而且,从理查森的并列的太阳也有一定的动力换档的游戏了一枪。
And, the shot from Richardson that tied the game up for the Sun's was also a definite momentum shifter.
离合器又常与缓冲阀共同工作,以达到接合平稳和动力换档的目的。
The clutch often works together with the buffer valve for the purpose of smooth engagement and gear-shifting under load.
动力换档冲击是ZL50装载机在行走和作业过程中产生的一种常见故障。
The dynamic shifting shock is a usual trouble of the Loader ZL50 during the period of work and traveling.
TCM 870装载机传动系统,采用三元件液力变矩器和定轴式常啮合动力换档变速器。
The drive system on Model TCM870 loader features three-element torque converter and counter shaft, constant mesh, power-shift transmission.
采用基于特征的参数化建模方法,对动力换档变速器进行了虚拟建模、虚拟装配,然后对动力换档变速器虚拟模型进行干涉分析。
With parameterized modeling method on feature. the power-shifting transmission's virtual model and virtual assembling are established. Then, interference analysis is done.
为研究动力换档离合器换档过程中的充油和放油特性,基于动力换档离合器的工作原理,建立了动力换档离合器充油和放油两个过程的动态特性数学模型。
Based on the working principle of the power shift clutch, the mathematical models were developed to study the dynamic performance of charge and discharge processes during shifting.
换档能够在毫秒级的时间内完成,无须减速,无须降低引擎动力,同样不需要使用把手。
Gears change within milliseconds, without having to reduce speed, decrease engine power or use a clutch.
发动机空载工况的辨识在车辆动力传动系统仿真和车辆的起步、换档自动控制中起着重要的作用。
Important function is played by identification of engine no-load mode in simulation of power transmission system, starting and automatic shifting control of motor vehicle.
凭借其动力是相协调的设计完美的运动车辆特征-方向盘,换档把手和中控台都放在专用碳皮革光学。
With its dynamical design it harmonizes perfectly with the sporty vehicle character - steering wheel, gear shift knob and centre console are kept in exclusive carbon-leather optics.
另外amt自动换档机构需要动力,因此或多或少也得降低传动效率。
In addition AMT automatic transmission organizations need dynamic, more or less have to reduce the transmission efficiency.
在JL 474 Q1发动机进行台架性能试验的基础上,根据现有的理论,得到基本的动力性和经济性换档规律。
Based on the performance Testing of JL474Q1 engine, according to the existing theory, general shifting law of the power and economy performance is developed.
依据包含一双离分器变速箱的汽车动力传动系统的详细动力模型开发了一个集成的动力传动系的换档控制。
Based on a detailed dynamic model of an automotive powertrain containing a twin-clutch transmission, an integrated powertrain control for gearshifts is developed.
得出了在固定换档策略下经济型与动力型的换档点数据。
The shifting point data of economic and dynamic type under fixed shifting strategy are obtained.
最后,通过动力分析,确定了在换档过程中,系统各总成应采取的控制策略。
Finally, some control strategy for each assembly in the system including engine and transmission during shifting are discussed.
运用模糊控制理论,建立了由基本模糊换档策略和模糊修正模块组成的车辆模糊智能换档控制系统,以提高履带车辆的动力性和越野机动性。
An intelligent fuzzy shift control system composed of a basic fuzzy shift strategy and a fuzzy modification module was developed to improve dynamic conditions and cross-country maneuverability.
实验表明,该系统可以按最佳动力性换档规律和最佳经济性换档规律自动从低档升入高档或从高档降到低档。
The tests indicate that the system can shift automatically from low gear to high or from high gear to low according to the optimal dynamic and economic shift pattern.
③利用空档,中断动力传递,以使发动机能够起动、怠速,并便于发动机换档或进行动力输出。
Using neutral, severances the power transmission, to make the engine start, idle, and is advantageous for the engine to shift gears or to carry on the dynamic output.
这种纯机械传动,具有传动效率高,结构简单等优点,但是换档过程不可避免存在动力中断。
This purely mechanical transmission, drive with high efficiency, simple structure, and other advantages, but there is inevitable shift of power interruption.
司机对车辆性能的要求越来越高,要求自动变速器高的换档不仅是燃油经济性和动力性能而且还要求好的换档质量、降低噪音等等。
In automatic transmissions, higher quality levels are required not only for fuel economy and power performance but also for shift quality, noise reduction, ect.
同时,对低负荷发电工况、换档过程发动机转速调整工况下混合动力汽车发动机转速控制策略进行了研究。
The control strategy of engine speed in low load electricity generating process and the shifting process was studied.
通过分析通常最佳动力性换档规律产生循环换档的原因,提出一种改进的动态三参数最佳动力性换档规律。
This paper analyzes the reasons of shift cycle for the common 3-parameter-controlled optimal-power shift schedule.
通过分析通常最佳动力性换档规律产生循环换档的原因,提出一种改进的动态三参数最佳动力性换档规律。
This paper analyzes the reasons of shift cycle for the common 3-parameter-controlled optimal-power shift schedule.
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