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Heat Flux in Friction Clutch with Time Dependent Torque and Angular Velocity

机译:随时间变化的转矩和角速度的摩擦离合器中的热通量

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When a body slides over another body, the major part of the work done against the frictional force which resists the motion will appear as a heat at the interface between the contact surfaces of the bodies. Consequently, the temperatures of that interface will increase to high values and may cause a high thermal stresses enough to produce large thermal deformations and thermal cracks in the contact surfaces. The present paper presents an analytical solution to calculate the total heat generated between the rubbing surfaces for the dry friction clutch, the analytical solution was determined using the equations of motion of two-inertia system assuming a uniform pressure distribution over the surfaces of contact where in this case the heat flux will increase linearly with disc radius. The torque and angular sliding speed are dependent of time. The variation of torque and angular sliding speed with time were discussed through the first period of engagement (0≤t≤ts). The results showed that the values of the heat generated (heat flux) increases with disc radius where the maximum value appeared at the outer radius of the clutch disc. The maximum heat flux occurred at the mid time of slipping period (t=0.2s). In this research paper, it was assumed that the values of the relative angular speed decrease linearly with time of engagement.
机译:当一个物体在另一个物体上滑动时,抵抗阻力的摩擦力所完成的工作的大部分将在物体的接触表面之间的界面上以热量的形式出现。因此,该界面的温度将升高到很高的值,并可能引起足够大的热应力,从而在接触表面产生较大的热变形和热裂纹。本文提出了一种用于计算干式摩擦离合器摩擦表面之间产生的总热量的分析解决方案,该分析解决方案是使用两惯性系统的运动方程式确定的,假设接触面的压力分布均匀,其中在这种情况下,热通量将随着圆盘半径线性增加。扭矩和角向滑动速度取决于时间。在接合的第一阶段(0≤t≤ts),讨论了扭矩和角向滑动速度随时间的变化。结果表明,所产生的热量(热通量)的值随盘半径的增加而增加,其中最大值出现在离合器盘的外半径处。最大热通量出现在滑移周期的中间时间(t = 0.2s)。在该研究论文中,假设相对角速度的值随接合时间线性减小。

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