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Resealable, ultra-low leak micro valve using liquid surface tension sealing for vacuum applications

机译:使用液体表面张力密封的可重复密封的超低泄漏微阀,用于真空应用

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The design, fabrication, and successful demonstration of a micro valve that uses the surface tension of molten solder to make a reversible, ultra low-leak seal are presented. The valve comprises two parts: a silicon chip with a solder-ringed flow orifice and integrated heater, and a piezoelectric translational actuator with a solderringed sealing plate. When the valve is open, the solder rings are separated and flow can pass through the orifice. To close the valve, the actuator brings the solder rings into contact while the heater melts the solder and seals the plate over the orifice. The closing and opening of the valve under electrical actuation are successfully demonstrated; the measured open-state flow rate (~530 sccm) greatly exceeds the measured closed-state leak rate of 1.7×10 sccm. The closed valve's leakage is similar to the 1.5×10 sccm leakage for a plate with no orifice; the difference is within the range of experimental uncertainty, consistent with a leak-free seal.
机译:介绍了一种微型阀的设计,制造和成功演示,该微型阀利用熔融焊料的表面张力形成可逆的超低泄漏密封。该阀包括两部分:带焊接环流孔和集成加热器的硅芯片,以及带焊接密封板的压电平移执行器。阀门打开时,焊环分离,流量可以通过孔。为了关闭阀门,执行器使焊料环接触,同时加热器熔化焊料并密封孔板上的板。成功地演示了电动操作下阀门的关闭和打开;测得的打开状态流速(〜530 sccm)大大超过了测得的关闭状态泄漏率1.7×10 sccm。封闭阀的泄漏量类似于无孔板的1.5×10 sccm泄漏量。差异在实验不确定性范围内,与无泄漏密封件一致。

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