捕获内部结构和隐藏缺陷是大型结构可靠性分析的基础

ce/papers Pub Date : 2025-09-05 DOI:10.1002/cepa.3323
Christoph Heinze, Arne Pionteck, Michael Geist, Wilko Flügge
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引用次数: 0

摘要

大型结构作为运输或能源基础设施的一部分,可以目视或人工检查,使用诸如爆震试验等方法来减少结构失效的可能性。今天,更先进的方法只在特殊情况下和局部使用。除了尺寸和难以接近之外,由于制造公差大,结构的个性迄今为止阻碍了自动化记录和评估。这里提出了两种自动化解决方案,以解决大型结构的这些挑战。ARGOS系统用于风力涡轮机转子叶片的自动检测,并将主动热成像与几何形状和表面捕获相结合。这使得对外部和内部结构的全面分析成为可能。第二个应用是LaserBeat系统,用于检查混凝土结构,特别是隧道衬砌。这里还使用光学方法来捕获几何形状和表面。然而,隐藏缺陷是通过使用脉冲激光和激光测振仪扫描来检测的。除了可重复的数据采集外,这些方法还使条件评估客观化成为可能。只有在数据状况得到改善的情况下,才有可能系统地使用风险管理程序和可靠性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capturing of the internal structure and hidden defects as a basis for reliability analyses of large structures

Large structures as part of the transport or energy infrastructure are inspected visually or manually using methods such as the knock test to reduce the likelihood of structural failure. Today, more advanced methods are only used in exceptional cases and locally. In addition to the size and poor accessibility, the individuality of the structures due to large manufacturing tolerances has so far prevented automated recording and evaluation. Two automation solutions are presented here that address these challenges of large structures. The ARGOS system is used for the automated inspection of wind turbine rotor blades and combines active thermography with geometry and surface capture. This enables a comprehensive analysis of the outer and inner structure. The second application, the LaserBeat system, is designed for the inspection of concrete structures, in particular the tunnel lining. Optical methods are also used here to capture the geometry and surface. However, hidden defects are detected by scanning using a pulse laser and laser vibrometer. In addition to reproducible data acquisition, these approaches also make it possible to objectify the condition assessment. The systematic use of risk management procedures and reliability analyses is only possible as a result of this improved data situation.

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