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Crack detection and sizing technique by ultrasonic and electromagnetic methods

机译:超声波和电磁法裂纹检测和定径技术

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摘要

Improvements in defect detection and sizing capabilities for non-destructive inspection techniques have been required in order to ensure the reliable operation and life extension of nuclear power plants. For the volumetric inspection, the phased array UT technique has superior capabilities for beam steering and focusing to objective regions, and real-time B-scan imaging without mechanical scanning. In contrast to the conventional UT method, high-speed inspection is realized by the unique feature of the phased array technique. A 256-channel array system has developed for the inspection of weldment of BWR internal components such as core shrouds. The TOFD crack sizing technique also can be applied using this system. For the surface inspection, potential drop techniques and eddy current techniques have been improved, which combined the theoretical analysis. These techniques have the crack sizing capability for surface breaking cracks to which UT method is difficult to apply. This paper provides the recent progress of these phased array and electromagnetic inspection techniques.
机译:为了确保核电站的可靠运行和延长寿命,需要改进无损检查技术的缺陷检测和大小确定能力。对于体积检查,相控阵UT技术具有卓越的功能,可进行光束转向和聚焦到目标区域,以及无需机械扫描即可进行实时B扫描成像。与传统的UT方法相比,通过相控阵技术的独特功能实现了高速检查。已经开发了一个256通道阵列系统,用于检查BWR内部组件(如铁心护罩)的焊接性。 TOFD裂纹定径技术也可以使用该系统来应用。对于表面检查,结合理论分析改进了电位降技术和涡流技术。这些技术具有用于难以使用UT方法的表面破裂裂纹的尺寸确定能力。本文提供了这些相控阵和电磁检测技术的最新进展。

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