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An Experimental Study on Dynamics of a Novel Dual-Belt Continuous Variable Transmission Based on a Newly Developed Test Rig

机译:基于新型试验台的新型双皮带无级变速器动力学实验研究

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A novel dual-belt Van Doorne’s continuous variable transmission (DBVCVT) system, which is applicable to heavy-duty vehicles, has been previously proposed by the authors in order to improve the low torque capacity of traditional single-belt CVT. This DBVCVT is a novel design among continuously variable transmissions and is necessary to be prototyped for experimental study, and the analytical dynamic model for this DBVCVT also needs to be experimentally validated. So, this work originally fabricated a prototype of DBVCVT and integrates this prototype to a light-load hardware-in-the-loop test rig by replacing the engine and load equipment with the AC motor and magnetic powder dynamometer. Moreover, with the use of this newly developed test rig, this work implements the experimental study of this DBVCVT for the first time. The comparison of experimental and simulation results validates the previously proposed analytical model for DBVCVT, and some basic characteristics of the DBVCVT in terms of the reliability, speed ratio, and transmission efficiency are also experimentally studied. In all, this developed test rig with the analytical model lays the foundation for further study on this novel DBVCVT.
机译:作者先前曾提出一种新颖的双皮带Van Doorne的无级变速器(DBVCVT)​​系统,该系统适用于重型车辆,目的是提高传统单皮带CVT的低扭矩能力。该DBVCVT是无级变速箱中的一种新颖设计,需要为实验研究进行原型设计,并且该DBVCVT的解析动力学模型也需要进行实验验证。因此,这项工作最初是制造DBVCVT的原型,然后通过用交流电动机和磁粉测功机代替发动机和负载设备,将该原型集成到轻负载的硬件在环测试装置中。此外,通过使用这种新开发的测试平台,这项工作首次实现了对该DBVCVT的实验研究。实验和仿真结果的比较验证了先前提出的DBVCVT解析模型,并且还对DBVCVT的一些基本特征进行了可靠性,速度比和传输效率的实验研究。总而言之,这种带有分析模型的发达测试平台为进一步研究这种新颖的DBVCVT打下了基础。

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