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Investigation on the thermodynamic characteristics of the deformed separate plate in a multi-disc clutch

机译:多盘离合器中变形单独板热力学特性的研究

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摘要

This work is devoted to investigate the thermodynamic characteristics of the deformed separate plate in a multi-disc clutch. The thermodynamic model is proposed, and the contact ratio of mating surface is varied to imitate the deformed plate. Moreover, the experimental study is conducted on the clutch test bench; in order to induce the plate deformation more easily, the thermometric plate has experienced the circumferential elastic deformation before experiments. Before the elastic deformation of separate plate occurs, the surface temperature increases steadily and the friction torque increases slowly with the increase of coefficient of friction. When the temperature gradient in the circumferential direction reaches the critical value 2-3 degrees C, the elastic deformation is excited. In the process of elastic deformation, the temperature growth rate in the contact zone increases dramatically, and the friction torque rises steeply. As for the variation of friction torque after the elastic deformation, it can be divided into three categories: increase smoothly, stable and decrease gradually. Moreover, at this stage, the smaller the contact ratio is, the higher the temperature in the contact zone is, and the greater the friction torque is. Meanwhile, with the decrease of the radial length and circumferential angle in the contact zone, the radial and circumferential temperature differences of the plate expand dramatically. The conclusions can be used as a theoretical basis for evaluating the real-time status of friction components and diagnosing the clutch failure.
机译:该工作致力于研究多盘离合器中变形单独板的热力学特性。提出了热力学模型,并且交配表面的接触比变化以模拟变形板。此外,实验研究在离合器试验台上进行;为了更容易地诱导板变形,在实验前经历了圆周弹性变形的温度。在发生单独板的弹性变形之前,表面温度稳定地增加,并且随着摩擦系数的增加,摩擦扭矩缓慢增加。当圆周方向上的温度梯度达到临界值2-3℃时,激发弹性变形。在弹性变形的过程中,接触区中的温度生长速率显着增加,摩擦扭矩急剧上升。至于弹性变形后摩擦扭矩的变化,它可分为三类:逐渐增加,稳定,逐渐增加。此外,在该阶段,接触比越小,接触区的温度越高,摩擦扭矩越大。同时,随着接触区的径向长度和圆周角的降低,板的径向和周向温度差异显着地展开。结论可以用作评估摩擦分量的实时状态并诊断离合器故障的理论依据。

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