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STABILITY ANALYSIS OF A CAPACITIVE FGM MICRO-BEAM USING MODIFIED COUPLE STRESS THEORY 被引量:4
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作者 Behrokh Abbasnejad Ghader Rezazadeh Rasool Shabani 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2013年第4期427-440,共14页
Based on the Modified Couple Stress Theory,a functionally graded micro-beam under electrostatic forces is studied.The FGM micro-beam is made of two materials and material properties vary continuously along the beam th... Based on the Modified Couple Stress Theory,a functionally graded micro-beam under electrostatic forces is studied.The FGM micro-beam is made of two materials and material properties vary continuously along the beam thickness according to a power-law.Dynamic and static pull-in voltages are obtained and it is shown that the static and dynamic pull-in voltages for some materials cannot be obtained using classic theories and components of couple stress must be taken into account.In addition,it is shown that the values of pull-in voltages depend on the variation through the thickness of the volume fractions of the two constituents. 展开更多
关键词 MEMS FGM micro-beam stability pull-in voltage electrostatic pressure modified couple stress theory
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Coupled vibrations and frequency shift of compound system consisting of quartz crystal resonator in thickness-shear motions and micro-beam array immersed in liquid 被引量:3
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作者 Xuan XIE Lingcheng KONG +2 位作者 Yuxi WANG Jun ZHANG Yuantai HU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2015年第2期225-232,共8页
The dynamic characteristics of a quartz crystal resonator(QCR) in thicknessshear modes(TSM) with the upper surface covered by an array of micro-beams immersed in liquid are studied. The liquid is assumed to be inv... The dynamic characteristics of a quartz crystal resonator(QCR) in thicknessshear modes(TSM) with the upper surface covered by an array of micro-beams immersed in liquid are studied. The liquid is assumed to be inviscid and incompressible for simplicity. Dynamic equations of the coupled system are established. The added mass effect of liquid on micro-beams is discussed in detail. Characteristics of frequency shift are clarified for different liquid depths. Modal analysis shows that a drag effect of liquid has resulted in the change of phase of interaction(surface shear force), thus changing the system resonant frequency. The obtained results are useful in resonator design and applications. 展开更多
关键词 quartz crystal resonator(QCR) micro-beam modal analysis frequency shift added mass of liquid
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Vibration and wave propagation analysis of twisted micro-beam using strain gradient theory 被引量:3
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作者 M.MOHAMMADIMEHR M.J.FARAHI S.ALIMIRZAEI 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2016年第10期1375-1392,共18页
In this research, vibration and wave propagation analysis of a twisted micro- beam on Pasternak foundation is investigated. The strain-displacement relations (kine-matic equations) are calculated by the displacement... In this research, vibration and wave propagation analysis of a twisted micro- beam on Pasternak foundation is investigated. The strain-displacement relations (kine-matic equations) are calculated by the displacement fields of the twisted micro-beam. The strain gradient theory (SGT) is used to implement the size dependent effect at micro-scale. Finally, using an energy method and Hamilton's principle, the governing equations of motion for the twisted micro-beam are derived. Natural frequencies and the wave prop- agation speed of the twisted micro-beam are calculated with an analytical method. Also, the natural frequency, the phase speed, the cut-off frequency, and the wave number of the twisted micro-beam are obtained by considering three material length scale parameters, the rate of twist angle, the thickness, the length of twisted micro-beam, and the elastic medium. The results of this work indicate that the phase speed in a twisted micro-beam increases with an increase in the rate of twist angle. Moreover, the wave number is in- versely related with the thickness of micro-beam. Meanwhile, it is directly related to the wave propagation frequency. Increasing the rate of twist angle causes the increase in the natural frequency especially with higher thickness. The effect of the twist angle rate on the group velocity is observed at a lower wave propagation frequency. 展开更多
关键词 vibration and wave propagation analysis twisted micro-beam strain gradient theory (SGT) rate of twist angle
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Effect of strain-gradients of surface micro-beams on frequency-shift of a quartz crystal resonator under thickness-shear vibrations 被引量:2
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作者 Ling-Cheng Kong Yuan-Tai Hu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2015年第5期647-652,共6页
With introduction of the first-order strain-gradient of surface micro-beams into the energy density function,we developed a two-dimensional dynamic model for a compound quartz crystal resonator(QCR) system,consistin... With introduction of the first-order strain-gradient of surface micro-beams into the energy density function,we developed a two-dimensional dynamic model for a compound quartz crystal resonator(QCR) system,consisting of a QCR and surface micro-beam arrays.The frequency shift that was induced by micro-beams with consideration of strain-gradients is discussed in detail and some useful results are obtained,which have important significance in resonator design and applications. 展开更多
关键词 micro-beams Strain-gradient Quartz crystal resonator Frequency shift
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Thermoelastic Damping of Functionally Graded Material Micro-Beam Resonators Based on the Modified Couple Stress Theory 被引量:3
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作者 Zhichao Zhang Shirong Liu 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2020年第4期496-507,共12页
Thermoelastic damping(TED)is one of the main internal energy dissipation mechanisms in micro/nano-resonators.Accurate evaluation of TED is important in the design of micro-electromechanical systems and nano-electromec... Thermoelastic damping(TED)is one of the main internal energy dissipation mechanisms in micro/nano-resonators.Accurate evaluation of TED is important in the design of micro-electromechanical systems and nano-electromechanical systems.In this paper,a theoretical analysis on the TED in functionally graded material(FGM)micro-beam resonators is presented.Equations of motion and the heat conduction equation governing the thermodynamic coupling free vibration of non-homogenous micro-beams are established based on the Euler Bernoulli beam theory associated with the modified couple stress theory.Material properties of the FGM micro-beam are assumed to change in the depth direction as power-law functions.The layer-wise homogenization method is used for solving the heat conduction equation.By using the mathematical similarity of eigenvalue problem between the FGM beam and the reference homogeneous one,the complex natural frequency including TED is expressed in terms of the natural frequency of the isothermal homogenous beam.In the presented numerical results,influences of various characteristic parameters,such as beam thickness,material gradient index,structure size,vibration mode and boundary conditions,on TED are examined in detail.It shows that TED decreases with the increases in the values of length scale parameters because the latter lead to the increase in structural stiffness. 展开更多
关键词 Functionally graded material Size dependent Thermoelastic damping micro-beam
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Size-dependent thermoelastic initially stressed micro-beam due to a varying temperature in the light of the modified couple stress theory 被引量:2
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作者 A.E.ABOUELREGAL 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2020年第12期1805-1820,共16页
The bending of the Euler-Bernoulli micro-beam has been extensively modeled based on the modified couple stress(MCS)theory.Although many models have been incorporated into the literature,there is still room for introdu... The bending of the Euler-Bernoulli micro-beam has been extensively modeled based on the modified couple stress(MCS)theory.Although many models have been incorporated into the literature,there is still room for introducing an improved model in this context.In this work,we investigate the thermoelastic vibration of a micro-beam exposed to a varying temperature due to the application of the initial stress employing the MCS theory and generalized thermoelasticity.The MCS theory is used to investigate the material length scale effects.Using the Laplace transform,the temperature,deflection,displacement,flexure moment,and stress field variables of the micro-beam are derived.The effects of the temperature pulse and couple stress on the field distributions of the micro-beam are obtained numerically and graphically introduced.The numerical results indicate that the temperature pulse and couple stress have a significant effect on all field variables. 展开更多
关键词 THERMOELECTRICITY micro-beam initial stress temperature pulse modified couple stress(MCS)theory
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Transverse shear and normal deformation effects on vibration behaviors of functionally graded micro-beams 被引量:2
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作者 Zhu SU Lifeng WANG +1 位作者 Kaipeng SUN Jie SUN 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2020年第9期1303-1320,共18页
A quasi-three dimensional model is proposed for the vibration analysis of functionally graded(FG)micro-beams with general boundary conditions based on the modified strain gradient theory.To consider the effects of tra... A quasi-three dimensional model is proposed for the vibration analysis of functionally graded(FG)micro-beams with general boundary conditions based on the modified strain gradient theory.To consider the effects of transverse shear and nor-mal deformations,a general displacement field is achieved by relaxing the assumption of the constant transverse displacement through the thickness.The conventional beam theories including the classical beam theory,the first-order beam theory,and the higher-order beam theory are regarded as the special cases of this model.The material proper-ties changing gradually along the thickness direction are calculated by the Mori-Tanaka scheme.The energy-based formulation is derived by a variational method integrated with the penalty function method,where the Chebyshev orthogonal polynomials are used as the basis function of the displacement variables.The formulation is validated by some comparative examples,and then the parametric studies are conducted to investigate the effects of transverse shear and normal deformations on vibration behaviors. 展开更多
关键词 quasi-three dimensional theory modified strain gradient theory function-ally graded(FG)micro-beam size effect vibration general boundary condition
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Instability of functionally graded micro-beams via micro-structure-dependent beam theory 被引量:1
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作者 Xiaobai LI Li LI Yujin HU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2018年第7期923-952,共30页
This paper focuses on the buckling behaviors of a micro-scaled bi-directional functionally graded (FG) beam with a rectangular cross-section, which is now widely used in fabricating components of micro-nano-electro-... This paper focuses on the buckling behaviors of a micro-scaled bi-directional functionally graded (FG) beam with a rectangular cross-section, which is now widely used in fabricating components of micro-nano-electro-mechanical systems (MEMS/NEMS) with a wide range of aspect ratios. Based on the modified couple stress theory and the principle of minimum potential energy, the governing equations and boundary conditions for a micro-structure-dependent beam theory are derived. The present beam theory incorporates different kinds of higher-order shear assumptions as well as the two familiar beam theories, namely, the Euler-Bernoulli and Timoshenko beam theories. A numerical solu- tion procedure, based on a generalized differential quadrature method (GDQM), is used to calculate the results of the bi-directional FG beams. The effects of the two exponential FG indexes, the higher-order shear deformations, the length scale parameter, the geomet- ric dimensions, and the different boundary conditions on the critical buckling loads are studied in detail, by assuming that Young's modulus obeys an exponential distribution function in both length and thickness directions. To reach the desired critical buckling load, the appropriate exponential FG indexes and geometric shape of micro-beams can be designed according to the proposed theory. 展开更多
关键词 bi-directional functionally graded(FG)material BUCKLING modified couplestress theory micro-beam
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Size-dependent behaviors of viscoelastic axially functionally graded Timoshenko micro-beam considering Poisson effects 被引量:1
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作者 Zhou Bo Zheng Xueyao +1 位作者 Kang Zetian Xue Shifeng 《Journal of Southeast University(English Edition)》 EI CAS 2020年第2期170-180,共11页
A size-dependent continuum-based model is developed for the functionally graded(FG)Timoshenko micro-beams with viscoelastic properties,in which material parameters vary according to the power law along its axial direc... A size-dependent continuum-based model is developed for the functionally graded(FG)Timoshenko micro-beams with viscoelastic properties,in which material parameters vary according to the power law along its axial direction.The size effect is incorporated by employing the modified couple stress theory and Kelvin-Voigt viscoelastic model,so that viscous components are included in the stress and the deviatoric segments of the symmetric couple stress tensors.The components of strain,curvature,stress and couple stress are formulated by combining them with the Timoshenko beam theory.Based on the Hamilton principle,the governing differential equations and boundary conditions for the micro-beam are expressed with arbitrary beam section shape and arbitrary type of loads.The size effect,FG effect,Poisson effect,and the influence of the beam section shape on the mechanical behaviors of viscoelastic FG micro-beams are investigated by taking the simply supported micro-beam subjected to point load as an example.Results show that the size effect on deflection,normal stress and couple stress are obvious when the size of the micro-beam is small enough,and the FG effects are obvious when the size of the micro-beam is large enough.Moreover,the Poisson ratio influences the size effect significantly and the beam section shape is also an important factor influencing the mechanical behavior of the micro-beam. 展开更多
关键词 viscoelastic functionally graded micro-beam size-dependent behaviors size effect functionally graded effect Poisson effect space
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Influence of surface micro-beams with large deflection on the resonance frequency of a quartz crystal resonator in thickness-shear mode vibrations 被引量:1
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作者 Chi Luo Jiemin Xie Yuantai Hu 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第2期72-75,共4页
We study the dynamic behavior of a quartz crystal resonator (QCR) in thickness-shear vibrations with the upper surface covered by an array of micro-beams (MBs) under large deflection. Through taking into account t... We study the dynamic behavior of a quartz crystal resonator (QCR) in thickness-shear vibrations with the upper surface covered by an array of micro-beams (MBs) under large deflection. Through taking into account the continuous conditions of shear force and bending moment at the interface of MBs/resonator, dependences of frequency shift of the compound QCR system versus material parameter and geometrical parameter are illustrated in detail for nonlinear and linear vibrations. It is found that the frequency shift produces a little right (left) translation for increasing elastic modulus (length/radius ratio) of MBs. Moreover, the frequency right (left) translation distance caused by nonlinear deformation becomes more serious in the second-order mode than in the first-order one, 展开更多
关键词 Quartz crystal resonator Nonlinear deformation micro-beams Frequency shift
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Peridynamic Shell Model Based on Micro-Beam Bond
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作者 Guojun Zheng Zhaomin Yan +2 位作者 Yang Xia Ping Hu Guozhe Shen 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第3期1975-1995,共21页
Peridynamics(PD)is a non-localmechanics theory that overcomes the limitations of classical continuummechanics(CCM)in predicting the initiation and propagation of cracks.However,the calculation efficiency of PDmodels i... Peridynamics(PD)is a non-localmechanics theory that overcomes the limitations of classical continuummechanics(CCM)in predicting the initiation and propagation of cracks.However,the calculation efficiency of PDmodels is generally lower than that of the traditional finite elementmethod(FEM).Structural idealization can greatly improve the calculation efficiency of PD models for complex structures.This study presents a PD shell model based on the micro-beam bond via the homogenization assumption.First,the deformations of each endpoint of themicro-beam bond are calculated through the interpolation method.Second,the micro-potential energy of the axial,torsional,and bending deformations of the bond can be established from the deformations of endpoints.Finally,the micro moduli of the shellmodel can be obtained via the equivalence principle of strain energy density(SED).In addition,a new fracture criterion based on the SED of the micro-beam bond is adopted for crack simulation.Numerical examples of crack propagation are provided,and the results demonstrate the effectiveness of the proposed PD shell model. 展开更多
关键词 PERIDYNAMICS SHELL micro-beam bond interpolation method crack propagation HOMOGENIZATION
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Effects of local thickness defects on the buckling of micro-beam
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作者 Andi LAI Bing ZHAO +1 位作者 Xulong PENG Chengyun LONG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2022年第5期729-742,共14页
A buckling model of Timoshenko micro-beam with local thickness defects is established based on a modified gradient elasticity.By introducing the local thickness defects function of the micro-beam,the variable coeffici... A buckling model of Timoshenko micro-beam with local thickness defects is established based on a modified gradient elasticity.By introducing the local thickness defects function of the micro-beam,the variable coefficient differential equations of the buckling problem are obtained with the variational principle.Combining the eigensolution series of the complete micro-beam with the Galerkin method,we obtain the critical load and buckling modes of the micro-beam with defects.The results show that the depth and location of the defect are the main factors affecting the critical load,and the combined effect of boundary conditions and defects can significantly change the buckling mode of the micro-beam.The effect of defect location on buckling is related to the axial gradient of the rotation angle,and defects should be avoided at the maximum axial gradient of the rotation angle.The model and method are also applicable to the static deformation and vibration of the micro-beam. 展开更多
关键词 Timoshenko micro-beam local thickness defect modified gradient elasticity BUCKLING
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Modeling size-dependent behaviors of axially functionally graded Bernoulli-Euler micro-beam
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作者 Shuai WANG Zetian KANG +2 位作者 Shichen ZHOU Bo ZHOU Shifeng XUE 《Mechanical Engineering Science》 2020年第1期17-29,共13页
This work focus on the mechanical behaviors,which are related to the size effect,functionally graded(FG)effect and Poisson effect,of an axially functionally graded(AFG)micro-beam whose elastic modulus varies according... This work focus on the mechanical behaviors,which are related to the size effect,functionally graded(FG)effect and Poisson effect,of an axially functionally graded(AFG)micro-beam whose elastic modulus varies according to sinusoidal law along its axial direction.The displacement field of the AFG micro-beam is set according to the Bernoulli-Euler beam theory.Employing the modified couple stress theory(MCST),the components of strain,curvature,stress and couple stress are expressed by the second derivative of the deflection of the AFG micro-beam.A size-dependent model related to FG effect and Poisson effect,which includes the formulations of bending stiffness,deflection,normal stress and couple stress,is developed to predict the mechanical behaviors of the AFG microbeam by employing the principle of minimum potential energy.The mechanical behaviors of a simply supported AFG micro-beam are numerically investigated using the developed model for demonstrating the size effects,FG effects and Poisson effects of the AFG micro-beam.Results show that the mechanical behaviors of AFG micro-beams are distinctly size-dependent only when the ratio of micro-beam height to material length-scale parameter is small enough.The FG parameter is an important factor that determines and regulates the size-dependent behaviors of AFG micro-beams.The influences of Poisson’s ratio on the mechanical behaviors of AFG micro-beams are not negligible,and should be also considered in the design and analysis of an AFG micro-beam.This work supplies a theoretical basis and a technical reference for the design and analysis of AFG micro-beams in the related regions. 展开更多
关键词 axially functionally graded micro-beam size-dependent behaviors size effect functionally graded effect Poisson effect
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Analytic solution for size-dependent behaviors of micro-beam under forced vibration
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作者 Shuai WANG Zhiyong WANG +2 位作者 Feifei WANG Bo ZHOU Shifeng XUE 《Mechanical Engineering Science》 2020年第1期48-58,共11页
This paper focuses on the size-dependently mechanical behaviors of a micro-beam under forced vibration.Governing equations of a micro-beam under forced vibration are established by using the modified couple stress the... This paper focuses on the size-dependently mechanical behaviors of a micro-beam under forced vibration.Governing equations of a micro-beam under forced vibration are established by using the modified couple stress theory,Bernoulli-Euler beam theory and D’Alembert’s principle together.A simply supported micro-beam under forced vibration is solved according to the established governing equations and the method of separation of variables.The dimensionless deflection,amplitude mode and period mode are defined to investigate the size-dependently mechanical behaviors of a micro-beam under forced vibration.Results show that the performance of a micro-beams under forced vibration is distinctly size-dependent when the ratio of micro-beam height to material length-scale parameter is small enough.Both frequency ratio and loading location are the important factors that determine the sizedependent performance of a micro-beams under forced vibration. 展开更多
关键词 micro-beam forced vibration size effect modified couple stress theory Bernoulli-Euler beam theory
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Micro-beam XRF localization by a laser beam
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作者 GUOPanlin WANGJiqing 《Nuclear Science and Techniques》 SCIE CAS CSCD 1999年第4期225-229,共5页
A new method for micro-beam XRF localiztion is presented.A laser beam along with an incident X-ray hits on the surface of a sample.The micro region on the sample that reached by X-ray beam can be localized by means of... A new method for micro-beam XRF localiztion is presented.A laser beam along with an incident X-ray hits on the surface of a sample.The micro region on the sample that reached by X-ray beam can be localized by means of the visible spot of the laser beam.This method is suitable for X-ray microprobes using an X-ray tube or synchrotron radiation as excitation sources. 展开更多
关键词 激光束 λ射线束 化合物分析
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Development of an Intermediate Energy Heavy-Ion Micro-Beam Irradiation System 被引量:3
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作者 宋明涛 盛丽娜 +6 位作者 王志光 何源 高大庆 杨晓天 刘杰 苏弘 满开弟 《Chinese Physics C》 SCIE CAS CSCD 北大核心 2008年第z1期259-261,共3页
The micro-beam irradiation system,which focuses the beam down to micron order and precisely delivers a predefined number of ions to a predefined spot of micron order,is a powerful tool for radio-biology,radio-biomedic... The micro-beam irradiation system,which focuses the beam down to micron order and precisely delivers a predefined number of ions to a predefined spot of micron order,is a powerful tool for radio-biology,radio-biomedicine and micromachining.The Institute of Modern Physics of Chinese Academy of Sciences is developing a heavy-ion micro- beam irradiation system up to intermediate energy.Based on the intermediate and low energy beam provided by Heavy Ion Research Facility of Lanzhou,the micro-beam system takes the form of the magnetic focusing.The heavy-ion beam is conducted to the basement by a symmetrical achromatic system consisting of two vertical bending magnets and a quadrupole in between.Then a beam spot of micron order is formed by a magnetic triplet quadrupole of very high gradient.The sample can be irradiated either in vacuum or in the air.This system will be the first opening platform capable of providing heavy ion micro-beam,ranging from low(10MeV/u)to intermediate energy(100MeV/u), for irradiation experiment with positioning and counting accuracy.Target material may be biology cell,tissue or other non-biological materials.It will be a help for unveiling the essence of heavy-ion interaction with matter and also a new means for exploring the application of heavy-ion irradiation. 展开更多
关键词 heavy ion micro-beam IRRADIATION
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用于道路自供能监测的微变形放大型压电装置设计与测试 被引量:1
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作者 王朝辉 卢强 +2 位作者 王帅 陈逸文 贾小东 《长安大学学报(自然科学版)》 北大核心 2025年第3期1-16,共16页
针对路面微变形与悬臂梁式压电换能器激励位移不匹配、压电装置平面尺寸与道路交通碾压适应性低的问题,设计了可放大内部行程、碾压适应性高的悬臂梁式压电装置。基于偏压工况分析了不同横向尺寸盖板的下沉特性,确定了偏压工况中盖板稳... 针对路面微变形与悬臂梁式压电换能器激励位移不匹配、压电装置平面尺寸与道路交通碾压适应性低的问题,设计了可放大内部行程、碾压适应性高的悬臂梁式压电装置。基于偏压工况分析了不同横向尺寸盖板的下沉特性,确定了偏压工况中盖板稳定下沉的横向尺寸,结合全压工况盖板应力分布及翘曲变形特性,优选了盖板屈曲稳定性高的纵向尺寸;考虑道路变形及车辆碾压频率特性,系统研究了不同加载条件下压电装置的能量输出效果和工作耐久性,并提出了基于该压电装置的自供能型道路传感器监测应用方案。研究结果表明:增加横向尺寸有利于提升装置盖板在车轮偏压时的下沉稳定性,车轮偏压点位超过盖板的3/8时,盖板已完全下沉,盖板横向尺寸为180 mm时盖板与侧板间距相比其他横向尺寸下的离散性更小,盖板侧边下沉平稳;全压工况下,盖板纵横比为0.9~1.1时,盖板角隅区和侧中区的翘曲变形及翘曲应力较小,屈曲稳定性较高;结合不同碾压工况下盖板的力学特性,承载性能稳定的装置平面尺寸为180 mm×180 mm;当激励位移为0.7 mm,激励频率为12 Hz时,压电装置单次作动可稳定输出14 mJ的能量,经10万次循环加载的压电装置输出能量变化率不及1%,电学输出耐久性能良好,布设4个所开发的压电装置即可满足道路传感器监测用电需求。 展开更多
关键词 道路工程 悬臂梁式压电装置 能量收集 微变形放大 监测 设计
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微弧氧化改性对Ti6Al4V合金电子束接头耐蚀性能的影响
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作者 王晓波 俞臻 +7 位作者 胡永辉 吴鹏 梅锦辉 蔡智会 许建平 马英鹤 郑文健 杨建国 《表面技术》 北大核心 2025年第2期106-118,共13页
目的提高Ti6Al4V合金电子束焊接接头耐蚀性能。方法采用电子束焊接方法水平对接获得接头。利用微弧氧化技术对接头进行陶瓷化处理。通过光学显微镜、场发射扫描电子显微镜、X射线衍射仪、电化学腐蚀测试和浸泡腐蚀测试,分别评价未覆膜... 目的提高Ti6Al4V合金电子束焊接接头耐蚀性能。方法采用电子束焊接方法水平对接获得接头。利用微弧氧化技术对接头进行陶瓷化处理。通过光学显微镜、场发射扫描电子显微镜、X射线衍射仪、电化学腐蚀测试和浸泡腐蚀测试,分别评价未覆膜接头及覆膜接头涂层的组织、结构和耐蚀性能。结果与母材相比,焊接接头微观组织发生较大变化,由初生α相与晶间β相混合相转变为针状α'马氏体集束,在晶界周围呈羽毛状分布。对接头与母材进行微弧氧化处理后,接头与母材区域表面特征相似,熔融状凸起较多且分布大小不均匀的微孔。然而,接头涂层孔径与孔隙率较小。与母材涂层相比,接头涂层厚度、完整性和连续性较低。接头涂层与母材涂层的主要组成均为金红石(Rutile)TiO_(2)相和锐钛矿(Anatase)TiO_(2)相。虽然与含涂层母材相比,含涂层接头耐蚀性较低,但其与不含涂层接头相比,自腐蚀电位(E_(corr))提升290mV,自腐蚀电流密度(J_(corr))降低1个数量级,且在2mol/LHCl溶液中浸泡腐蚀速率大幅降低。结论微弧氧化处理可以有效提升接头在中性和酸性溶液中的耐腐蚀性能。 展开更多
关键词 钛合金 电子束焊接 微弧氧化 耐蚀性 微观结构 腐蚀机制
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基于多电感耦合的微纹波电子束焊稳压源设计
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作者 王红 王高钦 方国壮 《计算机仿真》 2025年第2期90-94,共5页
针对传统电子束焊机高压电源输出存在高纹波从而影响焊接质量的问题,提出一种新的基于多电感耦合Boost结构的高压开关电源系统来抑制纹波;对主电路中关键的耦合电感元件,采用磁集成技术,来合理设计耦合电感的耦合参数来达到低纹波的效果... 针对传统电子束焊机高压电源输出存在高纹波从而影响焊接质量的问题,提出一种新的基于多电感耦合Boost结构的高压开关电源系统来抑制纹波;对主电路中关键的耦合电感元件,采用磁集成技术,来合理设计耦合电感的耦合参数来达到低纹波的效果,此外还可以减少体积和降低损耗,提高其可靠性;通过深入的理论分析、并利用SABER和ANSYS软件对主电路和磁集成元件进行建模与仿真验证,结果表明,新的电子束焊机高压电源具有微纹波、高稳压精度和高工作可靠性等特点。 展开更多
关键词 电子束焊 微纹波 耦合电感 磁集成
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基于无网格法的中心刚体-FGM微梁动力学建模和仿真
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作者 杜超凡 徐宁宁 +3 位作者 黎亮 余传斌 章定国 方建士 《力学学报》 北大核心 2025年第10期2432-2445,共14页
采用无网格点插值法和无网格径向基点插值法描述柔性体微梁的变形场,对旋转功能梯度材料(FGM)微梁的动力学特性进行研究.基于修正偶应力理论和刚柔耦合动力学建模理论,在浮动坐标系中描述变形位移,计及由横向弯曲变形所引起的纵向缩短量... 采用无网格点插值法和无网格径向基点插值法描述柔性体微梁的变形场,对旋转功能梯度材料(FGM)微梁的动力学特性进行研究.基于修正偶应力理论和刚柔耦合动力学建模理论,在浮动坐标系中描述变形位移,计及由横向弯曲变形所引起的纵向缩短量,即非线性耦合变形项,在系统动能中保留与之有关的所有高阶量,在系统势能中加入了考虑尺度效应的偶应力张量和曲率张量,利用第二类Lagrange方程,建立了旋转FGM微梁的高次刚柔耦合非线性动力学模型.通过仿真算例,比较了一次近似模型和高次模型的适用范围,同时验证了所建模型的正确性.进一步研究了材料梯度变化、材料特征长度参数变化以及转动规律等因素对旋转微梁瞬态动力学响应和稳态自由振动的影响规律.当梁的厚度减小到与材料的特征长度参数接近时,尺度效应对FGM微梁系统的瞬态动力学响应和稳态自由振动的影响不可忽略.将无网格法的仿真结果与传统有限元法和假设模态法进行比较分析,表明了无网格法作为一种柔性体离散方法在刚柔耦合多体系统动力学的研究中具有可推广性,丰富了柔性多体系统动力学领域的离散方法. 展开更多
关键词 无网格法 功能梯度材料微梁 尺度效应 刚柔耦合动力学
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