1)  bias
斜磁
1.
This paper introduces that the characteristic of the ferrite waveguide device has been improved and improvement by using of bias, which demonstrates the practicability and availability of the new option in development of waveguide device.
介绍了铁氧体波导器件在采用斜磁法后技术性能上的改变和提高 ,证明了这种新方法在研制波导器件时的实用性和有效性。
2)  clino-magnetization
斜磁化
3)  leaning magnetic field
倾斜磁场
1.
The magneto_elastic motion equation and the electrodynamic equation of the thin strip conductive plate in a leaning magnetic field are derived on the basis of the principle magneto_elastic theory,and the characteristic equations of the vibration of the plate supported along two long sides are obtained as well.
以磁弹性基本假设为出发点 ,给出了倾斜磁场中无限长条形薄板的磁弹性运动方程及电动力学方程 ,并推得了两长边简支薄板的磁弹性振动特征方程式。
4)  oblique magnetic field
斜磁场
5)  master skew tape
主扭斜磁带
6)  clino-pyrrhotite
单斜磁黄铁矿
1.
The content of Fe in the structure of clino-pyrrhotite is l ower than that in the structure of hexa-pyrrotite.
与六方磁黄铁矿相比 ,单斜磁黄铁矿Fe缺位较普遍。
参考词条
补充资料:磁铅石型旋磁铁氧体
分子式:
CAS号:

性质:晶体结构和天然磁铅石Pb(Fe7.5Mn3.5A10.5Ti0.5)19类似的铁氧体称为磁铅石型铁氧体。其结构对称性较尖晶石型的为低。其中晶体具有各向异性大、矫顽力高的六角晶系铁氧体,称为磁铅石型微波铁氧体。主要有M型(BaFe12O19)和W型(BaM2+2Fel6O27),M为锰、钴、镍、锌、镁等二价金属离子。通过离子代换部分Ba2+,可获得BaO-MO-Fe2O3三元系的磁铅石型复合铁氧体,并可使各向异性场在一定范围内变化。制造方法可用一般磁性瓷生产工艺,热压烧结或气氛烧结制成。用于微波频段,可制成隔离器、相移器、调制器、环行器等线性器件和倍频器、限幅器、振荡器、混频器、参量放大器等非线性器件。是发展现代微波技术的重要材料。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。