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Development of a piezoresistive accelerometer with both high natural frequency and superior overload capability

  • Yong Xia
  • , Xinyao Meng
  • , Yang Lv
  • , Xiangguang Han
  • , Zhixia Qiao
  • , Mingzhi Yu
  • , Chen Jia
  • , Qing Zhang
  • , Ping Yang
  • , Dejiang Lu
  • , Libo Zhao
  • Xi'an Jiaotong University
  • CRRC Corporation Limited
  • Shandong Laboratory of Advanced Materials and Green Manufacturing at Yantai

Research output: Contribution to journalArticlepeer-review

Abstract

Accelerometers featuring high natural frequencies and superior overload capabilities are particularly valuable in applications such as military low-threshold-weapon fuzes. However, synergistic improvement of these parameters is bottlenecked by the trade-off between sensitivity and natural frequency, and the trade-off between natural frequency and displacement limit. Here, via designing anti-overload structures integrated with the pure-axial-stressed sensing structure, we achieve simultaneous high natural frequency and superior overload capability. The proposed sensor is fabricated and characterized. Results yield a sensitivity of 0.037±0.002 mV/g at 2 V and a natural frequency of 31.35±0.72 kHz, comparable to the reference sensor, and an overload capability of 19445.80±290.55 g representing a 133.84% improvement. Accelerometers with high natural frequency and superior overload capability enable high-fidelity measurement of broadband signals under harsh environments.

Original languageEnglish
JournalDefence Technology
DOIs
StateAccepted/In press - 2026

Keywords

  • Anti-overload structures
  • Natural frequency
  • Overload capability
  • Piezoresistive accelerometer
  • Pure-axial-stressed sensing structure

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