Abstract
AbstractWe selected the thirteen most effective nucleating agents for Poly(lactic acid) (PLA) from the literature, and synthesized and compounded them with two different PLA grades: 3001D (1.4% D-lactide content) and 3100HP (0.5% D-lactide content, considered PLLA). We determined the crystallinity and crystallization of PLA with different nucleating agents in identical conditions (same nucleating agent content, same cooling rate) with the help of differential scanning calorimetry. We compared the efficiency of each nucleating agent and found that for both PLA grades, Zinc PhenylPhosphonate was the most effective. However, even when nucleated PLA was injection molded into a cold mold (25 °C), it still could not fully crystallize during cooling and the heat deflection temperature did not increase significantly. The maximum achieved crystallinity, in this case, was between 32.4 and 35.7%. On the contrary, when a 90 °C “hot mold” and in-mold crystallization together were applied, the specimens achieved full crystallization during the injection molding cycle (crystallinity was between 44.5 and 50.0%), and the heat deflection temperature increased to an average of 88.8 °C. We also examined the mechanical properties of the nucleated PLA and found that the usage of nucleating agents together with a hot mold improved tensile strength, tensile modulus, and Charpy impact strength but decreased elongation at break.
Funder
nemzeti kutatási fejlesztési és innovációs hivatal
Nemzeti Kutatási és Technológiai Hivatal
nemzeti kutatási, fejlesztési és innovaciós alap
magyar tudományos akadémia
Magyar Tudományos Akadémia
Budapest University of Technology and Economics
Publisher
Springer Science and Business Media LLC
Reference47 articles.
1. Plastics – the Facts 2018. Plastics Europe. 2018; 60.
2. The world's plastic problem in numbers. 2018. https://theconversation.com/the-world-of-plastics-in-numbers-100291. Accessed 15 Apr 2021.
3. World Steel Association Statistics. https://www.worldsteel.org/steel-by-topic/statistics.html. Accessed 16 Apr 2021.
4. Food and Agriculture Organization of the United Nations. http://www.fao.org/home/en/. Accessed 16 Apr 2021.
5. Global copper mine production to grow 3.5% annually — report. 2019. https://www.mining.com/global-copper-mine-production-to-grow-3-5-annually-report/. Accessed 20 Apr 2021.
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