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Effect of Lubrication Conditions on the Forming Limit of Deep Drawing of 6061 Aluminum Alloy Sheet

机译:润滑条件对6061铝合金板拉深成形极限的影响

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摘要

With the development of lightweight vehicles, aluminum alloy sheets are increasingly used in the automotive field. However, the aluminum alloy sheet has poor forming performance at room temperature. Therefore, how to improve the sheet metal forming performance of aluminum alloy sheet has become one of the current research hotspots. In this paper, the effects of different lubricants on the deep drawing forming properties of 6061 aluminum alloy sheets were studied by cupping experiments. The effects of lubricants on the deep drawing of sheet metal forming and the wall thickness of cups after deep drawing were explored. The results show that under the condition of drawing speed of 3MPa and 200mm/min, the ultimate drawing ratio of the sheet under oil lubrication is 1.92, and the PTFE film is 2.16. Grease and graphite lubrication are respectively 2.12 and 2.03, using PTFE film lubrication can increase by about 10% contrast with the oil lubrication. The measurement of the wall thickness of the cup under the forming limit state shows that the position with the largest reduction rate appears in the rounded transition zone, and the wall portion of the cylindrical member increases with the height of the wall, and the thickness from the bottom of the cup to the bottom of the cup. The edges all show a trend of decreasing first and then increasing.
机译:随着轻型车辆的发展,铝合金板越来越多地用于汽车领域。但是,铝合金板在室温下的成型性能差。因此,如何提高铝合金薄板的板材成形性能已成为当前研究的热点之一。本文通过杯形试验研究了不同润滑剂对6061铝合金板拉深成形性能的影响。探索了润滑剂对钣金成形的深冲和深冲后杯壁厚度的影响。结果表明,在3MPa,200mm / min的拉伸速度条件下,油润滑片材的最终拉伸比为1.92,PTFE膜为2.16。油脂润滑和石墨润滑分别为2.12和2.03,使用PTFE薄膜润滑可与油润滑相比增加约10%的对比。在成形极限状态下对杯壁厚度的测量表明,减小率最大的位置出现在圆形过渡区域中,并且圆柱形构件的壁部分随着壁的高度而增加,并且从杯子的底部到杯子的底部。所有的边缘都显示出先减小然后增大的趋势。

著录项

  • 来源
    《Materials science forum》 |2019年第1期|85-91|共7页
  • 作者单位

    School of Materials and Energy Engineering Guangdong University of Technology;

    School of Materials and Energy Engineering Guangdong University of Technology;

    School of Materials and Energy Engineering Guangdong University of Technology;

    School of Materials and Energy Engineering Guangdong University of Technology;

    School of Materials and Energy Engineering Guangdong University of Technology;

    School of Materials and Energy Engineering Guangdong University of Technology;

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

    Sheet Metal Forming; Forming Limit; Lubrication Mechanism; Limit Draw Ratio; 6061;

    机译:钣金成形;成形极限;润滑机理;极限拉伸比;6061;

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