1st Edition

Materials Development and Processing for Biomedical Applications

340 Pages 50 Color & 28 B/W Illustrations
by CRC Press

340 Pages 50 Color & 28 B/W Illustrations
by CRC Press

340 Pages 50 Color & 28 B/W Illustrations
by CRC Press

Materials Development and Processing for Biomedical Applications focuses on various methods of manufacturing, surface modifications, and advancements in biomedical applications. This book examines in detail about five different aspects including, materials properties, development, processing, surface coatings, future perspectives and fabrication of advanced biomedical devices.  Fundamental... Read more

Chapter 01 Nanomaterials and its Application as Biomedical Materials

Chapter 02 An Introduction to Properties of Biomedical Materials

Chapter 03 Material Properties for Biomedical Applications

Chapter 04 Biocompatibility Studies of Materials-An Overview

Chapter 05 Fabrication Methods for 2D Materials with Heterostructures

Chapter 06 The Manufacturing of Magnesium Degradable Biomedical Implants

Chapter 07 Polymeric Materials and its Components for Biomedical Applications

Chapter 08 Perspectives of 3D Printing Technology on Polymer Composites for Biomedical Applications

Chapter 09 Laser Powder Bed Fusion of Ti6Al4V Alloy for Biomedical Applications: Prospects and Challenges - Part 1: Process Details, Powder Characteristics and Laser Irradiation

Chapter 10 Laser Powder Bed Fusion of Ti6Al4V Alloy for Biomedical Applications: Prospects and Challenges - Part 2: Characteristic Properties of As-built Parts and Post-Treatments

Chapter 11 Biomedical Applications of Laser Texturing

Chapter 12 Laser Processing and On-line Monitoring for Biomedical Applications

Chapter 13 Laser Assisted Production of Calcium Phosphate Nanoparticles from Marine Origin

Chapter 14 Surface Modifications of Biometals

Chapter 15 Surface Treatments of Load Bearing Bio-implant Materials

Chapter 16 Advance Surface Treatments for Enhancing the Biocompatibility of Biomaterials

Chapter 17 Surface Nanostructuring of Ti Based Alloys for Biomedical Applications: Role of Surface Mechanical Attrition Treatment

Chapter 18 Surface Modification by Electrospinning Technique on Mg Alloys for Biomedical Applications

Chapter 19 Advanced Biomedical Devices: Technology for Healthcare Applications

Chapter 20 Biosensors

Chapter 21 Future Trends in Biomedical Applications

Biography

Sava? Kaya, Sivakumar Bose