Wu Chuang, Almuaalemi Haithm Yahya Mohammed, Sohan A S M Muhtasim Fuad, Yin Binfeng
School of Mechanical Engineering, Yangzhou University, Yangzhou 225127, China.
Nantong Fuleda Vehicle Accessory Component Co., Ltd., Nantong 226300, China.
Micromachines (Basel). 2023 Jun 21;14(7):1277. doi: 10.3390/mi14071277.
Gel fibers prepared based on microfluidic laminar flow technology have important research value in constructing biomimetic scaffolds and tissue engineering. The key point of microfluidic laminar flow technology is to find the appropriate fluid flow rate in the micropipe. In order to explore the influence of flow rate on the laminar flow phenomenon of a microfluidic chip, a microfluidic chip composed of an intermediate main pipe and three surrounding outer pipes are designed, and the chip is prepared by photolithography and the composite molding method. Then, a syringe pump is used to inject different fluids into the microtubing, and the data of fluid motion are obtained through fluid dynamics simulation and finite element analysis. Finally, a series of optimal adjustments are made for different fluid composition and flow rate combinations to achieve the fluid's stable laminar flow state. It was determined that when the concentration of sodium alginate in the outer phase was 1 wt% and the concentration of CaCl in the inner phase was 0.1 wt%, the gel fiber prepared was in good shape, the flow rate was the most stable, and laminar flow was the most obvious when the flow rate of both was 1 mL/h. This study represents a preliminary achievement in exploring the laminar flow rate and fabricating gel fibers, thus offering significant reference value for investigating microfluidic laminar flow technology.
基于微流控层流技术制备的凝胶纤维在构建仿生支架和组织工程方面具有重要的研究价值。微流控层流技术的关键在于找到微管中合适的流体流速。为了探究流速对微流控芯片层流现象的影响,设计了一种由中间主管和三个周围外管组成的微流控芯片,并通过光刻和复合成型方法制备该芯片。然后,使用注射泵将不同的流体注入微管中,通过流体动力学模拟和有限元分析获得流体运动数据。最后,针对不同的流体成分和流速组合进行了一系列优化调整,以实现流体的稳定层流状态。确定当外相海藻酸钠浓度为1 wt%且内相氯化钙浓度为0.1 wt%时,制备的凝胶纤维形状良好,当两者流速均为1 mL/h时,流速最稳定,层流最明显。该研究在探索层流流速和制备凝胶纤维方面取得了初步成果,为研究微流控层流技术提供了重要的参考价值。