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FE simulation-based folding defect prediction and avoidance in forging of axially symmetrical flanged components

机译:基于有限元模拟的折叠缺陷预测及避免轴对称法兰零件锻造

摘要

In the traditional metal forming product development paradigm, product design is generally based on heuristic know-how and experience, which are basically acquired through many years of practice. This kind of product design paradigm is of more trial-and-error than in-depth scientific calculation and analysis. Product defect prediction and quality assurance is, thus, a nontrivial issue in this product development paradigm. With the aid of finite element (FE) simulation, deformation-related defects can be predicted and analyzed. In this paper, flow-induced folding defect in forging of axially symmetrical flanged components is systematically investigated. A FE model to study the root-cause of the defect based on the material flow behavior is developed and a defect formation mechanism is revealed. The variation of material flow behavior with the changes of part geometry parameters is investigated extensively. Based on the simulation results, the parameter variation characteristics and the sensitivity of each parameter to folding defect avoidance are identified. Using industrial components as case studies, the efficiency of the proposed defect avoidance approach is verified. The approach is further proven to be able to provide practical guidelines for the design of defect-free axially symmetrical flanged components.
机译:在传统的金属成型产品开发范例中,产品设计通常基于启发式的专门知识和经验,而这些知识和经验基本上是通过多年实践获得的。与深入的科学计算和分析相比,这种产品设计范式更多的是反复试验。因此,在此产品开发范例中,产品缺陷的预测和质量保证是一个不小的问题。借助有限元(FE)模拟,可以预测和分析与变形有关的缺陷。本文系统地研究了轴对称法兰组件锻造过程中由流动引起的折叠缺陷。建立了基于材料流动行为研究缺陷根源的有限元模型,揭示了缺陷形成的机理。随着零件几何参数的变化,材料流动行为的变化得到了广泛的研究。根据仿真结果,确定参数变化特征和每个参数对避免折叠缺陷的敏感性。使用工业组件作为案例研究,验证了所提出的避免缺陷方法的效率。事实证明,该方法能够为设计无缺陷的轴向对称法兰组件提供实用指导。

著录项

  • 作者

    Chan WL; Fu MW; Lu J;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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