Review of Non-Destructive Testing for Wind Turbine Bolts
Обзор методов неразрушающего контроля болтов ветряных турбин
2025-09-13
SCID: 54.1/upvya9ep
Discuss with AI
fatigue crack initiationhigh-strength boltsnon-destructive testingultrasonic inspectionwind turbine bolts
Figures from the paper
Abstract (AI)
As the world increasingly gravitates towards green, environmentally friendly and low-carbon lifestyles, wind power has become one of the most technologically established renewable energy sources. However, with the continuous increase in their output power and height, wind turbine towers are subjected to higher-intensity alternating wind loads. This makes critical components more prone to fatigue failure, potentially leading to major accidents such as tower buckling or turbine collapse. High-strength bolts play a vital role in supporting towers but are susceptible to fatigue crack initiation under long-term cyclic loading, necessitating regular inspection. Types of wind turbine bolts mainly include high-strength bolts, stainless steel bolts, anchor bolts, titanium alloy bolts, and adjustable bolts. These bolts are distributed across different parts of the turbine and perform distinct functions. Among them, high-strength bolts in the tower are particularly critical for structural support, demanding prioritized periodic inspection. Compared to destructive offline inspection methods requiring bolt disassembly, non-destructive testing (NDT) has emerged as a trend in defect detection technologies. Therefore, this review comprehensively examines various types of NDT techniques for wind turbine towers' high-strength bolts, including disassembly inspection techniques (magnetic particle inspection, penetration inspection, intelligent torque inspection, etc.) and non-disassembly inspection techniques (ultrasonic inspection, radiographic inspection, infrared thermographic inspection, etc.). For each technique, we analyze the fundamental principles, technical characteristics, and limitations, while emphasizing the interconnections between the methodologies. Finally, we discuss potential future research directions for bolt defect NDT technologies.
Key Findings
1
For each NDT technique, the review evaluates operating principles, technical characteristics, limitations, methodological interconnections, and future research directions.
2
High-strength tower bolts are especially critical structural components and require prioritized periodic inspection because long-term cyclic loading can initiate fatigue cracks.
3
Increasing wind-turbine output and height intensifies alternating loads, increasing fatigue-failure risks in tower bolts and potentially causing tower buckling or collapse.
4
The review categorizes wind-turbine bolts by type and location, including high-strength, stainless steel, anchor, titanium-alloy, and adjustable bolts.
5
The review compares disassembly-based techniques, such as magnetic particle, penetration, and intelligent torque inspection, with non-disassembly methods including ultrasonic, radiographic, and infrared thermographic inspection.
Research Object
High-strength bolts in wind turbine towers
Research Subject
Non-destructive testing techniques for detecting fatigue cracks and other defects in high-strength bolts, including their principles, technical characteristics, limitations, and methodological interconnections
Publication Details
Publication Date
2025-09-13
Journal
Publisher
ISSN
Cited by
8
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest