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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >EXPERIMENTAL STUDY ON BREATHING CRACK DETECTION AND EVALUATION UNDER RANDOM LOADING WITH ENTROPY
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EXPERIMENTAL STUDY ON BREATHING CRACK DETECTION AND EVALUATION UNDER RANDOM LOADING WITH ENTROPY

机译:随机荷载作用呼吸裂纹检测与评价的实验研究

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摘要

Breathing crack detection and evaluation on a beam under random loading is experimentally studied and realized using entropy measures. During testing, the beam is subjected to random excitations which is the most evident excitation type experienced by most of the engineering structures. Frequency response function is employed to erase the random frequency components due to the excitation from the response of the structure to pick up the vibration characteristics of the beam structure itself with/without the breathing crack. Based on experimental results, the proposed methodology can clearly discriminate a crack with 25% depth of the total thickness of the beam from the healthy case. It is also capable of distinguishing a 50% crack depth from a 25% crack depth with distinct entropy values.
机译:通过熵措施实验研究了随机装载下梁裂缝检测和评估。 在测试期间,对光束进行随机激励,这是大多数工程结构所经历的最明显的激励类型。 使用频率响应函数来擦除由于结构的响应而引起的随机频率分量,以拾取光束结构本身的振动特性/没有呼吸裂缝。 基于实验结果,所提出的方法可以清楚地区分裂缝,从健康情况下,梁总厚度的25%深度。 它还能够将50%的裂缝深度与具有不同熵值的25%裂缝深度区分开。

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