Fabrication of MEMS Accelerometer for Vibration Sensing in Gas Turbine

S. Kalaiselvi, L. Sujatha, R. Sundar
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引用次数: 6

Abstract

Vibrations in elements of dynamic systems, such as turbines, can lead to undue stresses in critical structural elements leading to catastrophic failures. Measurement and characterization of vibration levels of structural elements under varied operating conditions is necessary to determine anomalies and thereby prevent failure. High-speed gas turbines use a large number of small stator blades that are critical to their operation. High-speed operation can induce vibration components in excess of a few kHz. Internal operating temperatures can be well above 250°C and the sensors should be operational even at 500°C. This paper focuses on development of a single-axis MEMS capacitive accelerometer for direct mounting on gas turbine stator blades for monitoring and analyzing their vibration characteristics. The design uses SOI wafer as substrate to realize high temperature sensing with a sensitivity level on the order of 0.013ųm/g. The proposed device is developed using lab-scale fabrication with minimal facilities amenable for low-cost indigenous manufacturing.
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燃气轮机振动传感用MEMS加速度计的研制
动力系统元件(如涡轮机)的振动可能导致关键结构元件的不适当应力,从而导致灾难性故障。在不同的工作条件下,结构元件的振动水平的测量和表征是必要的,以确定异常,从而防止故障。高速燃气轮机使用大量对其运行至关重要的小定子叶片。高速运行可诱发振动元件超过几千赫。内部工作温度可远高于250°C,传感器应在500°C下工作。研制了一种直接安装在燃气轮机静叶上的单轴MEMS电容式加速度计,用于监测和分析静叶的振动特性。本设计采用SOI晶圆作为衬底,实现了对温度的高温传感,灵敏度级别为0.013ųm/g。提出的设备是使用实验室规模的制造开发的,具有最小的设施,适合低成本的本土制造。
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