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Current advances and future perspectives of 3D printing natural-derived biopolymers

机译:3D印刷天然衍生生物聚合物的当前进步和未来的视角

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摘要

3D printing enables the complex or customized structures production in high speed and resolution. However, the lack of bio-based materials with user-defined biochemical and mechanical property is a significant barrier that limits the widespread adoption of 3D printing for products fabrication. Development of eco-friendly natural-derived biopolymers for 3D printing technologies and their promising application in different areas are of huge academic, and environmental interests. This paper reviews the state-of-the-art in terms of 3D printing technology using natural-derived feedstocks, including lignocellulose, starch, algae, and chitosan-based biopolymers. Special consideration is given to the development of lignocellulosic materials, i.e. cellulose, hemicellulose, lignin, and their derivatives as 3D printing feedstocks. A strategical development roadmap with identified material property requirements, key challenges, as well as possible solutions was proposed. It serves as guideline aiming to explore natural-derived biopolymers as novel feedstocks for different 3D printing technologies that will be potentially applied in various areas.
机译:3D打印使复杂或定制的结构能够高速和分辨率产生。然而,具有用户定义的生物化学和力学性能的生物基材料是一个重要的屏障,其限制了用于产品制造的3D印刷的广泛采用。生态友好的自然衍生的3D印刷技术生物聚合物和他们在不同领域的有前途的应用巨大的学术和环境利益。本文根据使用天然原料,包括木质纤维素,淀粉,藻类和壳聚糖的生物聚合物,就3D打印技术提供了最先进的。特别考虑是木质纤维素材料的发展,即纤维素,半纤维素,木质素和它们的衍生物作为3D印刷原料。提出了一种具有鉴定物质需求,关键挑战的战略发展路线图,以及可能的解决方案。它是旨在探索天然衍生的生物聚合物作为不同3D印刷技术的新型原料的准则,这些原料将可能在各个领域应用。

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