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1.
The Research on Dynamic Damping Experiment System of Two Freedoms Based on LabVIEW;
基于LabVIEW的两自由度动力减振实验系统的设计
2.
Vibration Suppression of Tilted Vibration System by Dynamic Vibration Absorber with Two Rollers(Experimental Research)
双滚子型动吸振器对倾斜振动系的减振研究(实验验证)
3.
Analysis of FID Signal in Pulse NMR Experiment;
脉冲核磁共振实验自由衰减信号分析
4.
Experimental study of the vibration reduction of a blade using closed-loop control air-inhalation technology
叶片闭环可控吸气减振技术实验研究
5.
Vibration Characteristic Analysis and Experimental Research of Double-ring Gear Reducer
双环减速器振动特性分析及实验研究
6.
Investigation on Preicse Adjustable Attenuator Made of Three Polarizers
三偏振系统用于高精度可调衰减器的实验研究
7.
Experimental Study on Simulating Vibration Reduction to Disc Hydraulic Brake System
模拟盘式液压制动系统减振的实验研究
8.
Modeling and Experimental Research of Multi-ring Grooves Structure MR Fluid Absorber;
多环槽阻尼通道磁流变减振器建模与实验研究
9.
Design and Experimental Study on Vibration Reduction System Using Closed-loop Control Air-inhale Technology
闭环可控吸气减振系统设计与实验研究
10.
Design and Implementation of Software System of the Test of Kinetics Performance of Shock Absorber
减振器动力学性能试验软件系统设计与实现
11.
Experiment on Semi-active Control of Parallel Damping Equipment Using Vehicle Instrument Based on MRFD
基于MRFD的车载仪器并联减振半主动控制实验
12.
Investigation and Experimental Study about the Noise and Vibration Reduction of the Marine Fan
船用通风机减振降噪的探讨和实验研究
13.
Experimental Study on the Rubber Absorber Damping Property of Vibroll;
振动压路机的橡胶减振器减振性能试验研究
14.
Research of Vibration Control and Reduction of Trailer in Pool Experimentation;
水池试验拖车的振动控制与减振研究
15.
Experimental Study on Dynamic Characteristics of Diamond Saw Blades for Noise and Vibration Reduction and Micro-Failure Mechanism;
降噪减振金刚石圆锯片的动态特性及锯片微观失效机理实验研究
16.
Numerical Computational and Experimental Study on the Dynamic Coefficient and Damping Performance of Honeycomb-Seal
蜂窝密封动力特性和减振性能的实验与数值研究
17.
Experimental Study on Damping Characteristics of the Twin-tube Magneto-Rheological Fluid Damper with Disc Type Orifice for the Vehicle
车用双筒盘形缝隙式磁流变液减振器阻尼特性实验研究
18.
The experimental results show that the amplitude of vibration decreases and the resonance peak moves to higher frequency as the strength of electric field increases.
实验表明,随外加电场强度增加,结构振动幅值减小,系统谐振峰向高频方向移动。