Material extrusion (MatEx) 3D printing techniques are the most exploited additive manufacturing processes for thermoplastics, being simple and economic in terms of both materials and tools. Nevertheless, the catalog of available thermoplastics is still severely limited, mainly due to the lack of reliable information on the processability of the materials. In this work, we aim developing a deep knowledge about polypropylene, one of the most relevant thermoplastic commodities, focusing on designing and optimizing PP-based formulations fulfilling the requirements to be suitable for MatEx 3D printing.

DESIGN AND OPTIMIZATION OF 3D PRINTABLE POLYPROPYLENEBASED MATERIALS / Arrigo, Rossella; Battegazzore, Daniele; Bernagozzi, Giulia; Frache, Alberto. - ELETTRONICO. - (2023). (Intervento presentato al convegno 30 years of INSTM: past, present and future of the consortium tenutosi a Bressanone (Italia) nel 22-25 gennaio 2023).

DESIGN AND OPTIMIZATION OF 3D PRINTABLE POLYPROPYLENEBASED MATERIALS

Arrigo, Rossella;Battegazzore, Daniele;Bernagozzi, Giulia;Frache, Alberto
2023

Abstract

Material extrusion (MatEx) 3D printing techniques are the most exploited additive manufacturing processes for thermoplastics, being simple and economic in terms of both materials and tools. Nevertheless, the catalog of available thermoplastics is still severely limited, mainly due to the lack of reliable information on the processability of the materials. In this work, we aim developing a deep knowledge about polypropylene, one of the most relevant thermoplastic commodities, focusing on designing and optimizing PP-based formulations fulfilling the requirements to be suitable for MatEx 3D printing.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2976034