E. V. Krotova, O. Sachenkov, V. I. Mitryakin, T. A. Zaitseva, R. H. Zakirov
{"title":"The use of X-Ray computed tomography for the diagnosis of composite structures in the energy sector","authors":"E. V. Krotova, O. Sachenkov, V. I. Mitryakin, T. A. Zaitseva, R. H. Zakirov","doi":"10.30724/1998-9903-2024-26-2-15-31","DOIUrl":null,"url":null,"abstract":"RELEVANCE In modern Russia, an important condition for the development of the Far North and Far Eastern regions is to provide these regions with electricity. In remote areas with increased wind potential, the use of wind power plants, the main structural elements of which are made of polymer composite materials (PCM), is promising. The most dangerous operational defect of the PCM is shock damage: due to hail strikes or pieces of ice that broke off during heating of the blades, as well as lightning strikes. Such defects, which are difficult to detect during visual inspection, can significantly reduce the strength and service life of the structure. At the stages of technology development and design certification, the use of modern methods of non-destructive testing is required.PURPOSE. To evaluate the possibilities of X-ray computed tomography for the diagnosis of structural elements made of PCM with impact damage.METHODS. After applying a low-speed impact to fragments of the blades of the wind turbine, a visual inspection and measurement of the size of internal injuries are carried out on a Phoenix V |Tome|X X-ray computed tomograph.RESULTS The nature of the damage inflicted with different impact energies on the most critical areas of fragments of the airfoil blades and the stringer panel is investigated. The depth and area of damage have been determined. The nature and size of internal injuries were studied using an X-rayCOMPUTED tomograph. conclusion. The results obtained allow us to estimate with high accuracy the size and location of impact damage, which can be used in strength calculations.","PeriodicalId":222237,"journal":{"name":"Power engineering: research, equipment, technology","volume":"152 3","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-06-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Power engineering: research, equipment, technology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.30724/1998-9903-2024-26-2-15-31","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
RELEVANCE In modern Russia, an important condition for the development of the Far North and Far Eastern regions is to provide these regions with electricity. In remote areas with increased wind potential, the use of wind power plants, the main structural elements of which are made of polymer composite materials (PCM), is promising. The most dangerous operational defect of the PCM is shock damage: due to hail strikes or pieces of ice that broke off during heating of the blades, as well as lightning strikes. Such defects, which are difficult to detect during visual inspection, can significantly reduce the strength and service life of the structure. At the stages of technology development and design certification, the use of modern methods of non-destructive testing is required.PURPOSE. To evaluate the possibilities of X-ray computed tomography for the diagnosis of structural elements made of PCM with impact damage.METHODS. After applying a low-speed impact to fragments of the blades of the wind turbine, a visual inspection and measurement of the size of internal injuries are carried out on a Phoenix V |Tome|X X-ray computed tomograph.RESULTS The nature of the damage inflicted with different impact energies on the most critical areas of fragments of the airfoil blades and the stringer panel is investigated. The depth and area of damage have been determined. The nature and size of internal injuries were studied using an X-rayCOMPUTED tomograph. conclusion. The results obtained allow us to estimate with high accuracy the size and location of impact damage, which can be used in strength calculations.
相关性 在现代俄罗斯,远北和远东地区发展的一个重要条件是为这些地区供电。在风能潜力增加的偏远地区,使用风力发电厂(其主要结构件由聚合物复合材料 (PCM) 制成)是很有前途的。PCM 最危险的运行缺陷是冲击损坏:如冰雹袭击、叶片加热过程中冰块脱落以及雷击。这些缺陷在目视检查中很难发现,会大大降低结构的强度和使用寿命。在技术开发和设计认证阶段,需要使用现代无损检测方法。评估 X 射线计算机断层扫描诊断 PCM 结构件受冲击损坏的可能性。 方法:对风力涡轮机叶片碎片施加低速冲击后,在 Phoenix V |Tome|X X 射线计算机断层扫描仪上进行目视检查和内部损伤大小测量。 结果:研究了不同冲击能量对机翼叶片碎片和支柱面板最关键区域造成的损坏性质。确定了损伤的深度和面积。使用 X 射线计算机断层扫描对内部损伤的性质和大小进行了研究。根据所获得的结果,我们可以非常准确地估算出撞击损伤的大小和位置,并将其用于强度计算。