Structural Design of MEMS Acceleration Sensor Based on PZT Plate Capacitance Detection

Author:

Cui Min1,Chuai Senhui2,Huang Yong3,Liu Yang2,Li Jian4

Affiliation:

1. Shanxi Key Laboratory of Information Detection and Processing, North University of China, Taiyuan 030051, China

2. School of Instrumentation and Electronics, North University of China, Taiyuan 030051, China

3. Shanghai Institute of Aerospace Control Technology, Shanghai 201109, China

4. School of Information and Communication Engineering, North University of China, Taiyuan 030051, China

Abstract

The problem that the fuze overload signal sticks and is not easily identified by the counting layer during the high-speed intrusion of the projectile is an important factor affecting the explosion of the projectile in the specified layer. A three-pole plate dual-capacitance acceleration sensor based on the capacitive sensor principle is constructed in this paper. The modal simulation of the sensor structure is carried out using COMSOL 6.1 simulation software, the structural parameters of the sensor are derived from the mechanical properties of the model, and finally the physical sensor is processed and fabricated using the derived structural parameters. The mechanical impact characteristics of the model under different overloads were investigated using ANSYS/LS-DYNA, and the numerical simulation of the projectile intrusion into the three-layer concrete slab was carried out using LS-DYNA. Under different overload conditions, the sensor was tested using the Machette’s hammer test and the output signal of the sensor was obtained. The output signal was analyzed. Finally, a sensor with self-powered output, high output voltage amplitude, and low spurious interference was obtained. The results show that the ceramic capacitive sensor has a reasonable structure, can reliably receive vibration signals, and has certain engineering applications in the intrusion meter layer.

Funder

Technology Field Fund of Basic Strengthening Plan of China

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

Reference36 articles.

1. Design and experiment of MEMS solid-state wave gyroscope quadrature error correction system;Cui;IEEE Sens. J.,2023

2. A mass abrasion model with the melting and cutting mechanisms during high-speed projectile penetration into concrete slabs;Ning;Acta Mech. Sin.,2022

3. An Electronic Time Fuze with an Overload-Time Protection Device;Tusnio;Prz. Elektrotech.,2010

4. Deceleration time of projectile penetration/perforation into a concrete target: Experiment and discussions;Peng;Adv. Struct. Eng.,2019

5. Effect of Thickness and Reinforcement on Concrete Plates under High Speed Projectiles;Tais;Struct. Eng. Mech.,2022

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