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Investigation of lubricated die/billet interface in hydrostatic extrusion process using upper bound theorem

机译:用上限定理研究静压挤压过程中润滑模具/坯料界面的研究

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The objective of this paper is to investigate numerically the existence of thermal minimum film thickness at the die-billet interface in the inlet in the hydrostatic extrusion of aluminum alloy by incorporating the viscous heat dissipation in the lubricating film. Governing equations (Reynolds equation, energy equation, Roelands viscosity relation, and film thickness geometry relation) have been solved herein using lobatto quadrature technique. Predicted minimum film thickness, temperature, and pressure at the exit of inlet zone have been used as boundary conditions in the work zone analysis. In the proposed work zone analysis, heat transfer by convection along the lubricating film, conduction across the film, uniform billet heating by plastic deformation and strain hardening of billet material have been accounted. Drastic reduction in thermal minimum film thickness has been observed in the inlet zone with respect to the isothermal minimum film thickness of inlet zone. However, about 4 to 5 times less thermal minimum film thickness has been achieved respect to the corresponding isothermal minimum film thickness at the exit of the inlet zone.
机译:本文的目的是通过掺入润滑膜中的粘性散热,在数值上进行数字地研究了铝合金静液挤出的管道中的管芯坯料界面的热最小膜厚度。在此使用Lobatto正交技术已经在本文中解决了管理方程(雷诺式方程,能量方程,Roelands粘度关系和膜厚度几何关系。预测入口区出口处的最小膜厚度,温度和压力已被用作工作区分析中的边界条件。在所提出的工作区的分析,通过对流热传递沿润滑膜,在膜导通,通过塑性变形和应变坯材的硬化均匀坯加热一直占。在入口区相对于入口区的等温最小膜厚度观察到热最小膜厚度的急剧减小。然而,在入口区出口处的相应等温最小膜厚度方面已经达到了约4至5倍的热最小膜厚度。

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