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Implementation of Ultrasonic Immersion Technique for Babbitt Metal Debonding in Turbine Bearing

机译:超声浸没技术在汽轮机轴承中巴氏合金脱胶的实现

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摘要

This study was aimed at the implementation of an ultrasonic method to assess the reliability of turbine bearings. Modified ultrasonic immersion technique was used in carrying out both laboratory experiment and field application. From studies conducted in the laboratory, we confirmed by C-Scan that the condition of the interface layer between the babbitt and base metal can be monitored. The C-scan image in the ultrasonic immersion test can be used successfully to observe the condition of interface layer. The testing, using a focused transducer, provided a promising approach for estimating the extent of the damaged region and observing the interface layer effectively. The difference of the ultrasonic reflection ratio between the bonding and debonding area at the interface layer is one of the key parameters for assessing the extent of the damaged area; additionally, the reflection amplitude exhibits a favorable correlation with the overall damage level. In this study, a developed technique was applied to inspect the turbine bearings at several power plants in Korea whereby the applicability in the field can be ascertained. The ultrasonic testing was analyzed to obtain key parameters such as amplitude and the position of transducer at the damaged interface layer. The amplitude and positional data were integrated and controlled by a PC-based ultrasonic equipment. The debonding size and area in C-scan image was calculated automatically by labeling and clustering algorithm, of which results showed a good correlation to the condition of actual defects. C-scan images provided clear results to end users, which then can be used to judge the reliability of the bearing.
机译:这项研究旨在实施一种超声波方法来评估涡轮轴承的可靠性。改进的超声浸没技术被用于进行实验室实验和现场应用。从实验室进行的研究中,我们通过C-Scan确认可以监测巴氏合金和贱金属之间的界面层状况。超声波浸没试验中的C扫描图像可成功用于观察界面层的状况。使用聚焦换能器的测试为估计受损区域的范围和有效观察界面层提供了一种有前途的方法。界面层的粘结面积和脱粘结面积之间的超声反射率之差是评估损伤面积的关键参数之一。另外,反射幅度与总损伤水平具有良好的相关性。在这项研究中,一项发达的技术被应用于检查韩国多家发电厂的涡轮轴承,从而可以确定其在现场的适用性。分析超声测试以获得关键参数,例如振幅和换能器在受损界面层的位置。振幅和位置数据通过基于PC的超声设备进行集成和控制。通过标记和聚类算法自动计算出C扫描图像中的脱胶尺寸和面积,其结果与实际缺陷状况具有良好的相关性。 C扫描图像可为最终用户提供清晰的结果,然后可用于判断轴承的可靠性。

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