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Prediction of Friction Drive Limit of Metal V-Belt

机译:金属V带的摩擦驱动极限的预测

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When fluctuations in the speed of rotation of the drive pulley are transmitted to the driven pulley via the metal V-belt, the transmitted fluctuations become attenuated as friction force approaches a state of saturation. The research discussed in this paper focused on these fluctuations in the speed of rotation and developed an index for the slip state between the belt and the pulleys. The drive and driven pulleys were regarded as a one-dimensional vibrating system connected by elastic bodies, and changes in the state matrix of the system were focused on. It was determined that when all of the eigenvalues in this state matrix become real numbers, slip speed between the belt and the pulleys increases sharply. A method was proposed of estimating this behavior of the eigenvalues from changes in the speed of rotation of the drive and driven pulleys, and indexing the current slip state. Torque fluctuations reproducing the fluctuations produced by an engine were input to the drive pulley, and pulley thrust was gradually reduced in order to measure changes in slip speed. The friction drive limit found using the proposed method matched the point of increase in slip speed and the point of maximum power transmission efficiency as obtained from measurements, verifying the effectiveness of the method. Using the proposed method, it is possible to predict the friction drive limit, a parameter that is strongly affected by individual differences between parts and age-related changes, and this will contribute significantly to the optimization of pulley thrust.
机译:当驱动滑轮的旋转速度的波动经由金属V带传递到从动滑轮时,传递的波动随着摩擦力接近饱和状态而减弱。本文讨论的研究着眼于这些旋转速度的波动,并为皮带和皮带轮之间的滑动状态制定了一个指标。从动皮带轮和从动皮带轮被认为是由弹性体连接的一维振动系统,并且着重研究了系统状态矩阵的变化。可以确定的是,当该状态矩阵中的所有特征值都变为实数时,皮带和皮带轮之间的滑动速度急剧增加。提出了一种方法,该方法根据主动轮和从动轮的旋转速度的变化来估计特征值的这种行为,并为当前滑移状态建立索引。再现由发动机产生的波动的转矩波动被输入到驱动皮带轮,并且逐渐减小皮带轮推力以便测量滑移速度的变化。使用所提出的方法发现的摩擦驱动极限与滑移速度的提高点和最大动力传递效率的点相吻合,这是通过测量获得的,从而验证了该方法的有效性。使用所提出的方法,可以预测摩擦驱动极限,该参数受零件之间的个体差异和与年龄相关的变化的影响很大,这将极大地有助于优化皮带轮推力。

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