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Stress, sensitivity and frequency analysis of the corrugated diaphragm for different corrugation structures

机译:不同波纹结构瓦楞膜的应力,灵敏度和频率分析

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摘要

Corrugated and flat circular diaphragm-based piezoresistive pressure sensors are designed and proposed for different applications. Regarding to different criteria including maximum stress, sensitivity and natural frequency, different diaphragms with semicircular, sinusoidal and trapezoidal corrugation are modeled, simulated and investigated in finite element software. The finite element model is validated by experimental results from the literature and also with theoretical formula to ensure the accuracy of the finite element modeling process. Wavelength and location of the corrugation are optimized to achieve best performing sensor. For the application with large acceptable induced stress, circular flat diaphragm is proposed. To enhance the sensitivity of the sensor as a crucial parameter, semicircular corrugation for circular diaphragm with 360 mu m wavelength and 240 mu m distance from the center is designed and proposed. This configuration shows obvious improvement of the sensitivity with more than 18% enhancement. To extend the working range of the sensor regarding to input frequency, trapezoidal corrugation with 360 mu m wavelength and 240 mu m distance from the center is proposed to reach more than 29% enlargement in first natural frequency. Eventually, this paper tries to provide an overview to design the optimal pressure sensor according to desired specifications.
机译:为不同的应用设计并提出了基于波纹和扁平的圆形隔膜的压阻式压力传感器。关于不同标准,包括最大应力,灵敏度和自然频率,在有限元软件中建模,模拟和研究了具有半圆形,正弦波和梯形波纹的不同膜片。有限元模型通过文献的实验结果验证,以及理论公式,以确保有限元建模过程的准确性。波纹和波纹的位置经过优化,以实现最佳性能的传感器。对于具有较大可接受的诱导应力的应用,提出了圆形平坦膜片。为了增强传感器作为关键参数的灵敏度,设计并提出了距中心的360μm波长和240μm距离的圆形膜片的半圆形波纹。这种配置显示出具有超过18%增强的灵敏度的显而易见。为了将传感器的工作范围扩展到输入频率的输入频率,提出了具有360μm波长的梯形波纹和距中心的240μm距离,以达到第一自然频率的增大超过29%。最终,本文试图提供根据所需规格设计最佳压力传感器的概述。

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