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1.
Design of Control System of MR Damper Damp Power
磁流变阻尼器阻尼力控制系统的设计
2.
Calculation of Damper Force with Different Boundary Conditions
不同边界条件磁流变阻尼器阻尼力计算
3.
Analytic solution of damper force of a bypass slot valve type magnetorlogical damper
旁置孔隙阀式磁流变阻尼器阻尼力解析解
4.
The damping force of radiation is a jumpulse of the time rate of change of force.
“辐射阻尼力”是一种力变率的猝量。
5.
Structure size and liquid medium density are decisive factors affecting damping moment modulus.
阻尼器的结构尺寸、体介质密度是影响阻尼力矩系数的决定因素。
6.
Performance Test and Prediction Model of Damping Force of MR-J Dampers
MR-J型磁流变阻尼器性能测试与阻尼力预估模型
7.
Design and Research of MR Damper for Small Displacement & Big Damping Force
一种小位移大阻尼力磁流变阻尼器的设计与研究
8.
STRUCTURAL DESIGN AND PERFORMANCE PREDICTION OF MR DAMPER WITH BIDIRECTIONAL ADJUSTING DAMPING FORCE
阻尼力双向调节磁流变阻尼器的结构设计与性能预估
9.
New type of magnetorheological fluid damper applied to the small damping force condition
一种可应用于小阻尼力领域的新型磁流变液阻尼器
10.
Measurement of equivalent damping force of TMD based on semi-simulation experimental testing system
基于半仿真实验系统的调谐质量阻尼器等效阻尼力测量
11.
Experimental Research on Dynamic Characteristics of Non-Obstructive Particle Damping Elements;
非阻塞性微颗粒阻尼构件动力特性的实验研究
12.
G Damp- The friction for Goal. Higher values dampen the effect of the goal on the soft body.
G 阻尼-作为目标的磨擦力。较高的阻尼数值使目标对软体的效果。
13.
Various aerodynamic devices, as well as passive dampers and serve dampers, are available.
各种空气动力装置以及无源阻尼器和伺服阻尼器是可用的。
14.
G Damp - The friction for Goal. Higher values dampen the effect of the goal on the soft body.
阻尼-作为目标的磨擦力。较高的阻尼数值使目标对软体的效果。
15.
Study on the Preparation and the Damping and Mechanical Properties of High-Damping Chloro-Butyl Rubber with Wide-Temperature Range
宽温域高阻尼氯化丁基橡胶的制备及其阻尼与力学性能研究
16.
It is a resistance device without pressure recovery.
这是一种没有压力补偿的阻尼式装置。
17.
Study on Improving Power System Daming by Using UPFC;
利用UPFC提高电力系统阻尼的研究
18.
Experimental Study on the Mechanical Property of Twin Magneto-Rheological Dampers;
双磁流变阻尼器力学性能的试验研究