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3-D printed composites with ultrasonically arranged complex microstructure

机译:3-D印刷复合材料,具有超声布置的复杂微观结构

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This paper demonstrates the efficacy of implementing ultrasonic manipulation within a modified form of stereolithographic 3D printing to form complex microstructures in printed components. Currently 3D printed components are limited both in terms of structural performance and specialised functionality. This study aims to demonstrate a novel method for 3D printing composite materials, by arranging microparticles suspended within a photocurable resin. The resin is selectively cured by a 3-axis gantry-mounted 405nm laser. Ultrasonic forces are used to arrange the microfibres into predetermined patterns within the resin, with unidirectional microfibre alignment and a hexagonal lattice structure demonstrated. An example of dynamic microstructure variation within a single print layer is also presented.
机译:本文展示了在经修饰形式的立体化形式内实现超声操纵的功效,形成印刷部件中的复杂微结构。目前,在结构性能和专用功能方面,3D打印组件都受到限制。本研究旨在通过将悬浮在可光固化树脂内的微粒布置微粒来证明一种用于3D印刷复合材料的新方法。树脂通过3轴架式安装的405nm激光选择性地固化。超声力用于将微纤维布置成树脂内的预定图案,具有单向微纤维排列和六边形格子结构。还呈现单个打印层内的动态微结构变化的示例。

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