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Effect of Tool Geometry Parameters on the Formability of a Camera Cover in the Deep Drawing Process

机译:刀具几何参数对深绘制过程中相机盖的成形性的影响

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摘要

The formability of the drawn part in the deep drawing process depends not only on the material properties, but also on the equipment used, metal flow control and tool parameters. The most common defects can be the thickening, stretching and splitting. However, the optimization of tools including the die and punch parameters leads to a reduction of the defects and improves the quality of the products. In this paper, the formability of the camera cover by aluminum alloy A1050 in the deep drawing process was examined relating to the tool geometry parameters based on numerical and experimental analyses. The results showed that the thickness was the smallest and the stress was the highest at one of the bottom corners where the biaxial stretching was the predominant mode of deformation. The problems of the thickening at the flange area, the stretching at the side wall and the splitting at the bottom corners could be prevented when the tool parameters were optimized that related to the thickness and stress. It was clear that the optimal thickness distribution of the camera cover was obtained by the design of tools with the best values—with the die edge radius 10 times, the pocket radius on the bottom of the die 5 times, and the punch nose radius 2.5 times the sheet thickness. Additionally, the quality of the camera cover was improved with a maximum thinning of 25% experimentally, and it was within the suggested maximum allowable thickness reduction of 45% for various industrial applications after optimizing the tool geometry parameters in the deep drawing process.
机译:绘制部分在深拉伸过程中的可成形性不仅取决于材料特性,还取决于所用设备,金属流量控制和工具参数。最常见的缺陷可以是增厚,拉伸和分裂。然而,包括模具和冲头参数的工具的优化导致缺陷的减少并提高了产品的质量。本文采用了基于数值和实验分析的基于数值和实验分析的刀具几何参数,检查了铝合金A1050的相机盖的可成形性。结果表明,厚度最小,应力在一个底部角落中最高,其中双轴拉伸是最大的变形模式。当刀具参数优化与厚度和应力有关时,可以防止在侧壁处的凹凸区域,侧壁处的拉伸和底角处的分裂的问题。很明显,通过设计具有最佳值的工具 - 与模具边缘半径10次,模具底部的袋半径和冲头半径为2.5的袋半径,获得了相机盖的最佳厚度分布。乘以板材厚度。此外,摄像机盖的质量用的25%的最大减薄实验改善,并且它是所建议的最大容许厚度减小45%,为深冲压过程中优化工具几何参数后各种工业应用中。

著录项

  • 期刊名称 Materials
  • 作者单位
  • 年(卷),期 2021(14),14
  • 年度 2021
  • 页码 3993
  • 总页数 20
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:深绘制过程;相机盖;可成型性;厚度;压力;

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