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Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability

The influence of diaphragm bending stiffness distribution on the stress concentration characteristics of a pressure sensing chip had been analyzed and discussed systematically. According to the analysis, a novel peninsula-island-based diaphragm structure was presented and applied to two differenet d...

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Autores principales: Xu, Tingzhong, Lu, Dejiang, Zhao, Libo, Jiang, Zhuangde, Wang, Hongyan, Guo, Xin, Li, Zhikang, Zhou, Xiangyang, Zhao, Yulong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5621370/
https://www.ncbi.nlm.nih.gov/pubmed/28846599
http://dx.doi.org/10.3390/s17091965
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author Xu, Tingzhong
Lu, Dejiang
Zhao, Libo
Jiang, Zhuangde
Wang, Hongyan
Guo, Xin
Li, Zhikang
Zhou, Xiangyang
Zhao, Yulong
author_facet Xu, Tingzhong
Lu, Dejiang
Zhao, Libo
Jiang, Zhuangde
Wang, Hongyan
Guo, Xin
Li, Zhikang
Zhou, Xiangyang
Zhao, Yulong
author_sort Xu, Tingzhong
collection PubMed
description The influence of diaphragm bending stiffness distribution on the stress concentration characteristics of a pressure sensing chip had been analyzed and discussed systematically. According to the analysis, a novel peninsula-island-based diaphragm structure was presented and applied to two differenet diaphragm shapes as sensing chips for pressure sensors. By well-designed bending stiffness distribution of the diaphragm, the elastic potential energy induced by diaphragm deformation was concentrated above the gap position, which remarkably increased the sensitivity of the sensing chip. An optimization method and the distribution pattern of the peninsula-island based diaphragm structure were also discussed. Two kinds of sensing chips combined with the peninsula-island structures distributing along the side edge and diagonal directions of rectangular diaphragm were fabricated and analyzed. By bonding the sensing chips with anti-overload glass bases, these two sensing chips were demonstrated by testing to achieve not only high sensitivity, but also good anti-overload ability. The experimental results showed that the proposed structures had the potential to measure ultra-low absolute pressures with high sensitivity and good anti-overload ability in an atmospheric environment.
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spelling pubmed-56213702017-10-03 Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability Xu, Tingzhong Lu, Dejiang Zhao, Libo Jiang, Zhuangde Wang, Hongyan Guo, Xin Li, Zhikang Zhou, Xiangyang Zhao, Yulong Sensors (Basel) Article The influence of diaphragm bending stiffness distribution on the stress concentration characteristics of a pressure sensing chip had been analyzed and discussed systematically. According to the analysis, a novel peninsula-island-based diaphragm structure was presented and applied to two differenet diaphragm shapes as sensing chips for pressure sensors. By well-designed bending stiffness distribution of the diaphragm, the elastic potential energy induced by diaphragm deformation was concentrated above the gap position, which remarkably increased the sensitivity of the sensing chip. An optimization method and the distribution pattern of the peninsula-island based diaphragm structure were also discussed. Two kinds of sensing chips combined with the peninsula-island structures distributing along the side edge and diagonal directions of rectangular diaphragm were fabricated and analyzed. By bonding the sensing chips with anti-overload glass bases, these two sensing chips were demonstrated by testing to achieve not only high sensitivity, but also good anti-overload ability. The experimental results showed that the proposed structures had the potential to measure ultra-low absolute pressures with high sensitivity and good anti-overload ability in an atmospheric environment. MDPI 2017-08-26 /pmc/articles/PMC5621370/ /pubmed/28846599 http://dx.doi.org/10.3390/s17091965 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Tingzhong
Lu, Dejiang
Zhao, Libo
Jiang, Zhuangde
Wang, Hongyan
Guo, Xin
Li, Zhikang
Zhou, Xiangyang
Zhao, Yulong
Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title_full Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title_fullStr Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title_full_unstemmed Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title_short Application and Optimization of Stiffness Abruption Structures for Pressure Sensors with High Sensitivity and Anti-Overload Ability
title_sort application and optimization of stiffness abruption structures for pressure sensors with high sensitivity and anti-overload ability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5621370/
https://www.ncbi.nlm.nih.gov/pubmed/28846599
http://dx.doi.org/10.3390/s17091965
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