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Multi-factor coupling system characteristic of the dynamic roll gap in the high-speed rolling mill during the unsteady lubrication process

机译:不稳定轧制过程中高速轧机动态辊缝的多因素耦合系统特性

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In the present work, a multi-factor coupling dynamic model of a rolling mill system for a dynamic roll gap during an unsteady lubrication process was developed on the basis of the rolling theory, lubrication and the friction theory, and the mechanical vibration theory. The multi-factor coupling model of interfacial film binding was coupled with the rolling force model, dynamic roll gap interface friction model and work roll movement model. The corresponding distributions of friction and pressure at varying surface roughness and times were systematically analyzed during the unsteady mixed lubrication process. The effects of the main processing parameters on the critical speed and amplitude for self-excited vertical vibration were investigated.
机译:在目前的工作中,基于轧制理论,润滑和摩擦理论以及机械振动理论,建立了非恒定润滑过程中动态轧辊间隙的轧机系统的多因素耦合动力学模型。界面膜结合的多因素耦合模型与轧制力模型,动态辊缝界面摩擦模型和工作辊运动模型耦合。在非稳态混合润滑过程中,系统地分析了在变化的表面粗糙度和时间下摩擦和压力的相应分布。研究了主要加工参数对自激垂直振动临界速度和振幅的影响。

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