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首页> 外文期刊>Journal of Tribology >Experimental Research on Drag Torque for Single-plate Wet Clutch
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Experimental Research on Drag Torque for Single-plate Wet Clutch

机译:单板湿式离合器摩擦力矩的试验研究

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The relative motion between the friction and separate plates in a disengaged wet clutch causes viscous drag torque when the lubrication fluid flows through the clearance. Reduction of the drag torque is one of the important potentials for the improvement of transmission efficiency. The objective of this study is to set up an experimental rig to measure drag torque for a single-plate wet clutch. Visualization of the flow pattern in the clearance through transparent quartz was presented. Design factors and lubrication conditions were tested to evaluate the effects on drag torque. A comparison between the nongrooved plate and grooved plate was made. Plates made up of different materials were also tested to reveal the effects caused by the contact angle. Drag torque increases linearly at low rotating speeds and gradually decreases at high rotating speeds. It is confirmed that fluid completely covers the plate surface at a low rotating speed and air mixes with the fluid at a high rotating speed. A low feeding flow rate is useful to reduce drag torque. The reduction of the drag torque benefits from radial and deep grooves compared to a flat plate. A small contact angle near the stationary plate plays an important role in maintaining the oil film, however, it has little effect on the drag torque at the rotating side because the hydrodynamic force becomes dominant compared to the surface tension force. The test results help to build an accurate mathematical model based on two-phase flow lubrication.
机译:在分离的湿式离合器中,摩擦片和分离板之间的相对运动会在润滑液流过间隙时产生粘滞阻力。减小拖曳转矩是提高传动效率的重要潜力之一。这项研究的目的是建立一个实验装置,以测量单板湿式离合器的阻力矩。通过透明石英呈现了间隙中流动模式的可视化。测试了设计因素和润滑条件,以评估对扭矩的影响。比较了非开槽板和开槽板。还测试了由不同材料制成的板,以揭示由接触角引起的影响。阻力转矩在低转速下线性增加,在高转速下逐渐减小。可以确定的是,在低转速下流体完全覆盖板表面,并且在高转速下空气与流体混合。较低的进料流速可用于降低阻力扭矩。与平板相比,径向和深槽可降低阻力力矩。固定板附近的小接触角在保持油膜方面起着重要作用,但是,由于与表面张力相比,流体动力占主导地位,因此对旋转侧的牵引转矩影响很小。测试结果有助于建立基于两相流润滑的准确数学模型。

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