A Review of Non-Destructive Testing (NDT) Techniques for Defect Detection: Application to Fusion Welding and Future Wire Arc Additive Manufacturing Processes
Обзор методов неразрушающего контроля (НК) для обнаружения дефектов: применение к сварке плавлением и перспективным процессам аддитивного производства методом дугового наплавления проволокой
2022-05-21
SCID: 54.1/kj3mbevv
Discuss with AI
fusion weldingin-process defect detectionlaser-ultrasonic testingnon-destructive testingwire arc additive manufacturing
Figures from the paper
Abstract (AI)
In Wire and Arc Additive Manufacturing (WAAM) and fusion welding, various defects such as porosity, cracks, deformation and lack of fusion can occur during the fabrication process. These have a strong impact on the mechanical properties and can also lead to failure of the manufactured parts during service. These defects can be recognized using non-destructive testing (NDT) methods so that the examined workpiece is not harmed. This paper provides a comprehensive overview of various NDT techniques for WAAM and fusion welding, including laser-ultrasonic, acoustic emission with an airborne optical microphone, optical emission spectroscopy, laser-induced breakdown spectroscopy, laser opto-ultrasonic dual detection, thermography and also in-process defect detection via weld current monitoring with an oscilloscope. In addition, the novel research conducted, its operating principle and the equipment required to perform these techniques are presented. The minimum defect size that can be identified via NDT methods has been obtained from previous academic research or from tests carried out by companies. The use of these techniques in WAAM and fusion welding applications makes it possible to detect defects and to take a step towards the production of high-quality final components.
Key Findings
1
For each technique, the review describes operating principles, required equipment, novel research developments, and applications to WAAM and fusion welding.
2
It covers laser-ultrasonic testing, airborne optical-microphone acoustic emission, optical emission spectroscopy, laser-induced breakdown spectroscopy, laser opto-ultrasonic dual detection, thermography, and weld-current monitoring.
3
Minimum detectable defect sizes are compiled from prior academic studies and company testing, providing comparative sensitivity information.
4
NDT enables defect detection without damaging workpieces and supports improved quality of final components in welding and WAAM.
5
The review surveys non-destructive testing techniques for detecting porosity, cracks, deformation, and lack of fusion in fusion welding and WAAM.
Research Object
Defect formation and detection in fusion welding and Wire and Arc Additive Manufacturing (WAAM) processes
Research Subject
Capabilities, operating principles, equipment requirements, and minimum detectable defect sizes of non-destructive testing (NDT) techniques for identifying porosity, cracks, deformation, and lack of fusion
Publication Details
Publication Date
2022-05-21
Journal
Publisher
ISSN
Cited by
140
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest