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Frequency analysis of carbon and silicon nanosheet with surface effects

机译:具有表面效应的碳和硅纳米片的频率分析

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Silicon-based microelectromechanical system (MEMS) and nanoelectromechanical systems (NEMS) have been used to design and fabricate sensitive sensors and actuators. Recent research trends show that graphene and carbon nanotubes (CNTs) have been used to change the surface properties of silicon-based MEMS and NEMS to improve different mechanical, optical and electrical properties of silicon-based composites. In this paper, we focus on analyzing the vibrational characteristics of silicon-based devices when the surface of silicon is coated with single-layer graphene and horizontally aligned carbon nanotubes (HACNTs). To perform the analysis, we use multi-scale finite element approach for developing graphene-silicon nanocomposites (GSNCs) and carbon nanotube-silicon nanocomposites (CSNC) composites in which interface layer of silicon with graphene or CNT is modeled using bonded contact element. Subsequently, we performed modal analysis to find the first transverse mode frequency of GSNC and CSNC composites for beam with smaller as well as longer lengths. The numerical model is compared with classical beam theory with and without surface effect. For GSNCs composites, we take a fixed-free case with lengths in the range of (20 angstrom-120 angstrom) and (400 angstrom-2000 angstrom), respectively. For CSNC composites, CNT diameter is varied from (5 angstrom-30 angstrom) for single walled nanotube. Subsequently, we analyze the influence of HACNTs-on-silicon on its vibrational characteristics. The analysis presented in the paper demonstrate that GSNCs offer a higher bending stiffness compared to single layer graphene (SLGs) and isolated silicon nanosheet which lead to higher natural frequency. A similar trend is found in the case of HACNTs on silicon NS when the number of tubes increases. (C) 2019 Elsevier Inc. All rights reserved.
机译:基于硅的微机电系统(MEMS)和纳米机电系统(NEMS)已用于设计和制造敏感的传感器和致动器。最近的研究趋势表明,石墨烯和碳纳米管(CNT)已用于改变硅基MEMS和NEMS的表面性能,以改善硅基复合材料的不同机械,光学和电学性能。在本文中,我们重点分析当硅表面涂有单层石墨烯和水平排列的碳纳米管(HACNT)时,硅基器件的振动特性。为了进行分析,我们使用多尺度有限元方法开发了石墨烯-硅纳米复合材料(GSNC)和碳纳米管-硅纳米复合材料(CSNC)复合材料,其中使用键合接触元件模拟了硅与石墨烯或CNT的界面层。随后,我们进行了模态分析,以求出GSNC和CSNC复合材料的第一横向模式频率,用于较小长度和较长长度的光束。将数值模型与具有和不具有表面效应的经典梁理论进行了比较。对于GSNCs复合材料,我们采用长度在(20埃至120埃)和(400埃至2000埃)范围内的无固定外壳。对于CSNC复合材料,对于单壁纳米管,CNT的直径从(5埃-30埃)变化。随后,我们分析了硅上的HACNTs对其振动特性的影响。本文中提出的分析表明,与单层石墨烯(SLG)和隔离的硅纳米片相比,GSNC具有更高的弯曲刚度,从而导致更高的固有频率。当管的数量增加时,在硅NS上的HACNT上也发现了类似的趋势。 (C)2019 Elsevier Inc.保留所有权利。

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