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Normally closed plunger-membrane microvalve self-actuated electrically using a shape memory alloy wire

机译:使用形状记忆合金线自致动的常闭柱塞膜微型阀

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摘要

Various microfluidic architectures designed for in vivo and point-of-care diagnostic applications require larger channels, autonomous actuation, and portability. In this paper, we present a normally closed microvalve design capable of fully autonomous actuation for wide diameter microchannels (tens to hundreds of μm). We fabricated the multilayer plunger-membrane valve architecture using the silicone elastomer, poly-dimethylsiloxane (PDMS) and optimized it to reduce the force required to open the valve. A 50-μm Nitinol (NiTi) shape memory alloy wire is incorporated into the device and can operate the valve when actuated with 100-mA current delivered from a 3-V supply. We characterized the valve for its actuation kinetics using an electrochemical assay and tested its reliability at 1.5-s cycle duration for 1 million cycles during which we observed no operational degradation.
机译:为体内和即时诊断应用设计的各种微流控架构需要更大的通道,自动启动和便携性。在本文中,我们提出了一种常闭微型阀设计,该设计能够针对大直径微通道(数十至数百μm)实现完全自主驱动。我们使用有机硅弹性体,聚二甲基硅氧烷(PDMS)制造了多层柱塞膜阀架构,并对其进行了优化,以减小打开阀所需的力。该设备中装有一条50μm的镍钛诺(NiTi)形状记忆合金线,当用3V电源提供的100mA电流驱动时,可以操作该阀。我们使用电化学测定法对阀门的致动动力学进行了表征,并在1.5秒的循环持续时间内测试了其一百万次循环的可靠性,在此期间我们未观察到操作性能下降。

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