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A state-of-the-art review on low-frequency nonlinear vibration isolation with electromagnetic mechanisms 被引量:4
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作者 Bo YAN Ning YU Chuanyu WU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2022年第7期1045-1062,共18页
Vibration isolation is one of the most efficient approaches to protecting host structures from harmful vibrations,especially in aerospace,mechanical,and architectural engineering,etc.Traditional linear vibration isola... Vibration isolation is one of the most efficient approaches to protecting host structures from harmful vibrations,especially in aerospace,mechanical,and architectural engineering,etc.Traditional linear vibration isolation is hard to meet the requirements of the loading capacity and isolation band simultaneously,which limits further engineering application,especially in the low-frequency range.In recent twenty years,the nonlinear vibration isolation technology has been widely investigated to broaden the vibration isolation band by exploiting beneficial nonlinearities.One of the most widely studied objects is the"three-spring"configured quasi-zero-stiffness(QZS)vibration isolator,which can realize the negative stiffness and high-static-low-dynamic stiffness(HSLDS)characteristics.The nonlinear vibration isolation with QZS can overcome the drawbacks of the linear one to achieve a better broadband vibration isolation performance.Due to the characteristics of fast response,strong stroke,nonlinearities,easy control,and low-cost,the nonlinear vibration with electromagnetic mechanisms has attracted attention.In this review,we focus on the basic theory,design methodology,nonlinear damping mechanism,and active control of electromagnetic QZS vibration isolators.Furthermore,we provide perspectives for further studies with electromagnetic devices to realize high-efficiency vibration isolation. 展开更多
关键词 quasi-zero-stiffness(QZS) nonlinear vibration isolation LOW-FREQUENCY electromagnetic vibration isolation BISTABLE
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Solidification structure of eutectic Al-Si alloy under a high magnetic field-aid-electromagnetic vibration 被引量:4
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作者 Jianbo YU Zhongming REN Weili REN Kang DENG Yunbo ZHONG 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2009年第3期191-196,共6页
An electromagnetic vibration was generated by simultaneously imposing a strong static magnetic field (up to 10 T) and an alternative electricity current to the metal. Its effects on the solidification structure of e... An electromagnetic vibration was generated by simultaneously imposing a strong static magnetic field (up to 10 T) and an alternative electricity current to the metal. Its effects on the solidification structure of eutectic Al-Si alloy have been investigated experimentally. It is found that the eutectic structure has been refined by solely imposing high magnetic field while it is coarsened under the electromagnetic vibration. Furthermore, polyhedral Si grains and non-dendritic α-Al appeared when the electromagnetic vibration strength was strong enough. The refining of eutectic structure is attributed to the decrease of diffusion coefficient caused by the strong magnetic field. The coarseness of eutectic structure may be attributed to the convection caused by electromagnetic vibration. Strong convection may break co-operative growth of eutectic phases to form polyhedral Si grains and non-dendritic α-Al. 展开更多
关键词 Strong magnetic field Electromagnetic vibration Eutectic solidification Polyhedral Si Al-Si alloy
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Reduction of Cogging Torque and Electromagnetic Vibration Based on Different Combination of Pole Arc Coefficient for Interior Permanent Magnet Synchronous Machine 被引量:7
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作者 Feng Liu Xiuhe Wang +2 位作者 Zezhi Xing Aiguo Yu Changbin Li 《CES Transactions on Electrical Machines and Systems》 CSCD 2021年第4期291-300,共10页
Cogging torque and electromagnetic vibration are two important factors for evaluating permanent magnet synchronous machine(PMSM)and are key issues that must be considered and resolved in the design and manufacture of ... Cogging torque and electromagnetic vibration are two important factors for evaluating permanent magnet synchronous machine(PMSM)and are key issues that must be considered and resolved in the design and manufacture of high-performance PMSM for electric vehicles.A fast and accurate magnetic field calculation model for interior permanent magnet synchronous machine(IPMSM)is proposed in this article.Based on the traditional magnetic potential permeance method,the stator cogging effect and complex boundary conditions of the IPMSM can be fully considered in this model,so as to realize the rapid calculation of equivalent magnetomotive force(MMF),air gap permeance,and other key electromagnetic properties.In this article,a 6-pole 36-slot IPMSM is taken as an example to establish its equivalent solution model,thereby the cogging torque is accurately calculated.And the validity of this model is verified by a variety of different magnetic pole structures,pole slot combinations machines,and prototype experiments.In addition,the improvement measure of the machine with different combination of pole arc coefficient is also studied based on this model.Cogging torque and electromagnetic vibration can be effectively weakened.Combined with the finite element model and multi-physics coupling model,the electromagnetic characteristics and vibration performance of this machine are comprehensively compared and analyzed.The analysis results have well verified its effectiveness.It can be extended to other structures or types of PMSM and has very important practical value and research significance. 展开更多
关键词 Cogging torque different combination of pole arc coefficient electromagnetic vibration interior permanent magnet synchronous machine
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Vibration harmonic suppression technology for electromagnetic vibrators based on an improved sensorless feedback control method
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作者 Wei LI Junning CUI +1 位作者 Xingyuan BIAN Limin ZOU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2024年第3期472-483,共12页
To realize low harmonic distortion of the vibration waveform output from electromagnetic vibrators,we propose a vibration harmonic suppression technology based on an improved sensorless feedback control method.Without... To realize low harmonic distortion of the vibration waveform output from electromagnetic vibrators,we propose a vibration harmonic suppression technology based on an improved sensorless feedback control method.Without changing the original driving circuit,the alternating current(AC)equivalent resistance of the driving coil is used to obtain high-precision vibration velocity information,and then a simple and reliable velocity feedback control system is established.Through the study of the effect of different values of key parameters on the system,we have achieved an effective expansion of the velocity characteristic frequency band of low-frequency vibration,resulting in an enhanced harmonic suppression capability of velocity feedback control.We present extensive experiments to prove the effectiveness of the proposed method and make comparisons with conventional control methods.In the frequency range of 0.01-1.00 Hz,without using any sensors,the method proposed in this study can reduce the harmonic distortion of the vibration waveform by about 40%compared to open-loop control and by about 20%compared to a conventional sensorless feedback control method. 展开更多
关键词 vibration calibration Electromagnetic vibrators Harmonic suppression Sensorless control method Velocity feedback control
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LFEC and LFEVC of AZ80 magnesium alloy 被引量:1
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作者 LE Qichi,CUI Jianzhong,ZHANG Zhiqiang,and GUO Shijie Key Laboratory of EPM,Northeastern University,Shenyang 110004,China 《Rare Metals》 SCIE EI CAS CSCD 2007年第S1期109-114,共6页
The effects of a low frequency electromagnetic field and a low frequency electromagnetic vibration field applied during DC casting of AZ80 Mg on microstructures and alloying element distribution in ingots were investi... The effects of a low frequency electromagnetic field and a low frequency electromagnetic vibration field applied during DC casting of AZ80 Mg on microstructures and alloying element distribution in ingots were investigated.The experiments were performed both in absence and in the presence of the magnetic fields.In DC casting,the ingot exhibited coarse microstructure and severe segregation of Al.In the presence of solo low frequency alternating magnetic field,namely LFEC,the grains of the ingot was effectively refined and the segregation of Al was significantly decreased.In LFEVC,namely low frequency electromagnetic vibration casting,the ingot were significantly refined and the segregation was suppressed.With increasing the vibration intensities,the grain refinement and segregation suppression were increased. 展开更多
关键词 DC casting low frequency electromagnetic casting(LFEC) low frequency electromagnetic vibration(LFEVC) MICROSTRUCTURES SEGREGATION
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High-density stacked microcoils integrated microminiaturized electromagnetic vibration energy harvester for self-powered acceleration sensing
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作者 HOU XiaoJuan ZHANG RuoYang +6 位作者 BI XiaoXue ZHAO HuiPeng ZHANG Jie ZHU Jie GENG WenPing HE Jian CHOU XiuJian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第12期3369-3380,共12页
With the rapid development of microelectronics and flexible electronics technology,self-powered sensors have significant application prospects in human-machine interface systems and Internet of Things.However,piezoele... With the rapid development of microelectronics and flexible electronics technology,self-powered sensors have significant application prospects in human-machine interface systems and Internet of Things.However,piezoelectric-and triboelectricbased sensors have low current output and are easily affected,while electromagnetic-based sensors are difficult to miniaturize.This work proposes a high-density stacked microcoil integrated microminiaturized electromagnetic vibration energy harvester(EVEH).The double-layer high-density microcoil is fabricated on both sides of the flexible polyimide substrate interconnected via the central through-hole.Owing to reduced single coil line width,line spacing,and stacked structure,the number of turns can be substantially enhanced.Moreover,the relative position of the coils and magnet has a considerable influence on the performances;due to the huge change rate in magnetic flux when the coil is placed in the radial direction of the magnet than in the axial direction,the open-circuit voltage in the radial direction is 10 times greater.The microcoil can maintain good performance at high,low temperatures and under bending conditions.When the distance between the ends of the coil changes from 2 to 20 mm in 2 mm steps,the bending angle of the coil changes from 45°to 270°in 45°steps;furthermore,when the coil is exposed to-40and 60℃conditions,the coil resistance is maintained at approximately 447Ω.The peak open-circuit voltage of three-piece microcoils reaches 0.41 V at 4 Hz under 2g,and the output voltage and current increase with an increasing number of stacked layers.These excellent properties indicate that EVEH can be used for self-powered acceleration sensing.The sensitivity is measured to be 0.016 V/(m/s^(2))with a correlation coefficient of 0.979 over the acceleration range of 1–18 m/s^(2).Thus,the developed microminiaturized EVEH has enormous potential for self-powered sensing applications in confined spaces and harsh environments. 展开更多
关键词 electromagnetic vibration energy harvester axial direction radial direction high-density stacked microcoils acceleration sensor
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Refinement and migrating behaviors in Al-Si hypereutectic alloys solidified under electromagnetic vibration 被引量:2
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作者 Jianbo YU Zhongming REN Kan9 DENG 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2011年第4期301-308,共8页
The effects of electromagnetic vibration (EMV) on the refinement and migration of primary silicons in the A1-18 wt pct Si alloy were investigated systematically. It was found that EMV could effectively refine primar... The effects of electromagnetic vibration (EMV) on the refinement and migration of primary silicons in the A1-18 wt pct Si alloy were investigated systematically. It was found that EMV could effectively refine primary silicons. The equivalent diameter of primary silicon first decreases slowly with the current increasing from 1 A to 3 A, but then drops rapidly between 3 A and 10 A, next gradually decreases with increasing current intensity. When the EMV intensity was low, the primary silicons were agglomerated and expelled to the top of a sample, the segregation of silicon grains gradually decreased and the agglomerating phenomena disappeared with the increase of EMV intensity, and the star-like coarse primary silicons turned refined flake or square morphology. The refinement and migration of primary silicons depended on the Lorentz force, gravity and the effective viscous force. 展开更多
关键词 High magnetic field Electromagnetic vibration HypereutecticAl-Si alloys Primary silicon REFINEMENT Migrating
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Parametric Modeling of Electromagnetically Induced Vibration Processes Occurring Within Induction Systems 被引量:1
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作者 PETRYKOWSKI John C. SHI Yinghui 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S2期709-712,共4页
A continuum based model is presented which identifies a favorable set of operational conditions whereby an effective and efficient electromagnetically induced vibratory motion can proceed within an induction system.Sp... A continuum based model is presented which identifies a favorable set of operational conditions whereby an effective and efficient electromagnetically induced vibratory motion can proceed within an induction system.Specifically, an analytical assessment is presented for the electromagnetic field and the electromagnetically induced acoustic field, with parametric factors incorporated into the model to permit a normal modes solution for the acoustic field which here is sensitive to the compliance of both the molten metal and the wall,as well as electromagnetic properties of the metal.A parametric analysis is presented which identifies the importance of matching the mechanical impedances of the melt-wall configuration so that the generation of acoustic energy within the melt system can be more effectively utilized.Relatively straight-forward calculations,presented for the acoustic field,may provide a more computationally efficient means for implementing process simulation studies for these systems. 展开更多
关键词 induction systems low-frequency electromagnetic vibrating casting(LFEVC) normal modes
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Effect of Transverse Static Magnetic Field on Droplets Transient and Inclusions Evolution During the Electroslag Remelting Process of GCr15 Ingots 被引量:6
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作者 Qiang Li Yun-Bo Zhong +4 位作者 Chu-Xiong Sun Huai Wang Tian-Xiang Zheng Wei-Li Ren Zhong-Ming Ren 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2018年第12期1311-1316,共6页
The voltage was recorded to investigate the influence of the static magnetic field on droplet evolution during the mag-netically controlled electroslag remelting (MC-ESR) process. MC-ESR experiments were carried out... The voltage was recorded to investigate the influence of the static magnetic field on droplet evolution during the mag-netically controlled electroslag remelting (MC-ESR) process. MC-ESR experiments were carried out under differentremelting current, and transverse static magnetic fields (TSMF) of 85 mT, 130 mT and 160 mT were superimposed.Statistical work was performed to obtain the quantitative data of the droplets. The ASPEX Explorer was utilized toinvestigate the inclusions evolution of GCr15 ingots. The number of the droplets was 31 in 20 s during the traditional ESRprocess and reached 50 and 51 under the MC-ESR process with the TSMF of 85 mT and 130 mT, respectively. Whencompared the traditional ESR process with the MC-ESR process, the inclusions amount reduced 67%. 展开更多
关键词 Electroslag remelting Static magnetic field Droplet transient Inclusions evolution Electromagnetic vibration effect
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Study on the Electroslag Remelting of Bearing Steel in Static Magnetic Field 被引量:1
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作者 FENG Mei-long ZHONG Yun-bo +4 位作者 WU Qiu-fang CHEN Guang LEI Zuo-sheng REN Wei-li REN Zhong-ming 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S1期363-368,共6页
The Electroslag Remelting(ESR)Process has been developed quickly in recent years for its productions of excellent metal ingots with high purity,compact structure,homogeneous composition and clean surface.However,some ... The Electroslag Remelting(ESR)Process has been developed quickly in recent years for its productions of excellent metal ingots with high purity,compact structure,homogeneous composition and clean surface.However,some problems in traditional ESR process still exist,for example the nonmetallic inclusions,coarse dendrite crystal and solute segregation in large-scale ESR etc.In this study we combine the ESR process with electromagnetic processing of materials(EPM)process in GCr15 steel under conditions of 400-700 amps current.The microstructure and inclusions analysis showed that,the inner structure of ingots is compact and homogeneous and no remarkable inclusions appear when superimposing static magnetic field simultaneously.Refined branch grain size,homogeneous distribution of solute, decreased concentration of inclusions and impurities and elevated hardness also could be achieved.ESR process under steady magnetic field makes melt pool planer when compared with that without magnetic field,which would be explained by the electromagnetic vibration refined metal melting drops and the temperature field in the pool is uniformity. 展开更多
关键词 ESR steady magnetic field electromagnetic vibration refined droplet refined grain
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Quasi-Steady Vibratory Motion Within an Inductively Heated Cylindrically-Shaped Liquid Volume
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作者 SHI Yinghui PETRYKOWSKI John C. 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S2期739-742,共4页
The motion of an inductively heated fluid volume of cylindrical shape is assessed based on time dependent oscillatory components of the Lorentz force.The applications considered include vibratory motion in a channel i... The motion of an inductively heated fluid volume of cylindrical shape is assessed based on time dependent oscillatory components of the Lorentz force.The applications considered include vibratory motion in a channel induction furnace and vibratory motion in an electromagnetically excited direct chill casting.The governing equations for the resulting magnetoacoustic problem are presented with the acoustic field solutions expressed in terms of normal modes. Closed form expressions are developed for the velocity,pressure and phase relationships between the excitation and the response.Calculations are prescribed for the pressure in both the channel furnace and the direct chill casting,with the calculational results from the casting application suggesting that,roughly,a two-fold increase in the effective peak acoustic pressure can be achieved by superimposing on the AC electromagnetic field a DC magnetic field of strength sufficient to match the peak alternating magnetic field.A procedure is also outlined for developing field descriptions of the velocity and pressure which can be effected in a MATLAB environ. 展开更多
关键词 induction systems low-frequency electromagnetic vibrating casting(LFEVC) normal modes
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