无损检测
涡轮叶片
涡轮机
工程类
超声波检测
涡流检测
机器人
塔楼
导线
海洋工程
底盘
超声波传感器
可靠性(半导体)
风力发电
数据采集
六足动物
刀(考古)
机械工程
航程(航空)
特征(语言学)
热成像
相控阵超声
结构工程
声学
地形
作者
Chris Cieslak,Stacey Rivers,Peter Childs
出处
期刊:Journal of Fluids Engineering-transactions of The Asme
[ASM International]
日期:2026-01-17
卷期号:148 (5)
被引量:1
摘要
Abstract Offshore and onshore wind turbine blades present significant inspection, maintenance and repair challenges arising from location, economic drivers, environment and the specific blade architecture concerned. In-situ tasks have traditionally been undertaken by people abseiling from the tower or use of gantries. Harsh conditions associated with windy environs, along with pressures to limit downtime, have led to a range of new technologies becoming available. This paper presents results from the use of ultrasonic nondestructive testing (NDT) measurements of subsurface blade topography arising from in situ and static blade inspection for a range of wind turbine types. The measurements have been enabled using a hexapod robot that can accommodate NDT scanners within its chassis and can, using pneumatic suction for the robot pedipulators, navigate the convex, concave, and flexing form of in situ wind turbine blades. The arising NDT tomographic scans provide detailed information on blade integrity, the presence or otherwise of bonding materials, and local feature condition. Measurements, presented over a 600 mm traverse span, have confirmed the reliability of the robotic platform to deliver high-quality, consistent, and reliable data to be acquired with limited NDT experience and to allow subsurface inspections to be performed and analyzed remotely. In addition to detailed measurement of subsurface blade features, the robot system has also demonstrated the capacity to undertake functions such as lightning protection system verification.
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