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Multimaterial 3D Printing for Arbitrary Distribution with Nanoscale Resolution

机译:纳米级分辨率的任意分布的多材料3D打印

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摘要

At the core of additive manufacturing (3D printing) is the ability to rapidly print with multiple materials for arbitrary distribution with high resolution, which can remove challenges and limits of traditional assembly and enable us to make increasingly complex objects, especially exciting meta-materials. Here we demonstrate a simple and effective strategy to achieve nano-resolution printing of multiple materials for arbitrary distribution via layer-by-layer deposition on a special deposition surface. The established physical model reveals that complex distribution on a section can be achieved by vertical deformation of simple lamination of multiple materials. The deformation is controlled by a special surface of the mold and a contour-by-contour (instead of point-by-point) printing mode is revealed in the actual process. A large-scale concentric ring array with a minimum feature size below 50 nm is printed within less than two hours, verifying the capacity of high-throughput, high-resolution and rapidity of printing. The proposed printing method opens the way towards the programming of internal compositions of object (such as functional microdevices with multiple materials).
机译:增材制造(3D打印)的核心是能够使用多种材料快速打印以实现高分辨率的任意分布的能力,这可以消除传统装配的挑战和局限性,并使我们能够制造越来越复杂的物体,尤其是令人兴奋的超常材料。在这里,我们展示了一种简单有效的策略,可通过在特殊沉积表面上逐层沉积,实现多种材料的纳米分辨率印刷,以实现任意分布。建立的物理模型表明,可以通过多种材料的简单层压的垂直变形实现截面上的复杂分布。变形是通过模具的特殊表面控制的,并且在实际过程中显示了按轮廓(而不是逐点)的打印模式。在不到两个小时的时间内即可打印出最小特征尺寸低于50 nm的大规模同心环阵列,从而证明了高通量,高分辨率和打印速度的能力。所提出的打印方法为编程对象内部组成(例如具有多种材料的功能性微型设备)开辟了道路。

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