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Improved performance of Differential Mobility Analyzers with 3D-printed flow straighteners

机译:用3D印刷流动矫直器改进差动移动分析仪的性能

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摘要

The Differential Mobility Analyzer (DMA) is currently the most effective instrument for sizing sub-micrometer aerosol particles. An important requirement to ensure good performance in terms of sizing accuracy and resolution is that the flow field remains laminar and undisturbed along its classification zone. To achieve that, a flow straightener (or flow laminarizer) is employed at the sheath flow inlet, located at the top of the classification column. In this study, we assess the performance of a custom-made DMA using different sheath flow straighteners made out of plastic fabric materials or built by 3D printing. Our tests show that 3D-printed flow straighteners can achieve comparable, and in some cases better, results to those used in commercial DMAs (e.g., fine nylon meshes; Dacron (R)). Considering the great flexibility and ease in manufacturing offered by 3D printing, our findings show that this technology provides a promising alternative for building enhanced flow straightening systems.
机译:差分移动分析仪(DMA)是目前最有效的用于施加亚微米气溶胶颗粒的仪器。在规模化准确性和分辨率方面确保良好性能的重要要求是流场仍然是层状,并沿其分类区域不受干扰。为此,在位于分类塔顶部的鞘流入口处采用流动矫直器(或流动层压器)。在这项研究中,我们使用由塑料织物材料制成的不同的鞘流直流工或通过3D打印构建来评估定制DMA的性能。我们的测试表明,3D印刷的流动矫直器可以实现可比性,并且在某些情况下,对商业DMA中使用的那些(例如,精细尼龙网; Dacron(R))。考虑到3D打印提供的制造业的巨大灵活性和易于轻松,我们的研究结果表明,该技术为建立增强的流动矫直系统提供了有希望的替代方案。

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