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Magnetoelastic combined resonance and stability analysis of a ferromagnetic circular plate in alternating magnetic field 被引量:2
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作者 Yuda HU Bingbing MA 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第7期925-942,共18页
The nonlinear combined resonance problem of a ferromagnetic circular plate in a transverse alternating magnetic field is investigated. On the basis of the deformation potential energy, the strain potential energy, and... The nonlinear combined resonance problem of a ferromagnetic circular plate in a transverse alternating magnetic field is investigated. On the basis of the deformation potential energy, the strain potential energy, and the kinetic energy of the circular plate, the Hamilton principle is used to induce the magnetoelastic coupling transverse vibration dynamical equation of the ferromagnetic circular plate. Based on the basic electromagnetic theory, the expressions of the magnet force and the Lorenz force of the circular plate are presented. A displacement function satisfying clamped-edge combined with the Galerkin method is used to derive the Duffing vibration differential equation of the circular plate. The amplitude-frequency response equations of the system under various combined resonance forms are obtained by means of the multi-scale method, and the stability of the steady-state solutions is analyzed according to the Lyapunov theory. Through examples, the amplitude-frequency characteristic curves with different parameters, the amplitude of resonance varying with magnetic field intensity and excitation force, and the time-course response diagram, phase diagram, Poincar′e diagram of the system vibration are plotted, respectively. The effects of different parameters on the amplitude and stability of the system are discussed. The results show that the electromagnetic parameters have a significant effect on the multi-valued attribute and stability of the resonance solutions, and the system may exhibit complex nonlinear dynamical behavior including multi-period and quasi-periodic motion. 展开更多
关键词 MAGNETOELASTICITY FERROMAGNETIC circular plate COMBINED RESONANCE multi- scale method ALTERNATING magnetic field
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Simultaneous resonance of an axially moving ferromagnetic thin plate under a line load in a time-varying magnetic field
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作者 Xie Mengxue Hu Yuda Xu Haoran 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2023年第4期951-963,共13页
In this paper,the simultaneous resonance of a ferromagnetic thin plate in a time-varying magnetic field,having axial speed and being subjected to a periodic line load,is studied.Based on the large deflection theory of... In this paper,the simultaneous resonance of a ferromagnetic thin plate in a time-varying magnetic field,having axial speed and being subjected to a periodic line load,is studied.Based on the large deflection theory of thin plates and electromagnetic field theory,the nonlinear vibration differential equation of the plate is obtained by using the Hamilton′s principle and the Galerkin method.Then the boundary condition in which the longer opposite sides are clamped and hinged is considered.The dimensionless nonlinear differential equations are solved by using the method of multiple scales,and the analytical solution is given.In addition,the stability analysis is also carried out by using Lyapunov stability theory.Through numerical analysis,the variation curves of system resonance amplitude with frequency tuning parameter,magnetic field strength and external excitation amplitude are obtained.Different parameters that have significant effects on the response of the system,such as the thickness,the axial velocity,the magnetic field intensity,the position,and the frequency of external excitation,are considered and analyzed.The results show that the system has multiple solution regions and obvious nonlinear coupled characteristics. 展开更多
关键词 ferromagnetic thin plate time-varying magnetic field simultaneous resonance axially moving line load
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Controlled thermally-driven mass transport in carbon nanotubes using carbon hoops
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作者 李耀隆 李松远 +1 位作者 王美芬 张任良 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期66-69,共4页
Controlling mass transportation using intrinsic mechanisms is a challenging topic in nanotechnology.Herein,we employ molecular dynamics simulations to investigate the mass transport inside carbon nanotubes(CNT)with te... Controlling mass transportation using intrinsic mechanisms is a challenging topic in nanotechnology.Herein,we employ molecular dynamics simulations to investigate the mass transport inside carbon nanotubes(CNT)with temperature gradients,specifically the effects of adding a static carbon hoop to the outside of a CNT on the transport of a nanomotor inside the CNT.We reveal that the underlying mechanism is the uneven potential energy created by the hoops,i.e.,the hoop outside the CNT forms potential energy barriers or wells that affect mass transport inside the CNT.This fundamental control of directional mass transportation may lead to promising routes for nanoscale actuation and energy conversion. 展开更多
关键词 molecular dynamics thermal drive nanotube hoop mass transport
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Nonlinear Resonance of the Rotating Circular Plate under Static Loads in Magnetic Field 被引量:10
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作者 HU Yuda WANG Tong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第6期1277-1284,共8页
The rotating circular plate is widely used in mechanical engineering, meanwhile the plates are often in the electromagnetic field in modern industry with complex loads. In order to study the resonance of a rotating ci... The rotating circular plate is widely used in mechanical engineering, meanwhile the plates are often in the electromagnetic field in modern industry with complex loads. In order to study the resonance of a rotating circular plate under static loads in magnetic field, the nonlinear vibration equation about the spinning circular plate is derived according to Hamilton principle. The algebraic expression of the initial deflection and the magneto elastic forced disturbance differential equation are obtained through the application of Galerkin integral method. By mean of modified Multiple scale method, the strongly nonlinear amplitude-frequency response equation in steady state is established. The amplitude frequency characteristic curve and the relationship curve of amplitude changing with the static loads and the excitation force of the plate are obtained according to the numerical calculation. The influence of magnetic induction intensity, the speed of rotation and the static loads on the amplitude and the nonlinear characteristics of the spinning plate are analyzed. The proposed research provides the theory reference for the research of nonlinear resonance of rotating plates in engineering. 展开更多
关键词 非线性共振 旋转圆盘 载荷作用 频率特性曲线 非线性振动方程 机械工程 振幅频率 哈密顿原理
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气隙磁场作用平行运动铁磁板磁固耦合动力学模型 被引量:1
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作者 胡宇达 曹天笑 解梦雪 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第10期145-155,共11页
针对壁面电枢激发气隙磁场问题,基于电磁场理论给出气隙域磁势满足的拉普拉斯偏微分方程;根据磁边界条件并应用分离变量法求解二维拉普拉斯方程,得到气隙域磁势通解.基于铁磁薄壁体的磁化力模型和洛伦兹力表述式,考虑电磁本构关系和边... 针对壁面电枢激发气隙磁场问题,基于电磁场理论给出气隙域磁势满足的拉普拉斯偏微分方程;根据磁边界条件并应用分离变量法求解二维拉普拉斯方程,得到气隙域磁势通解.基于铁磁薄壁体的磁化力模型和洛伦兹力表述式,考虑电磁本构关系和边界条件,建立气隙磁场中面内运动软铁磁薄板的电磁力计算模型.考虑几何非线性条件,给出弹性薄板的应变能、动能和力所做功的表达式.根据哈密顿变分原理,建立电枢激发气隙磁场环境中平行运动铁磁性薄板的磁固耦合非线性振动方程组,得出描述系统力、电、磁、速度等多参量相互耦合的动力学理论模型.通过算例,得出气隙磁力作用下条形薄板的主共振特征规律,结果表明:磁势幅值的增大和气隙厚度的减小都会使两个稳定振幅值增大,磁势、气隙和速度量的改变均会使振幅的多解区域范围发生变化.所建模型可为研究复杂电磁场环境中运动结构的多场耦合动力学行为提供理论参考. 展开更多
关键词 拉普拉斯方程 哈密顿变分原理 气隙磁场 非线性振动方程 洛伦兹力 分离变量法 电磁场理论 磁势
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