首页> 外文会议>17th world conference on nondestructive testing (17th WCNDT) >The way used in a sensor allows to reduce an error at the effect of environment temperature Development and Application of Pulsed Eddy Current Testing System for Ferromagnetic Pipes
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The way used in a sensor allows to reduce an error at the effect of environment temperature Development and Application of Pulsed Eddy Current Testing System for Ferromagnetic Pipes

机译:传感器中使用的方法可以减少环境温度影响下的误差。铁磁管道的脉冲涡流测试系统的开发和应用

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Pulsed eddy current (PEC) testing technology is widely used in the field of large area corrosion detection. According to the material attributes of detected objects, there are mainly two fields in which PEC technology is used: Non-ferromagnetic and ferromagnetic material testing. When the testing object is ferromagnetic, the decaying speed of the received signal differs according to the difference of the material?ˉs electrical conductivity, magnetic permeability and thickness. This paper states the realization of a type of PEC testing system and its application in ferromagnetic pipe testing from inside and outside of the pipe. The system consists of an exciting module, a signal receiving module, coil probes and a personal computer (PC). The exciting signal is generated by Direct Digital Synthesis (DDS) integrated circuit and the exciting coil is powered by an integrated power operational amplifier. The received signal is filtered and amplified by low noise wide dynamic range amplifying circuit. The signal is then digitized by USB data acquisition system. A PC is used for signal processing and analysis. Experiments were taken with two kinds of coil structure probes to test ferromagnetic pipe from outside and inside of the pipe respectively. One type of coil probe which has the advantage of eliminating vibration effect during the well logging process in oil industry is employed to find the coupling part of casing from the inside. Another type of coil probe is used to test the wall thickness loss through coatings from the outside of the pipe and it is able to detect 10% wall thickness loss with probe lift-off up to 80mm so it can be employed to test high temperature parts without removal of coatings.
机译:脉冲涡流(PEC)测试技术广泛用于大面积腐蚀检测领域。根据被检测物体的材料属性,主要使用PEC技术的领域有两个:非铁磁材料和铁磁材料测试。当测试对象是铁磁的时,接收信号的衰减速度会根据材料的电导率,导磁率和厚度的不同而有所不同。本文阐述了一种PEC测试系统的实现及其在管道内外的铁磁管道测试中的应用。该系统包括一个励磁模块,一个信号接收模块,线圈探头和一个个人计算机(PC)。励磁信号由直接数字合成(DDS)集成电路生成,励磁线圈由集成功率运算放大器供电。接收到的信号由低噪声宽动态范围放大电路进行滤波和放大。然后通过USB数据采集系统将信号数字化。 PC用于信号处理和分析。用两种线圈结构探针分别从管道的外部和内部进行了测试。一种具有在石油工业的测井过程中消除振动影响的优点的线圈探针被用于从内部发现套管的联接部分。另一类型的线圈探针用于测试从管道外部通过涂层产生的壁厚损失,它能够检测到10%的壁厚损失,且探针的抬起高度可达80mm,因此可用于测试高温零件无需去除涂层。

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