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1)  power-train vibration isolation
动力总成隔振
2)  bending vibration of powerplant(BVP)
动力总成弯曲振动
3)  vibrator assembly
振动器总成
4)  Powertrain
动力总成
1.
An Experimental Research on Powertrain Mounting System Vibration Transfer Characteristics of Light Truck;
轻型载货汽车动力总成悬置系统振动传递特性试验研究
2.
Study on Sensitivity of Structure Parameters of Automotive Powertrain;
汽车动力总成结构参数敏感性研究
3.
Application of AVL excite in the design of powertrain mounting system;
AVL Excite在动力总成悬置系统设计中的应用
5)  power train
动力总成
1.
Based on a one dimensional model set up,the effect of power train on the dynamic characteristics of exhaust system is studied and the sensitivity of exhaust system to its components is analyzed.
在建立排气系统一维模型的基础上,研究了动力总成对排气系统动力学特性影响,并对排气关键组件的敏感度进行了分析。
2.
To reduce the power train s mounting vibration of truck NJ1038,and to improve the driving comfort,the angles of elastic bearing and mounting stiffness are considered,and the mounting of power train is optimized.
为了降低动力总成悬置振动,提高驾乘舒适性,从弹性支承的角度以及悬置的刚度出发,进行动力总成悬置优化研究。
3.
Correlative parameters of a certain car s power train are obtained through a complex three-wire pendulum.
该文应用复合三线摆测量法测得了某轿车动力总成的有关参数。
6)  power assembly
动力总成
1.
Modeling and simulation of power assembly for single-axle parallel hybrid electric vehicles
单轴并联式混合动力汽车动力总成建模与仿真
2.
The technical requirements of the electrical motor and the layout of the power assembly are summarized and the present situation electro-mobiles all over the world are compared,and finally its future development is discussed as well.
对电动汽车的关键技术进行了介绍,比较了电动汽车用各种型号电池的性能,总结了电动汽车用电动机需要满足的要求,及其动力总成的布局;对国内外电动汽车的现状进行了比较,并对其未来发展做了论述。
3.
According to the analysis on calculation,the following can be worked out,such as the choice of wheelbase,the determination of wheel tread,the setup of power assembly and other major assemblies,the decision of crosswise stabilizing bar,the control of shimmy and so on,which must be taken into consideration to rationa.
通过计算分析,得出在轴距的选择、轮距的确定、动力总成及各大总成的布置、横向稳定杆的选择、汽车的摆振控制等方面应重点考虑,才能使4×4载货汽车设计趋于合理。
补充资料:厚度弯曲振动模式
分子式:
CAS号:

性质:由厚度相同、极化方向相反的两长条压电陶瓷片黏合而成的振子,在外加交变电场作用下,沿厚度方向交替产生凸(凹)形弯曲和凹(凸)形弯曲的复合变形,极化方向与厚度方向平行,电极面与厚度方向垂直。振动方向与厚度方向平行,与波的传播方向垂直。这种振子的谐振频率与长度成反比、与厚度成正比。适用于低频。

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