Title of article :
Couple Stress Effect on Micro/Nanocantilever-based Capacitive Gas Sensor
Author/Authors :
Abazari, A. M. Department of Mechanical Engineering - Isfahan University of Technology, Iran , Safavia, S. M. Department of Mechanical Engineering - Isfahan University of Technology, Iran , Rezazadehb, G. Department of Mechanical Engineering - Urmia University, Iran , Fathaliloub, M. Department of Mechanical Engineering - Urmia University, Iran
Pages :
10
From page :
852
To page :
861
Abstract :
Micro/nanocantilevers have been employed as sensors in many applications including chemical and biosensing. Due to their high sensitivity and potential for scalability, miniature sensing systems are in wide use and will likely become more prevalent in micro/nano-electromechanical systems (M-NEMSs). This paper is mainly focused on the use of sensing systems that employ micro/nano-size cantilever beams for sensing gaseous molecules. Micro/nanocantilever-based gas sensing is concerned with determining the micro/nanocantilever resonance shift or detecting the micro/nanocantilever deflection due to adsorption event. This paper has considered the former approach, i.e., determining the resonance shift. In order to explain these changes more clearly, a micro/nanobeam has to be modeled by considering some micro/nano scale parameters. A modeling based on classic elasticity theory potentially is unable to consider micro/nano scale parameters which have considerable effects on the behavior of the micro/nanobeams. The effect of couple stress on the stiffness of cantilever beams remains an outstanding problem in the physical sciences. So in this paper, a modeling based on couple stress theory has been applied to explore the behavior of a micro/nanobeam due to the adsorption of gaseous molecules. This work has attempted to advance the field of micro/nanocantilever based gas sensing by shedding more light on the mechanical behavior of micro/nanocantilever.
Farsi abstract :
ﻣﯿﮑﺮوﺗﯿﺮﻫﺎي ﯾﮏ ﺳﺮﮔﯿﺮدار ﺑﻌﻨﻮان ﺣﺴﮕﺮ در ﺑﺴﯿﺎري از ﮐﺎرﺑﺮدﻫﺎي ﺷﯿﻤﯿﺎﯾﯽ ﻣﻮرد اﺳﺘﻔﺎده ﻗﺮار ﻣﯽ ﮔﯿﺮﻧﺪ. ﺑﻌﻠﺖ ﺣﺴﺎﺳﯿﺖ ﺑﺎﻻ، ﺳﯿﺴﺘﻢ ﻫﺎي در ﻣﻘﯿﺎس ﮐﻮﭼﮏ ﮐﺎرﺑﺮد ﮔﺴﺘﺮده اي را ﭘﯿﺪا ﮐﺮده اﻧﺪ. اﯾﻦ ﻣﻘﺎﻟﻪ ﺑﻪ ﮐﺎرﺑﺮد ﺳﯿﺴﺘﻢ ﻫﺎي ﺣﺴﮕﺮي ﮐﻪ ﺑﺎ اﺳﺘﻔﺎده از ﻣﯿﮑﺮوﺗﯿﺮ ﯾﮏ ﺳﺮﮔﯿﺮدار ﺑﻪ ﻣﻨﻈﻮر ﺷﻨﺎﺳﺎﯾﯽ ﻣﻮﻟﮑﻮل ﻫﺎي ﮔﺎز ﻣﻮرد اﺳﺘﻔﺎده ﻗﺮار ﻣﯽ ﮔﯿﺮﻧﺪ، ﻣﯽ ﭘﺮدازد. اﯾﻦ ﺳﯿﺴﺘﻢ ﻫﺎ ﺑﺎ ﺗﻌﯿﯿﻦ ﺷﯿﻔﺖ ﻓﺮﮐﺎﻧﺴﯽ و ﻣﯿﺰان ﺧﯿﺰ ﻣﯿﮑﺮوﺗﯿﺮ در اﺛﺮ ﺟﺬب ﻣﻮﻟﮑﻮل ﻫﺎي ﮔﺎز ﺑﺮ روي ﺳﻄﺢ آن ﮐﺎر ﻣﯽ ﮐﻨﻨﺪ؛ در اﯾﻦ ﻣﻘﺎﻟﻪ ﺗﻌﯿﯿﻦ ﺷﯿﻔﺖ ﻓﺮﮐﺎﻧﺴﯽ ﻣﻮرد ﺑﺮرﺳﯽ ﻗﺮار ﮔﺮﻓﺘﻪ اﺳﺖ. ﺑﻪ ﻣﻨﻈﻮر ﺗﺤﻠﯿﻞ دﻗﯿﻖ ﺗﺮ رﻓﺘﺎر اﯾﻦ ﺳﯿﺴﺘﻢ ﻫﺎ، ﻣﯿﮑﺮوﺗﯿﺮ ﺑﺎﯾﺴﺘﯽ ﺑﺎ در ﻧﻈﺮ ﮔﺮﻓﺘﻦ ﺑﺮﺧﯽ از ﭘﺎراﻣﺘﺮﻫﺎﯾﯽ ﮐﻪ در ﻣﻘﯿﺎس ﻣﯿﮑﺮو ﺗﺎﺛﯿﺮ ﮔﺬار ﻫﺴﺘﻨﺪ، ﻣﺪﻟﺴﺎزي ﺷﻮد. ﻣﺪل ﻫﺎي ﺑﺮ ﭘﺎﯾﻪ ي ﺗﺌﻮري ﻫﺎي ﮐﻼﺳﯿﮏ، ﻗﺎﺑﻠﯿﺖ در ﻧﻈﺮ ﮔﺮﻓﺘﻦ اﯾﻦ ﭘﺎراﻣﺘﺮﻫﺎ را ﮐﻪ در ﻣﻘﯿﺎس ﻣﯿﮑﺮو و ﻧﺎﻧﻮ ﺑﺴﯿﺎر ﺗﺎﺛﯿﺮﮔﺬار ﻫﺴﺘﻨﺪ، ﻧﺪارﻧﺪ. اﺛﺮ ﺗﻨﺶ ﮐﻮﭘﻞ روي ﺳﻔﺘﯽ ﻣﯿﮑﺮوﺗﯿﺮ ﭘﺎراﻣﺘﺮ ﻣﻬﻤﯽ اﺳﺖ ﮐﻪ در ﮐﺎرﺑﺮد اﯾﻦ ﻧﻮع ﺣﺴﮕﺮﻫﺎ ﺑﺎﯾﺴﺘﯽ در ﻧﻈﺮ ﮔﺮﻓﺘﻪ ﺷﻮد. ﺑﻨﺎﺑﺮاﯾﻦ، در اﯾﻦ ﻣﻘﺎﻟﻪ ﻣﺪﻟﺴﺎزي اي ﺑﺎ در ﻧﻈﺮ ﮔﺮﻓﺘﻦ ﺗﻨﺶ ﮐﻮﭘﻞ ﺑﺮاي ﻣﯿﮑﺮوﺗﯿﺮ اراﯾﻪ ﺷﺪه اﺳﺖ و رﻓﺘﺎر ﻣﯿﮑﺮوﺗﯿﺮ ﺑﺮ ﭘﺎﯾﻪ ي اﯾﻦ ﻣﺪل در اﺛﺮ ﺟﺬب ﮔﺎز ﻣﻮرد ﻣﻄﺎﻟﻌﻪ ﻗﺮار ﮔﺮﻓﺘﻪ اﺳﺖ.
Keywords :
Chemical Sensors , Micro Electromechanical Systems , Micro/Nanocantilever , Couple Stress , Resonance Shifting
Journal title :
International Journal of Engineering
Serial Year :
2016
Record number :
2507710
Link To Document :
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