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Measurement of defect thickness of the wall thinning defect pipes by lock-in infrared thermography technique

机译:锁定红外热成像技术测量薄壁缺陷管的缺陷厚度

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Mostly piping which is using for the nuclear power plants are made up of carbon steel pipes. The wall thinning defects occurs by the effect of the flow accelerated corrosion of fluid that flows in carbon steel pipes. The defects could be found on the welding part and anywhere in the pipes. The infrared thermography technique which is one of the non-destructive testing method has used for detecting the defects of various kinds of materials over the years. There is a limitation for measuring the defect of metals that have a big coefficient of thermal diffusion. However, a technique using lock-in method gets over the difficulty. Consequently, the lock-in infrared thermography technique has been applied to the various industry fields. In this paper, the defect thickness of the straight pipe which has an artificial defect the inside of the pipes was measured by using the lock-in infrared thermography technique and the result could be utilized in detecting defects of carbon steel pipes.
机译:核电站使用的管道大多由碳钢管组成。壁薄缺陷是由于在碳钢管中流动的流体的流动加速腐蚀的影响而发生的。缺陷可以在焊接部分和管道的任何地方发现。红外热成像技术是一种无损检测方法,多年来一直用于检测各种材料的缺陷。测量具有大的热扩散系数的金属的缺陷是有局限性的。然而,使用锁定方法的技术克服了困难。因此,锁定式红外热成像技术已应用于各个行业领域。在本文中,使用锁定红外热成像技术测量了在管道内部具有人为缺陷的直管的缺陷厚度,该结果可用于检测碳钢管的缺陷。

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