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Microstructural and Hydrophilic Properties of Polylactide Polymer Samples with Various 3D Printing Patterns.
Lenshin, Alexandr S; Frolova, Vera E; Kannykin, Sergey V; Domashevskaya, Evelina P.
Affiliation
  • Lenshin AS; Department of Solid State Physics and Nanostructures, Voronezh State University, Voronezh 394018, Russia.
  • Frolova VE; Department of Solid State Physics and Nanostructures, Voronezh State University, Voronezh 394018, Russia.
  • Kannykin SV; Department of Solid State Physics and Nanostructures, Voronezh State University, Voronezh 394018, Russia.
  • Domashevskaya EP; Department of Solid State Physics and Nanostructures, Voronezh State University, Voronezh 394018, Russia.
Polymers (Basel) ; 16(9)2024 May 03.
Article in En | MEDLINE | ID: mdl-38732750
ABSTRACT
The aim of the work is to study the effect of the 3D printing process on the microstructural and hydrophilic properties of polylactic acid (PLA) samples with various model printing patterns obtained from the black filament PLA by sequentially applying polymer layers using the FDM (fused deposition modeling) method. X-ray phase analysis revealed the partial crystallization of PLA polymer chains in the printed samples, which occurs under thermal and mechanical action on the original amorphous PLA filament during 3D printing to varying degrees, depending on the geometry of the pattern and the morphology of its surface. At the same time, IR spectroscopy data indicate the preservation of all intrastructural chemical bonds of polylactide. Measured at the original installation, the values of the wetting edge angles on the surface of the printed samples are in the range φ = 50-60°, which is significantly less than the right angle. This indicates the hydrophilic properties of the whole sample's surface. At the same time, the influence of different geometries of model drawings in printed samples was found not only on the morphology of the sample's surface according to SEM data but also on its wettability.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2024 Document type: Article Affiliation country: Russia Country of publication: Switzerland

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Polymers (Basel) Year: 2024 Document type: Article Affiliation country: Russia Country of publication: Switzerland