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Feasibility Evaluation of Sheet Metal Hydroformed Components Through Shape Factors Application

机译:通过形状因子应用评估钣金液压成型零件的可行性

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摘要

Sheet hydroforming has gained increasing interest in the automotive and aerospace industries because of its many advantages such as higher forming potentiality, good quality of the formed parts which may have complex geometry. The main advantage is that the uniform pressure can be transferred to any part of the formed blank at the same time [1].rnIn this paper, a "shape factors" set has been defined with the proper goal to understand if it can be used to help engineers to define "process rules" for the studied non conventional technology [2]. A specific prediction model, obtained thanks to a numerical factorial fractional plane, has been used in order to preview the process responses vs each defined shape factor. These shape factors have been used to track the process performances through their variation thanks to the usage of the numerical simulation that has been validated with an appropriate experimental campaign executed thanks to the usage of a specific equipment properly designed.
机译:薄板液压成形由于其许多优点,例如较高的成形潜力,良好的成形零件质量(可能具有复杂的几何形状)而在汽车和航空航天工业中引起了越来越多的兴趣。主要优点是可以将均匀的压力同时转移到成形坯料的任何部分[1]。rn本文定义了一个“形状因数”集,其正确目标是了解是否可以使用它帮助工程师为研究的非常规技术定义“过程规则” [2]。为了预测过程响应与每个定义的形状因子之间的关系,使用了一个由于数值阶乘分数平面而获得的特定预测模型。由于使用了数值模拟,这些形状因数已被用来跟踪过程性能的变化,这要归功于使用适当设计的特定设备,并通过适当的实验活动进行了验证。

著录项

  • 来源
    《Key Engineering Materials》 |2009年第2009期|25-36|共12页
  • 作者单位

    Department of Engineering Innovation, University of Salento, Italy;

    Department of Engineering Innovation, University of Salento, Italy;

    Scuola Superiore ISUFI, University of Salento, Italy;

    Department of Engineering Innovation, University of Salento, Italy;

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

    shape factor; sheet hydroforming; FEA; Ls-Dyna;

    机译:形状因数片材液压成型;有限元分析;迪纳;

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