| 1. | A synchronous motor can be used to drive a fan through a variable-speed magnetic coupling . 一个同步电动机能够通过变速磁性联轴带动风扇。 |
| 2. | Undesirable magnetic coupling can occur as a result of an error in the alignment of the torquing system . 力矩系统校直存在的误差能产生不希望有的磁性耦合。 |
| 3. | The structure and magnetic coupling field was processed by ansys software 5 、总结。就本论文的工作进行总结。 |
| 4. | Magnetic coupled feedthrough 磁耦合旋转馈通 |
| 5. | Manufactures magnetic couplings , sealless blowers , and diving life support equipment -制造单体液压支柱,空气压缩机和气动凿岩机。 |
| 6. | Optimization trial and analysis of parameter on a new type magnetic coupling enduring high temperature 新型耐高温磁力联轴器参数优化试验及分析 |
| 7. | The model shows that the electro - magnetic coupling relationship inside the two - pole pm spherical motor is simple and that the torque of the motor is easy to control 所得结果表明,双极永磁球形电动机内部电磁关系简单,易于实现对转子位置的控制。 |
| 8. | It also discusses the key technologies of robotic wafer handling system , including direct drive , magnetic fluid seals , magnetic coupling , trajectory planning , control technology , calibration and gripping 就直接驱动技术、磁性流体密封技术、磁力传动技术、硅片机器人轨迹规划与控制技术、校准技术以及夹持技术,对硅片机器人传输系统的关键技术进行了探讨。 |
| 9. | According to the working principle of magnetic bearing , there exists force coupling , magnetic coupling in radial magnetic bearings inside the magnetic suspension rotor system , and there exists force coupling , moment coupling between magnetic bearings as well 摘要磁悬浮转子系统中,根据磁力轴承工作原理,径向磁力轴承内存在力耦合、磁耦合;径向磁力轴承之间存在力耦合、力矩耦合。 |
| 10. | The difference between the magnetic moments for the samples with respective doping level can be ascribed to the variation of the competition between thermal effect and the magnetic coupling . based on the spin orientation rotation of dy sublattice as well as the antiferomagnetic coupling between dy sublattice and mn sublattice , we successfully elucidate the changes of magnetic structure in perovskite compounds s . electron spin resonance ( esr ) study on perovskite compounds on the basis of chapter 4 , we give further study on micromagneticism of dy - doping perovskite compounds la0 . 67 - xdyxsr0 . 33mno3 其中第一节简单回顾了早期对a位双稀土元素元素掺杂钙钛矿化合物的研究,早期研究较多的是替代元素的离子半径变化上,由于替代离子半径的改变,使a位平均半径变ylll化,致使公差因子改变,使mn o长、键角变化,晶格效应的作用使化合物的磁性、电性、 cmr效应发生改变。 |