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October 11, 2024
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Article

Foaming of 3D-Printed PLA/CaCO3 Composites by Supercritical CO2 Process for Sustainable Food Contact Materials

Publicated to:Polymers. 16 (6): 798- - 2024-03-01 16(6), DOI: 10.3390/polym16060798

Authors: Faba, Simon; Aguero, Angel; Arrieta, Marina P; Martinez, Sara; Romero, Julio; Torres, Alejandra; Galotto, Maria Jose

Affiliations

Grp Invest Polimeros Caracterizac & Aplicac POLCA - Author
Univ Politecn Madrid ETSII UPM, Escuela Tecn Super Ingn Ind, Dept Ingn Quim Ind & Medio Ambiente, Calle Jose Gutierrez Abascal 2 - Author
Univ Politecn Valencia UPV, Inst Univ Tecnol Mat IUTM, Plaza Ferrandiz & Carbonell 1 - Author
Univ Santiago Chile USACH, Engn Fac, Dept Chem Engn & Bioproc, Lab Membrane Separat Proc LabProSeM - Author
Univ Santiago Chile USACH, Packaging Innovat Ctr LABEN CHILE, Ctr Dev Nanosci & Nanotechnol CEDENNA, Dept Food Sci & Technol,Fac Technol - Author
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Abstract

In the last decade, among the emerging technologies in the area of bioplastics, additive manufacturing (AM), commonly referred to as 3D printing, stands out. This technology has gained great interest in the development of new products, mainly due to its capability to easily produce customized and low-cost plastic products. This work aims to evaluate the effect of supercritical foaming of 3D-printed parts based on a commercial PLA matrix loaded with calcium carbonate, for single-use sustainable food contact materials. 3D-printed PLA/CaCO3 parts were obtained by 3D printing with a 20% and 80% infill, and two infill patterns, rectilinear and triangular, were set for each of the infill percentages selected. Supercritical fluid foaming of PLA/CaCO3 composite printed parts was performed using a pressure of 25 MPa, a temperature of 130 degrees C for 23 min, with a fast depressurization rate (1 s). Closed-cell foams were achieved and the presence of CaCO3 did not influence the surface of the foams or the cell walls, and no agglomerations were observed. Foam samples with 80% infill showed subtle temperature fluctuations, and thermogravimetric analysis showed that samples were thermally stable up to similar to 300 degrees C, while the maximum degradation temperature was around 365 degrees C. Finally, tensile test analysis showed that for lower infill contents, the foams showed lower mechanical performance, while the 80% infill and triangular pattern produced foams with good mechanical performance. These results emphasize the interest in using the supercritical CO2 process to easily produce foams from 3D-printed parts. These materials represent a sustainable alternative for replacing non-biodegradable materials such as Expanded Polystyrene, and they are a promising option for use in many industrial applications, such as contact materials.

Keywords

3d printingFoamsInfill parametersPlaPoly(lactic acid)PolylactideSupercritical co2

Quality index

Bibliometric impact. Analysis of the contribution and dissemination channel

The work has been published in the journal Polymers due to its progression and the good impact it has achieved in recent years, according to the agency WoS (JCR), it has become a reference in its field. In the year of publication of the work, 2024 there are still no calculated indicators, but in 2023, it was in position 19/94, thus managing to position itself as a Q1 (Primer Cuartil), in the category Polymer Science.

Independientemente del impacto esperado determinado por el canal de difusión, es importante destacar el impacto real observado de la propia aportación.

Según las diferentes agencias de indexación, el número de citas acumuladas por esta publicación hasta la fecha 2025-08-06:

  • WoS: 5
  • Scopus: 4
  • Europe PMC: 4

Impact and social visibility

From the perspective of influence or social adoption, and based on metrics associated with mentions and interactions provided by agencies specializing in calculating the so-called "Alternative or Social Metrics," we can highlight as of 2025-08-06:

  • The use of this contribution in bookmarks, code forks, additions to favorite lists for recurrent reading, as well as general views, indicates that someone is using the publication as a basis for their current work. This may be a notable indicator of future more formal and academic citations. This claim is supported by the result of the "Capture" indicator, which yields a total of: 35 (PlumX).

With a more dissemination-oriented intent and targeting more general audiences, we can observe other more global scores such as:

    It is essential to present evidence supporting full alignment with institutional principles and guidelines on Open Science and the Conservation and Dissemination of Intellectual Heritage. A clear example of this is:

    • The work has been submitted to a journal whose editorial policy allows open Open Access publication.

    Leadership analysis of institutional authors

    This work has been carried out with international collaboration, specifically with researchers from: Chile; United States of America.