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Simulation and experiment on droplet dispensing for a valve-controlled pneumatic jetting system

机译:阀控制气动喷射系统液滴分配的仿真与实验

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摘要

Valve-controlled pneumatic jetting technology, which is characterized by high accuracy, fast dispensing speed, and strong adaptability, has been widely applied in the field of life sciences. This paper examines the formation and separation of droplets by reporting the comprehensive influence of system parameters on the morphological changes of droplets, which was simulated by using several dimensionless numbers, including the Weber number, Reynolds number, and Ohnesorge number. In the next step, the simulation results are verified through experimental results, and the rules of the regular ejection of droplets are summarized. The simulation and experimental results indicate that if We is higher than the upper critical value or lower than the lower critical value, jetting failure situations, such as adhesion, satellite droplets, sputtering, and flow-stream will occur. Similarly, jetting failures such as adhesion or flow-stream will appear with oversize or undersize Reynolds number. Through Oh, only when the system parameters should be adjusted to keep the values of We and Re within the proposed range can normal droplets be jetted. The research also provides the recommended ranges of system parameters for ensuring successful droplet ejection, which has important reference significance for guiding the design and control of valve-controlled pneumatic jetting systems.
机译:阀控气动喷射技术具有精度高、分配速度快、适应性强等特点,在生命科学领域得到了广泛应用。本文通过报告系统参数对液滴形态变化的综合影响,研究了液滴的形成和分离,并用韦伯数、雷诺数和Ohnesorge数等无量纲数进行了模拟。下一步通过实验结果验证了模拟结果,总结了液滴喷射规律。模拟和实验结果表明,如果我们高于上临界值或低于下临界值,就会出现喷射失效情况,例如粘附、卫星液滴、溅射和气流。同样,当雷诺数过大或过小时,会出现粘附或流动等喷射故障。通过Oh,只有调整系统参数,使We和Re的值保持在建议的范围内,才能喷射正常液滴。该研究还为保证液滴喷射成功提供了推荐的系统参数范围,对阀控气动喷射系统的设计和控制具有重要的参考意义。

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