Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service

The objective of this paper was to design configuration parameters for a stepped-lap scarf joint repair, which can be used for spar cap damage of a wind turbine blade in service and to realize the post-repair monitoring. Two experimental studies were included. First, tensile test for the unidirectio...

Full description

Bibliographic Details
Main Authors: Hui Li, Cheng Chen, Tongguang Wang, Long Wang
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/3/922
id doaj-a4bf6f5473f643218ff384735228062e
record_format Article
spelling doaj-a4bf6f5473f643218ff384735228062e2020-11-25T02:18:25ZengMDPI AGApplied Sciences2076-34172020-01-0110392210.3390/app10030922app10030922Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in ServiceHui Li0Cheng Chen1Tongguang Wang2Long Wang3Jiangsu Key Laboratory of Hi-Tech Research for Wind Turbine Design, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaJiangsu Key Laboratory of Hi-Tech Research for Wind Turbine Design, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaJiangsu Key Laboratory of Hi-Tech Research for Wind Turbine Design, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaJiangsu Key Laboratory of Hi-Tech Research for Wind Turbine Design, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaThe objective of this paper was to design configuration parameters for a stepped-lap scarf joint repair, which can be used for spar cap damage of a wind turbine blade in service and to realize the post-repair monitoring. Two experimental studies were included. First, tensile test for the unidirectional tape specimens with a large aspect ratio repaired using a multiple stepped-lap scarf joint method was carried out. The results showed that the reinforcement layer could effectively improve the load-carrying capacity of the repaired zone. The stepped-lap joint surface was identified as the weak part of the spar cap repair, which should be monitored. Second, by embedding carbon nanotube buckypaper sensors on the stepped-lap joint surface of the repaired specimens, quasi-static tensile tests and fatigue tests were carried out. According to the resistance response of the sensors, the quasi-static tensile test confirmed the failure processes, namely the stiffness turning point, damage evolution, crack propagation, and fracture. The fatigue test could accurately identify the progressive failure, namely the initial damage, damage accumulation, initial cracking, and crack propagation to structural failure. The above tests provided an important configuration parameter basis for evaluating the spar cap repair scheme and presented a promising method for the health monitoring of a spar cap after repair.https://www.mdpi.com/2076-3417/10/3/922wind turbine bladespar cap damagestepped-lap scarf joint repairunidirectional tape with large aspect ratiocarbon nanotube buckypaper sensortensile testfatigue testhealth monitoring
collection DOAJ
language English
format Article
sources DOAJ
author Hui Li
Cheng Chen
Tongguang Wang
Long Wang
spellingShingle Hui Li
Cheng Chen
Tongguang Wang
Long Wang
Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
Applied Sciences
wind turbine blade
spar cap damage
stepped-lap scarf joint repair
unidirectional tape with large aspect ratio
carbon nanotube buckypaper sensor
tensile test
fatigue test
health monitoring
author_facet Hui Li
Cheng Chen
Tongguang Wang
Long Wang
author_sort Hui Li
title Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
title_short Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
title_full Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
title_fullStr Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
title_full_unstemmed Experimental Study of Stepped-Lap Scarf Joint Repair for Spar Cap Damage of Wind Turbine Blade in Service
title_sort experimental study of stepped-lap scarf joint repair for spar cap damage of wind turbine blade in service
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-01-01
description The objective of this paper was to design configuration parameters for a stepped-lap scarf joint repair, which can be used for spar cap damage of a wind turbine blade in service and to realize the post-repair monitoring. Two experimental studies were included. First, tensile test for the unidirectional tape specimens with a large aspect ratio repaired using a multiple stepped-lap scarf joint method was carried out. The results showed that the reinforcement layer could effectively improve the load-carrying capacity of the repaired zone. The stepped-lap joint surface was identified as the weak part of the spar cap repair, which should be monitored. Second, by embedding carbon nanotube buckypaper sensors on the stepped-lap joint surface of the repaired specimens, quasi-static tensile tests and fatigue tests were carried out. According to the resistance response of the sensors, the quasi-static tensile test confirmed the failure processes, namely the stiffness turning point, damage evolution, crack propagation, and fracture. The fatigue test could accurately identify the progressive failure, namely the initial damage, damage accumulation, initial cracking, and crack propagation to structural failure. The above tests provided an important configuration parameter basis for evaluating the spar cap repair scheme and presented a promising method for the health monitoring of a spar cap after repair.
topic wind turbine blade
spar cap damage
stepped-lap scarf joint repair
unidirectional tape with large aspect ratio
carbon nanotube buckypaper sensor
tensile test
fatigue test
health monitoring
url https://www.mdpi.com/2076-3417/10/3/922
work_keys_str_mv AT huili experimentalstudyofsteppedlapscarfjointrepairforsparcapdamageofwindturbinebladeinservice
AT chengchen experimentalstudyofsteppedlapscarfjointrepairforsparcapdamageofwindturbinebladeinservice
AT tongguangwang experimentalstudyofsteppedlapscarfjointrepairforsparcapdamageofwindturbinebladeinservice
AT longwang experimentalstudyofsteppedlapscarfjointrepairforsparcapdamageofwindturbinebladeinservice
_version_ 1724882370234941440