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首页> 外文期刊>International journal of engine research >Tribological effect of piston ring pack on the crankshaft torsional vibration of diesel engine
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Tribological effect of piston ring pack on the crankshaft torsional vibration of diesel engine

机译:活塞环组件对柴油机曲轴扭转振动的摩擦学影响

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摘要

In this article, a mixed lubrication model considering the oil supply quantity and a friction model under dry running condition were developed, in which an elasto-plastic contact model was employed in calculation of asperity contact forces and friction forces instead of the assumption of pure elastic contact. This model was verified to be suitable for calculating the friction forces of piston ring under different conditions on a reciprocating wear tester. The friction forces of piston ring pack were considered as an excitation source to calculate the crankshaft torsional vibration besides the exciting torques of gas pressure in the combustion chamber and inertia forces of reciprocation components. Furthermore, an experiment on a refitted single-cylinder air compressor was conducted to validate the change rule of torsional amplitudes under normal and scuffing failure conditions. The results showed that the friction forces between piston rings and cylinder liner in the mid-strokes under starved lubrication and dry running conditions increase obviously compared with those under fully flooded lubrication condition. It is reasonable to ignore the exciting torques due to friction forces of piston ring pack for calculating crankshaft torsional vibration under normal condition, and the torsional amplitudes at 2.0 order frequency increase obviously under slight and serious scuffing failure conditions. The result of experiment on a refitted single-cylinder air compressor also agrees with the above conclusion about torsional vibration. So, the change in torsional amplitude at 2.0 order frequency can be used as a referenced rule to identify scuffing failure for diesel engine through analyzing the signals of torsional vibration.
机译:本文建立了一种考虑供油量和干运行条件下的摩擦模型的混合润滑模型,在该模型中,采用弹塑性接触模型来计算粗糙接触力和摩擦力,而不是采用纯弹性的假设。联系。经验证,该模型适用于计算往复磨损试验机在不同条件下活塞环的摩擦力。活塞环组件的摩擦力除燃烧室中的气压激励力矩和往复运动部件的惯性力外,还被认为是计算曲轴扭转振动的激励源。此外,在改装后的单缸空气压缩机上进行了一项实验,以验证正常和划伤失效条件下扭转幅度的变化规律。结果表明,与全油润滑相比,在中空冲程和空转条件下,中冲程活塞环与气缸套之间的摩擦力明显增加。在正常条件下计算曲轴扭转振动时,可以忽略由于活塞环组件的摩擦力而产生的激励扭矩,而在轻微和严重的划伤失效情况下,2.0阶频率的扭转幅度会明显增加。改装后的单缸空气压缩机的实验结果也与上述关于扭振的结论一致。因此,通过分析扭转振动信号,可以将2.0阶次频率下的扭转振幅变化作为确定柴油机划伤故障的参考规则。

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