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1)  double-layer hybrid vibration isolation platform
双层隔振平台
2)  isolation platform
隔振平台
1.
Active control and simulation of isolation platform with high accuracy;
主动控制的高精度隔振平台的仿真
2.
Numerical analysis of coupled vibration of large-scale turbo-generator foundation with second layer isolation platform;
大型框架式汽机基础二层隔振平台耦合振动数值分析
3.
The main purpose of the research is to improve the vibration controlling precision of vibration isolation platform by means of Giant Magnetostrictive Actuator as the active vibration control element.
本论文对超磁致伸缩驱动器(GMA)在主动隔振系统中的应用进行了系统的理论分析和实验研究,旨在采用超磁致伸缩驱动器作为主动隔振系统中的执行机构抑制隔振平台的振动,以提高隔振平台的隔振精度。
3)  vibration isolation platform
隔振平台
1.
Study of attitude fuzzy control for air spring vibration isolation platform;
空气弹簧隔振平台姿态模糊控制研究
2.
Replacing the payload attaching fitting with a multi-axis vibration isolation platform becomes an effective measure to improve the dynamics environment that a spacecraft experiences during its journey to the orbit.
多自由度隔振平台可以有效地隔离运载器传递到卫星的振动载荷。
4)  two-stage vibration isolation system
双层隔振
1.
Fuzzy-PID control method for two-stage vibration isolation system;
双层隔振系统的模糊-PID控制方法
2.
The two-stage vibration isolation system applied widely on ships is designed with the optimal hybrid vibration isolation technology and the numerical simulation is carried out.
针对船舶中常用的双层隔振系统,进行了混合隔振优化设计和数值仿真。
5)  two stage vibration isolation
双层隔振
1.
In order to improve the passive two stage vibration isolation effectiveness,the CMAC(cerebellar model articulation controller) neural theory combined with PID control of the two stage hybrid vibration isolation was designed.
仿真结果表明,采用CMAC与PID复合控制的双层混合隔振系统的隔振效果要优于被动双层隔振系统的隔振效果。
6)  double-layer vibration isolation
双层隔振
1.
The shock response finite element model is established to simulate studying object which is a double-layer vibration isolation system of host machine in ship.
以某船主机双层隔振系统为对象,建立了有限元冲击响应模型。
2.
The lower-middle frequency range power flow calculation method of the double-layer vibration isolation system on flexible base is established.
对安装在柔性基础上的双层隔振装置建立了中低频能量流计算方法 ,考虑了基础柔性 ,减振器布置位置和激励源不对称性 ,用传递矩阵和模态叠加法数值计算了矩形薄板上安装的双层隔振系统能量流传递和振动参数传递率 ,对主要设计参数进行了讨论。
补充资料:双[1-(4-二甲氨基)苯基2-苯基1,2-二硫代乙烯合镍]
分子式:
CAS号:

性质:紫黑色单斜晶体。熔点277~278℃。溶于苯、甲苯、三氯甲烷等大多数有机溶剂。红外频率υ(C=S)1190、1165、1140cm-1,红外频率υ(S-C-C-S)880cm-1。由对二甲氨基安息香、五硫化二磷在二噁烷(二氧六环)中反应后,加入镍(Ⅱ)盐溶液制得。用作光学非线性材料。

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