Etxeberria Leire, Aguilera Unai, Garcia de Madinabeitia Pablo, Saez Alberto, Zaldua Ane M, Vilas-Vilela José L, Fernández Luis, Llobera Andreu
microLIQUID S.L, Arrasate-Mondragón, Spain.
Leartiker S. Coop., Markina-Xemein, Spain.
Front Med Technol. 2022 May 31;4:881930. doi: 10.3389/fmedt.2022.881930. eCollection 2022.
Luer slip is one of the gold standards for chip-to-world interface in microfluidics. They have outstanding mechanical and operational robustness in a broad range of applications using water and solvent-based liquids. Still, their main drawbacks are related to their size: they have relatively large dead volumes and require a significant footprint to assure a leak-free performance. Such aspects make their integration in systems with high microchannel density challenging. To date, there has been no geometrical optimization of the Luer slips to provide a solution to the mentioned drawbacks. This work aims to provide the rules toward downscaling the Luer slips. To this effect, seven variations of the Luer slip male connectors and five variations of Luer slip female connectors have been designed and manufactured focusing on the reduction of the size of connectors and minimization of the dead volumes. In all cases, female connectors have been developed to pair with the corresponding male connector. Characterization has been performed with a tailor-made test bench in which the closure force between male and female connectors has been varied between 7.9 and 55 N. For each applied closure force, the test bench allows liquid pressures to be tested between 0.5 and 2.0 bar. Finally, the analysis of a useful life determines the number of cycles that the connectors can withstand before leakage.
鲁尔接头滑套是微流控中芯片与外界接口的黄金标准之一。在使用水基和溶剂基液体的广泛应用中,它们具有出色的机械和操作稳健性。然而,它们的主要缺点与其尺寸有关:它们具有相对较大的死体积,并且需要较大的占地面积以确保无泄漏性能。这些方面使得它们在具有高微通道密度的系统中的集成具有挑战性。迄今为止,尚未对鲁尔接头滑套进行几何优化以解决上述缺点。这项工作旨在提供缩小鲁尔接头滑套尺寸的规则。为此,设计并制造了七种鲁尔接头外螺纹连接器变体和五种鲁尔接头内螺纹连接器变体,重点是减小连接器尺寸并使死体积最小化。在所有情况下,内螺纹连接器都是为与相应的外螺纹连接器配对而开发的。使用定制测试台进行了表征,其中外螺纹和内螺纹连接器之间的闭合力在7.9至55 N之间变化。对于每个施加的闭合力,测试台允许在0.5至2.0 bar之间测试液体压力。最后,通过使用寿命分析确定连接器在泄漏前能够承受的循环次数。