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Biomaterials and additive manufacturing
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Biomaterials and additive manufacturing/ by Rakesh Kumar, Santosh Kumar.
Author:
Kumar, Rakesh.
other author:
Kumar, Santosh.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
xviii, 116 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
Subject:
Biomedical materials. -
Online resource:
https://doi.org/10.1007/978-981-96-1274-1
ISBN:
9789819612741
Biomaterials and additive manufacturing
Kumar, Rakesh.
Biomaterials and additive manufacturing
[electronic resource] /by Rakesh Kumar, Santosh Kumar. - Singapore :Springer Nature Singapore :2025. - xviii, 116 p. :ill., digital ;24 cm. - SpringerBriefs in applied sciences and technology,2191-5318. - SpringerBriefs in applied sciences and technology..
INTRODUCTION -- IMPLANT CORROSION AND VARIOUS SURFACE MODIFICATION METHODS OF MEDICAL DEVICES -- ADDITIVE MANUFACTURING TECHNIQUES INTRODUCTION -- ADDITIVE MANUFACTURING MATERIALS INTRODUCTION TO AM MATERIALS -- LITERATURE REVIEW: BACKGROUND OF ELECTROPLATING ON PLASTICS, NICKEL PLATING, METALLIZATION OF FDM ABS PLASTICS, SELECTION OF FDM PARAMETERS AND RAW MATERIAL SELECTION -- POST PROCESSING METHODS: MECHANICAL FINISHING METHODS, ELECTROPLATING, ACETONE DIPPING, SUMMARY OF MECHANICAL PROPERTIES, APPLICATIONS -- CHALLENGES AND FUTURE SCOPE OF ADDITIVE MANUFACTURING.
This book addresses the challenges of using metallic biomaterials in implants. It delves into the selection process for these materials, considering factors like mechanical strength, biocompatibility, and resistance to wear and tear. However, the primary focus is on understanding and combating corrosion. Different types of corrosions are explored, highlighting their mechanisms and potential consequences. Existing research on surface modification techniques is reviewed, offering methods to improve the longevity and safety of implants. The book then introduces the exciting world of additive manufacturing (AM), a revolutionary technique for creating implants. It explores various AM technologies and their suitability for creating biomaterials (metallic's, ceramics and polymers). Subsequently, the diverse applications of AM in biomaterials and biomedical devices are explored. The book explores various post-processing methods used to refine parts created with AM. These methods not only improve the surface finish but can also enhance the overall properties of the implant. By analyzing existing research and exploring innovative techniques, this book aims to equip researchers and professionals with the knowledge to develop better metallic biomaterials. Ultimately, the goal is to create implants that last longer, function flawlessly, and offer a safer and more durable solution for patients.
ISBN: 9789819612741
Standard No.: 10.1007/978-981-96-1274-1doiSubjects--Topical Terms:
596825
Biomedical materials.
LC Class. No.: R857.M3
Dewey Class. No.: 610.28
Biomaterials and additive manufacturing
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INTRODUCTION -- IMPLANT CORROSION AND VARIOUS SURFACE MODIFICATION METHODS OF MEDICAL DEVICES -- ADDITIVE MANUFACTURING TECHNIQUES INTRODUCTION -- ADDITIVE MANUFACTURING MATERIALS INTRODUCTION TO AM MATERIALS -- LITERATURE REVIEW: BACKGROUND OF ELECTROPLATING ON PLASTICS, NICKEL PLATING, METALLIZATION OF FDM ABS PLASTICS, SELECTION OF FDM PARAMETERS AND RAW MATERIAL SELECTION -- POST PROCESSING METHODS: MECHANICAL FINISHING METHODS, ELECTROPLATING, ACETONE DIPPING, SUMMARY OF MECHANICAL PROPERTIES, APPLICATIONS -- CHALLENGES AND FUTURE SCOPE OF ADDITIVE MANUFACTURING.
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This book addresses the challenges of using metallic biomaterials in implants. It delves into the selection process for these materials, considering factors like mechanical strength, biocompatibility, and resistance to wear and tear. However, the primary focus is on understanding and combating corrosion. Different types of corrosions are explored, highlighting their mechanisms and potential consequences. Existing research on surface modification techniques is reviewed, offering methods to improve the longevity and safety of implants. The book then introduces the exciting world of additive manufacturing (AM), a revolutionary technique for creating implants. It explores various AM technologies and their suitability for creating biomaterials (metallic's, ceramics and polymers). Subsequently, the diverse applications of AM in biomaterials and biomedical devices are explored. The book explores various post-processing methods used to refine parts created with AM. These methods not only improve the surface finish but can also enhance the overall properties of the implant. By analyzing existing research and exploring innovative techniques, this book aims to equip researchers and professionals with the knowledge to develop better metallic biomaterials. Ultimately, the goal is to create implants that last longer, function flawlessly, and offer a safer and more durable solution for patients.
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