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Effects of Rolling Direction and Lubricant on Friction in Sheet Metal Forming

机译:轧制方向和润滑剂对钣金成形中摩擦的影响

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摘要

Lubrication and friction at workpiece-tool interface play an important role in product quality control of sheet metal forming process. Surface microstructures of sheets have a great influence on the development of lubrication films. In order to investigate the effects of the rolling direction of aluminum alloy sheet and lubricant on the friction behavior in sheet metal forming, strip drawing test was used. The sample used was electric discharge texturing (EDT) surface. Lubricants, both with and without additives, were used. The strip drawing tests were performed at angles between the sliding and rolling directions of 0-90 deg. Variations in the sheet surface topography were analyzed by comparing the sheet surface microstructures and its 3D surface parameters before and after the strip drawing test. Results of the strip drawing tests indicate that the kind and amount of lubricant have great influences on friction at the interface, and the lubricant with additives benefits improving the friction behavior between the sheet and the tool. The EDT surface of the aluminum alloy sheet has an anisotropic frictional property during deep drawing process due to different angles between the sliding and rolling directions. When the sliding direction is parallel to the rolling direction, the coefficient of friction has the highest value. When the angle between the sliding and rolling directions increases, the coefficient of friction decreases. The surface micro structure of the sheets after the strip drawing test at different angles between the sliding and rolling directions has been modified, and its 3D surface parameters decrease significantly to a different degree.
机译:工件-工具界面的润滑和摩擦在钣金成形过程的产品质量控制中起着重要作用。薄板的表面微观结构对润滑膜的发展有很大的影响。为了研究铝合金薄板的轧制方向和润滑剂对金属薄板成形中摩擦性能的影响,采用了带材拉拔试验。所使用的样品是放电织构(EDT)表面。使用有或没有添加剂的润滑剂。带材拉拔试验是在滑动方向和轧制方向之间的角度为0-90度的情况下进行的。通过比较带材拉拔试验前后的板材表面微观结构及其3D表面参数,分析了板材表面形貌的变化。带材拉拔试验的结果表明,润滑剂的种类和用量对界面处的摩擦有很大的影响,带添加剂的润滑剂有利于改善板材与工具之间的摩擦性能。由于滑动方向和滚动方向之间的角度不同,铝合金板的EDT表面在深冲过程中具有各向异性的摩擦性能。当滑动方向平行于滚动方向时,摩擦系数具有最高值。当滑动方向和滚动方向之间的角度增大时,摩擦系数减小。进行了带材拉拔试验后,在滑动方向和轧制方向之间不同角度下的板材表面微观结构已得到修改,其3D表面参数显着降低了不同程度。

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