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Micromagnetic and electromagnetic NDT for lifetime management by monitoring ageing of structural materials

机译:电磁无损检测通过监测结构材料的老化来进行寿命管理

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摘要

Since 1976 the 3MA-methodology (Micromagnetic, Multiparameter, Microstructure and Stress Analysis) was developed in the German Nuclear Safety Research Program. The basis is in micromagnetic NDT techniques as the measurement of magnetic Barkhausen noise, of the magnetic incremental permeability, of the eddy current impedance, the harmonic analysis of the magnetic tangential field strength, and the measurement of the dynamic or also called incremental magnetostriction. 3MA can only be applied at ferromagnetic materials and was used to characterise ageing phenomena in pressure vessel and pipeline steels as thermal ageing and neutron degradation as well as material states when thermal ageing and low-cycle fatigue were superimposed. In the case of austenitic stainless steels when exposed to mechanical static or cyclic loads - the material reacts localised with phase transformation to bcc a' martensite - 3MA techniques can be applied. In all other cases UT is utilised and - for instance a time-of-flight-measurement - can characterise cyclic deformation.
机译:自1976年以来,德国核安全研究计划开发了3MA方法(微磁,多参数,微结构和应力分析)。微电磁场无损检测技术的基础是测量巴克豪森噪声,磁增量磁导率,涡流阻抗,磁切向场强度的谐波分析以及动态或也称为增量磁致伸缩的测量。 3MA仅适用于铁磁材料,用于表征压力容器和管道钢的热老化和中子降解以及热老化和低周疲劳叠加时的材料状态。对于奥氏体不锈钢,当其承受机械静态或循环载荷时,材料会发生局部反应,并发生相变,形成bcc a'马氏体-可以应用3MA技术。在所有其他情况下,都使用UT,并且-例如飞行时间测量-可以表征周期性变形。

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