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1)  electro-permanent magnet crane
电控永磁吊
1.
On the basis of the theoretical analysis of the magnetic circuit,the relationship equations between the layer number and thickness of steel plates lifted by an electro-permanent magnet crane are established.
电控永磁吊起重多层钢板的磁路进行理论分析 ,建立起重多层钢板的数量与钢板厚度的关系方程组 ;利用尺寸为 2 5mm× 2 5mm× 2 5mm表面磁感应强度为 0 。
2)  electro-permanent magnet system
电控永磁吊具
1.
Based on the comparison of the characteristics between electro-permanent magnet system and normal electro magnet system,and according to the analysis of the application of electro-permanent magnet system in the pratical engineering,the this paper draws the conclasion that the electro-permanent magnet system possesses obvious technical advantages in the loading/unloading field of wharf.
通过对电控永磁吊具和普通电磁吊具的特点进行综合比较及对电控永磁吊具在工程实际中的应用分析,得出电控永磁吊具在码头装卸领域具有显著的技术优势。
3)  permanent magnet crane
永磁吊
1.
On the basis of the theoretical analysis of the magnetic circuit,the relationship equations between the layer number and thickness of steel plates lifted by an electro-permanent magnet crane are established.
电控永磁吊起重多层钢板的磁路进行理论分析 ,建立起重多层钢板的数量与钢板厚度的关系方程组 ;利用尺寸为 2 5mm× 2 5mm× 2 5mm表面磁感应强度为 0 。
4)  permanent magnetic lifter
永磁起重吊
1.
According to the characteristic of transfer of magnetism and mechanical force,rare-earth permanent magnetic lifter was studied and designed.
利用磁与机械力的转换特性,进行了稀土永磁起重吊的研究和设计。
5)  the lifting permanent magnetic crane
起重永磁吊
6)  controllable-flux permanent magnet synchronous machine
可控磁通永磁同步电机
1.
Through the experiments on the static magnetic circuit device that simulates the magnetic circuit working mechanism of the interior composite-rotor controllable-flux permanent magnet synchronous machine,the laws of action spot change of NbFeB and AlNiCo PMs in the process of magnetization and after magnetization were studied,and the principle of the permanent magnet controllable-flux was revealed.
通过对模拟内置混合式转子可控磁通永磁同步电机磁路工作机理静止磁路装置的试验,认知了两种永磁体磁化过程和磁化后工作点的变化规律,揭示了磁通可控原理。
补充资料:电控光散射效应
分子式:
CAS号:

性质:当一细束光通过粗晶透明铁电陶瓷薄片时,透射光以一定的角度分布向前散射,且此角度分布依赖于陶瓷极化轴的取向(即依赖于剩余极化的方向),因此,用施加电场的方法改变陶瓷极化轴的取向时,就可改变和控制散射光强度和角度分布,这就是电控光散射效应。利用此效应可制成光开关器件。

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