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张紧力对新型活齿无级变速器传动波动影响分析 被引量:1

Analysis of the Influence of Tension on the Fluctuation of iMCVT
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摘要 新型活齿无级变速器(innovative Movable-teeth CVT,i MCVT)是一种非摩擦式无级变速传动装置,其在传动的过程中会出现转速转矩的波动。为研究张紧力对其传动过程中转速转矩波动的影响,基于iMCVT的结构以及工作原理,分析iMCVT产生波动的原因;基于ADAMS建立其动力学仿真模型,通过改变张紧装置对金属齿形链的张紧力,来研究张紧力对i MCVT传动波动的影响。仿真结果表明,在传动比为1时,适当增加张紧力可以减少转速的波动,当张紧力达到一定值时(大约600 N),转速的波动趋于平稳。在此基础上,通过传动效率图可知,在一定范围内,增加张紧力可以提高传动效率,但过大的张紧力可导致传动效率的下降。研究结果为iMCVT张紧力的控制奠定了基础。 The Innovative Movable-teeth CVT(iMCVT)is a new type of non-friction continuously variable transmission,in the process of transmission,there will be fluctuations in rotational speed and torque.In order to investigate the influence of the tension to the fluctuations of the rotational speed and torque,based on the structure and work principle of iMCVT,the causes of iMCVT fluctuations are analyzed.Based on ADAMS,the dynamics simulation model is built.The effect of tension force on the iMCVT transmission fluctuation is studied by changing the tensioning force of the tensioning device on the metal tooth chain.The simulation results show that when the transmission ratio is 1,increasing the tension force can reduce the fluctuation of the rotational speed,when the tension force reaches a certain value(about 600 N),the fluctuation of the rotational speed tends to be stable.On this basis,through the formula to calculate the transmission efficiency curve,and in a certain range,increase the tension can improve the transmission efficiency,too much tension can lead to the decline of transmission efficiency.The results of this study laid the foundation for the control of iMCVT tension.
作者 冯能莲 黄洪印 王小凤 陈龙科 张星宇 Feng Nenglian;Huang Hongyin;Wang Xiaofeng;Chen Longke;Zhang Xingyu(College of Environment and Energy Engineering,Beijing University of Technology,Beijing 100124,China;Xinen Technology Hong Kong Co.,Ltd.,Hong Kong 999077,China)
出处 《机械传动》 北大核心 2019年第1期90-95,共6页 Journal of Mechanical Transmission
基金 国家自然科学基金(51075010) 北京市教育委员会重点项目(KZ200910005007)
关键词 新型活齿CVT 传动波动 张紧力 ADAMS仿真 iMCVT Transmission fluctuation Tension ADAMS simulation
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