Publication detail
Effects of thermal annealing as polymer processing step on poly(lactic acid)
Miroslav Pastorek, Adriana Kovalcik
Original Title
Effects of thermal annealing as polymer processing step on poly(lactic acid)
Type
journal article in Web of Science
Language
English
Original Abstract
Thermal annealing as an additional polymer processing step or post-treatment processing step enables the structural changes of amorphous parts into crystalline parts. This paper investigates the feasibility of thermal annealing at 100 degrees C up to 90min used as an additional processing step to modify the crystalline structure and the thermo-mechanical stability of poly(lactic acid) (PLA). Moreover, the crystallization ability of PLA has been amended by the addition of 3wt% of wood flour and kaolin. The values of the degree of crystallinity and lamellar thickness determined by wide-angle-X-ray scattering showed that the thermal annealing of PLA samples modified with nucleating agents was an efficient processing step to increase the final crystallinity of PLA. Moreover, altered crystalline structure helped to improve the thermomechanical stability of PLA.
Keywords
Additives; annealing; creep; crystallinity; kaolin; nucleation; poly(lactic acid); processing; stability; thermoforming; wood
Authors
Miroslav Pastorek, Adriana Kovalcik
Released
28. 3. 2018
Publisher
TAYLOR & FRANCIS INC, 530 WALNUT STREET, STE 850, PHILADELPHIA, PA 19106 USA
Location
530 WALNUT STREET, STE 850, PHILADELPHIA, PA 19106 USA
ISBN
1532-2475
Periodical
Materials and Manufacturing Processes
Year of study
33
Number
15
State
United States of America
Pages from
1674
Pages to
1680
Pages count
7
URL
BibTex
@article{BUT150182,
author="Adriána {Kovalčík}",
title="Effects of thermal annealing as polymer processing step on poly(lactic acid)",
journal="Materials and Manufacturing Processes",
year="2018",
volume="33",
number="15",
pages="1674--1680",
doi="10.1080/10426914.2018.1453153",
issn="1532-2475",
url="https://www.tandfonline.com/doi/full/10.1080/10426914.2018.1453153"
}