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Full Description
Microwave Processing of Metallic Materials presents the adaptability and efficiency of microwave processing with interdisciplinary applications across the industrial sector. It explores a diverse variety of issues, including the production of superalloys and biomaterials, the analysis of internal structures, and the study of erosion wear behavior.
Offering a comprehensive understanding of the basic concepts of microwave processing, the book illustrates its practical uses in creating materials with improved surface qualities, such as resistance to erosion and stability at high temperatures. It demonstrates how the use of microwave technology in surface engineering both enhances material performance and reduces energy consumption and environmental impact towards a sustainable future for manufacturing.
The book will interest industry researchers and graduate students studying advances in materials science, surface engineering, and manufacturing.
Contents
1. Introduction to the Fabrication of Materials Using Microwave Routes in View of Green Technology - Fundamentals and Applications. 2. Fabrication of Metallic Materials for Erosion Resistance. 3. Fabrication of Materials for the Manufacturing Industry Using Microwave Sintering. 4. Surface Properties Using Fabrication of Composites for Turbine Blades. 5. Evaluation of the Surface Properties of Biomaterials for the MedTech Industry. 6. Fabrication of Superalloys for High-Temperature Applications using Microwave Route. 7. Microwave Machining of Metal and Polymer-based Materials. 8. Erosion Wear Behavior of Composite Materials for Slurry and Solid Particle Erosion Applications. 9. Result Comparison of Microwave Processed Materials with Other Surface Engineering Techniques. 10. Evaluating the Internal Morphology of Microwave Processed Substrate Before and After Processing. 11. Microwave-Assisted Casting of Different Classes of Materials. 12. Environmental and Economic Considerations in the Fabrication of Coatings and Claddings. 13. Application of Microwave Energy for Post-treatment of Other Coating Techniques. 14. Future Recommendations on the Application of Microwave Processing of Materials.