PDF

Structural and Biomedical Properties of Common Additively Manufactured Biomaterials: A Concise Review

Kristin S. Ødegaard, Jan Torgersen

2020Englishadditive manufacturingbiomaterialsbiomedical engineeringimplantsmetalsceramics

Abstract

Language:

Biomaterials are in high demand due to the increasing geriatric population and a high prevalence of cardiovascular and orthopedic disorders. The combination of additive manufacturing (AM) and biomaterials is promising, especially towards patient-specific applications. With AM, unique and complex structures can be manufactured. Furthermore, the direct link to computer-aided design and digital scans allows for a direct replicable product. However, the appropriate selection of biomaterials and corresponding AM methods can be challenging but is a key factor for success. This article provides a concise material selection guide for the AM biomedical field. After providing a general description of biomaterial classes—biotolerant, bioinert, bioactive, and biodegradable—we give an overview of common ceramic, polymeric, and metallic biomaterials that can be produced by AM and review their biomedical and mechanical properties. As the field of load-bearing metallic implants experiences rapid growth, we dedicate a large portion of this review to this field and portray interesting future research directions. This article provides a general overview of the field, but it also provides possibilities for deepening the knowledge in specific aspects as it comprises comprehensive tables including materials, applications, AM techniques, and references.

Download

Cite This Work

@article{bd02faf8-4b05-4fe9-a74a-bd5f6e23a200,
  title={Structural and Biomedical Properties of Common Additively Manufactured Biomaterials: A Concise Review},
  author={Kristin S. Ødegaard and Jan Torgersen},
  year={2020},
  language={English}
}
TY  - JOUR
TI  - Structural and Biomedical Properties of Common Additively Manufactured Biomaterials: A Concise Review
AU  - Kristin S. Ødegaard
AU  - Jan Torgersen
PY  - 2020
LA  - English
ER  -

Similar Items

Additive Manufacturing of Ceramics and Ceramic-Based Composites: Processing, Properties, and Engineering Applications

Subin Antony Jose, John Crosby

Ceramics are widely evaluated for their extreme hardness, high-temperature stability, and corrosion resistance, which enable applications in harsh ser

2026EnglishPDF

Ceramic Materials for Biomedical Applications: An Overview on Properties and Fabrication Processes

Lorenzo Vaiani, Antonio Boccaccio

A growing interest in creating advanced biomaterials with specific physical and chemical properties is currently being observed. These high-standard m

2023EnglishPDF

Additive Manufacturing for Rapid Sand Casting: Mechanical and Microstructural Investigation of Aluminum Alloy Automotive Prototypes

Silvia Cecchel, Giovanna Cornacchia

The automotive industry is undergoing a rapid evolution to meet today’s challenges; therefore, continuous innovation and product development are neede

2024EnglishPDF

Polymer–Metal Hybrid Composites: An Overview of the Role of Metal Architecture

Ana Pavlovic, Carlo Santulli

Polymer–metal hybrid composites (PMHCs) represent an emerging class of materials that combine the lightweight processability of polymers with the stru

2026EnglishPDF

A CALPHAD-Informed Enthalpy Method for Multicomponent Alloy Systems with Phase Transitions

Robert Scherr, Philipp Liepold

Solid–liquid phase transitions of metals and alloys play an important role in many technical processes. Therefore, corresponding numerical process sim

2024EnglishPDF

State-of-the-Art Review of the Simulation of Dynamic Recrystallization

Xin Liu, Jiachen Zhu

The evolution of microstructures during the hot working of metallic materials determines their workability and properties. Recrystallization is an imp

2024EnglishPDF