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Published by Taylor & Francis Ltd, 2025
ISBN 10: 1032509589 ISBN 13: 9781032509587
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Published by Taylor & Francis Ltd, London, 2025
ISBN 10: 1032509589 ISBN 13: 9781032509587
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Paperback. Condition: new. Paperback. Magnesium alloys have enormous potential for use in biomedical implants. Magnesium Alloys for Biomedical Applications delves into recent advances and prospects for implementation and provides scientific insights into current issues posed by Mg alloy materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics, with a particular emphasis on biomedical implants.Details the fundamentals of Mg alloys as well as necessary surface modifications of Mg alloys for biomedical use.Discusses emerging Mg alloys and their composites.Covers mechanical, tribological, and chemical properties, as well as fatigue and corrosion.Highlights emerging manufacturing methods and advancements in new alloy design, composite manufacturing, unique structure design, surface modification, and recyclability.Helps readers identify appropriate Mg-based materials for their applications and select optimal improvement methods.Summarizes current challenges and suggests a roadmap for future research.Aimed at researchers in materials and biomedical engineering, this book explores the many breakthroughs achieved with these materials and where the field should concentrate to ensure the development of safe and reliable Mg alloy-based implants. This book delves into recent advances and prospects for implementation of Mg alloys in biomedical implants and provides scientific insights into current issues posed by Mg alloys materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Published by Taylor & Francis Ltd, London, 2025
ISBN 10: 1032509589 ISBN 13: 9781032509587
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Paperback. Condition: new. Paperback. Magnesium alloys have enormous potential for use in biomedical implants. Magnesium Alloys for Biomedical Applications delves into recent advances and prospects for implementation and provides scientific insights into current issues posed by Mg alloy materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics, with a particular emphasis on biomedical implants.Details the fundamentals of Mg alloys as well as necessary surface modifications of Mg alloys for biomedical use.Discusses emerging Mg alloys and their composites.Covers mechanical, tribological, and chemical properties, as well as fatigue and corrosion.Highlights emerging manufacturing methods and advancements in new alloy design, composite manufacturing, unique structure design, surface modification, and recyclability.Helps readers identify appropriate Mg-based materials for their applications and select optimal improvement methods.Summarizes current challenges and suggests a roadmap for future research.Aimed at researchers in materials and biomedical engineering, this book explores the many breakthroughs achieved with these materials and where the field should concentrate to ensure the development of safe and reliable Mg alloy-based implants. This book delves into recent advances and prospects for implementation of Mg alloys in biomedical implants and provides scientific insights into current issues posed by Mg alloys materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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Published by Taylor & Francis Ltd, London, 2025
ISBN 10: 1032509589 ISBN 13: 9781032509587
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Paperback. Condition: new. Paperback. Magnesium alloys have enormous potential for use in biomedical implants. Magnesium Alloys for Biomedical Applications delves into recent advances and prospects for implementation and provides scientific insights into current issues posed by Mg alloy materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics, with a particular emphasis on biomedical implants.Details the fundamentals of Mg alloys as well as necessary surface modifications of Mg alloys for biomedical use.Discusses emerging Mg alloys and their composites.Covers mechanical, tribological, and chemical properties, as well as fatigue and corrosion.Highlights emerging manufacturing methods and advancements in new alloy design, composite manufacturing, unique structure design, surface modification, and recyclability.Helps readers identify appropriate Mg-based materials for their applications and select optimal improvement methods.Summarizes current challenges and suggests a roadmap for future research.Aimed at researchers in materials and biomedical engineering, this book explores the many breakthroughs achieved with these materials and where the field should concentrate to ensure the development of safe and reliable Mg alloy-based implants. This book delves into recent advances and prospects for implementation of Mg alloys in biomedical implants and provides scientific insights into current issues posed by Mg alloys materials. It provides an overview of research on their mechanical and tribological characteristics, corrosion tendencies, and biological characteristics. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
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Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Deepak Kumar is a Postdoctoral Research Associate in the Department of Mechanical Engineering at Carnegie Mellon University, USA. His work involves the development of thin conductive film, integration of these methods with devices using clean room.
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