Rotational speed stability is an important evaluation indicator of the performance of a hydro-viscous clutch(HVC).To improve the rotational speed stability of HVCs in mixed lubrication and the running condition of the...Rotational speed stability is an important evaluation indicator of the performance of a hydro-viscous clutch(HVC).To improve the rotational speed stability of HVCs in mixed lubrication and the running condition of the friction pairs,the speed stability of an HVC in mixed lubrication was studied.To this end,the friction coefficients of both copper-based and paper-based friction pairs were experimentally tested using an MM1000-III wet friction machine.Theoretically,a torsional vibration model of the system is presented.The phase plane analysis method is applied to evaluate the stability of the torsional vibration model,where a critical negative gradient(CNG)is defined.The results show that the friction coefficient in mixed lubrication is an important parameter for the stability of the rotational speed.The system will be unstable when the negative gradient of the friction coefficient-slip speed is larger than the CNG.According to the definition of the CNG,suggestions regarding choice of friction pairs are made to improve the rotational speed stability of an HVC in mixed lubrication.展开更多
根据热传导理论,结合热流密度,考虑摩擦片上沟槽的对流换热作用,建立了液黏调速离合器摩擦副的理论模型。根据离合器实际工况,对摩擦副边界摩擦阶段进行数值分析,研究摩擦副不同材料组合下的温度与变形差异。研究结果表明,摩擦副温度场...根据热传导理论,结合热流密度,考虑摩擦片上沟槽的对流换热作用,建立了液黏调速离合器摩擦副的理论模型。根据离合器实际工况,对摩擦副边界摩擦阶段进行数值分析,研究摩擦副不同材料组合下的温度与变形差异。研究结果表明,摩擦副温度场被沟槽分成了不同温度梯度的椭圆块,高温集中在靠近外径处;相同工况下,对偶片材料为30Cr Mn Si A时温度和变形量最大。摩擦副内外径发生了沿z轴正向和负向位移,整个摩擦副产生碟形翘曲现象。在对偶片外径约束情况下,仅30Cr Mn Si A未发生塑性变形。这对液黏传动机理和摩擦副主动设计具有指导意义。展开更多
基金supported by National Natural Science Foundation of China(Grant No.51275039)Tribology Science Fund of the State Key Laboratory of Tribology(Grant No.SKLTKF13B01).
文摘Rotational speed stability is an important evaluation indicator of the performance of a hydro-viscous clutch(HVC).To improve the rotational speed stability of HVCs in mixed lubrication and the running condition of the friction pairs,the speed stability of an HVC in mixed lubrication was studied.To this end,the friction coefficients of both copper-based and paper-based friction pairs were experimentally tested using an MM1000-III wet friction machine.Theoretically,a torsional vibration model of the system is presented.The phase plane analysis method is applied to evaluate the stability of the torsional vibration model,where a critical negative gradient(CNG)is defined.The results show that the friction coefficient in mixed lubrication is an important parameter for the stability of the rotational speed.The system will be unstable when the negative gradient of the friction coefficient-slip speed is larger than the CNG.According to the definition of the CNG,suggestions regarding choice of friction pairs are made to improve the rotational speed stability of an HVC in mixed lubrication.
文摘根据热传导理论,结合热流密度,考虑摩擦片上沟槽的对流换热作用,建立了液黏调速离合器摩擦副的理论模型。根据离合器实际工况,对摩擦副边界摩擦阶段进行数值分析,研究摩擦副不同材料组合下的温度与变形差异。研究结果表明,摩擦副温度场被沟槽分成了不同温度梯度的椭圆块,高温集中在靠近外径处;相同工况下,对偶片材料为30Cr Mn Si A时温度和变形量最大。摩擦副内外径发生了沿z轴正向和负向位移,整个摩擦副产生碟形翘曲现象。在对偶片外径约束情况下,仅30Cr Mn Si A未发生塑性变形。这对液黏传动机理和摩擦副主动设计具有指导意义。