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Modelling the static thermal sensitivity of diaphragm-based fibre optic pressure sensors

机译:模拟基于膜片基光学压力传感器的静态热敏性

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Diaphragm-based fibre optic pressure sensors can offer high temporal and spatial resolution pressure measurements at modest cost, but they can suffer from the detrimental effects of temperature cross-sensitivity. A simple construction for these sensors involves a zirconia ferrule as the substrate for a polished copper foil diaphragm, and a liquid adhesive as the bonding layer between the two. It is proposed that elimination of the adhesive layer through the use of direct bonding techniques, such as electroplating or ultrasonic welding, could reduce the temperature sensitivity. The thermal sensitivity of two types of sensor - one with and one without an adhesive layer - is studied using finite element modelling. The results show that the new construction technique could reduce the temperature sensitivity by up to 62%.
机译:基于隔膜的光纤压力传感器可以以适度的成本提供高的时间和空间分辨率压力测量,但它们可以遭受温度交叉敏感性的不利影响。这些传感器的简单结构涉及氧化锆套圈作为用于抛光铜箔隔膜的基板,以及作为两者之间的粘合层的液体粘合剂。提出通过使用直接粘合技术,例如电镀或超声波焊接来消除粘合剂层,可以降低温度敏感性。使用有限元建模研究了两种类型的传感器的热敏灵敏度 - 一种没有粘合剂层的传感器。结果表明,新的施工技术可以将温度敏感性降低至62%。

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