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Influence of Workpiece Surface Topography on the Mechanisms of Liquid Lubrication in Strip Drawing

机译:带材拉伸过程中工件表面形貌对液体润滑机理的影响

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摘要

The workpiece surface topography is an important factor controlling the mechanisms of lubrication in metal forming processes. In the present work, the microscopic lubrication mechanisms induced by lubricant trapped in pockets of the surface in strip drawing are studied. The experiments are performed with macroscopic model pockets in the surface studying the influence of the shape of the pockets on the lubrication mechanisms. A large radius of curvature on the rear edge and a small angle to the edge of the lubricant pocket induce a large area of backward escape of lubrication caused by microplasto hydrodynamic lubrication (MPHDL). On the other hand, when the radius on the edge is small MPHDL is impeded and microplasto hydrostatic lubrication appears instead implying forward escape of the lubricant. The occurrence of these mechanisms are quantitatively explained by a mathematical model combining a slab method of analysis of the strip drawing process and an analysis of lubricant escape by Reynolds equation.
机译:工件表面形貌是控制金属成型过程中润滑机理的重要因素。在目前的工作中,研究了在带钢拉拔过程中由陷于表面凹穴中的润滑剂引起的微观润滑机理。用表面上的宏观模型袋进行实验,研究袋的形状对润滑机理的影响。后缘的大曲率半径和与润滑油袋边缘的角度较小,会导致由微塑性流体动力润滑(MPHDL)引起的润滑油向后大逃逸。另一方面,当边缘的半径较小时,MPHDL受阻,出现微塑性静液压润滑,而不是暗示润滑剂向前逸出。这些机理的发生是通过数学模型定量地解释的,该数学模型结合了带钢拉拔过程分析的平板方法和雷诺方程对润滑剂逸出的分析。

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