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Oxygen and hydrogen peroxide self-supplying magnetic nanoenzymes for cancer therapy through magneto-mechanical force,force-induced reactive oxygen species,chemodynamic effects,and cytotoxicity of Ca^(2+) ions
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作者 Jie Liu Wenxuan Yang +6 位作者 Yuqiao Huang Ji Li Chunjiao Zhu Guangjin Pu Bo Wang Xin Gui Maoquan Chu 《Nano Research》 SCIE EI CSCD 2023年第5期7134-7147,共14页
The use of magneto-mechanical force to kill cancer cells has attracted significant attention in recent years.However,many reports have focused on in vitro experiments with a single treatment.Herein,CaO_(2)-coated Fe_(... The use of magneto-mechanical force to kill cancer cells has attracted significant attention in recent years.However,many reports have focused on in vitro experiments with a single treatment.Herein,CaO_(2)-coated Fe_(3)O_(4)core–shell magnetic nanoenzymes(Fe_(3)O_(4)/CaO_(2))are developed for low frequency vibrating magnetic field(VMF)-induced multimodal cancer therapy.Fe_(3)O_(4)/CaO_(2)are shown to efficiently generate O_(2),H_(2)O_(2),·OH through hydrolysis of CaO_(2)and a CaO_(2)-strengthened Fenton reaction,killing laryngeal carcinoma cells and inhibiting mouse tumor growth(chemodynamic therapy(CDT)).Both Fe_(3)O_(4)and Fe_(3)O_(4)/CaO_(2)triggered by a VMF are shown to damage the cytoskeleton of cancer cells through magneto-mechanical force(maxima:223 piconewtons or larger by Fe_(3)O_(4)/CaO_(2)aggregations)and induce the generation of intracellular reactive oxygen species(ROS),the VMF-triggered Fe_(3)O_(4)/CaO_(2)is shown to generate additional intracellular ROS.Upon exposure to a VMF,the cell killing efficiency and tumor growth inhibition were further significantly improved by Fe_(3)O_(4)/CaO_(2)through CDT,magnetomechanical force,force-induced ROS,the cytotoxicity of Ca^(2+)ions.In addition,the Fe_(3)O_(4)/CaO_(2)nanoenzymes and VMFinduced treatment are shown to be safe for mice.The results of this study open the door for treating solid tumors without inducing multidrug resistance through the combination of CDT and force. 展开更多
关键词 CaO_(2)-coated Fe_(3)O_(4)nanoenzymes magneto-mechanical force reactive oxygen species chemodynamic effect cancer therapy
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Magneto-mechanical effect of magnetic microhydrogel for improvement of magnetic neuro-stimulation
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作者 Le Xue Qing Ye +9 位作者 Linyuan Wu Dong Li Siyuan Bao Qingbo Lu Sha Liu Dongke Sun Zonghai Sheng Zhijun Zhang Ning Gu Jianfei Sun 《Nano Research》 SCIE EI CSCD 2023年第5期7393-7404,共12页
Superparamagnetic iron oxide(SPIO)nanoparticles play an important role in mediating precise and effective magnetic neurostimulation and can help overcome limitations related to penetration depth and spatial resolution... Superparamagnetic iron oxide(SPIO)nanoparticles play an important role in mediating precise and effective magnetic neurostimulation and can help overcome limitations related to penetration depth and spatial resolution.However,nanoparticles readily diffuse in vivo,decreasing the spatial resolution and activation efficiency.In this study,we employed a microfluidic means to fabricate injectable microhydrogels encapsulated with SPIO nanoparticles,which significantly improved the stability of nanoparticles,increased the magnetic properties,reinforced the stimulation effectivity.The fabricated magnetic microhydrogels were highly uniform in size and sphericity,enabling minimally invasive injection into brain tissue.The long-term residency in the cortex up to 22 weeks and the safety of brain tissue were shown using a mouse model.In addition,we quantitatively determined the magneto-mechanical force yielded by only one magnetic microhydrogel using a video-based method.The force was found to be within 7–8 pN under 10 Hz magnetic stimulation by both theoretical simulation and experimental measurement.Lastly,electrophysiological measurement of brain slices showed that the magnetic microhydrogels offer significant advantages in terms of neural activation relative to dissociative SPIO nanoparticles.A universal strategy is thus offered for performing magnetic neuro-stimulation with an improved prospect for biomedical translation. 展开更多
关键词 magnetic stimulation superparamagnetic iron oxide(SPIO)nanoparticles magnetic microhydrogel long-term residency magneto-mechanical effect
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A MAGNETO-MECHANICAL FULLY COUPLED MODEL FOR GIANT MAGNETOSTRICTION IN HIGH TEMPERATURE SUPERCONDUCTOR 被引量:1
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作者 Zhiwen Gao Youhe Zhou 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2015年第4期353-359,共7页
This paper presents a fully coupled model to account for the flux pinning induced giant magnetostriction in type-Ⅱ superconductors under alternating magnetic field The superconductor E-J constitutive law is character... This paper presents a fully coupled model to account for the flux pinning induced giant magnetostriction in type-Ⅱ superconductors under alternating magnetic field The superconductor E-J constitutive law is characterized by power law where the critical current density is assumed to depend exponentially on the flux density. The governing equations of the two-field problem (i.e., the interactions of elastic and magnetic effects) are formulated in a two-dimensional model. The magnetostriction curves and magnetization loops are calculated over a wide range of parameters. The effects of applied magnetic field frequency f and amplitude B0 and critical current density on magnetostriction and magnetization are discussed. Results show that the critical current density of high temperature superconductor (HTS) YBCO has a significant effect on the magnetization and magnetostriction. The pinning-induced magnetostriction which has been observed in experiment can be qualitatively simulated by this model. 展开更多
关键词 high temperature superconductor (HTS) giant magnetostriction magnetization magneto-mechanical couple alternating magnetic field
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Numerical methods for the magneto-mechanical coupling analysis of invessel components in Tokamak devices 被引量:1
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作者 Xudong Li Shejuan Xie +1 位作者 Cuixiang Pei Zhenmao Chen 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2019年第3期173-179,共7页
Magneto-mechanical coupling vibration arises in the in-vessel components of Tokamak devices especially during the plasma disruption. Strong electromagnetic forces cause the structures to vibrate while the motion in tu... Magneto-mechanical coupling vibration arises in the in-vessel components of Tokamak devices especially during the plasma disruption. Strong electromagnetic forces cause the structures to vibrate while the motion in turn changes the distribution of the electromagnetic field. To ensure the Tokamak devices operating in a designed state, numerical analysis on the coupling vibration is of great importance. This paper introduces two numerical methods for the magneto-mechanical coupling problems. The coupling term of velocity and magnetic flux density is manipulated in both Eulerian and Lagrangian description, which brings much simplification in numerical implementation. Corresponding numerical codes have been developed and applied to the dynamic simulation of a test module in J-TEXT and the vacuum vessel of HL-2M during plasma disruptions. The results reveal the evident influence of the magnetic stiffness and magnetic damping effects on the vibration behavior of the in-vessel structures. Finally, to deal with the halo current injection problem, a numerical scheme is described and validated which can simulate the distribution of the halo current without complicated manipulations. 展开更多
关键词 magneto-mechanical coupling analysis In-vessel component Plasma DISRUPTION HALO current NUMERICAL simulation
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Stress-induced butterfly and square-like magnetostriction loops transition 被引量:1
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作者 Zengyao Lv Honglong Zhang +1 位作者 Chao Zhang Yongmao Pei 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第2期67-71,共5页
The stress-induced magnetic domain switching in FeGa thin films is studied using phase-field method. In particular, the magnetic field is applied along the [110] direction and biaxial stresses are applied along [ 100]... The stress-induced magnetic domain switching in FeGa thin films is studied using phase-field method. In particular, the magnetic field is applied along the [110] direction and biaxial stresses are applied along [ 100] and [010]. A compressive pre-stress corresponds to a smaller coercive magnetic field while a tensile pre-stress corresponded to a larger coercive field. At the same time, it is also found that the transition between butterfly and square-like magnetostriction loops occurs at the critical opposite biaxial stress state. The two different evolutions correspond to two different mechanisms: one is that the single domain swings across a fan area back and forth; the other is that the single domain turns a clockwise circle. The results can be explained bv the stress tuned anisotronv energy well. 展开更多
关键词 Biaxial-stress magneto-mechanical loading Phase-field simulation
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Three-dimensional constitutive model for magneto-mechanical deformation of NiMnGa ferromagnetic shape memory alloy single crystals 被引量:1
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作者 Chao Yu Guozheng Kang +1 位作者 Di Song Xi Xie 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第3期563-588,共26页
Existing experimental results have shown that four types of physical mechanisms, namely, martensite transformation, martensite reorientation, magnetic domain wall motion and magnetization vector rotation, can be activ... Existing experimental results have shown that four types of physical mechanisms, namely, martensite transformation, martensite reorientation, magnetic domain wall motion and magnetization vector rotation, can be activated during the magneto-mechanical deformation of NiMnGa ferromagnetic shape memory alloy (FSMA) single crystals. In this work, based on irreversible thermodynamics, a three-dimensional (3D) single crystal constitutive model is constructed by considering the aforementioned four mechanisms simultaneously. Three types of internal variables, i.e., the volume fraction of each martensite variant, the volume fraction of magnetic domain in each variant and the deviation angle between the magnetization vector, and easy axis are introduced to characterize the magneto-mechanical state of the single crystals. The thermodynamic driving force of each mechanism and the thermodynamic constraints on the constitutive model are obtained from Clausius's dissipative inequality and constructed Gibbs free energy. Then, thermodynamically consistent kinetic equations for the four mechanisms are proposed, respectively. Finally, the ability of the proposed model to describe the magneto-mechanical deformation of NiMnGa FSMA single crystals is verified by comparing the predictions with corresponding experimental results. It is shown that the proposed model can quantitatively capture the main experimental phenomena. Further, the proposed model is used to predict the deformations of the single crystals under the non-proportional mechanical loading conditions. 展开更多
关键词 FERROMAGNETIC shape memory alloys Single crystals magneto-mechanical deformation MARTENSITE transformation MARTENSITE REORIENTATION CONSTITUTIVE model
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Experimental and numerical study on surface roughness of magnetorheological elastomer for controllable friction 被引量:1
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作者 Rui LI Xi LI +2 位作者 Yuanyuan LI Ping-an YANG Jiushan LIU 《Friction》 SCIE CSCD 2020年第5期917-929,共13页
Magnetorheological elastomer (MRE) is a type of smart material of which mechanical and electrical properties can be reversibly controlled by the magnetic field. In this study, the influence of the magnetic field on th... Magnetorheological elastomer (MRE) is a type of smart material of which mechanical and electrical properties can be reversibly controlled by the magnetic field. In this study, the influence of the magnetic field on the surface roughness of MRE was studied by the microscopic modeling method, and the influence of controllable characteristics of the MRE surface on its friction properties was analyzed by the macroscopic experimental method. First, on the basis of existing studies, an improved mesoscopic model based on magneto-mechanical coupling analysis was proposed. The initial surface morphology of MRE was characterized by the W–M fractal function, and the change process of the surface microstructures of MRE, induced by the magnetic interaction between particles, was studied. Then, after analyzing the simulation results, it is found that with the increase in the magnetic field and decrease in the modulus of rubber matrix, the surface of MRE changes more significantly, and the best particle volume fraction is within 7.5%–9%. Furthermore, through experimental observation, it is found that the height of the convex peak on the surface of MRE decreases significantly with the action of the magnetic field, resulting in a reduction in the surface roughness. Consistent with the simulation results, a particle volume fraction of 10% corresponds to a maximum change of 14%. Finally, the macroscopic friction experiment results show that the friction coefficients of MREs with different particle volume fractions all decrease with the decrease in surface roughness under the magnetic field. When the particle volume fraction is 10%, the friction coefficient can decrease by 24.7% under a magnetic field of 400 mT, which is consistent with the trend of surface roughness changes. This shows that the change in surface morphology with the effect of the magnetic field is an important factor in the control of MRE friction properties by magnetic field. 展开更多
关键词 controllable friction surface roughness magnetorheological elastomer(MRE) mesoscopic model coupled magneto-mechanical analysis numerical simulation
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High damping in Fe-Ga-La alloys:Phenomenological model for magneto-mechanical hysteresis damping and experiment
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作者 Meng Sun Anatoly Balagurov +4 位作者 Ivan Bobrikov Xianping Wang Wen Wen Igor S.Golovin Qianfeng Fang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第13期69-80,共12页
Ferromagnetic high damping(FHA)alloys with a wide temperature range from-150℃to 300℃have unique application value in extreme environments.In the present work,the damping behaviors of Fe-21 Ga-xLa(x=0.12 wt.%,0.24 wt... Ferromagnetic high damping(FHA)alloys with a wide temperature range from-150℃to 300℃have unique application value in extreme environments.In the present work,the damping behaviors of Fe-21 Ga-xLa(x=0.12 wt.%,0.24 wt.%,0.47 wt.%,1.18 wt.%,and 2.33 wt.%La)alloys have been studied in detail,and a new phenomenological model has been proposed.With the increase of La content,the Laves phase(LaGa_(2))in the matrix increases gradually,and the resistance opposing the domain movement increases as well.Combined with the results of synchrotron radiation X-ray diffraction,neutron diffraction,and magnetic domain observation,the resistance mainly comes from three parts:the average stress related to the lattice distortion of the matrix,the average stress related to the increasing area energy of domain walls(DWs),and the ave rage stress related to the increasing demagnetization energy induced by the Laves phase.Different from the traditional method of reducing internal stress through annealing to improve the damping capacity,the proper internal stress barriers are necessary to Barkhausen jumps to dissipate energy.Therefore,proper doping to balance resistance and mobility of DWs is a reliable way to improve damping capacity.Meanwhile,for Fe-Al and Fe-Cr based Alloys,the new model also has a good fitting effect.This study provides a theoretical and experimental reference for improving the functional properties of ferromagnetic alloys. 展开更多
关键词 magneto-mechanical hysteresis damping Laves phase(LaGa_(2)) Internal stress distribution Neutron-diffraction patterns Domain walls
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A Nonlinear Magneto-Mechanical Coupled Constitutive Model for the Magnetostrictive Material Galfenol
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作者 Ying Xiao Haomiao Zhou Xiaofan Gou 《Computers, Materials & Continua》 SCIE EI 2018年第3期209-228,共20页
In order to predict the performance of magnetostrictive smart material and pushits applications in engineering, it is necessary to build the constitutive relations for themagnetostrictive material Galfenol. For Galfen... In order to predict the performance of magnetostrictive smart material and pushits applications in engineering, it is necessary to build the constitutive relations for themagnetostrictive material Galfenol. For Galfenol rods under the action of the pre-stress andmagnetic field along the axial direction, the one-dimensional nonlinear magneto-mechanicalcoupling constitutive model is proposed based on the elastic Gibbs free energy, where theTaylor expansion of the elastic Gibbs free energy is made to obtain the polynomial forms. Andthen the constitutive relations are derived by replacing the polynomial forms with the propertranscendental functions based on the microscopic magneto-mechanical coupling mechanism.From the perspective of microscopic mechanism, the nonlinear strain related to magneticdomain rotation results in magnetostrictive strain changing with the pre-stress among theelastic strains induced by the pre-stress. By comparison, the predicted stress-strain,magnetostrictive strain, magnetic induction and magnetization curves agreed well withexperimental results under the different pre-stresses. The proposed model can describe notonly the influences of pre-stress on magnetostrictive strain and magnetization curves, butalso nonlinear magneto-mechanical coupling effect of magnetostrictive materialsystematically, such as the Young’s modulus varying with stress and magnetic field. In theproposed constitutive model, the key material constants are not chosen to obtain a good fitwith the experimental data, but aremeasured directly by experiments, such as the saturationmagnetization, saturation magnetostrictive coefficient, saturation Young’s modulus, linearmagnetic susceptibility and so on. In addition, the forms of the new constitutive relationsare simpler than the existing constitutive models. Therefore, this model could be appliedconveniently in the engineering applications. 展开更多
关键词 magnetostrictive materials one-dimensional constitutive relations galfenolrods nonlinear magneto-mechanical coupling
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Magnetoelastic coupling effect of Fe10Co90 films grown on different flexible substrates
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作者 Jiapeng Zhao Qinhuang Guo +5 位作者 Huizhong Yin Jintang Zou Zhenjie Zhao Wenjuan Cheng Dongmei Jiang Qingfeng Zhan 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第11期479-484,共6页
The magneto-mechanical coupling effect and magnetic anisotropy of Fe10Co90(FeCo)films deposited on silicon wafer(Si),flexible polyethylene terephthalate(PET),freestanding polydimethylsiloxane(PDMS),and pre-stretched 2... The magneto-mechanical coupling effect and magnetic anisotropy of Fe10Co90(FeCo)films deposited on silicon wafer(Si),flexible polyethylene terephthalate(PET),freestanding polydimethylsiloxane(PDMS),and pre-stretched 20%PDMS substrates were studied in detail.The loop squareness ratio Mr/Ms and the coercive Hc of the FeCo film grown on a PET substrate can be obviously tuned by applying a small tensile-bending strain,and those of the FeCo film grown on a freestanding PDMS substrate can only be slightly changed when applying a relatively large tensile bending strain.For the FeCo film prepared on a 20%pre-stretched PDMS,a wrinkled morphology is obtained after removing the pre-strain.The wrinkled FeCo film can keep the magnetic properties unchanged when applying a relatively large tensile bending strain perpendicular to the wrinkles.This reveals that PDMS is an ideal substrate for magnetic films to realize flexible immutability.Our results may help for developing flexible magnetic devices. 展开更多
关键词 flexible substrates FeCo films magnetic anisotropy magneto-mechanical coupling effect
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考虑磁致伸缩效应电力变压器振动噪声的研究 被引量:119
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作者 祝丽花 杨庆新 +1 位作者 闫荣格 张献 《电工技术学报》 EI CSCD 北大核心 2013年第4期1-6,19,共7页
硅钢片磁致伸缩是电力变压器产生振动噪声的主要原因,本文利用能量变分原理,建立了考虑电力变压器铁心磁致伸缩效应的三维磁-机械强耦合数值模型,应用有限元计算了三相三柱干式变压器空载条件下的磁场分布和铁心振动位移;在此基础上分... 硅钢片磁致伸缩是电力变压器产生振动噪声的主要原因,本文利用能量变分原理,建立了考虑电力变压器铁心磁致伸缩效应的三维磁-机械强耦合数值模型,应用有限元计算了三相三柱干式变压器空载条件下的磁场分布和铁心振动位移;在此基础上分析了铁心周围的声场分布。为了验证模型,对变压器铁心的振动和噪声分别进行了实验研究。理论计算与测量结果的比较证实了该强耦合模型的正确性,为在设计阶段计算变压器振动噪声大小、分布和寻求新的降噪措施,提供了理论依据和计算方法。 展开更多
关键词 电力变压器 磁致伸缩 各向异性 磁-机械强耦合模型 振动噪声
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基于有限元法的变压器电磁振动噪声分析 被引量:58
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作者 胡静竹 刘涤尘 +2 位作者 廖清芬 晏阳 梁姗姗 《电工技术学报》 EI CSCD 北大核心 2016年第15期81-88,共8页
变压器噪声是变电站主要噪声来源之一,研究变压器噪声对合理评估变电站噪声水平及对变压器降噪分析具有重要意义。从变压器噪声产生机理入手,分析变压器铁心和绕组的电磁振动噪声,建立了其电磁-结构-声场有限元模型。通过瞬态电磁场分析... 变压器噪声是变电站主要噪声来源之一,研究变压器噪声对合理评估变电站噪声水平及对变压器降噪分析具有重要意义。从变压器噪声产生机理入手,分析变压器铁心和绕组的电磁振动噪声,建立了其电磁-结构-声场有限元模型。通过瞬态电磁场分析,并基于虚位移法得到铁心和绕组所受电磁力的时域波形,采用FFT变换对结果进行后处理获取电磁力的主要谐波分量大小,将其作为结构谐响应分析的激励源,通过频域内的振动分析得到铁心和绕组表面各节点的振动位移,并将其作为变压器声场分析的边界条件,进一步求解变压器声场模型,分析得到变压器周围空间场点在噪声集中频率100 Hz和200 Hz上的声压级,并与实测值进行对比分析,验证了该模型的可行性,可为变压器噪声预测提供理论依据和计算方法。 展开更多
关键词 变压器噪声 电磁-结构-声场模型 有限元法 FFT 电磁力谐波
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铁磁材料相对磁导率变化与应力关系的磁力学模型 被引量:51
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作者 王社良 王威 +1 位作者 苏三庆 张少峰 《西安科技大学学报》 CAS 北大核心 2005年第3期288-291,305,共5页
应力一直被认为是影响铁磁材料磁特性的重要因素。不论是提高缺陷识别信号还是应力监测等相当复杂的无损检测技术的开发,都要求对应力对磁特性影响的基本知识有一定的掌握,但相关的应力对铁磁材料相对磁导率的影响关系方面的文章还未见... 应力一直被认为是影响铁磁材料磁特性的重要因素。不论是提高缺陷识别信号还是应力监测等相当复杂的无损检测技术的开发,都要求对应力对磁特性影响的基本知识有一定的掌握,但相关的应力对铁磁材料相对磁导率的影响关系方面的文章还未见到。因此,本文参考有关研究者的成果,指出了一种关于铁磁材料相对磁导率变化与应力关系的磁力学模型,作为反应铁磁材料磁力耦合的一个方程式。 展开更多
关键词 铁磁材料 应力 相对磁导率 磁力模型
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超磁致伸缩致动器的磁-机械强耦合模型 被引量:35
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作者 闫荣格 王博文 +2 位作者 曹淑瑛 翁玲 颜威利 《中国电机工程学报》 EI CSCD 北大核心 2003年第7期107-111,共5页
稀土-铁超磁致伸缩材料作为一种新型功能材料,其应用越来越受到人们的关注。为了有效地设计、开发超磁致伸缩材料的器件,必须建立材料器件的输入输出模型。利用能量变分原理,针对研制的超磁致伸缩致动器,建立了系统的磁-机械强耦合模型... 稀土-铁超磁致伸缩材料作为一种新型功能材料,其应用越来越受到人们的关注。为了有效地设计、开发超磁致伸缩材料的器件,必须建立材料器件的输入输出模型。利用能量变分原理,针对研制的超磁致伸缩致动器,建立了系统的磁-机械强耦合模型,并应用有限元法计算了致动器的输入电流与输出位移的关系曲线。计算值与实验值比较吻合,表明所建立的模型能够反映致动器的输入输出关系,模型对于设计超磁致伸缩器件、优化设计方案具有重要意义。 展开更多
关键词 超磁致伸缩致动器 磁-机械强耦合模型 输入输出模型 高压电器
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非晶合金电机振动噪声影响因素的研究 被引量:23
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作者 韩雪岩 赵森磊 +2 位作者 周挺 吴胜男 张哲 《电工技术学报》 EI CSCD 北大核心 2015年第14期531-538,共8页
磁致伸缩和叠压影响是引起非晶合金变压器振动噪声的主要原因,而在硅钢片电机的振动噪声计算中这两种因素经常被忽略。为此本文对非晶合金电机振动噪声影响因素进行了深入研究。首先,基于压磁方程建立了磁—机械耦合数学模型。以一台2.1... 磁致伸缩和叠压影响是引起非晶合金变压器振动噪声的主要原因,而在硅钢片电机的振动噪声计算中这两种因素经常被忽略。为此本文对非晶合金电机振动噪声影响因素进行了深入研究。首先,基于压磁方程建立了磁—机械耦合数学模型。以一台2.1k W非晶合金永磁电机为例,考虑磁致伸缩和叠压影响,应用二维有限元计算了该电机在不同供电条件下的磁场分布、形变和振动加速度。在此基础上分析了定子铁心周围声场分布,通过实验验证了计算方法的有效性。之后,通过电磁力、磁致伸缩和叠压三种影响因素对硅钢片电机和非晶合金电机振动噪声影响的研究发现:磁致伸缩对硅钢片电机的振动噪声影响较小;磁致伸缩和叠压影响对非晶合金电机振动噪声影响较大,在计算非晶合金电机振动噪声时磁致伸缩和叠压影响不能被忽略。 展开更多
关键词 非晶合金 磁致伸缩 磁—机械耦合 振动噪声
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应用磁–机械耦合场频域解法的铁芯直流偏磁振动特性分析 被引量:21
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作者 赵小军 杜雨彤 +3 位作者 刘洋 杜振斌 赵志刚 刘兰荣 《高电压技术》 EI CAS CSCD 北大核心 2020年第4期1216-1225,共10页
为了探究直流偏磁下叠片铁芯的振动特性,首先采用一台基于激光多普勒效应的磁致伸缩测量系统对取向硅钢片在有、无直流偏磁条件下的磁致伸缩特性进行测量,分析直流偏磁对磁致伸缩的影响。其次对三柱叠片铁芯模型在直流偏磁工况下进行实... 为了探究直流偏磁下叠片铁芯的振动特性,首先采用一台基于激光多普勒效应的磁致伸缩测量系统对取向硅钢片在有、无直流偏磁条件下的磁致伸缩特性进行测量,分析直流偏磁对磁致伸缩的影响。其次对三柱叠片铁芯模型在直流偏磁工况下进行实验,用激光测振仪测量铁芯振动。最后建立磁–机械耦合场的频域数值模型,基于谐波平衡法对非线性磁场和位移进行求解,将测量结果和计算结果相比较,验证了所提数值模型及频域分解算法的有效性。计算结果表明直流偏磁不但加剧了变压器铁芯振动,还会影响其振动频率。 展开更多
关键词 磁致伸缩 振动 磁–机械耦合场 直流偏磁 叠片铁芯
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磁记忆检测的力磁耦合型磁偶极子理论及解析解 被引量:20
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作者 时朋朋 郝帅 《物理学报》 SCIE EI CAS CSCD 北大核心 2021年第3期99-108,共10页
磁偶极子理论在缺陷漏磁场解释中被成功广泛使用.由于磁荷密度等参数不易定量,磁偶极子理论在应用中常常进行归一化处理,被认为不适用于对应力相关的磁记忆信号做量化分析.本文通过建立力磁耦合型磁偶极子理论模型,以适用于分析磁记忆... 磁偶极子理论在缺陷漏磁场解释中被成功广泛使用.由于磁荷密度等参数不易定量,磁偶极子理论在应用中常常进行归一化处理,被认为不适用于对应力相关的磁记忆信号做量化分析.本文通过建立力磁耦合型磁偶极子理论模型,以适用于分析磁记忆检测中应力对磁信号的影响.基于铁磁学理论确定应力和磁场联合作用下的等效场强度,基于弱磁化状态的一阶近似,获得了各向同性铁磁材料微弱环境磁场下的应力磁化解析解.结合磁信号二维问题中矩形和V形磁荷分布假定,建立了光滑与破坏试件表面磁信号、矩形和V形表面缺陷所诱导磁信号的力磁耦合型磁偶极子理论分析模型,并获得其解析解.基于力磁耦合型磁偶极子理论的解析解,对拉伸实验中试件破坏前后的信号差异、矩形和V形表面缺陷诱导磁信号,以及磁信号的影响因素和规律等进行了详细分析.理论研究表明,基于本文理论模型的解析解可实现对磁记忆检测中的一些基本实验现象和规律的解释. 展开更多
关键词 金属磁记忆 力磁耦合 磁偶极子 解析解
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基于Jiles-Atherton理论的铁磁材料塑性变形磁化模型修正 被引量:18
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作者 刘清友 罗旭 +2 位作者 朱海燕 韩一维 刘建勋 《物理学报》 SCIE EI CAS CSCD 北大核心 2017年第10期286-295,共10页
Jiles-Atherton(J-A)模型在磁化建模领域应用广泛,但不同文献给出的J-A模型并不一致,致使采用不同表达式建立的塑性变形磁化模型存在多种版本,其正确性难以甄别.通过对无磁滞磁化方程、能量守恒方程和等效磁场强度方程的梳理与比较,发... Jiles-Atherton(J-A)模型在磁化建模领域应用广泛,但不同文献给出的J-A模型并不一致,致使采用不同表达式建立的塑性变形磁化模型存在多种版本,其正确性难以甄别.通过对无磁滞磁化方程、能量守恒方程和等效磁场强度方程的梳理与比较,发现原有模型中存在将磁化强度和无磁滞磁化强度混用、将不可逆磁化能量等效于全部的磁化能量、等效磁场强度中应力磁化项界定不清等问题.在此基础上,对上述方程进行了修正,推导了基于J-A模型的塑性变形磁化修正模型.将修正模型计算结果与原模型计算结果、相关文献中的试验结果进行对比,结果表明:与原有计算模型相比,修正模型计算结果的饱和磁化强度和剩余磁化强度随塑性变形增加而减小,矫顽力随塑性变形增大而增大,达到饱和磁化强度时的外磁场强度随塑性变形增大而增大的趋势有所减弱,更符合试验结果,可更准确地反映塑性变形对材料磁化的影响. 展开更多
关键词 Jiles-Atherton理论 磁滞回线 塑性变形磁化模型 力磁耦合
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非晶合金卷绕定子铁心振动噪声的研究 被引量:11
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作者 吴胜男 唐任远 +3 位作者 韩雪岩 佟文明 张哲 陈健 《电工技术学报》 EI CSCD 北大核心 2015年第11期13-21,共9页
建立考虑磁致伸缩效应的非晶合金卷绕定子铁心的磁-机械耦合数学模型。采用非晶合金定子铁心模态实验对卷绕结构铁心弹性模量进行修正的方法,研究非晶合金定子铁心卷绕结构对振动的影响。应用三维有限元法计算定子铁心的磁场分布、形变... 建立考虑磁致伸缩效应的非晶合金卷绕定子铁心的磁-机械耦合数学模型。采用非晶合金定子铁心模态实验对卷绕结构铁心弹性模量进行修正的方法,研究非晶合金定子铁心卷绕结构对振动的影响。应用三维有限元法计算定子铁心的磁场分布、形变和振动加速度;并在此基础上分析定子铁心周围声场分布。提出非晶合金卷绕定子铁心振动噪声测试方法,通过实验验证计算方法的有效性。同时完成了不同供电频率下不同磁通密度时定子铁心振动噪声的测试,总结定子铁心振动和噪声的影响规律。得出定子铁心振动加速度随磁通密度平方呈正比和定子铁心噪声随磁通密度呈对数函数规律变化的结论,确定了曲线拟合公式和系数。 展开更多
关键词 非晶合金 磁致伸缩 卷绕铁心 磁机械耦合 振动噪声
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基于ANSYS有限元模拟的钢丝绳单丝拉伸力-磁耦合研究 被引量:11
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作者 苏三庆 马小平 +4 位作者 王威 易术春 路秀琪 任广超 牛晓波 《西安建筑科技大学学报(自然科学版)》 CSCD 北大核心 2017年第3期309-316,331,共9页
主要利用ANSYS有限元模拟软件,对受轴向拉力且有预制缺陷的50 Mn钢丝绳单丝分别进行静力场计算和受环境磁场及自身剩磁场共同作用下的三维静磁场磁标量计算,并对两种物理场进行直接力-磁耦合分析,得到随着外荷载不断增加,试件缺陷处法... 主要利用ANSYS有限元模拟软件,对受轴向拉力且有预制缺陷的50 Mn钢丝绳单丝分别进行静力场计算和受环境磁场及自身剩磁场共同作用下的三维静磁场磁标量计算,并对两种物理场进行直接力-磁耦合分析,得到随着外荷载不断增加,试件缺陷处法向漏磁信号B(x)及其梯度值K的分布情况.结果表明,随着应力集中程度的不断增加,试件缺陷处的法向漏磁场信号B(x)出现过零点,其梯度值K出现极大值.最后,将试验结果与模拟结果进行对比,证明了模拟的可靠性.进一步证明了有缺陷钢丝绳的早期损伤与金属磁记忆信号之间的内在联系规律,该数值模拟方法可为钢丝绳拉伸磁记忆有限元分析提供参考. 展开更多
关键词 钢丝绳单丝 有限单元法 金属磁记忆 力-磁耦合 应力集中
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