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Open source 3D-printed 1000μL micropump

机译:开源3D打印的1000μL微型泵

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Graphical abstract Display Omitted Abstract Scientific innovation goes hand in hand with technological innovation, so scientific work depends to a great extent on the hardware available in the laboratory. The investment in developing countries is still far below that of OECD countries, which was about 2.4% of the gross domestic product (GDP) in 2015. In stark contrast, Brazil made the highest investment of Latin American countries at just 1.2%. Today, the “open-source revolution” appears more than ever to be a powerful ally for the promotion of development and the narrowing of the economic gap between developed and developing countries. In this context, this article presents the design of a 1000μl 3D printed micropump. It is a practical and simple design inspired by pipette pumps. The present design was printed with a 3D printer and assembled very easily with common tools. Upon comparison of the micropump’s performance, it exhibits a systematic error between 1.4 and 3.8% of the volume and a random error between 0.38 and 9.5% of the volumen.
机译:图形摘要显示省略摘要科学创新与技术创新息息相关,因此科学工作在很大程度上取决于实验室中可用的硬件。对发展中国家的投资仍然远远低于经合组织国家,后者在2015年约占国内生产总值(GDP)的2.4%。与之形成鲜明对比的是,巴西在拉丁美洲国家中的投资最高,仅为1.2%。如今,“开源革命”似乎比以往任何时候都成为促进发展和缩小发达国家与发展中国家之间经济差距的强大盟友。在这种情况下,本文介绍了一种1000μl3D打印微型泵的设计。它是一种实用且简单的设计,灵感来自移液泵。本设计是使用3D打印机打印的,并且可以使用通用工具轻松组装。比较微型泵的性能后,系统误差为体积的1.4%至3.8%,随机误差为体积的0.38%至9.5%。

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