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3D Printing PLA Waste to Produce Ceramic Based Particulate Reinforced Composite Using Abundant Silica-Sand: Mechanical Properties Characterization

机译:3D印刷PLA废物生产陶瓷基颗粒增强复合材料,采用丰富的二氧化硅砂:机械性能表征

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摘要

Due to the significant properties of silica, thermostatics can be enhanced using silica-additives to maximize the quality of polymer compounds and transform plastics into tailored properties. The silica additives can enhance the handling and quality performance of composites and thermoplastic polymers due to their diverse potential. Besides, using silica as an additive in different characteristics can allow granulates and powders to flow easily, minimize caking, and control rheology. On the other hand, the eruption of 3D printing technology has led to a massive new waste source of plastics, especially the polylactic acid (PLA) that is associated with the fused deposition modeling (FDM) process. In this paper, the impact on the mechanical properties when silica is mixed with waste PLA from 3D printing was studied. The PLA/silica mixtures were prepared using different blends through twin extruders and a Universal Testing Machine was used for the mechanical characterization. The result indicated that increasing silica composition resulted in the increase of the tensile strength to 121.03 MPa at 10 wt%. Similar trends were also observed for the toughness, ductility, and the yield stress values of the PLA/silica blends at 10 wt%, which corresponds to the increased mechanical property of the composite material reinforced by the silica particles. Improvement in the mechanical properties of the developed composite material promotes the effective recycling of PLA from applications such as 3D printing and the potential of reusing it in the same application.
机译:由于二氧化硅的显着性,可以使用二氧化硅 - 添加剂来提高恒温学,以使高分子化合物的质量最大化,并将塑料转化为定制性质。二氧化硅添加剂由于其不同的电位,可以增强复合材料和热塑性聚合物的处理和质量性能。此外,使用二氧化硅作为不同特性的添加剂可以允许颗粒和粉末容易地流动,最大限度地减少结块和控制流变。另一方面,3D打印技术的爆发导致了塑料的大量新的废物源,特别是与融合沉积建模(FDM)工艺相关的聚乳酸(PLA)。本文研究了二氧化硅与来自3D印刷混合二氧化硅时对机械性能的影响。使用不同共混物通过双挤出机制备PLA /二氧化硅混合物,并且使用通用试验机用于机械表征。结果表明,增加的二氧化硅组合物导致拉伸强度的增加至121.03MPa为10wt%。对于韧性,延展性和10wt%的PLA /二氧化硅共混物的屈服应力值也观察到类似的趋势,这对应于由二氧化硅颗粒增强的复合材料的力量增加。发育复合材料的力学性能的改善促进了PLA的有效回收来自3D印刷的应用,以及在同一应用中重新使用它的可能性。

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