Polylactic Acid (PLA) Biocomposite: Processing, Additive Manufacturing and Advanced Applications

Биокомпозит на основе полимолочной кислоты (PLA): переработка, аддитивное производство и перспективные приложения
Hairul Abral, R.A. Ilyas, Mohd Nor Faiz Norrrahim, Mohd Nurazzi Norizan, M. R. M. Asyraf, S.M. Sapuan, M.M. Harussani, Mohamad Ridzwan Ishak, Mochamad Asrofi, Mohd Hakimi, Mohd Haziq, M.S.N. Atikah, Muhammad Rizal Razman
2021-04-18

3D printing4D printingPLA biocompositePLA synthesisadditive manufacturingbiodegradationfibre/matrix adhesionnatural fibre reinforced PLApolylactic acid (PLA)stimuli-responsive polymers
Over recent years, enthusiasm towards the manufacturing of biopolymers has attracted considerable attention due to the rising concern about depleting resources and worsening pollution. Among the biopolymers available in the world, polylactic acid (PLA) is one of the highest biopolymers produced globally and thus, making it suitable for product commercialisation. Therefore, the effectiveness of natural fibre reinforced PLA composite as an alternative material to substitute the non-renewable petroleum-based materials has been examined by researchers. The type of fibre used in fibre/matrix adhesion is very important because it influences the biocomposites' mechanical properties. Besides that, an outline of the present circumstance of natural fibre-reinforced PLA 3D printing, as well as its functions in 4D printing for applications of stimuli-responsive polymers were also discussed. This research paper aims to present the development and conducted studies on PLA-based natural fibre bio-composites over the last decade. This work reviews recent PLA-derived bio-composite research related to PLA synthesis and biodegradation, its properties, processes, challenges and prospects.
1
Natural fibre-reinforced PLA composites are being examined as renewable alternatives to petroleum-based materials, with fibre type and fibre/matrix adhesion critically influencing mechanical properties.
2
Polylactic acid (PLA) is one of the most-produced biopolymers globally, making it suitable for commercial productisation.
3
Recent research includes applications of natural fibre-reinforced PLA in 3D printing and discussions of their potential functions in 4D printing for stimuli-responsive polymers.
4
The paper reviews developments in PLA synthesis, biodegradation, properties, processing, challenges, and prospects over the last decade for PLA-based natural fibre biocomposites.

Polylactic acid (PLA)-based natural fibre biocomposite materials

Their processing, additive manufacturing (3D/4D printing), material properties (including fibre/matrix adhesion, mechanical properties, synthesis and biodegradation), challenges and advanced applications

Publication Details
Publication Date
2021-04-18
Journal
Publisher
ISSN
Cited by
508
Access Type
Author Information
Authors
Hairul Abral
R.A. Ilyas
Mohd Nor Faiz Norrrahim
Mohd Nurazzi Norizan
M. R. M. Asyraf
S.M. Sapuan
M.M. Harussani
Mohamad Ridzwan Ishak
Mochamad Asrofi
Mohd Hakimi
Mohd Haziq
M.S.N. Atikah
Muhammad Rizal Razman
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%