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INVESTIGATION OF MICROCANTILEVER SENSOR FOR EXPLOSIVE DETECTION

机译:用于探测的微悬臂梁传感器的研究

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In this study we investigate the use of microcantilever sensors for explosives detection. An array of microcantilevers consisting of gold (Au) and silicon nitride (Si_3N_4) thin-films of sub-micron thickness acts as a thermal bimorph. A microheater is fabricated in-situ at the base of each microcantilever in the array. When the microheaters are addressed individually using different actuation currents, each microcantilever undergoes thermo-mechanical deformation by different amounts which are then tracked individually by monitoring each reflected ray from a laser illuminating the array of microcantilevers. The threshold current values for the differential actuation of the microcantilevers are correlated with the auto-ignition temperature of a particular explosive (or combustible vapor) and its corresponding vapor pressure. In this study numerical simulations are also performed to study the variation of temperature, species concentration and deflection of individual microcantilevers as a function of actuation current.
机译:在这项研究中,我们调查使用微静电传感器进行爆炸物检测。由金(Au)和氮化硅(Si_3N_4)的亚微米厚度的薄膜组成的微电子阵列作为热双磁纤维。微热器在阵列中的每个微电子的底座上原位制造。当使用不同的致动电流单独寻址微热器时,每个微电机通过不同量经历热机械变形,然后通过从照亮微电坡阵列的激光监测每个反射射线来单独地跟踪。微电路仪的差分致动的阈值电流值与特定炸药(或可燃蒸气)的自动点火温度以及其相应的蒸气压相关。在该研究中,还进行数值模拟以研究温度的变化,种类浓度和单个微电势的偏转,作为致动电流的函数。

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