首站-论文投稿智能助手
典型文献
Transient analysis on surface heated piezoelectric semiconductor plate lying on rigid substrate
文献摘要:
Based on the thermo-electro-elastic coupling theory,the mathematical model for a surface heated piezoelectric semiconductor(PS)plate is developed in the time do-main.Applying the direct and inverse Laplace transformations to the established model,the mechanical and electrical responses are investigated.The comparison between the analytical solution and the finite element method(FEM)is conducted,which illustrates the validity of the derivation.The calculated results show that the maximum values of the mechanical and electrical fields appear at the heating surface.Importantly,the perturbation carriers tend to concentrate in the zone near the heating surface under the given boundary conditions.It can also be observed that the heating induced elastic wave leads to jumps for the electric potential and perturbation carrier density at the wavefront.When the thermal relaxation time is introduced,all the field quantities become smaller because of the thermal lagging effect.Meanwhile,it can be found that the thermal relax-ation time can describe the smooth variation at the jump position.Besides,for a plate with P-N junction,the effect of the interface position on the electrical response is studied.The effects of the initial carrier density on the electrical properties are discussed in detail.The conclusions in this article can be the guidance for the design of PS devices serving in thermal environment.
文献关键词:
作者姓名:
Luke ZHAO;Sen GU;Yaqin SONG;Feng JIN
作者机构:
State Key Laboratory for Strength and Vibration of Mechanical Structures,School of Aerospace Engineering,Xi'an Jiaotong University,Xi'an 710049,China
引用格式:
[1]Luke ZHAO;Sen GU;Yaqin SONG;Feng JIN-.Transient analysis on surface heated piezoelectric semiconductor plate lying on rigid substrate)[J].应用数学和力学(英文版),2022(12):1841-1856
A类:
B类:
Transient,analysis,surface,heated,piezoelectric,semiconductor,plate,rigid,substrate,Based,thermo,electro,elastic,coupling,theory,mathematical,model,PS,developed,do,main,Applying,direct,inverse,Laplace,transformations,established,mechanical,electrical,responses,are,investigated,comparison,between,analytical,solution,finite,element,method,FEM,conducted,which,illustrates,validity,derivation,calculated,results,show,that,maximum,values,fields,appear,heating,Importantly,perturbation,carriers,tend,concentrate,zone,near,under,given,boundary,conditions,It,can,also,observed,induced,leads,jumps,potential,density,wavefront,When,thermal,relaxation,introduced,quantities,become,smaller,because,lagging,Meanwhile,found,describe,smooth,variation,position,Besides,junction,interface,studied,effects,initial,properties,discussed,detail,conclusions,this,article,guidance,design,devices,serving,environment
AB值:
0.562899
相似文献
Highly transmitted silver nanowires-SWCNTs conductive flexible film by nested density structure and aluminum-doped zinc oxide capping layer for flexible amorphous silicon solar cells
Shunliang Gao;Xiaohui Zhao;Qi Fu;Tianchi Zhang;Jun Zhu;Fuhua Hou;Jian Ni;Chengjun Zhu;Tiantian Li;Yanlai Wang;Vignesh Murugadoss;Gaber A.M.Mersal;Mohamed M.Ibrahim;Zeinhom M.El-Bahy;Mina Huang;Zhanhu Guo-The Key Laboratory of Semiconductor Photovoltaic Technology at Universities of Inner Mongolia Autonomous Region,College of Physical Science and Technology,Inner Mongolia University,Hohhot 010021,China;Department of Electronic Science and Technology,School of Electronic Information and Optical Engineering,Nankai University,Tianjin 300350,China;Advanced Materials Division,Engineered Multifunctional Composites(EMC)Nanotech LLC,Knoxville,TN 37934,United States;Integrated Composites Laboratory(ICL),Department of Chemical and Bimolecular Engineering,University of Tennessee,Knoxville,TN 37996,United States;Department of Chemistry,College of Science,Taif University,P.O.Box 11099,Taif 21944,Saudi Arabia;Department of Chemistry,Faculty of Science,Al-Azhar University,Nasr City 11884,Cairo,Egypt;College of Materials Science and Engineering,Taiyuan University of Science and Technology,Taiyuan 030024,China
Effects of the initial perturbations on the Rayleigh-Taylor-Kelvin-Helmholtz instability system
Feng Chen;Aiguo Xu;Yudong Zhang;Yanbiao Gan;Bingbing Liu;Shuang Wang-School of Aeronautics,Shan Dong Jiaotong University,Jinan 250357,China;Laboratory of Computational Physics,Institute of Applied Physics and Computational Mathematics,P.O.Box 8009-26,Beijing 100088,China;HEDPS,Center for Applied Physics and Technology,and College of Engineering,Peking University,Beijing 100871,China;State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology,Beijing 100081,China;School of Mechanics and Safety Engineering,Zhengzhou University,Zhengzhou 450001,China;Hebei Key Laboratory of Trans-Media Aerial Underwater Vehicle,North China Institute of Aerospace Engineering,Langfang 065000,China;Naval Architecture and Port Engineering College,Shan Dong Jiaotong University,Weihai 264200,China;School of Science,Shandong Jianzhu University,Jinan 250101,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。