Recent decades have witnessed significant progress in zirconia-based materials research. This comprehensive handbook explores the latest advancements and applications of these materials, providing insights into cutting-edge manufacturing and materials science research while covering diverse industrial uses, properties, and synthesis methods. This handbook is structured into five key sections: I. Fundamentals and Materials Science, II. Industrial and Engineering Applications, III. Energy and Catalytic Applications, IV. Medical and Dental Applications, and V. Emerging Technologies.
Handbook of Zirconia-Based Materials: Manufacturing, Electrochemical, and Biomedical Engineering
examines the notable characteristics and wide-ranging applications of zirconia-based materials. Zirconia’s distinctive properties like optical transparency, thermal stability, mechanical strength, and electrical conductivity have attracted engineers and researchers across numerous fields, including energy production, biomedical engineering, and environmental remediation. These materials find significant applications in environmental protection, sustainable energy advancement, dental implants, solid oxide fuel cells, and catalytic converters.
This handbook thoroughly investigates zirconia’s crystal structure, phase transitions, and surface chemistry while exploring synthesis methodologies for nanostructured materials, from conventional to cutting-edge approaches. It also highlights the practical industries utilizing zirconia to demonstrate its importance. This resource provides accessible insights suitable for readers with varying levels of expertise, including industrial researchers, students, professionals, and scholars in manufacturing, materials science, chemistry, and physics.
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Jashanpreet Singh is an Assistant Professor at the Department of Mechanical Engineering, University Center for Research and Development, Chandigarh University, Mohali. He earned his PhD in Slurry Erosion and Thermal Spray Coatings from Thapar Institute of Engineering and Technology in 2019. With over three years of teaching and two years of industry experience, his research focuses on tribology, thermal spray coatings, CFD simulations, biomedical engineering materials and coatings, additive manufacturing, and materials characterization. He has published over 85 research papers, including 46 SCIE/ESCI-indexed articles and 81 in SCOPUS. He has authored a book and contributed 25 chapters to the different books. He serves as a reviewer for multiple reputed journals and is currently an editor for many reputed journals, edited books and book series. He is listed in Stanford University's Top 2% Scientists (2022-2024), he received the "Outstanding Reviewer Award" from IOP in 2021. He is a life member of AICTSD, IAENG, and NITTSD.
Hitesh Vasudev is a Professor in the School of Mechanical Engineering at Lovely Professional University, Phagwara, Punjab. He is also head of the Research and Development Cell. He earned his PhD in 2018 from Guru Nanak Dev Engineering College, Ludhiana. Dr. Vasudev's research interests include surface engineering and thermal spraying techniques such as HVOF, flame spray, cold and plasma spray, and microwave cladding. He focuses on developing nanostructured, multimodal, and high-entropy alloy coatings for high-temperature applications. Dr. Vasudev has over 190 indexed publications, along with 10 books and 50 book chapters. A dedicated reviewer, he has received the "Top Cited Paper Award India 2022" by IOP Publishing and LPU's Research Excellence Awards (2019-2023). He holds a patent and has received research grants from LPU and SERB for biomedical coatings and conference organization.
Ankit Sharma holds the position of Head of the Chitkara University Publications, Division of the Research and Innovation Network (CURIN) Department, Chitkara University, Punjab, India. He received his doctorate in Mechanical Engineering from the Thapar Institute of Engineering and Technology, India. He has more than 10 years of experience in academics, research, consulting, training, and industry. He has authored numerous national and international publications and has filed/published 30+ international patents. Dr. Sharma is also a series editor for CRC Press/Taylor and Francis, entitled Innovations in Smart Manufacturing for Long-Term Development and Growth. He is also the managing and special issue editor of several international journals and has delivered several invited seminars and keynote talks on international (USA, China, India) platforms. Along with that, he is also a reviewer board member of several international journals.
Sunaina is an Assistant Professor in the Department of Chemistry at Guru Nanak Dev University, Amritsar. She previously worked as a Postdoctoral Associate at the University of Calgary, focusing on nanobubbles for wastewater treatment. She earned her PhD in 2021 through a joint program between Panjab University and the Institute of Nano Science and Technology, India. Her research spans nanomaterials, including metal oxide-chalcogenide heterostructures for photocatalysis and photodetection, metal ferrites from slime waste for water treatment, and advanced field emission materials. She has published over 31 research articles and 10 book chapters. Dr. Sunaina has received multiple best paper awards and has hands-on experience in XRD, SAXS, and UV-Vis techniques. She was awarded synchrotron beam time at Photon Factory, Japan, highlighting her global research recognition. Her work reflects strong contributions to environmental sustainability and materials innovation.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Recent decades have witnessed significant progress in zirconiabased materials research. This comprehensive handbook explores the latest advancements and applications of these materials, providing insights into cuttingedge manufacturing and materials science research while covering diverse industrial uses, properties, and synthesis methods. This handbook is structured into five key sections: I. Fundamentals and Materials Science, II. Industrial and Engineering Applications, III. Energy and Catalytic Applications, IV. Medical and Dental Applications, and V. Emerging Technologies.Handbook of ZirconiaBased Materials: Manufacturing, Electrochemical, and Biomedical Engineering examines the notable characteristics and wideranging applications of zirconiabased materials. Zirconias distinctive properties like optical transparency, thermal stability, mechanical strength, and electrical conductivity have attracted engineers and researchers across numerous fields, including energy production, biomedical engineering, and environmental remediation. These materials find significant applications in environmental protection, sustainable energy advancement, dental implants, solid oxide fuel cells, and catalytic converters. This handbook thoroughly investigates zirconias crystal structure, phase transitions, and surface chemistry while exploring synthesis methodologies for nanostructured materials, from conventional to cuttingedge approaches. It also highlights the practical industries utilizing zirconia to demonstrate its importance. This resource provides accessible insights suitable for readers with varying levels of expertise, including industrial researchers, students, professionals, and scholars in manufacturing, materials science, chemistry, and physics. Recent decades have witnessed significant progress in zirconia-based materials research. This comprehensive handbook explores the latest advancements and applications of these materials, providing insights into cutting-edge manufacturing and materials science research while covering diverse industrial uses, properties, and synthesis methods. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9781032855875
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Hardcover. Etat : new. Hardcover. Recent decades have witnessed significant progress in zirconiabased materials research. This comprehensive handbook explores the latest advancements and applications of these materials, providing insights into cuttingedge manufacturing and materials science research while covering diverse industrial uses, properties, and synthesis methods. This handbook is structured into five key sections: I. Fundamentals and Materials Science, II. Industrial and Engineering Applications, III. Energy and Catalytic Applications, IV. Medical and Dental Applications, and V. Emerging Technologies.Handbook of ZirconiaBased Materials: Manufacturing, Electrochemical, and Biomedical Engineering examines the notable characteristics and wideranging applications of zirconiabased materials. Zirconias distinctive properties like optical transparency, thermal stability, mechanical strength, and electrical conductivity have attracted engineers and researchers across numerous fields, including energy production, biomedical engineering, and environmental remediation. These materials find significant applications in environmental protection, sustainable energy advancement, dental implants, solid oxide fuel cells, and catalytic converters. This handbook thoroughly investigates zirconias crystal structure, phase transitions, and surface chemistry while exploring synthesis methodologies for nanostructured materials, from conventional to cuttingedge approaches. It also highlights the practical industries utilizing zirconia to demonstrate its importance. This resource provides accessible insights suitable for readers with varying levels of expertise, including industrial researchers, students, professionals, and scholars in manufacturing, materials science, chemistry, and physics. Recent decades have witnessed significant progress in zirconia-based materials research. This comprehensive handbook explores the latest advancements and applications of these materials, providing insights into cutting-edge manufacturing and materials science research while covering diverse industrial uses, properties, and synthesis methods. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9781032855875
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