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1)  Multitronic CVT
Multitronic无级变速器(CVT)
2)  continuously variable transmission (CVT)
无级变速(CVT)
3)  Metal belt type continuously variable transmission (CVT)
金属带式无级变速器(CVT)
4)  continuously variable transmission
无级变速器
1.
Characteristics analysis of hydro-mechanical continuously variable transmission of tractor;
拖拉机液压机械无级变速器的特性分析
2.
Study on Controlling Method of Metal Belt Continuously Variable Transmission (CVT) in Clamping Force Aiming Slip Rate;
汽车无级变速器滑转率与夹紧力控制研究
3.
Study on Slippage and Wedge Losses of Continuously Variable Transmission;
无级变速器滑动与楔入损失的研究
5)  CVT
无级变速器
1.
An Electro-hydraulic Control System for Metal V-belt CVT;
金属带式无级变速器电液控制系统
2.
A Study on Evaluation System for the Transmission Performance of Vehicle CVT;
汽车无级变速器传动性能评价系统研究
3.
Development of Virtual Experiment System for Motor CVT Based on SolidWorks Software;
基于SolidWorks软件的摩托车无级变速器虚拟实验系统开发
6)  Continuously variable transmission(CVT)
无级变速器
1.
Aiming at the shortcoming of general ratio controller for Continuously Variable Transmission(CVT),an improved PID control algorithm was presented,which was more suitable for mass production requirements and more adaptive.
针对无级变速器(CVT)常规速比控制器的局限性,提出了一种既能满足大规模生产要求,又具有广泛适应性的改进PID速比控制算法。
2.
To accomplish the demand of continuously variable transmission(CVT) fault diagnosis,the structure of CVT fault diagnosis system is built and the application model of Back-Propagation Neural Network is established aiming at the features of CVT faults.
为了实现无级变速器的故障诊断要求,针对无级变速器的故障特点,构造了CVT故障诊断系统的结构,建立了应用于无级变速器故障诊断系统BP的神经网络模型,设计了网络的结构和2种不同的算法,并分别对所建立的网络进行了仿真和分析。
3.
The reason to shift the gears in the transmission during the auxiliary braking was presented and it was explained that here the fittest gearbox is continuously variable transmission(CVT).
阐述了辅助制动时控制变速器的速比原因,并说明了最合适的变速机构为无级变速器。
补充资料:无级变速
无级变速
infinitely variable speed transmission
    能连续无级地改变输入轴与输出轴的传动比或输出轴转速的传动。无级变速结构较简单、能在工作时变速、可使机器在有利的速度下工作,而且便于实现调速自动化。根据工作原理,无级变速传动可分为:①机械无级变速,通常由传动机构、加压装置和调速机构组成,主要有摩擦式(利用摩擦传动实现变速)和齿链式两大类,以摩擦式应用较广泛,如环锥摩擦式无级变速器、钢球摩擦式无级变速器、多盘摩擦式无级变速器、带式无级变速器、链式无级变速器等。②液力无级变速。以液体为工作介质的无级变速,一般由液力偶合器和液力变矩器实现变速。③液压无级变速。分节流无级变速(通过调节节流元件流通面积的大小来调节液压马达的转速)和容积无级变速(通过变换变量泵或液压马达的排量来调节液压马达的转速)。④气压无级变速。通过控制压缩空气流量,调节气动马达的输出功率和转速来实现。⑤电力无级变速,依靠改变电动机的转速来实现。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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