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Title:Thermo-mechanical behavior and strain rate sensitivity of 3D-printed polylactic acid (PLA) below glass transition temperature (Tg)
Authors:ID Slavković, Vukašin (Author)
ID Hanželič, Blaž (Author)
ID Plesec, Vasja (Author)
ID Milenković, Strahinja (Author)
ID Harih, Gregor (Author)
Files:.pdf polymers-16-01526.pdf (5,88 MB)
MD5: 8DEBB5499C58F7B231378AF90FACD7C7
 
URL https://www.mdpi.com/2073-4360/16/11/1526
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FS - Faculty of Mechanical Engineering
Abstract:This study investigated the thermomechanical behavior of 4D-printed polylactic acid (PLA), focusing on its response to varying temperatures and strain rates in a wide range below the glass transition temperature (Tg). The material was characterized using tension, compression, and dynamic mechanical thermal analysis (DMTA), confirming PLA’s strong dependency on strain rate and temperature. The glass transition temperature of 4D-printed PLA was determined to be 65 °C using a thermal analysis (DMTA). The elastic modulus changed from 1045.7 MPa in the glassy phase to 1.2 MPa in the rubber phase, showing the great shape memory potential of 4D-printed PLA. The filament tension tests revealed that the material’s yield stress strongly depended on the strain rate at room temperature, with values ranging from 56 MPa to 43 MPA as the strain rate decreased. Using a commercial FDM Ultimaker printer, cylindrical compression samples were 3D-printed and then characterized under thermo-mechanical conditions. Thermo-mechanical compression tests were conducted at strain rates ranging from 0.0001 s−1 to 0.1 s−1 and at temperatures below the glass transition temperature (Tg) at 25, 37, and 50 °C. The conducted experimental tests showed that the material had distinct yield stress, strain softening, and strain hardening at very large deformations. Clear strain rate dependence was observed, particularly at quasi-static rates, with the temperature and strain rate significantly influencing PLA’s mechanical properties, including yield stress. Yield stress values varied from 110 MPa at room temperature with a strain rate of 0.1 s−1 to 42 MPa at 50 °C with a strain rate of 0.0001 s−1. This study also included thermo-mechanical adiabatic tests, which revealed that higher strain rates of 0.01 s−1 and 0.1 s−1 led to self-heating due to non-dissipated generated heat. This internal heating caused additional softening at higher strain rates and lower stress values. Thermal imaging revealed temperature increases of 15 °C and 18 °C for strain rates of 0.01 s−1 and 0.1 s−1, respectively.
Keywords:smart materials, shape memory polymer, 3D printing, 4D printing, thermo-mechanical experiments
Publication status:Published
Publication version:Version of Record
Submitted for review:17.04.2024
Article acceptance date:24.05.2024
Publication date:29.05.2024
Publisher:MDPI
Year of publishing:2024
Number of pages:17 str.
Numbering:Vol. 16, iss. 11, [article no.] 1526
PID:20.500.12556/DKUM-88837 New window
UDC:536:620.1
ISSN on article:2073-4360
COBISS.SI-ID:197165059 New window
DOI:10.3390/polym16111526 New window
Copyright:© 2024 by the authors
Publication date in DKUM:29.05.2024
Views:563
Downloads:54
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Record is a part of a journal

Title:Polymers
Shortened title:Polymers
Publisher:MDPI
ISSN:2073-4360
COBISS.SI-ID:517951257 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0063-2022
Name:Konstruiranje celičnih struktur

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Keywords:pametni materiali, polimeri s spominskim efektom, 3D tiskanje, 4D tiskanje, termomehanski poskusi


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