[HTML][HTML] 3D printing of biodegradable polymers and their composites–Current state-of-the-art, properties, applications, and machine learning for potential future …
This review paper comprehensively examines the dynamic landscape of 3D printing and
Machine Learning utilizing biodegradable polymers and their composites, presenting a …
Machine Learning utilizing biodegradable polymers and their composites, presenting a …
Super tough poly (lactic acid) blends: A comprehensive review
X Zhao, H Hu, X Wang, X Yu, W Zhou, S Peng - RSC advances, 2020 - pubs.rsc.org
Poly (lactic acid) or poly (lactide)(PLA) is a renewable, bio-based, and biodegradable
aliphatic thermoplastic polyester that is considered a promising alternative to petrochemical …
aliphatic thermoplastic polyester that is considered a promising alternative to petrochemical …
Effect of Molecular Weight on the Crystallization and Melt Memory of Poly (ε-caprolactone)(PCL)
A Fernández-Tena, RA Pérez-Camargo… - …, 2023 - ACS Publications
The role of the molecular weight in the crystallization and melt memory of poly (ε-
caprolactone)(PCL) was investigated. To this end, 10 PCL samples of synthetic and …
caprolactone)(PCL) was investigated. To this end, 10 PCL samples of synthetic and …
Green copolymers based on poly (lactic acid)—short review
K Stefaniak, A Masek - Materials, 2021 - mdpi.com
Polylactic acid (PLA) is a biodegradable and biocompatible polymer that can be applied in
the field of packaging and medicine. Its starting substrate is lactic acid and, on this account …
the field of packaging and medicine. Its starting substrate is lactic acid and, on this account …
[HTML][HTML] Modification of cellulose micro-and nanomaterials to improve properties of aliphatic polyesters/cellulose composites: a review
M Stepanova, E Korzhikova-Vlakh - Polymers, 2022 - mdpi.com
Aliphatic polyesters/cellulose composites have attracted a lot attention due to the
perspectives of their application in biomedicine and the production of disposable materials …
perspectives of their application in biomedicine and the production of disposable materials …
Biodegradable polymer blends based on thermoplastic starch
This work considered the utilisation of environmentally friendly biodegradable materials
instead of conventional polymeric materials, in order to prevent further environmental …
instead of conventional polymeric materials, in order to prevent further environmental …
[HTML][HTML] Micromechanical analysis and fracture mechanics of Poly (lactic acid)(PLA)/Polycaprolactone (PCL) binary blends
Even Poly (lactic acid)/polycaprolactone (PLA/PCL) blends have been studied in literature,
the deformation mechanism that is related to the toughness increment with respect to pure …
the deformation mechanism that is related to the toughness increment with respect to pure …
An investigation of surface quality characteristics of 3D printed PLA plates cut by CO2 laser using experimental design
In this work, two typical surface characteristics, ie, mean surface roughness and angle of the
kerf during laser processing of 3D-printed Polylactic Acid (PLA) plates with 4.00 mm in …
kerf during laser processing of 3D-printed Polylactic Acid (PLA) plates with 4.00 mm in …
[PDF][PDF] Synergistic effect of P [MPEGMA-IL] modified graphene on morphology and dielectric properties of PLA/PCL blends
Y Zhou, P Wang, G Ruan, P Xu, Y Ding - ES Mater Manuf, 2021 - espublisher.com
To investigate the combined effect of graphene (Gra) and poly (methoxy poly (ethylene
glycol) monomethacrylate-co-1-vinyl-3-ethylimidazolium bromide)(P [MPEGMA-IL]) on the …
glycol) monomethacrylate-co-1-vinyl-3-ethylimidazolium bromide)(P [MPEGMA-IL]) on the …
Bioresorbable and degradable behaviors of PGA: Current state and future prospects
YJ Low, A Andriyana, BC Ang… - … Engineering & Science, 2020 - Wiley Online Library
Polyglycolic acid (PGA) is a class of semicrystalline, bioresorbable polymers that have been
widely used in a number of applications. No other bioresorbable materials can fully replace …
widely used in a number of applications. No other bioresorbable materials can fully replace …