1) piezoelectric vibrating table
压电振动台
2) High frequency piezoelectric shaker
压电高频振动台
3) Electrodynamic shaker
电动振动台
1.
Research and Realization of Non-Gaussian Random Vibration Control Technology Based on Electrodynamic Shaker;
基于电动振动台的非高斯随机振动控制技术的研究和实现
2.
This article compares the construct and principle of the induction electrodynamic shaker and the traditional electrodynamic shaker, making use of the more mature calculation method of the traditional electrodynamic shaker, carries on the research to the calculation method of the induction electrodynamic shaker.
通过对感应式电动振动台和传统的电动振动台的结构原理进行比较,利用传统的电动振动台比较成熟的计算方法,对感应式电动振动台的计算方法进行了研究,提出了利用类似变压器模型来模拟感应式电动振动台的新型计算方法,引入变流比的参数来建立感应式电动振动台的电路方程。
4) electrodynamic vibration generator
电动振动台
1.
Finite element modeling was carried out on a certain electrodynamic vibration generator itself.
对某电动振动台空台进行了有限元建模,介绍了建模方法。
2.
Finite element modeling and numerical calculations were carried out and the simulation technology of the sine-scan vibration test was investigated on a certain electrodynamic vibration generator, together with the clamp and the plate specimen designed by ourselves.
本文以某电动振动台为主要研究对象,结合自行设计的夹具和试件,通过有限元建模和数值仿真技术对振动台正弦扫描振动试验进行了模拟研究。
5) electrodynamic vibration shaker
电动振动台
1.
This paper introduces the configuration and working principle of low frequency electrodynamic vibration shaker calibration system, and analyzes nonlinear factors.
简要介绍了低频电动振动台校准系统的结构和工作原理 ,分析了其存在非线性的原因。
6) hydraulic vibrancy platform
液压振动台
1.
This paper uses PXI data collection card accorded with industry standard to make analysis,constitute solid database and identify at the ground of the hydraulic vibrancy platform of "TieMa project",so the suited ARMAX model is obtained,and the model should be examined for verification at the end.
以“铁马工程”项目中的液压振动台为背景,通过由符合工业标准的PXI数据采集卡得到的现场数据进行分析,建立立体式数据库,对液压振动系统进行辨识,从而获得与实际系统较为匹配的ARMAX数学模型,并做了模型检验与对比;分析结果表明该数据采集系统采集的数据有效,辨识模型能够较准确的反映液压振动台的实际性能,为液压振动系统的控制与控制算法的设计提供了必要的理论基础。
补充资料:GPS-1200-Ⅲ型高频振动细筛
GPS-1200-Ⅲ型高频振动细筛
GPS一1200一III型高频振动细筛
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