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New filaments with natural fillers for FDM 3D printing and their applications in biomedical field

机译:用于FDM 3D印刷的天然填充物的新细丝及其在生物医学领域的应用

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Current Fused Deposition Modelling (FDM) techniques have promoted the extension of 3D printing technologies to new applications ranging from the biomedical, aerospace, and submarine fields, to some specific applications in manufacturing and civil fields. The expansion of the fields of application, generally, entails considering peculiar characteristics, such as complex geometries or requirements as low density. Furthermore, the breathability, the pleasantness to the touch, aesthetic appearance and a strong visual identity, that can be achieved by means of 3D printing, are especially requested for some applications such as biomedical. For the improvement of the manufacturing of these parts, the design of a dedicated filament is a relevant issue to be taken into account. polylactic acid (PLA) and organic by-products from agricultural waste. The study includes a preliminary illustration of the main properties of these materials and a biomedical application of such bio-plastic compounds through experimental testing in order to assess the suitability to FDM printing. In particular, the performance in terms of lightweight, strength and roughness have been evaluated. The interesting final properties make these materials suitable for biomedical applications as it is shown in this study for the neck collar prototype reported. In addition, such innovative bio-composite materials allow reducing the cost of environmental impact as well as the production management costs.
机译:目前的融合沉积建模(FDM)技术已经促进了从生物医学,航空航天和潜艇场的新应用扩展到新的应用,以及制造和民间领域的一些特定应用。施用领域的扩展通常需要考虑特殊的特征,例如复杂的几何形状或要求低密度。此外,可以通过3D打印来实现透气性,触摸,美学外观和强烈的视觉标识,这对于一些诸如生物医学的一些应用特别要求。为了改进这些部件的制造,专用灯丝的设计是要考虑的相关问题。来自农业废物的聚乳酸(PLA)和有机副产品。该研究包括通过实验测试的这些材料的主要性质和这些生物塑料化合物的生物医学应用的初步说明,以评估对FDM印刷的适合性。特别是,已经评估了轻质,强度和粗糙度方面的性能。有趣的最终属性使得适用于生物医学应用的这些材料,因为它在本研究中显示了颈部套接项原型。此外,这种创新的生物复合材料允许降低环境影响的成本以及生产管理成本。

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