
Advanced Welding Technologies
Description
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Features:
Explores the welding of ferrous, nonferrous, and dual-phase materials with insights into microstructural evolution and mechanical performance.
Includes case studies on pulsed laser welding for polymers and spot welding of titanium alloys.
Discusses process optimization, industrial adaptability, and challenges in welding dissimilar materials.
Highlights the role of arc-based additive manufacturing in bridging conventional and modern fabrication routes.
This book is aimed at researchers, graduate students, and professionals in materials science, manufacturing, and mechanical engineering.
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Persons
Dawei Zhao is Senior Researcher at South Ural State University (SUSU). He oversees a team whose research is centred on the welding of high-strength materials, employing experimental, numerical and analytical techniques to achieve vehicle lightweighting. Dr. Zhao was awarded his PhD in Mechanical Engineering by Huazhong University of Science and Technology (HUST). Upon completion of his doctoral studies, Dr. Zhao assumed the role of Senior Welding Engineer at China North Industries Group Corporation, where he addressed quality control concerns related to welding. Subsequently, he assumed the role of Senior Lecturer at Linyi University in China. Dr. Zhao has published 45 papers in ISI-listed journals. He has participated in several international conferences and is a member of the editorial board of the Journal of Industrial and Modern Manufacturing and Current Chinese Science. Additionally, he serves as a topic editor for several journals, including Frontiers in Mechanical Engineering (Frontiers), Applied Sciences (MDPI), Metals (MDPI) and Crystals (MDPI). He has also been an active reviewer for over 100 articles in more than 10 international journals.
Fabio A.O. Fernandes is Assistant Professor at the Department of Mechanical Engineering of the University of Aveiro, Portugal. He has been actively involved in innovative challenges of technological processes such as laser welding, marking and processing of several materials. Since 2013, he has been an active author with more than 85 publications indexed in SCOPUS, including high-impact factor JCR SCI journals. He has >1250 citations and an h-index of 20 (Scopus). Since 2018 he has supervised 50 MSc, 4 PhD students, 2 Postdocs and 3 junior researchers. Fabio Fernandes participated in 23 R&D projects (9 in cooperation with industry), and 2 internationals, being the local PI of 1 European project (ERASMUS+) and 1 national project (FCT PeX 2022). His work on helmet testing and evaluation with advanced numerical tools was selected as the cover image of Mathematical and Computational Applications, volume 25, March 2020. He has been invited to organise special issues, give invited talks, and participate as a jury member in international scientific competitions. His work has been recognised with prestigious awards and honours, e.g. the 2017 Mario Quartin Graca Scientific award for his PhD work, and more recently, the invention Flattie resulted in the 8th edition of BfK Ideas, BikeUp, and the James Dyson (national) awards, and iF Product Design Award. He also has registered inventions in the form of patents. One was awarded in the IX national competition (PL) for inventors and patents. He received the Materials 2020 Outstanding Reviewer Award from the Materials Editorial Office (IF=3.057) in January 2021. He is a member of the Editorial Board of Mathematical and Computational Applications and a topic editor in Materials, Processes, and Nanomanufacturing journals. He is also a member of the American Welding Society (AWS).
Content
Chapter 2. Fusion Welding of Ferrous and Non-Ferrous Metals
Chapter 3. Resistance Spot Welding of Titanium Alloys
Chapter 4. Microstructural Transformation and Mechanical Performance of Spot-welded Dual-phase (DP) 600 Steel Joints
Chapter 5. Pulsed Laser Welding of Dual-phase Steels
Chapter 6. Optimization of Weld Width of Laser Welded Two Transparent Polymers
Chapter 7. Adaptability of Friction Stir Welding in Modern Industry: Benefits and Challenges
Chapter 8. Impact of Welding Speed and Tool Rotational Speed of Friction Stir Welded Magnesium Alloy (AZ31B) to Analyse the Heat Generation
Chapter 9. Arc-based Additive Manufacturing
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