...
首页> 外文期刊>Journal of Micromechanics and Microengineering >Design criteria and applications of multi-channel parallel microfluidic module
【24h】

Design criteria and applications of multi-channel parallel microfluidic module

机译:多通道平行微流体模块的设计标准和应用

获取原文
获取原文并翻译 | 示例
           

摘要

The microfluidic technology for function microsphere synthesis has high control precision. However, the throughput is too low for industrial scale-up applications. Current scale-up design focuses on a multi-channel in 2D, in which the distribution uniformity parameter delta increases linearly, resulting in the deterioration of the flow distribution performance. The 3D modular scale-up strategy could greatly alleviate this problem, but no design principles have been developed yet. For the first time, this paper establishes the microfluidic 3D scale-up design criteria. Based on the modular design concept, the design method of 2D and 3D throughput scale-up parameters N and M, distribution uniformity parameters delta and beta, and microchannel design parameter K-R were proposed. The equivalent resistance coefficient was defined, and the influence of different parameters on a 2D array and 3D stack was analyzed. Furthermore, the error correction method was studied. It was found that the two-stage scale-up process contradicted each other. A good scale-up performance of one stage led to the limitation of another stage. Increasing the resistance of each channel R-u could both increase the two-stage scale-up performance, which was an important factor. A single-module scale-up system with 8 channels in a single array and 10 arrays in a vertical stack, which had 80 channels in total, was designed and fabricated based on the proposed design criteria for generating Chitosan/TiO2 composite microspheres. The average particle size was 539.65 mu m and CV value was about 3.59%. The throughput was 480 ml h(-1), which effectively increased the throughput scale and the product quality.
机译:功能微球合成的微流体技术具有高控制精度。但是,对于工业扩展应用,吞吐量太低。当前的缩放设计聚焦在2D中的多通道上,其中分布均匀性参数δ线性增加,导致流量分布性能的劣化。 3D模块化比例策略可以极大地减轻这个问题,但没有开发设计原则。本文首次建立了微流体3D放大设计标准。基于模块化设计理念,提出了2D和3D吞吐量参数N和M,分布均匀性参数δ和β和微通道设计参数K-R的设计方法。分析了等效电阻系数,并分析了不同参数对2D阵列和3D堆叠的影响。此外,研究了纠错方法。发现两阶段放大过程彼此相矛盾。一个阶段的良好扩展性能导致了另一阶段的限制。增加每个通道R-U的阻力都可以增加两级放大性能,这是一个重要因素。基于所提出的设计标准,设计和制造了一种单模阵列中具有8个通道的单模块浆料系统,其中垂直堆叠在垂直堆叠中具有80个通道,基于所提出的设计标准,用于产生壳聚糖/ TiO2复合微球的设计标准。平均粒径为539.65μm,Cv值约为3.59%。吞吐量为480毫升H(-1),有效提高了吞吐量尺度和产品质量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号