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3D printing of high-resolution PLA-based structures by hybrid electrohydrodynamic and fused deposition modeling techniques

机译:通过混合电动流体力学和熔融沉积建模技术对高分辨率PLA架构进行3D打印

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摘要

Recently, the three-dimensional (3D) printing technique has received much attention for shape forming and manufacturing. The fused deposition modeling (FDM) printer is one of the various 3D printers available and has become widely used due to its simplicity, low-cost, and easy operation. However, the FDM technique has a limitation whereby its patterning resolution is too low at around 200 mu m. In this paper, we first present a hybrid mechanism of electrohydrodynamic jet printing with the FDM technique, which we name E-FDM. We then develop a novel high-resolution 3D printer based on the E-FDM process. To determine the optimal condition for structuring, we also investigated the effect of several printing parameters, such as temperature, applied voltage, working height, printing speed, flow-rate, and acceleration on the patterning results. This method was capable of fabricating both high resolution 2D and 3D structures with the use of polylactic acid (PLA). PLA has been used to fabricate scaffold structures for tissue engineering, which has different hierarchical structure sizes. The fabrication speed was up to 40 mm/s and the pattern resolution could be improved to 10 mu m.
机译:近来,三维(3D)打印技术在形状形成和制造方面引起了很多关注。熔融沉积建模(FDM)打印机是可用的各种3D打印机之一,并且由于其简单,低成本和易于操作而已被广泛使用。但是,FDM技术有一个局限性,即它的图案分辨率太低,大约为200μm。在本文中,我们首先介绍一种使用FDM技术的电液喷射印刷的混合机理,我们将其命名为E-FDM。然后,我们基于E-FDM工艺开发出新颖的高分辨率3D打印机。为了确定最佳的结构化条件,我们还研究了多个印刷参数(例如温度,施加电压,工作高度,印刷速度,流速和加速度)对图案形成结果的影响。这种方法能够通过使用聚乳酸(PLA)来制造高分辨率的2D和3D结构。 PLA已经被用于制造用于组织工程的支架结构,该支架结构具有不同的分层结构尺寸。制造速度高达40mm / s,图案分辨率可以提高到10μm。

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