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首页> 外文期刊>International Journal of Engineering Research and Applications >Analysis, Design and Application of Continuously Variable Transmission (CVT)
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Analysis, Design and Application of Continuously Variable Transmission (CVT)

机译:无级变速器(CVT)的分析,设计和应用

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摘要

Continuously Variable Transmission (CVT) offers a continuum of gear ratios between desired limits. This allows the engine to operate more time in the optimum range. In contrast, traditional automatic and manual transmissions have several fixed transmission ratios forcing the engine to operate outside the optimum range. The need for a transmission system and the working principle of CVT has been discussed in depth. An attempt has been made to understand the contribution of Hydraulic Actuators, which is an integral part of a CVT. Furthermore, the question of how and why a Torque Converter has effectively replaced a conventional clutch has been answered. The materials used, constructional aspects and stress analysis of the belt has been discussed in detail. A graphical comparison of fuel efficiency between a manual transmission and a CVT in different high end vehicles is included. Recent developments in clamping force control for the push belt Continuously Variable Transmission (CVT) have resulted in increased efficiency in combination with improved robustness. Current control strategies attempt to prevent macro slip between elements and pulleys at all times for maximum robustness.
机译:无级变速器(CVT)可在所需极限之间提供连续的传动比。这样可使发动机在最佳范围内运行更多时间。相反,传统的自动变速器和手动变速器具有几个固定的传动比,迫使发动机在最佳范围之外运行。对变速箱系统的需求和CVT的工作原理已进行了深入讨论。试图了解液压致动器的贡献,它是CVT不可或缺的一部分。此外,已经回答了如何以及为什么变矩器有效地替代了常规离合器的问题。已经详细讨论了皮带的材料,构造方面和应力分析。包括在不同高端车辆中手动变速器和CVT之间的燃油效率的图形比较。推带式无级变速器(CVT)的夹紧力控制的最新发展已提高了效率,同时提高了鲁棒性。当前的控制策略试图始终防止元件和皮带轮之间的宏观滑移,以实现最大的耐用性。

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