4.7 Article

Green Composites Based on Hedysarum coronarium with Outstanding FDM Printability and Mechanical Performance

Journal

POLYMERS
Volume 14, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/polym14061198

Keywords

Hedysarum coronarium; sulla; polylactic acid; FDM; 3D printing; biocomposites; composites; mechanical properties; biopolymers; natural filler

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The addition of natural scraps to biodegradable polymers has attracted attention as a way to reduce environmental pollution caused by traditional plastics. In this study, new composites were developed by adding Hedysarum coronarium flour to Poly (lactic acid), and their properties were characterized. Results showed that the addition of the filler effectively improved the performance of the polymer composites.
The addition of natural scraps to biodegradable polymers has gained particular interest in recent years, allowing reducing environmental pollution related to traditional plastic. In this work, new composites were fabricated by adding 10% or 20% of Hedysarum coronarium (HC) flour to Poly (lactic acid) (PLA). The two formulations were first produced by twin screw extrusion and the obtained filaments were then employed for the fabrication of composites, either for compression molding (CM) or by fused deposition modeling (FDM), and characterized from a morphological and mechanical point of view. Through FDM it was possible to achieve dense structures with good wettability of the filler that, on the contrary, cannot be obtained by CM. The results indicate that the filler effectively acts as reinforcement, especially for FDM composites. The most remarkable enhancement was found in the flexural properties (+100% of modulus and ultimate strength), followed by tensile resistance and stiffness (+60%) and impact strength (+50%), whereas a moderate loss in tensile deformability was observed, especially at the highest loading. By adding HC to the polymeric matrix, it was possible to obtain a green, high-performance, and cost-effective composite, which could find applications for the fabrication of panels for furniture or the automotive industry.

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