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1)  electromagnetic particle damper
电磁颗粒阻尼器
1.
Theoretic and experimental investigation on electromagnetic particle damper;
电磁颗粒阻尼器减振机理及试验研究
2)  particle damper
颗粒阻尼器
1.
Design of circular particle damper for turbopump
涡轮泵环形颗粒阻尼器设计(英文)
3)  intergrain magnetoresistance
颗粒磁电阻
4)  damping particles
阻尼颗粒
5)  particle damping
颗粒阻尼
1.
Experimental research on particle damping of cantilever beam;
基于悬臂梁的颗粒阻尼实验
2.
Simulation investigation on particle damping for its characteristic of loss power under vertical excitation
垂直简谐激励下颗粒阻尼耗能特性的仿真研究
3.
Non obstructive particle damping (NOPD) is a new composite damping technology which is based on traditional particle damping and impact damping techniques.
非阻塞性微颗粒阻尼 (NOPD)是一种在传统颗粒阻尼和冲击阻尼技术基础上发展起来的适用于恶劣环境的复合阻尼新技术 ,具有良好的减振效果。
6)  magnetic damper
电磁阻尼器
1.
In order to control the vibration of the rotorsystem, the structure parameters of the magnetic damper isoptimized in this paper.
基于对转子系统振动进行控制的目的,本文研究了电磁阻尼器结构参数的优化设计,建立了一种不完全对称的电磁阻尼器的结构模型。
2.
The paper research on the displacement feedback vibration control of the rotor-bearing system with the magnetic damper under the action of the periodic excited force,Pirstly,the vibration equa- tion of general linear multi-freedom flexible rotor-bearing system with the electromagnetic dampers is described,the relationship among control force,current and parameter of the damper is obtained.
本文研究在周期激振力作用下转子轴承系统电磁阻尼器的位移反馈振动控制。
3.
In this paper, the self-sensing magnetic damper is presented based on LVDT(linear variable differential transformer).
本文根据差动变压器原理研制了自感式电磁阻尼器,该结构结合电磁轴承和差动变压器工作原理的优点,一方面可实现电磁阻尼器的非接触式稳定悬浮,另一方面为降低电磁阻尼器的成本提供了条件。
补充资料:阻尼型电容分压器(见分压器)


阻尼型电容分压器(见分压器)
damped capacitor voltage dividers

阻尼型电粤万压藉一”divider尽)见分压器(dam卯d eapaei、orvoltage
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条