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Advanced Welding Technologies
Sandip Kunar (Edited by), Kunar (Author), Gurudas Mandal (Edited by)
9781394331895, Wiley
Hardback, published 9 May 2025
608 pages
22.9 x 15.2 x 3.6 cm, 0.907 kg
Advanced Welding Technologies serves as a vital resource that transforms the perception of welding from a mere skill-based practice to a cutting-edge industrial method, offering comprehensive insights into its fundamental processes, research advancements, and diverse applications across technological and biomedical domains. Welding has traditionally been considered more of a skill-based proficiency than a technological industrial method. The reliance on highly trained human operators, along with the high cost and low reproducibility of many welding processes, has contributed to this perception. Extensive research has now been conducted on the fundamentals of welding processes, and while it remains a complex, multidisciplinary subject, the basic concepts are well understood. Advanced Welding Technologies is a comprehensive collection of the processes and applications of advanced welding technologies, giving a basic understanding of each process, research advancements, and their applications in various technological and biomedical domains for improving machining accuracy and quality. This volume will extend the possibilities of research in various areas of advanced welding technologies with basic and hybrid approaches, making it an easy reference for students and researchers working in this critical field. Readers will find the book: Audience Engineers, welders, researchers, academics, and students involved in advanced welding technologies, manufacturing, and materials science.
Preface xxi Acknowledgements xxv Part I: Advanced Welding Processes 1 1 Introduction to Advanced Welding Processes 3 2 Developments and Trends in Welding Development 25 3 Welding Power Source Technology 35 4 Welding Automation and Robotics 47 5 Material Flow and Heat Transfer Analysis in Friction Stir Welding 73 6 Atomic Hydrogen Welding 107 7 Modeling and Designing of Ultrasonic Welding 127 8 Microstructural Control and Heat Treatment Effects in Explosion Welding 155 9 Hybrid Welding Processes 177 10 Ultrasonic Welding: Foundations, Influential Factors, and Material Applications 197 Part II: Applications of Computational Techniques and Sustainability in Welding 219 11 Review and Analysis of Intelligent Welding Using Automation and Machine Learning Tools 221 12 Machine Learning in Welding Technologies 261 13 Artificial Intelligence and Machine Learning in Welding Technologies 277 14 Internet of Things in Welding Industries 287 15 Evolution of Technology in Testing and Inspection of Welding: From Traditional to Modern Methods 323 16 Sustainability in Welding Industries 339 17 Mechanical and Structural Evaluation of Friction Stir Welded AA6063 and AA6069 Aluminum Alloys for Marine and Aerospace Applications 353 18 Experimental Analysis and Optimization of Microwave Welding Parameters for Improved Joint Strength 369 19 Metaheuristic Approaches for the Optimized Friction Stir Welding Process 385 20 Laser-Arc Hybrid Welding 401 21 Beyond Fumes and Flux: Green Welding for a Sustainable Future 419 22 Toward a Greener Weld for Integrating Sustainability Into Welding Practices 447 23 Advancements in Robotic Welding Sensing Technology: A Review 477 24 Robotic Welding and Automation: Cutting-Edge Technology for Industry 497 25 Additive Manufacturing Integration with Welding: A Focus on Wire Arc Additive Manufacturing (WAAM) 513 26 Current Scenario, Future Scope, and Challenges in Welding 547 Summary 565 References 565 Index 573
Sandip Kunar, Jagadeesha T., Chika Oliver Ujah, Norfazillah Talib, Gurudas Mandal, Akhilesh Kumar Singh and Aezeden Mohamed
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Sumanta Banerjee and Prokash C. Roy
Chika Oliver Ujah, Rodolphe N'Dedji Sodokin and Daramy Vandi von Kallon
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Sonika Chauhan, Nisha Rani, Deepa Singh and Neeraj Bisht
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Subject Areas: Mechanical engineering & materials [TG]
