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A study on a metal pushing V-belt-type CVT - A novel approach to characterize the friction between blocks and a pulley, and shifting mechanisms

机译:金属推动V形型CVT的研究 - 一种表征块与滑轮摩擦的新方法,以及移位机构

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In Metal V-belt-type CVT, an elastic deformation of blocks determines the shifting speed and the pulley thrusts at transitional state. Both driving and driven pulley thrusts were calculated by considering the forces acting on blocks at a pulley entrance, which agreed with the experimental results at not only steady state but also transitional state. The frictional performance of CVT fluids and the frictional characteristics between blocks and a pulley were evaluated by applying the mean coefficient of friction as a friction parameter. It was found from the experiments that the estimated coefficient of friction of CVT fluids was not constant with respect to operating conditions. It changed due to relative sliding speed between blocks and the pulley, sliding direction and normal pressure acting on V-surface of the block.
机译:在金属V带式CVT中,块的弹性变形决定了过渡状态下的换档速度和皮带轮推力。通过考虑在滑轮入口处的块上的力来计算驱动和从动滑轮推力,该力与实验结果不仅以稳态而且过渡状态同意。通过将平均摩擦系数作为摩擦参数施加平均摩擦系数来评估CVT流体的摩擦性能和块与滑轮之间的摩擦性能。从实验中发现,CVT流体的估计摩擦系数相对于操作条件不恒定。由于块和皮带轮之间的相对滑动速度,滑动方向和常规压力作用在块的V表面上的相对滑动速度而变化。

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