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1.
在中学物理教学中,研究磁场传统的实验方法是用小磁针显示磁场的方向,用小磁针或铁粉显示磁感线分布.磁针和铁粉用来形象描述磁场功不可没,可对磁感强度的定量研究却显得无能为力.学生也只好在题海中领会感受磁感强度B的大小;1特斯拉有多大?在脑子里只有一个模糊抽象的印象.物理学对电磁现象的研究成果为各行各业提供了先进的检测设备,可是在自身的物理教学中对磁场的实验检测仍停留在4大发明的“司南”时代.近来上海的DIS实验(数字化实验系统),  相似文献   

2.
催化剂的选取对于V型热解火焰合成碳纳米管具有重要的影响.实验中分别采用五羰基铁、二茂铁、纳米铁粉等作为催化剂,取样时间为10 min,温度约为1150 K,催化剂的引入方式为喷雾热解方法,利用扫描电镜和透射电镜对合成的碳纳米管进行形态和结构表征分析.实验结果表明:利用V型热解火焰合成碳纳米管时的关键物质是纳米氧化铁颗粒...  相似文献   

3.
杨航  张帅  张云飞  黄文  何建国 《强激光与粒子束》2022,34(8):082002-1-082002-7
针对抛光粉沉降特性数值计算这一超大规模非线性问题,基于Kahan线性化解决了超大规模流固耦合计算问题。研究了以羟基铁粉和硅油为主要成分组合而成的抛光粉多相流在梯度磁场下抛光区域的沉降特性。以质量分数70%、粒径5 μm的羟基铁粉和粘度为0.973 Pa·s的硅油组合而成的抛光粉为研究对象,实现了不同的抛光轮转速、不同嵌入深度以及不同羰基铁粉质量分数情况下的沉降规律分析。结果发现:磁流变抛光区域的抛光粉会随着抛光轮转速的增大而增多;当到达出口时,抛光粉的分布趋于稳定状态;抛光粉会随着嵌入深度的增加而增多并存在饱和区;羟基铁粉的质量分数以非线性的方式影响沉降能力。  相似文献   

4.
通过控制混凝土板的厚度、混凝土板中还原铁粉掺量、在混凝土板中加钢丝网,研究混凝土板对电磁波的反射和透射性能。反射率测量采用弓形架测试方法,透射衰减测量采用两端口测试方法。混凝土板对电磁波的反射率测试频段为2~18GHz,透射衰减测试频段为12~18GHz。不同的混凝土板对电磁波的反射率在-5dB左右。40mm厚的混凝土板中还原铁粉的掺量超过200kg/m3时,电磁波的透射衰减量可达到-50dB以上。通过分析实验结果,发现混凝土板的厚度、混凝土板中还原铁粉掺量和钢丝网对反射率大小影响较小,对透射衰减量影响较大。  相似文献   

5.
利用改装后的力磁耦合动态测试系统实验研究了磁流变弹性体在磁场下的阻尼性能. 实验得出了外加磁场的磁感应强度、基体的本征阻尼、铁粉含量、动态应变以及激励频率对磁流变弹性体阻尼的影响规律. 发现了磁流变弹性体的阻尼在很大程度上是由基体和颗粒之间的界面滑移所决定的. 而且该界面滑移不同于一般复合材料,它会受到外加磁场的影响..  相似文献   

6.
纳米颗粒悬浮液池内泡状沸腾的实验研究   总被引:7,自引:0,他引:7  
本文对纳米颗粒悬浮液在平壁面上池内沸腾进行了实验研究。实验用的纳米粒子为26 nm的铁粉和13 nm的三氧化二铝纳米粉末,基液为去离子水。分别配成体积浓度为0.1%, 1%和2%的悬浮液。实验结果表明,纳米悬浮颗粒对液体沸腾换热过程的影响会随着纳米颗粒性质,颗粒浓度及热流密度大小的不同而出现不同的效果;加入纳米颗粒后, 对基液沸腾换热的影响存在着两个相反的作用机制,它们分别为:纳米颗粒增强了液体内部的热量迁移能力(热物性的影响)和改变了加热面的表面结构特性(加热面特性的影响)。  相似文献   

7.
基于时间差法原理设计了利用电脑声卡和Audacity软件测量固体声速的实验.利用电脑声卡收集左右声道的声音并实时呈现在Audacity软件界面,可准确测得左右声道收集到声音的时间差,计算得到声音在固体材料中的传播速度.实验现象直观,可用于中学课外拓展实验.  相似文献   

8.
α-Fe粉体浓悬浮体系的制备及磁流变效应   总被引:2,自引:0,他引:2       下载免费PDF全文
报道使用价格低廉的还原铁粉制备磁性粒子浓悬浮体系 ,对体系磁流变效应进行研究 ,并研究了磁性颗粒尺寸和氧化物对悬浮体系力学性质及沉降稳定性的影响 .  相似文献   

9.
收集环二级磁体在探测反质子和离子加速器装置中有着重要的作用。主要对收集环二极磁体实验所需的加热器,磁体热点温度以及失超保护的移能电阻进行了数值模拟计算,并与实验数据进行了比较,结果基本吻合。  相似文献   

10.
水银在物理实验中用途甚广,但是水银被抛撒的现象往往是常见的事。因此,为了贯彻勤俭节约的精神,也为了防止水银中毒,在实验之后,必须把抛撒在桌上和地上的水银(那怕是很小的一滴)全部收集起来。但是,收集水银确实是一件非常麻烦的事。有的教师只是把掉在桌上的水银收集了,对地上的就不知怎么办;有的教师虽也用较硬的纸做成一个“小簸箕”,象扫地一样的收集水银,但这样仍然不能收集干净,尤其是对于钻到小洞里的水银。为了改变这种在收集抛撒的水银时既费时间、效果又不良的状况,我们在实验中采用了以下的收集方法。经验证明,效果良好。现介绍如下:  相似文献   

11.
An attempt is made to introduce the concept of magnetic moment and magnetic induction directly from observed mechanical interactions between magnets, without bringing in the idealized notion of isolated magnetic poles.  相似文献   

12.
In situ magnetic hysteresis measurements of magnetic tips in a magnetic force microscope (MFM) are demonstrated using alternating gradient force magnetometry. The measured magnetic moments of MFM tips are estimated in the range from 10−6 to 10−5 emu by this technique and the whole MFM tips in cantilevers are considered to be measured from the value of measured magnetic moments. The relationship between the magnetic hysteresis loops of MFM tips and those of coated magnetic films is discussed.  相似文献   

13.
磁性材料的磁结构、磁畴结构和拓扑磁结构   总被引:2,自引:0,他引:2       下载免费PDF全文
张志东 《物理学报》2015,64(6):67503-067503
首先简要地介绍了磁性材料中磁结构、磁畴结构和拓扑磁结构以及相互之间的关系. 一方面, 磁畴结构由材料的磁结构、内禀磁性和微结构因素决定; 另一方面, 磁畴结构决定了材料磁化和退磁化过程以及技术磁性. 拓扑学与材料物理、材料性能的联系越来越紧密. 最近的研究兴趣集中在一些拓扑磁性组态, 如涡旋、磁泡、麦纫、斯格米子等. 研究发现这些拓扑磁结构的拓扑性质与磁性能密切相关. 然后从尺寸效应、缺陷、晶界三个方面介绍国际学术界在磁结构、磁畴结构和拓扑磁结构方面的进展. 最后介绍了在稀土永磁薄膜材料的微观结构、磁畴结构和磁性能关系、交换耦合纳米盘中的拓扑磁结构及其动力学行为方面的工作. 通过对文献的评述, 得到以下结论: 开展各向异性纳米复合稀土永磁材料的研究对更好地利用稀土资源具有重要的意义. 可以有目的地改变材料的微结构, 可控地进行磁性材料的磁畴工程, 最终获得优秀的磁性能. 拓扑学的概念正在应用于越来越多的学科领域, 在越来越多的材料中发现拓扑学的贡献. 研究磁畴结构、拓扑磁性基态或者激发态的形成规律以及动力学行为对理解量子拓扑相变以及其他与拓扑相关的物理效应是十分重要的. 也会帮助理解不同拓扑学态之间相互作用的物理机制及其与磁性能之间的关系, 同时拓展拓扑学在新型磁性材料中的应用.  相似文献   

14.
The intrinsic radial magnetic field(B r) in a tokamak is explored by the solution of the Grad–Shafranov equation in axisymmetric configurations through an expansion of the four terms of the magnetic surfaces. It can be inferred from the simulation results that at the core of the device, the tokamak should possess a three-dimensional magnetic field configuration, which could be reduced to a two-dimensional one when the radial position is greater than 0.6a. The radial magnetic field and the amzimuthal magnetic field have the same order of magnitude at the core of the device. These results can offer a reference for the analysis of the plasma instability, the property of the core plasma, and the magnetic field measurement.  相似文献   

15.
16.
The response of the spin system has been investigated by numerical simulations in the case of a nuclear magnetic resonance (NMR) experiment performed in inhomogeneous static and radiofrequency fields. The particular case of the NMR-MOUSE was considered. The static field and the component of the radiofrequency field perpendicular to the static field were evaluated as well as the spatial distribution of the maximum NMR signal detected by the surface coil. The NMR response to various pulse sequences was evaluated numerically for the case of an ensemble of isolated spins (1/2). The behavior of the echo train in Carr-Purcell-like pulse sequences used for measurements of transverse relaxation and self-diffusion was simulated and compared with the experiment. The echo train is shown to behave qualitatively differently depending on the particular phase schemes used in these pulse sequences. Different echo trains are obtained, because of the different superposition of Hahn and stimulated echoes forming mixed echoes as a result of the spatial distribution of pulse flip angles. The superposition of Hahn and stimulated echoes originating from different spatial regions leads to distortions of the mixed echoes in intensity, shape, and phase. The volume selection produced by Carr-Purcell-like pulse sequences is also investigated for the NMR-MOUSE. The developed numerical simulation procedure is useful for understanding a variety of experiments performed with the NMR-MOUSE and for improving its performance. Copyright 2000 Academic Press.  相似文献   

17.
朱晔明  王思慧  周进 《大学物理》2006,25(4):58-59,63
对地磁水平分量测量实验加以改进,将其扩充为能够测量亥姆霍兹线圈磁场分布和磁针的转动惯量以及磁针磁矩的实验.使其成为一个综合性较强,适用于开展研究性实验的项目.  相似文献   

18.
Magnetic dipole(MD) transitions are important for a range of technologies from quantum light sources and displays to lasers and bio-probes. However, the typical MD transitions are much weaker than their electric counterparts and are usually neglected in practical applications. Herein, we experimentally demonstrate that the MD transitions can be significantly enhanced by the well-developed magnetic metamaterials in the visible optical range. The magnetic metamaterials consist of silver nanostrips and a thick silver film, which are separated with an Eu~(3+):polymethyl methacrylate(PMMA) film. By controlling the thickness of the Eu~(3+):PMMA film, the magnetic resonance has been tuned to match the emission wavelength of MDs. Consequently,the intensity of MD emission has been significantly increased by around 30 times at the magnetic resonance wavelength, whereas the intensity of electric dipole emission is well-preserved. The corresponding numerical calculations reveal that the enhancement is directly generated by the magnetic resonance, which strongly increases the magnetic local density of states around the MD emitter and can efficiently radiate the MD emission into the far field. This is the first demonstration, to the best of our knowledge, that MD transitions can be improved by an additional degree of magnetic freedom, and we believe this research shall pave a new route towards bright magnetic emitters and their potential applications.  相似文献   

19.
We investigate theoretically the magnetization dynamics of a conducting magnetic nanoparticle weakly coupled to source and drain electrodes, under the assumption that all relaxation comes from exchange of electrons with the electrodes. In the regime of sequential tunneling, the magnetization dynamics is characterized by a relaxation time t(1), which strongly depends on temperature, bias voltage, and gate voltage. While a direct measure of a nanoparticle magnetization might be difficult, we find that t(1) can be determined through a time resolved transport measurement. For a suitable choice of gate voltage and bias voltage, the magnetization performs a bias-driven Brownian motion regardless of the presence of anisotropy.  相似文献   

20.
The concentration dependence of the specific magnetic moment value at room temperature in dilute semiconductor titanium oxides doped with either Co or Fe has been investigated. This value was found to increase sharply at small concentrations of magnetic impurity. The magnetic moment of 22.9 μB per impurity atom has been revealed for TiO2 doped with 0.15 at% Co, not yet reported in any semiconductor oxide systems. We conclude the observed giant magnetic moments are caused by the crystal lattice polarization at small impurity concentrations. The comparison with published data point to different types of the magnetization concentration dependence for various semiconductor matrixes that is probably related to the dielectric permittivity of the environment.  相似文献   

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