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Attenuation of Barkhausen Noise Emission due to Variable Coating Thickness

机译:由可变涂层厚度引起的Barkhausen噪声发射的衰减

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Monitoring of the stress state of bridges by the use of the Barkhausen noise technique has been already introduced and this method can be adapted for monitoring of component’s overstressing. Measurement of Barkhausen noise on real bridges is carried out through the coating applied as a layer to increase the corrosion resistance of bodies. However, it was found that the thickness of the coating could vary, which in turn affects the Barkhausen noise signals and makes it difficult to assess the real stress state. For this reason, this paper deals with attenuation of Barkhausen noise emission due to variable thicknesses of coatings on the steel S460MC. It was found that increasing the thickness progressively decreases the Barkhausen noise emission and shifts the Barkhausen noise envelopes to the higher magnetic fields. Furthermore, the thickness of the coating also affects the relationship between the tensile stress and the Barkhausen noise.
机译:已经引入了通过使用Barkhausen噪声技术监测桥梁的应力状态,并且该方法可以适用于监控组件的过度回收。 通过涂覆作为层的涂层进行真正的桥梁上的巴格豪森噪音的测量,以增加体的耐腐蚀性。 然而,发现涂层的厚度可以变化,这反过来影响巴克豪森噪声信号,并使难以评估实际应力状态。 因此,本文涉及由于钢S460MC上的可变厚度的涂层导致的Barkhausen噪声发射的衰减。 结果发现,增加厚度逐渐降低了巴克豪森噪声发射,并将巴克豪森噪声包裹转移到更高磁场。 此外,涂层的厚度也影响拉伸应力与巴卡豪森之间的关系。

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