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Three-Dimensional (3D) Printers in Libraries: Perspective and Preliminary Safety Analysis

机译:图书馆中的三维(3D)打印机:透视和初步安全分析

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As an emerging technology, three-dimensional (3D) printing has gained much attention as a rapid prototyping and small-scale manufacturing technology around the world. In the changing scenario of library inclusion, Makerspaces are becoming a part of most public and academic libraries, and 3D printing is one of the technologies included in Makerspaces. Owing to the ease of availability and cost effectiveness, most libraries use fused-deposition-modeling-based 3D printers compatible with plastic printing materials, such as polylactic acid (PLA) and acrylonitrile butadiene styrene (ABS). During the printing, PLA and ABS emit ultrafine particles (UFPs) and volatile organic compounds (VOCs) that may deteriorate the indoor air quality. In this article, first, we have discussed the background of 3D printing, the most common technologies used for 3D printing and printing materials, its applications in chemical education and sciences, as well as 3D printing health and safety concerns. Second, we measured and analyzed the number of UFPs (0.02-1.0 mu m) in the 3D printing lab in a library and found that the number of particles/cubic centimeter significantly increased during the printing procedure (36-60 times) and does not return to baseline even 24 h after shutting down the printers. We also provide some recommendations that should be considered when hosting a 3D printing lab in libraries.
机译:作为一种新兴技术,三维(3D)印刷在世界各地的快速原型和小规模制造技术中获得了很多关注。在更改图书馆包含的情况下,制造商正在成为大多数公共和学术图书馆的一部分,3D打印是制造商中包含的技术之一。由于可容易的可用性和成本效益,大多数图书馆利用与塑料印刷材料相容的融合沉积建模的3D打印机,例如聚乳酸(PLA)和丙烯腈丁二烯苯乙烯(ABS)。在印刷,PLA和ABS发出超细颗粒(UFP)和挥发性有机化合物(VOC),这可能会降低室内空气质量。在本文中,首先,我们已经讨论了3D打印的背景,用于3D印刷材料的最常见技术,其在化学教育和科学中的应用,以及3D打印健康和安全问题。其次,我们测量并分析了图书馆3D打印实验室中的UFPS(0.02-1.0 mu m)的数量,发现在打印过程中颗粒/立方厘米的数量显着增加(36-60次)并且没有在关闭打印机后返回基准甚至24小时。我们还提供一些建议,即在托管库中的3D打印实验室时应考虑。

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