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Ultrasonic inspection of the surface crack for the main shaft of a wind turbine from the end face

机译:超声波检查末端面部风力涡轮机主轴的表面裂纹

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摘要

The integrity of the main shaft plays a significant role in the safety of wind turbine. Stress concentration often occurs where the main shaft and the bearing are assembled in the wind turbine. The surface breaking of transverse crack on the outer circumference thus becomes a major dangerous source. In this research, a finite element (FE) model is developed to analysis the echoes on the end face, which are often confused in the identification of the crack signals. The propagation of ultrasonic waves and its reflection on the shaft boundary will be investigated in details. The relationship between the amplitude of the crack echo and the radial position of the piezoelectric transducer is explored optimized comprehensively. Then, an ultrasonic measurement methodology are established for the examination of the main shaft from the end face. A circular scanning experiment for the shaft testing on surface cracks have been implemented. The results show that the crack depth less than 5 mm can be examined, although the total size of the shaft is phi 600 mm. 1285 mm. All artificial cracks in the high-stress zone have been detected with the aid of a B-scan imaging, which reveals the position of defects. This research will provide an effective regular inspection technique for the wind turbine shaft examination.
机译:主轴的完整性在风力涡轮机的安全性中起着重要作用。应力集中通常发生在主轴和轴承在风力涡轮机中组装的地方。因此,外圆周上的横向裂缝的表面破裂成为主要的危险源。在该研究中,开发了一个有限元(FE)模型以分析端面的回波,这通常在识别裂缝信号中被混淆。将研究超声波的传播及其对轴边界的反射。突出回波的幅度与压电换能器的径向位置之间的关系进行了全面优化。然后,建立超声测量方法,用于从端面检查主轴。已经实施了对表面裂缝上的轴测试的圆形扫描实验。结果表明,可以检查小于5mm的裂缝深度,尽管轴的总尺寸为PHI 600mm。 1285毫米。借助于B扫描成像检测了高应力区中的所有人造裂缝,其露出缺陷的位置。该研究将为风力涡轮机轴检查提供有效的定期检查技术。

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