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首页> 外文期刊>Journal of Sound and Vibration >On the use of a roving body with rotary inertia to locate cracks in beams
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On the use of a roving body with rotary inertia to locate cracks in beams

机译:在使用具有旋转惯性的粗纱机构来定位梁中的裂缝

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Identifying cracks and damages in structures using measured vibrational characteristics has received considerable attention in the past few decades. The possibility of using frequency changes due to the application of a mass appended to the structure has also been considered. In this paper an analytical proof to show that the natural frequencies of a cracked beam with a roving body possessing mass and rotary inertia will generally change abruptly as the body passes over a crack, provided that the crack permits differential flexural rotations, is presented. A novel explicit closed form solution of the governing equation of an Euler-Bernoulli beam with a roving body possessing mass and rotary inertia, in the presence of multiple cracks is also proposed. The presented exact solution is used to conduct a parametric analysis of cracked beams. Numerical results for natural frequencies are provided and a procedure to exploit the occurrence of frequency shifts to detect and locate each crack, without having to perform any additional calculation, is described. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用测得的振动特性的结构确定裂纹和损伤已得到相当的重视,在过去的几十年。使用频率的可能性变化,由于附加到也被认为是结构的质量的应用程序。在本文中的分析证据表明对的固有频率与裂化粗纱体拥有大规模和转动惯量作为身体经过一条缝,只要该裂纹允许差动挠曲旋转一般会突然改变光束,被呈现。欧拉-Bernoulli梁与粗纱体拥有大规模和转动惯量,在多裂纹的存在的控制方程的一种新颖的明确的闭合形式解,还提出。所提出的精确解用于进行破解梁的参数分析。提供了用于固有频率数值结果和一个过程来利用频率偏移来检测和定位每个裂纹的发生,而无需执行任何附加的计算进行说明。 (c)2018年elestvier有限公司保留所有权利。

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