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首页> 外文期刊>Journal of land use science >Accessing microfluidics through feature-based design software for 3D printing
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Accessing microfluidics through feature-based design software for 3D printing

机译:通过基于功能的3D打印设计软件访问微流体

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Additive manufacturing has been a cornerstone of the product development pipeline for decades, playing an essential role in the creation of both functional and cosmetic prototypes. In recent years, the prospects for distributed and open source manufacturing have grown tremendously. This growth has been enabled by an expanding library of printable materials, low-cost printers, and communities dedicated to platform development. The microfluidics community has embraced this opportunity to integrate 3D printing into the suite of manufacturing strategies used to create novel fluidic architectures. The rapid turnaround time and low cost to implement these strategies in the lab makes 3D printing an attractive alternative to conventional micro-and nanofabrication techniques. In this work, the production of multiple microfluidic architectures using a hybrid 3D printing-soft lithography approach is demonstrated and shown to enable rapid device fabrication with channel dimensions that take advantage of laminar flow characteristics. The fabrication process outlined here is underpinned by the implementation of custom design software with an integrated slicer program that replaces less intuitive computer aided design and slicer software tools. Devices are designed in the program by assembling parameterized microfluidic building blocks. The fabrication process and flow control within 3D printed devices were demonstrated with a gradient generator and two droplet generator designs. Precise control over the printing process allowed 3D microfluidics to be printed in a single step by extruding bridge structures to 'jump-over' channels in the same plane. This strategy was shown to integrate with conventional nanofabrication strategies to simplify the operation of a platform that incorporates both nanoscale features and 3D printed microfluidics.
机译:添加剂制造已经成为产品开发管道的基石,几十年来,在创造功能和化妆品原型中发挥重要作用。近年来,分布式和开源制造业的前景非常长大。这种增长是由可打印材料,低成本打印机和致力于平台开发的社区的扩展图书馆。 Microfluidics界已接受这次机会将3D印刷整合到用于创建新型流体架构的制造策略套件中。在实验室中实现这些策略的快速周转时间和低成本使3D打印了传统的微型和纳米制造技术的有吸引力的替代品。在这项工作中,证明了使用混合3D打印软光刻方法的多种微流体架构的生产,并示出了快速设备制造,其具有利用层流特性的通道尺寸。这里概述的制造过程是通过使用具有集成切片程序的定制设计软件的实现,取代了更不完整的计算机辅助设计和Slicer软件工具。设备在程序中通过组装参数化的微流体构建块设计。用梯度发生器和两个液滴发生器设计对3D印刷装置内的制造工艺和流量控制。在印刷过程上精确控制允许通过挤出桥结构在同一平面中的“跳过”通道中的单个步骤中打印3D微流体。显示该策略与传统的纳米制造策略集成,以简化包含纳米级特征和3D印刷微流体的平台的操作。

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