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Adhesive-Free Bonding of Monolithic Sapphire for Pressure Sensing in Extreme Environments

机译:单体蓝宝石的无粘合剂粘结用于极端环境下的压力传感

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摘要

This paper presents a monolithic sapphire pressure sensor that is constructed from two commercially available sapphire wafers through a combination of reactive-ion etching and wafer bonding. A Fabry–Perot (FP) cavity is sealed fully between the adhesive-free bonded sapphire wafers and thus acts as a pressure transducer. A combination of standard silica fiber, bonded sapphire wafers and free-space optics is proposed to couple the optical signal to the FP cavity of the sensor. The pressure in the FP cavity is measured by applying both white-light interferometry and diaphragm deflection theory over a range of 0.03 to 3.45 MPa at room temperature. With an all-sapphire configuration, the adhesive-free bonded sapphire sensor is expected to be suitable for in-situ pressure measurements in extreme harsh environments.
机译:本文介绍了一种整体式蓝宝石压力传感器,它是由两个市售蓝宝石晶片通过反应离子蚀刻和晶片键合构成的。法布里-珀罗(FP)腔完全密封在无粘合剂的蓝宝石晶片之间,因此可以用作压力传感器。建议将标准石英纤维,粘合的蓝宝石晶片和自由空间光学器件组合在一起,以将光信号耦合到传感器的FP腔。 FP腔中的压力是通过在室温下在0.03至3.45 MPa范围内应用白光干涉测量法和膜片挠度理论来测量的。采用全蓝宝石配置,无粘合剂的蓝宝石传感器有望适合极端恶劣环境中的原位压力测量。

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