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1)  magnetic gear
磁齿轮
1.
According to the dynamic distribution of magnetic fields during the magnetic coupling transmission of blood pumps driven by extra magnetic fields,the paper analyzed the rules of change in the radial force and torque during the transmission of radical magnetic gears by means of analytic calculation,and established the mathematical model for calculating the radial magnetic coupling force and torque.
采用解析方法对径向充磁磁齿轮在传动过程中径向受力及传递扭矩变化规律进行分析,建立了计算磁齿轮啮合传动时径向耦合力及传递扭矩的数学模型。
2.
A novel magnetic-geared outer-rotor compact machine is proposed, which integrates a magnetic gear into a brushless DC motor (BLDCM), so that they can share a common cup rotor, then the inner space of the magnetic gear is utilized adequately, thus the low-speed and high-torque is achieved in direct driving, and the high efficiency of the whole system is gained simultaneously.
提出一种新型外转子磁齿轮复合电机,该电机将磁齿轮和无刷直流电机进行整合,电机的外转子和磁齿轮的内转子共同构成复合电机的内转子,实现了低速大转矩的直接驱动方式,同时充分利用了磁齿轮的内部空间,从而提高了整个传动系统的效率。
2)  Permanent magnetic gear
永磁齿轮
1.
Numerical simulation on magnetic field of permanent magnetic gear for non-contact transmission
无接触传动永磁齿轮磁场的数值模拟
2.
Based on the analysis of calculation theories on magnetic field and torque of permanent magnetic gears, the characteristic curve of torque-angle are calculated with the use of Ansoft electromagnetic calculation software.
磁齿轮是一种新型传动机构,可在空间中无接触传递动力和运动。
3)  electro-magnetic gear
电磁齿轮
1.
This paper designed an electro-magnetic gear,which can adjust magnetic field to meet the inconsistent loads requirements.
设计了一种能够调节磁场大小以满足变负载要求的新型电磁齿轮
2.
Electro-magnetic gear has special advantages, such as no need lubricating, no greasiness, waterproof and dust-proof, avoiding overload, etc.
磁齿轮作为非接触传动机构的一种类型,其主动磁轮与从动磁轮之间没有物理接触,是通过电磁场间相互耦合作用产生的磁力来实现力矩和功率的传递。
4)  electro-magnetic gears
电磁齿轮
1.
Method of self-tuning control system for the electro-magnetic gears;
磁齿轮自校正控制系统的控制方法
5)  Magnetic gear
永磁齿轮
6)  electromagnetic gear
电磁齿轮
1.
Optimization of electromagnetic gear structure parameters by genetic simulated annealing algorithm;
基于遗传模拟退火算法的电磁齿轮结构参数优化
2.
Electromagnetic gear is a non-contact new transmission machine,the work principle of electromagnetic gear is indicated,and the mathematics model of electromagnetic torque is established.
对电磁齿轮这种新型非接触式传动机构及其工作原理进行了概述,并建立电磁转矩的数学模型,通过有限元方法对电磁齿轮结构参数进行了优化设计,在此基础上对影响电磁齿轮电磁力的主要控制参数进行了优化研究,并对电磁齿轮传动系统进行了动态仿真分析。
3.
The electromagnetic gear is made up of magnetic tooth-like part, existing around charge carrier coil engerdeling magnetic-field, the torque is transferred from electromagnetic force in transmission system of electromagnetic gear.
磁齿轮是由在产生磁场的载流线圈周围布以磁性材料的齿所构成,电磁齿轮系统通过电磁吸引力来实现传动,本文对电磁齿轮周围磁场的分析与计算,为电磁齿轮传动系统控制模型的建立与研究提供了理论根据。
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。

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