磁性层

  • 网络magnetic layer;CoFeB;CoCrPt;magnetosphere
磁性层磁性层
  1. 应用三维磁性层反演理论和方法,对延庆、怀来地区航磁资料进行了数据处理,反演计算了该区磁性基底埋深、居里等温面埋深和视磁化强度分布。

    Using 3-D magnetosphere inverse theory and method , we process the aeromagnetic data : of Yanqing and Huailai areas , and obtain the buried depth map of Curie isothermal surface and the distribution map of apparent specific magnetizing moment of these areas .

  2. 中国南北地震带磁性层构造特征

    Characteristics of the structure of magnetic layer in the North-South Seismic Belt in China

  3. 频率测深中磁性层的视电阻率响应

    The responsibility of apparent resistivity curves on frequency sounding for magnetic layers

  4. 双磁性层结构中静磁后向体波的传播特性

    Magnetostatic Backward Volume Wave Propagation in Double-Layered Magnetic Film Structure

  5. 大气层、磁性层和空中等离子层空气流动被视为准层流。

    The air flow was regarded as quasi-laminar .

  6. 发现磁性层厚度对C/Co/C颗粒膜的微结构和磁特性有明显影响。

    The structure and magnetic properties of films strongly depend on the Co layer thickness .

  7. 球壳形磁性层磁异常正反演方法

    Direct and inverse methods of magnetic anomaly engendered by magnetic layer with spherical shell shape

  8. 滨海新区京津双赢京津塘雄起京津及周围地区区域磁异常和地壳磁性层变化的讨论

    A preliminary discussion on the regional magnetic anomaly and crustal magnetic layers in Beijing-Tianjin and surrounding areas

  9. 盘片主要包括:基板、磁性层和保护性衬层三个部分。

    And disks are made up of three parts , they are substrate magnetism layer and protective under layer .

  10. 在一定波长的垂直入射下,模拟的科尔旋转角、椭圆率随磁性层厚度变化曲线出现科尔谱极大;

    A maximum Kerr rotation exists at some thickness of the magnetic film as the wavelength of the incident light is normal .

  11. 分析了两个磁性层和间隔层的厚度对静磁后向体波色散和传播损耗的影响。

    The dispersion and propagation loss can be reduced significantly by properly choosing the thicknesses of the two magnetic films and separation layer .

  12. 盘片由抛光铝或玻璃,并与包括铁磁性层,实际存储的所有数据覆盖几层不同的化合物。

    Platters made of polished aluminum or glass and covered with several layers of different compounds including ferromagnetic layer which actually stores all the data .

  13. 根据下部区域磁异常,推测地壳下部磁性层受后期的中、新生代岩浆作用的影响很大。

    Moreover , from the lower regional magnetic anomaly it can be derived that the lower magnetic layer may be largely affected by the thermal events related to the Mesozoic and Cenozoic magmatism .

  14. 为了克服这个困难,需要对磁性层在超快时间尺度内的动力学过程进行研究,得到其发生特性转换的时间,进而改进计算机中现有的磁性存储装置。

    In order to overcome this difficulty , the dynamic process in the ultrafast time scale must be studied , for obtaining the occurrence time of the characteristics conversion and improving existing magnetic device in computer .

  15. 同时,也详细分析了磁性层和底层组分、籽晶层厚度以及真空退火对磁记录介质磁性能和微结构的影响。

    We also analyzed the effects of processing parameters , such as the composition of magnetic layer and under layer , the thickness of seed layer and the vacuum annealing , on the properties and microstructure of thin films .

  16. 根据地矿部航空物探遥感中心、胜利石油管理局的研究结果,胜利油田某区的磁性层可分为浅、中、深三层。

    The researchers of the Aero Remote Sensing Center ( the Ministry of Geology and Minerals ) and Shengli Petroleum Administration have divided the magnetic horizon in Shengli oil field into three parts ( shallow , mid and deep layers ) .

  17. 具有非磁性中间层的RE-TM双层垂直磁化膜耦合研究

    Exchange Coupling Mechanism of RE-TE Bilayers MO Films Using The Non-magnetic Intermediate Layer

  18. 另外通过对变质岩中条带状磁异常&磁性标志层的分析,还能确定构造性质。

    Besides , the characteristics of the structures can be ascertained by analysing the banded magnetic anomaly-the magnetic marker beds-in the metamorphic rocks .

  19. 依照不同类型的中间层,铁基软磁多层膜大体可分为两类:磁性中间层与非磁性中间层。

    In general , two kinds of multilayers are classified based on different spacer materials in between : one is nonmagnetic and the other ferromagnetic .

  20. 研究结果表明,层间耦合效应不仅与非磁性中间层的厚度相关,而且与中间层材料的特性相关。

    Magnetic properties were evaluated by VSM and spin valve magnetoresistance was investigated by a four-probe method to study the interlayer coupling of the two magnetic layers .

  21. 得到了成核场的解析公式,并数值计算出磁性三层膜的磁滞回线以及成核与钉扎之间的角度分布。

    The hysteresis loops , as well as the angular distributions of the magnetization between nucleation and pinning have been obtained numerically , with the formula for the nucleation field derived .

  22. 磁性合金界面层还可导致畴结构的改变及TMR和AMR的增强。

    The magnetic alloy interfacial layers in MLs may change the domain structure and enhance transverse MR and AMR .

  23. 为了保持基体金属硬度、磁性以及电镀层性能等均不变,将锌铁合金电镀工艺与磷化工艺进行了组合,以提高钢铁件的防护性能。

    Holding primary hardness , magnetism and plating properties of matrix , protection performance of steel was improved by combining the Zn - Fe alloy electroplating and phosphating technology .

  24. 当外场垂直于磁性或非磁性层时,在这种超晶格中存在两种磁序:反转自旋(flop)和平行自旋磁序。

    There can be two magnetic orderings in these superlattices the flop spin and parallel spin orderings in an external magnetic field normal to magnetic or nonmagnetic layers .

  25. 用振动样品磁强计和Mossbauer谱研究了样品的磁性.发现铁层厚度在2nm附近时存在铁磁性面心立方γ-Fe,样品的易磁化方向平行于膜面;

    Their magnetism was also studied by the vibratory sample magnetometer and Mossbauer spectrum . The face-centred cubic Fe was found in multilayers containing thinner Fe layers nearby 2 nm .

  26. 磁随机存储器中垂直电流驱动的磁性隧道结自由层的磁化翻转

    Perpendicular current-driven magnetization switching in free layer of magnetic tunneling junctions and MRAM

  27. 磁性衬板保护层形成过程及其影响因素的研究

    A Study on the Forming and Influencing Factors of the Protective Layer on Magnetic Liners

  28. 结果表明:纤维的磁性能随着芯层物料中磁粉含量的增加而增强,但磁粉含量不能过高,一般在90%以下。

    The results showed that the magnetism of the fiber increased with increasing the content of magnetic powder in the core component and decreased with increasing the sheath-core ratio .

  29. 注:单芯铠装电缆仅用于直流系统,若用于交流系统,应采用非磁性材料的铠装层。

    Note : A Single-core armoured cable is only applied to DC transmission system . If it is required to use in AC transmission system , non-magnetic materials shall be applied to armoured layer .

  30. 文中的设计将磁性纤维作为一层,其他层由普通的损耗材料构成,利用设计的一个程序对这几层材料的参数和厚度进行了优化,该程序利用了改性的遗传算法。

    We design the absorbing material by using magnetic fiber composite as a layer together with several ordinary material layers . The parameters and thicknesses of these layers are optimized by a modified genetic algorithm .