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On the ultimate sensitivity of nonlinear-modulation method of crack detection

机译:裂纹检测非线性调制方法的极限灵敏度

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Despite the increasing number of impressive demonstrations of the high sensitivity of nonlinear-acoustic methods of damage detection, the physical factors which limit the ultimate sensitivity of this approach are not yet clearly understood. In this paper we perform the corresponding analysis and formulate criteria determining the minimal size of detectable cracks. The relation of the nonlinear-modulation technique to the linear frequency-shift technique is discussed. The analysis is particularly focused on the nonlinear-modulation resonance technique. It is based on rather general properties of the defects consistently predicted by various rigorous cracks models. The obtained conclusions are compared with experimental data obtained in nonlinear-modulation experiments on the detection of cracks in railway axles and wheels.
机译:尽管越来越多的关于非线性声学损伤检测方法的高灵敏度的令人印象深刻的演示,但限制这种方法最终灵敏度的物理因素仍不清楚。在本文中,我们进行了相应的分析并制定了确定可检测裂缝最小尺寸的标准。讨论了非线性调制技术与线性移频技术的关系。该分析特别集中在非线性调制共振技术上。它基于各种严格的裂纹模型一致预测的缺陷的一般属性。将得出的结论与在非线性调制实验中获得的用于检测铁路车轴和车轮裂纹的实验数据进行比较。

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