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首页> 外文期刊>Journal of Micromechanics and Microengineering >The effect of porosity on energetic porous silicon solid propellant micro-propulsion
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The effect of porosity on energetic porous silicon solid propellant micro-propulsion

机译:孔隙度对高能多孔硅固体推进剂微推进的影响

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摘要

Energetic porous silicon is investigated as an actuator for micro-propulsion based on thrust and impulse measurements for a variety of porous silicon porosity conditions. Porosity of 2 mm diameter, porous silicon microthruster devices was varied by changing the concentration of hydrofluoric acid and ethanol in an etch solution, by changing porous silicon etch depth, and by changing the resistivity of silicon wafers used for the etch process. The porosity varied from 30% to 75% for these experiments. The highest mean thrust and impulse values measured with a calibrated Kistler 9215 force sensor were 674 mN and 271 mu N s, respectively, with a 73% porosity, 2 mm diameter porous silicon device etched in a 3 : 1 etch solution on a 3.6 Omega cm wafer to a target etch depth of 30 mu m. As a result of changing porosity, a 23x increase in thrust performance and a 36x increase in impulse performance was demonstrated. Impulse values were also validated using a pendulum experiment in which the porous silicon microthruster was unconstrained, but several non-linearities in the pendulum experimental setup resulted in less consistent data than when measured by the force sensor for microthrusters at this size scale. These thrust and impulse results complement previous work in determining the effect of porosity on other porous silicon reaction metrics such as flame speed.
机译:研究了高能多孔硅作为微推进器的驱动器,该驱动器基于各种多孔硅孔隙度条件下的推力和脉冲测量结果。通过改变蚀刻溶液中氢氟酸和乙醇的浓度,改变多孔硅蚀刻深度以及改变用于蚀刻工艺的硅晶片的电阻率,来改变直径为2 mm的多孔硅微推力器装置的孔隙率。这些实验的孔隙率从30%到75%不等。使用校准的奇石乐9215力传感器测得的最高平均推力和脉冲值分别为674 mN和271μN s,孔隙率为73%,直径为2 mm的多孔硅器件在3.6Ω的3:1蚀刻溶液中蚀刻厘米晶片至30微米的目标蚀刻深度。孔隙率变化的结果表明,推力性能提高了23倍,脉冲性能提高了36倍。脉冲值也使用摆锤实验进行了验证,在该实验中,多孔硅微推力器不受约束,但是与在这种尺寸规模下用力传感器测量的微推力器相比,摆锤实验设置中的一些非线性导致数据的一致性较差。这些推力和脉冲结果补充了以前的工作,以确定孔隙度对其他多孔硅反应度量(例如火焰速度)的影响。

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