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Non-contact, nondestructive hydrogen and microstructural assessment of steel welds

机译:钢焊缝的非接触式,非破坏性氢和显微组织评估

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Nondestructive low-frequency impedance has been developed to determine hydrogen content in operating pipeline steel and weldments through a structural coating. A low frequency impedance measurement is similar to a resistivity measurement with a depth function due to the sensor coil reactance. Resistivity introduces variability in impedance measurements because resistivity is a function of the conductivity of the material, the depth of the measurement, and the alloy content. The conductivity, based on the free electron model, is a function of the electronic effective mass, the electron concentration, and the dominating scattering mechanisms, which is altered by such factors as inclusions, microstructure, temperature, and strain. Each of these variables must be separated out to obtain a hydrogen content measurement in operating pipelines (with a structural coating) using low frequency impedance. Techniques used to separate out the variables associated with operating pipeline steels are presented. The use of real-time low frequency impedance measurements to monitor hydrogen content as it diffuses out of a steel weldment is presented and discussed.
机译:已经开发出无损低频阻抗,以确定通过结构涂层运行的管线钢和焊件中的氢含量。由于传感器线圈的电抗,低频阻抗测量类似于具有深度函数的电阻率测量。电阻率在阻抗测量中引入了可变性,因为电阻率是材料电导率,测量深度和合金含量的函数。基于自由电子模型的电导率是电子有效质量,电子浓度和主要散射机制的函数,这些因素会因夹杂物,微观结构,温度和应变等因素而改变。必须将这些变量中的每一个分开,以使用低频阻抗在运行管道(具有结构涂层)中获得氢含量测量值。提出了用于分离与运行中的管线钢相关的变量的技术。提出并讨论了使用实时低频阻抗测量来监测氢含量从钢焊件中扩散出来的情况。

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