The proposed analysis has been carried out on the widely used closed-form solution of the beam model.
一种带有分析能力参数的直接法检测自由振动梁的开缝
本文对含开缝欧拉-伯努利梁的自由振动力学系统进行了分析。提出了两种新的建议来分析这类系统:一种直接裂纹识别方法来获得裂纹特性,一种理论检测参数裕度来量化用于检测单个裂纹的理论模型的能力。直接裂缝识别方法在不求解反振动问题的情况下,利用裂缝梁的前三个固有频率获得未知的裂缝位置和深度。另一方面,检测参数的理论裕度为分析模型提供了利用前三个固有频率作为不同端点条件下裂纹位置和深度的函数来检测开放裂纹位置和深度的能力。为了验证直接裂缝识别方法的鲁棒性,在应用该方法之前,对裂缝梁的前三个固有频率参数精确值进行了误差计算。对于经典和弹性约束的末端条件,已经开发了等高线图来预测可探测区域作为裂纹位置和深度的函数。所提出的分析是在广泛使用的梁模型的封闭解上进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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