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无限大压电准晶介质中两个圆柱夹杂的干涉作用 被引量:2
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作者 胡克强 高存法 +1 位作者 付佳维 陈增涛 《内蒙古工业大学学报(自然科学版)》 2023年第3期230-236,共7页
推导了含有两个圆柱状夹杂的无限大一维压电准晶介质在反平面作用力和平面内电载荷作用时的电弹性场。假设基体与夹杂之间的界面为完美粘结,利用保角变换技术和解析延拓理论,得到了圆柱状夹杂边值问题的解析解以及基体和夹杂内声子场和... 推导了含有两个圆柱状夹杂的无限大一维压电准晶介质在反平面作用力和平面内电载荷作用时的电弹性场。假设基体与夹杂之间的界面为完美粘结,利用保角变换技术和解析延拓理论,得到了圆柱状夹杂边值问题的解析解以及基体和夹杂内声子场和相位子场的应力以及电位移的解析表达式,结果显示电弹性场的分布与复合材料各相的材料参数、几何参数以及反平面作用力和平面内电载荷相关,数值算例表明了几何参数、材料性质和载荷大小对复合材料内部和界面上应力分布的影响,基于此研究了极限情形的圆柱状孔洞和刚性圆柱状夹杂问题。 展开更多
关键词 一维压电准晶 圆柱状夹杂 保角变换技术 解析延拓理论
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新型光伏储电原位集成电池研究进展 被引量:4
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作者 于守武 赵泽文 +8 位作者 赵晋津 肖淑娟 师岩 高存法 苏晓 胡宇翔 赵智胜 王婕 王连洲 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2020年第6期623-632,共10页
随着光伏智能电子产品日益融入到日常生活,人们不仅对高性能光伏发电设备的需求增加,同时对智能化、可持续和快速充电/放电能源集成设备的需求也急剧增加,将能量产生部件和能量存储部件结合成独立设备已经成为一种极具有吸引力和挑战性... 随着光伏智能电子产品日益融入到日常生活,人们不仅对高性能光伏发电设备的需求增加,同时对智能化、可持续和快速充电/放电能源集成设备的需求也急剧增加,将能量产生部件和能量存储部件结合成独立设备已经成为一种极具有吸引力和挑战性的前沿技术。原位逐层制备光电转换功能薄膜与储电功能薄膜并组装,获得光伏储电原位集成电池的技术,既减少了太阳光波动对能量输出的影响,又可以实现光伏自供电、弱光缓冲和可穿戴等功能,因此具有良好的发展前景。本文综述了硅基光伏储电原位集成电池、敏化光伏储电原位集成电池、钙钛矿光伏储电原位集成电池的最新研究成果,介绍了此类新型电池性能的评价方法,分析了其工作原理、构造特点和性能参数,并对此新兴研究领域的发展趋势进行了展望。 展开更多
关键词 硅基太阳能电池 敏化太阳能电池 钙钛矿太阳能电池 能量储存 光伏储能 原位集成 综述
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磁-电-弹性半空间在轴对称热载荷作用下的三维问题研究 被引量:1
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作者 胡克强 高存法 +1 位作者 仲政 Chen Zengtao 《力学学报》 EI CSCD 北大核心 2020年第5期1235-1244,I0001,共11页
考虑力-电-磁-热等多场耦合作用,基于线性理论给出了磁-电-弹性半空间在表面轴对称温度载荷作用下的热-磁-电-弹性分析,并得到了问题的解析解.利用Hankel积分变换法求解了磁-电-弹性材料中的热传导及控制方程,讨论了在磁-电-弹性半空间... 考虑力-电-磁-热等多场耦合作用,基于线性理论给出了磁-电-弹性半空间在表面轴对称温度载荷作用下的热-磁-电-弹性分析,并得到了问题的解析解.利用Hankel积分变换法求解了磁-电-弹性材料中的热传导及控制方程,讨论了在磁-电-弹性半空间在边界表面上作用局部热载荷时的混合边值问题,利用积分变换和积分方程技术,通过在边界表面上施加应力自由及磁-电开路条件,推导得到了磁-电-弹性半空间中位移、电势及磁势的积分形式的表达式.获得了磁-电-弹性半空间中温度场的解析表达式并且给出了应力,电位移和磁通量的解析解.数值计算结果表明温度载荷对磁-电-弹性场的分布有显著影响.当温度载荷作用的圆域半径增大时,最大正应力发生的位置会远离半无限大体的边界;反之当温度载荷作用的圆域半径减小时,最大应力发生的位置会靠近半无限大体的边界.电场和磁场在温度载荷作用的圆域内在边界表面附近有明显的强化,而磁-电-弹性场强化区域的强化程度跟温度载荷的大小和作用区域大小相关.本研究的相关结果对智能材料和结构在热载荷作用下的设计和制造具有指导意义. 展开更多
关键词 磁-电-弹性材料 轴对称温度载荷 HANKEL变换 热传导 磁-电-弹性场
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Three-Dimensional Thermal-Stress Analysis of Semi-infinite Transversely Isotropic Composites
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作者 TOKOVYY Yuriy BOIKO Dmytro gao cunfa 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第1期18-28,共11页
By making use of the direct integration method,an exact analysis of the general three-dimensional thermoelasticity problem is performed for the case of a transversely isotropic homogeneous half-space subject to local ... By making use of the direct integration method,an exact analysis of the general three-dimensional thermoelasticity problem is performed for the case of a transversely isotropic homogeneous half-space subject to local thermal and force loadings.The material plane of isotropy is assumed to be parallel to the limiting surface of the halfspace.By reducing the original thermoelasticity equations to the governing ones for individual stress-tensor components,the effect of material anisotropy in the stress field is analyzed with regard to the feasibility requirement,i.e.,the finiteness of the stress field at a distance from the disturbed area.As a result,the solution is constructed in the form of explicit analytical dependencies on the force and thermal loadings for various kinds of transversely isotropic materials and agrees with the basic principles of the continua mechanics.The solution can be efficiently used as a benchmark one for the direct computation of temperature and thermal stresses in transversely isotropic semi-infinite domains,as well as for the verification of solutions constructed by different means. 展开更多
关键词 three-dimensional problem analytical solution transversely isotropic composites semi-infinite model force and thermal loadings finite stress distributions
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Stress concentration in a finite functionally graded material plate 被引量:3
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作者 YANG QuanQuan gao cunfa CHEN WenTao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第7期1263-1271,共9页
This paper is to study the two-dimensional stress distribution of a finite functionally graded material (FGM) plate with a circular hole under arbitrary constant loads. Using the method of piece-wise homogeneous layer... This paper is to study the two-dimensional stress distribution of a finite functionally graded material (FGM) plate with a circular hole under arbitrary constant loads. Using the method of piece-wise homogeneous layers, the stress analysis of the finite FGM plate having radial arbitrary elastic properties is made based on the complex variable method combined with the least square boundary collocation technique. Numerical results of stress distribution around the hole are then presented for different loading conditions, different material properties and different plate sizes, respectively. It is shown that the stress concentration in the finite plate is generally enhanced compared with the case of an infinite plate, but it can be significantly reduced by choosing proper change ways of the radial elastic modulus. 展开更多
关键词 functionally graded material f'mite plate circular hole stress concentration
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Thermal stresses around a circular inclusion with functionally graded interphase in a finite matrix 被引量:1
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作者 YANG QuanQuan gao cunfa 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第10期1927-1933,共7页
Based on the theory of the complex variable functions, the analysis of non-axisymmetric thermal stresses in a finite matrix containing a circular inclusion with functionally graded interphase is presented by means of ... Based on the theory of the complex variable functions, the analysis of non-axisymmetric thermal stresses in a finite matrix containing a circular inclusion with functionally graded interphase is presented by means of the least square boundary collocation technique. The distribution of thermal stress for the functionally graded interphase layer with arbitrary radial material parameters is derived by using the method of piece-wise homogeneous layers when the finite matrix is subjected to uniform heat flow. The effects of matrix size, interphase thickness and compositional gradient on the interfacial thermal stress are discussed in detail. Numerical results show that the magnitude and distribution of interfacial thermal stress in the inclusion and matrix can be designed properly by controlling these parameters. 展开更多
关键词 thermal stress functionally graded interphase INCLUSION finite matrix
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