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Numerical and experimental investigation of preform design in non-axisymmetric warm forming

机译:非轴对称热成型中瓶坯设计的数值和实验研究

摘要

This paper describes a numerical and experimental investigation of preform design in non-axisymmetric warm forming in order to achieve a large reduction in the volume of flash. A titanium TA2 watch-case-like component was used as an example. Sixteen different shapes of hollow preforms were specially designed for finite-element simulation. Their diameters of the center-holes were designed based on the values of the diameters of end-face configurations of punches and ejectors. The corresponding thicknesses of the preforms were determined by the assumption of constant volume. Under the same processing conditions, the diameter of center-hole of the preform should be the inner diameter of ejector such that its volume of flash was able to be greatly reduced to 6% of the volume of the formed component whereas the volume of flash was approximately 25% in the conventional implementation. Experiments were subsequently performed to verify the simulation results. This study rationally demonstrates the success of the preform design for warm forming of non-axisymmetric components, and provides great improvement in the utilization of material in the bulk forming process. Thus, the achievement is a tremendous saving in materials, more than a fourfold, particularly for these rare and expensive alloys.
机译:本文描述了非轴对称热成型中瓶坯设计的数值和实验研究,以实现大幅度减少毛边量。以钛TA2表壳状组件为例。专为有限元模拟设计了十六种不同形状的空心瓶坯。中心孔的直径是根据冲头和顶出器端面构造的直径值设计的。通过恒定体积的假设来确定预成型件的相应厚度。在相同的加工条件下,预成型件中心孔的直径应为顶料器的内径,以使其溢料量能够大幅度减少至成型零件的6%,而溢料量为在传统的实施方式中大约为25%。随后进行实验以验证模拟结果。这项研究合理地证明了用于非轴对称组件热成型的预成型件设计的成功,并在整体成型过程中极大地提高了材料利用率。因此,这种成就可节省大量的材料,尤其是对于这些稀有而昂贵的合金而言,节省了四倍以上。

著录项

  • 作者

    Kong TF; Chan LC; Lee TC;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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