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Fabrication of Different Microchannels by Adjusting the Extrusion Parameters for Sacrificial Molds

机译:通过调整牺牲模具的挤出参数制造不同的微通道

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摘要

Using the 3D printed mold-removal method to fabricate microchannel has become a promising alternative to the conventional soft lithography technique, due to the convenience in printing channel mold and the compatibility with PDMS material. Although having great potential, the use of single filament extruded by fused deposition modeling (FDM) as the sacrificial channel mold has not been elaborately studied. In this paper, we demonstrate the fabrication of microchannels with different structure and size by controllably extruding the sacrificial channel molds. The influences of the main processing parameters including working distance, extrusion amount and printing speed on the printed microchannels are systematically investigated. The results show that, the circular and low-aspect-ratio straight microchannels with different sizes can be fabricated by adjusting the extrusion amounts. The sinusoidal, 3D curved and cross-linked curved microchannels along straight path can be fabricated, either independently or in combination, by the combined control of the working distance, extrusion amount and printing speed. The complex microchannels with different structural features can also be printed along curved serpentine, rectangular serpentine, and spiral paths. This paper presents a simple and powerful method to fabricate the complex microchannels with different structure and size by just controlling the processing parameters for extruding channel molds.
机译:由于在打印通道模具中的便利性以及与PDMS材料的兼容性,使用3D打印的模具去除方法来制造微通道已成为传统软光刻技术的有希望的替代方法。尽管具有巨大的潜力,但尚未详细研究通过熔融沉积建模(FDM)挤出的单丝作为牺牲通道模具的用途。在本文中,我们通过控制性地挤出牺牲通道模具来演示具有不同结构和尺寸的微通道的制造。系统研究了加工距离,挤出量和印刷速度等主要加工参数对印刷微通道的影响。结果表明,通过调节挤压量可以制造出不同尺寸的圆形和低纵横比的直型微通道。通过对工作距离,挤出量和印刷速度的组合控制,可以独立地或组合地制造沿直线路径的正弦,3D弯曲和交联的弯曲微通道。具有不同结构特征的复杂微通道也可以沿着弯曲的蛇形,矩形蛇形和螺旋形路径打印。本文提出了一种简单而有效的方法,只需控制挤压通道模具的加工参数,即可制造出具有不同结构和尺寸的复杂微通道。

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