Scaffaro Roberto, Gulino Emmanuel Fortunato, Citarrella Maria Clara, Maio Andrea
Department of Engineering, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy.
Polymers (Basel). 2022 Mar 16;14(6):1198. doi: 10.3390/polym14061198.
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 (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.
近年来,将天然废料添加到可生物降解聚合物中引起了特别关注,这有助于减少与传统塑料相关的环境污染。在这项工作中,通过向聚乳酸(PLA)中添加10%或20%的(HC)面粉制备了新型复合材料。这两种配方首先通过双螺杆挤出制备,然后将得到的长丝用于制备复合材料,用于压缩成型(CM)或熔融沉积成型(FDM),并从形态学和力学角度进行表征。通过FDM可以获得具有良好填料润湿性的致密结构,相反,CM无法获得这种结构。结果表明,填料有效地起到了增强作用,尤其是对于FDM复合材料。弯曲性能(模量和极限强度提高100%)、抗拉强度和刚度(提高60%)以及冲击强度(提高50%)得到了最显著的提高,而拉伸变形能力则出现了适度下降,尤其是在最高载荷下。通过向聚合物基体中添加HC,可以获得一种绿色、高性能且经济高效的复合材料,该复合材料可用于制造家具或汽车工业用板材。