材料科学
压力传感器
有限元法
电容感应
冯·米塞斯屈服准则
陶瓷
变形(气象学)
复合材料
灵敏度(控制系统)
压力(语言学)
振膜(声学)
光电子学
热的
机械工程
结构工程
电子工程
声学
电气工程
工程类
振动
气象学
哲学
语言学
物理
作者
Haojie Lv,Kaiyuan Lai,Yonglan Qi
标识
DOI:10.1080/14484846.2019.1704490
摘要
In this research paper, we design a touch mode capacitive micro pressure-sensor with circular stepped-cavity and SiC-AlN-SiC material structure, which can be more precisely measured pressure in a high-temperature environment. Using the finite element analysis method (based on ANSYS software), we found that the sensitivity of the sensor reached 3.5 pF/MPa, up almost one-third from traditional single-cavity structure in the long linear working range as 0.9–1.4 MPa. Moreover, the research to thermal behaviours of the sensor is shown that high temperature has affected the diaphragm deformation and the von Mises stress of the sensor due to thermal buckling. But the thermal deformation did not change the intrinsic characteristics of this sensor. Consequently, the sensor packaging with high-temperature ceramic material is endured the higher temperature to be applied in a harsh environment.
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