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Characterization of Soft Tooling Photopolymers and Processes for Micromixing Devices with Variable Cross-Section

机译:具有可变横截面的软模具光聚合物的表征和微混合装置的方法

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摘要

In this paper, we characterized an assortment of photopolymers and stereolithography processes to produce 3D-printed molds and polydimethylsiloxane (PDMS) castings of micromixing devices. Once materials and processes were screened, the validation of the soft tooling approach in microfluidic devices was carried out through a case study. An asymmetric split-and-recombine device with different cross-sections was manufactured and tested under different regime conditions (10 < Re < 70). Mixing performances between 3% and 96% were obtained depending on the flow regime and the pitch-to-depth ratio. The study shows that 3D-printed soft tooling can provide other benefits such as multiple cross-sections and other potential layouts on a single mold.
机译:在本文中,我们表征了各种各样的光聚合物和立体光刻方法,以产生微混合装置的3D印刷模具和聚二甲基硅氧烷(PDMS)铸件。一旦筛选了材料和方法,通过案例研究进行了微流体装置中软化工具方法的验证。在不同的制度条件下制造和测试具有不同横截面的非对称分型和重组装置(10

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