论文标题

两者中最好的:通过纳米复合材料的添加剂制造协同衍生的材料特性

Best of both worlds: Synergistically derived material properties via additive manufacturing of nanocomposites

论文作者

Carrola, Mia, Asadi, Amir, Zhang, Han, Papageorgiou, Dimitrios G., Bilotti, Emiliano, Koerner, Hilmar

论文摘要

随着添加剂制造(AM)的普及和可用性的指数提高,已经将重点放在了该主题运动中的研究方面,同时试图通过简单地将纳米材料添加到其过程中,以将自己与类似的作品区分开来。尽管纳米材料可以为纳米复合材料(NCS)增加令人印象深刻的特性,但是仅通过将AM与NC相结合而没有发现协同效应和新型的新兴材料特性而无法通过仅将AM组合起来,而这些机会仅由每个单独使用。可以在加工,形态和建筑水平上研究AM中NCS的合作,不断发展的特性。这些类别中的每一个都是作为纳米材料与AM之间扩增关系的函数的,每个类别都显示了系统选择的材料和方法以提高材料性能,探索新兴的特性,并改善了AM过程本身。创新的先进材料是用于更快的生物工程,国防和运输部门的破坏性技术发展周期的关键。只有通过关注纳米复合材料的添加剂制造中的协同作用和扩增,才有可能。

With an exponential rise in the popularity and availability of additive manufacturing (AM), a large focus has been directed toward research in this topic's movement, while trying to distinguish themselves from similar works by simply adding nanomaterials to their process. Though nanomaterials can add impressive properties to nanocomposites (NCs), there are expansive amounts of opportunities that are left unexplored by simply combining AM with NCs without discovering synergistic effects and novel emerging material properties that are not possible by each of these alone. Cooperative, evolving properties of NCs in AM can be investigated at the processing, morphological, and architectural levels. Each of these categories are studied as a function of the amplifying relationship between nanomaterials and AM, with each showing the systematically selected material and method to advance the material performance, explore emergent properties, as well as improve the AM process itself. Innovative, advanced materials are key to faster development cycles in disruptive technologies for bioengineering, defense, and transportation sectors. This is only possible by focusing on synergism and amplification within additive manufacturing of nanocomposites.

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