DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW
Aiming at the damage of a Iow-range micro-electro-mechanical system(MEMS) acceleration sensor under tens of thousands of <italic>g</italic><sub>n</sub> overload during the measurement of outer ballistic information of conventional weapons and ammunition, a kind of shrimp claw...
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Language: | zho |
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Editorial Office of Journal of Mechanical Strength
2024-04-01
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Series: | Jixie qiangdu |
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Online Access: | http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.02.020 |
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author | ZHANG Xu ZHAO Rui SHI YunBo ZU KaiXuan ZHANG JieYu YAN XiaoPeng |
author_facet | ZHANG Xu ZHAO Rui SHI YunBo ZU KaiXuan ZHANG JieYu YAN XiaoPeng |
author_sort | ZHANG Xu |
collection | DOAJ |
description | Aiming at the damage of a Iow-range micro-electro-mechanical system(MEMS) acceleration sensor under tens of thousands of <italic>g</italic><sub>n</sub> overload during the measurement of outer ballistic information of conventional weapons and ammunition, a kind of shrimp claw anti-impact micro-acceleration sensor was proposed, which could realize the index requirements of anti-overload 30 000<italic>g</italic><sub>n</sub> and range 50<italic>g</italic><sub>n</sub>. The finite element simulation results show that the displacement of the sensor is 0. 99 μm and the sensitivity is 0.124 pF/<italic>g</italic><sub>n</sub> under 50<italic>g</italic><sub>n</sub> load. The maximum equivalent stress of the acceleration sensor under 30 000<italic>g</italic><sub>n</sub> overload is reduced from 1 022.5 MPa to 84.326 MPa, which effectively improved the reliability of the sensor. |
format | Article |
id | doaj-art-a7beb6c51b0f4c2b94f9568ace5a2bb8 |
institution | Kabale University |
issn | 1001-9669 |
language | zho |
publishDate | 2024-04-01 |
publisher | Editorial Office of Journal of Mechanical Strength |
record_format | Article |
series | Jixie qiangdu |
spelling | doaj-art-a7beb6c51b0f4c2b94f9568ace5a2bb82025-01-15T02:45:43ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692024-04-014641041563938718DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAWZHANG XuZHAO RuiSHI YunBoZU KaiXuanZHANG JieYuYAN XiaoPengAiming at the damage of a Iow-range micro-electro-mechanical system(MEMS) acceleration sensor under tens of thousands of <italic>g</italic><sub>n</sub> overload during the measurement of outer ballistic information of conventional weapons and ammunition, a kind of shrimp claw anti-impact micro-acceleration sensor was proposed, which could realize the index requirements of anti-overload 30 000<italic>g</italic><sub>n</sub> and range 50<italic>g</italic><sub>n</sub>. The finite element simulation results show that the displacement of the sensor is 0. 99 μm and the sensitivity is 0.124 pF/<italic>g</italic><sub>n</sub> under 50<italic>g</italic><sub>n</sub> load. The maximum equivalent stress of the acceleration sensor under 30 000<italic>g</italic><sub>n</sub> overload is reduced from 1 022.5 MPa to 84.326 MPa, which effectively improved the reliability of the sensor.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.02.020AccelerometerImpact resistanceCapacitiveLow rangeBionic cushioning structureMicro-electro-mechanical system |
spellingShingle | ZHANG Xu ZHAO Rui SHI YunBo ZU KaiXuan ZHANG JieYu YAN XiaoPeng DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW Jixie qiangdu Accelerometer Impact resistance Capacitive Low range Bionic cushioning structure Micro-electro-mechanical system |
title | DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW |
title_full | DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW |
title_fullStr | DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW |
title_full_unstemmed | DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW |
title_short | DESIGN OF ANTI-IMPАСТ MICRO-ACCELERATION SENSOR IMITATING SHRIMP CLAW |
title_sort | design of anti impаст micro acceleration sensor imitating shrimp claw |
topic | Accelerometer Impact resistance Capacitive Low range Bionic cushioning structure Micro-electro-mechanical system |
url | http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.02.020 |
work_keys_str_mv | AT zhangxu designofantiimpastmicroaccelerationsensorimitatingshrimpclaw AT zhaorui designofantiimpastmicroaccelerationsensorimitatingshrimpclaw AT shiyunbo designofantiimpastmicroaccelerationsensorimitatingshrimpclaw AT zukaixuan designofantiimpastmicroaccelerationsensorimitatingshrimpclaw AT zhangjieyu designofantiimpastmicroaccelerationsensorimitatingshrimpclaw AT yanxiaopeng designofantiimpastmicroaccelerationsensorimitatingshrimpclaw |