Readings Newsletter
Become a Readings Member to make your shopping experience even easier.
Sign in or sign up for free!
You’re not far away from qualifying for FREE standard shipping within Australia
You’ve qualified for FREE standard shipping within Australia
The cart is loading…

Additive Manufacturing of Piezoelectric Ceramic-based Biocomposites: Design, Strategies, and Challenges presents the latest developments in this important research field. The book begins with an introduction to additive manufacturing technology and its role in piezoelectric ceramic-based bioinks development. It then goes on to discuss the utility of 3D constructs developed through additive manufacturing techniques using piezoelectric ceramic-based bioinks for biomedical applications. Design approaches for modifying piezoelectric ceramic-based materials are also discussed as are additive manufacturing strategies for developing piezoelectric ceramic laden bioinks. Post-processing strategies and computational modeling, analysis, troubleshooting, and optimization are also thoroughly explored.
Users will also find selected case studies and real-world applications, making it a valuable reference resource for academic and industrial researchers, materials scientists and engineers, chemists, and manufacturers working on the research and development of advanced piezoelectric ceramics, with a particular interest in additive manufacturing processes and biomedical applications.
$9.00 standard shipping within Australia
FREE standard shipping within Australia for orders over $100.00
Express & International shipping calculated at checkout
Stock availability can be subject to change without notice. We recommend calling the shop or contacting our online team to check availability of low stock items. Please see our Shopping Online page for more details.
Additive Manufacturing of Piezoelectric Ceramic-based Biocomposites: Design, Strategies, and Challenges presents the latest developments in this important research field. The book begins with an introduction to additive manufacturing technology and its role in piezoelectric ceramic-based bioinks development. It then goes on to discuss the utility of 3D constructs developed through additive manufacturing techniques using piezoelectric ceramic-based bioinks for biomedical applications. Design approaches for modifying piezoelectric ceramic-based materials are also discussed as are additive manufacturing strategies for developing piezoelectric ceramic laden bioinks. Post-processing strategies and computational modeling, analysis, troubleshooting, and optimization are also thoroughly explored.
Users will also find selected case studies and real-world applications, making it a valuable reference resource for academic and industrial researchers, materials scientists and engineers, chemists, and manufacturers working on the research and development of advanced piezoelectric ceramics, with a particular interest in additive manufacturing processes and biomedical applications.