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Effects of Surface Roughness on Tribological Characteristics in Micro Double Cup Extrusion of Aluminum

机译:表面粗糙度对铝微双杯挤压中摩擦学性能的影响

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摘要

This study used the micro double cup extrusion of aluminum to investigate the effects of the surface roughness of workpiece and die on the tribological conditions involving mixed lubrication and plastic deformation. The aluminum billets with the diameter of 3 mm and the height of 4.5 mm in different surface roughnesses were prepared by grinding processes and used in the experiments under conditions of dry and molybdenum disulfide lubrication. To estimate the friction factors, the heights of the extruded cups were measured and compared with those predicted by finite element simulations using the law of constant shear stress. The results show that smaller workpiece surface roughness resulted in low and nearly constant friction in the early stage of the micro extrusion under the dry and lubricated conditions, which were reflected in the estimated friction factors. In the later stage of the extrusion processes, the workpiece surface finish became close to the one of the die for all tested conditions. The friction was clearly reduced in the dry condition but it became greater in the cases with the lubricated condition. The surface condition in the later stage of the micro extrusion process was believed to allow the lubricant to escape from the contact interface.
机译:这项研究使用铝的微型双杯挤压技术研究了工件和模具的表面粗糙度对涉及混合润滑和塑性变形的摩擦学条件的影响。通过磨削工艺制备了直径为3 mm,高度为4.5 mm,表面粗糙度不同的铝坯,并在干式和二硫化钼润滑条件下用于实验中。为了估算摩擦系数,测量了挤压杯的高度,并将其与使用恒定剪应力定律的有限元模拟所预测的高度进行比较。结果表明,较小的工件表面粗糙度在干燥和润滑条件下的微挤压初期导致较低且几乎恒定的摩擦,这反映在估算的摩擦系数中。在挤出过程的后期,在所有测试条件下,工件的表面光洁度都接近于模具之一。在干燥状态下,摩擦力明显降低,但在润滑状态下,摩擦力增大。认为在微挤出过程的后期阶段的表面状况允许润滑剂从接触界面逸出。

著录项

  • 来源
    《Key Engineering Materials 》 |2010年第2010期| 5-8| 共4页
  • 作者单位

    Department of Mold and Die Engineering,National Kaohsiung University of Applied Sciences,No. 415, Chien-Kung Rd., Sanmin District, Kaohsiung 807, Taiwan;

    Department of Mold and Die Engineering,National Kaohsiung University of Applied Sciences,No. 415, Chien-Kung Rd., Sanmin District, Kaohsiung 807, Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    micro metal forming; extrusion; friction; surface roughness;

    机译:微金属成型;挤压;摩擦;表面粗糙度;

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