A Review of Polymer-Based Materials for Fused Filament Fabrication (FFF): Focus on Sustainability and Recycled Materials

Обзор полимерных материалов для послойного наплавления (FFF): акцент на устойчивое развитие и переработанные материалы
Carola Esposito Corcione, Daniela Fico, Daniela Rizzo, Raffaele Casciaro
2022-01-24

Cultural HeritageFused Filament Fabricationinterlayer bondingpolymer-based compositesrecycled materials
Recently, Fused Filament Fabrication (FFF), one of the most encouraging additive manufacturing (AM) techniques, has fascinated great attention. Although FFF is growing into a manufacturing device with considerable technological and material innovations, there still is a challenge to convert FFF-printed prototypes into functional objects for industrial applications. Polymer components manufactured by FFF process possess, in fact, low and anisotropic mechanical properties, compared to the same parts, obtained by using traditional building methods. The poor mechanical properties of the FFF-printed objects could be attributed to the weak interlayer bond interface that develops during the layer deposition process and to the commercial thermoplastic materials used. In order to increase the final properties of the 3D printed models, several polymer-based composites and nanocomposites have been proposed for FFF process. However, even if the mechanical properties greatly increase, these materials are not all biodegradable. Consequently, their waste disposal represents an important issue that needs an urgent solution. Several scientific researchers have therefore moved towards the development of natural or recyclable materials for FFF techniques. This review details current progress on innovative green materials for FFF, referring to all kinds of possible industrial applications, and in particular to the field of Cultural Heritage.
1
FFF has advanced technologically but remains limited in converting prototypes into industrially functional objects because printed parts have low and anisotropic mechanical properties.
2
FFF-printed components generally exhibit inferior mechanical properties compared with components produced using traditional manufacturing methods.
3
Polymer-based composites and nanocomposites can substantially improve FFF mechanical properties, but many are non-biodegradable and create significant waste-disposal challenges.
4
Research is increasingly developing natural, recyclable, and other green materials for FFF to address sustainability and end-of-life concerns.
5
The review surveys innovative sustainable FFF materials and their potential industrial applications, with particular attention to Cultural Heritage.
6
Weak interlayer bonding during layer deposition and the use of commercial thermoplastics are identified as major causes of FFF parts’ poor mechanical performance.

polymer-based materials used in Fused Filament Fabrication (FFF), including recycled and natural materials

the sustainability, recyclability, biodegradability, and mechanical-performance trade-offs of these materials for FFF applications

Publication Details
Publication Date
2022-01-24
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Authors
Carola Esposito Corcione
Daniela Fico
Daniela Rizzo
Raffaele Casciaro
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