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Design and finite element analysis of innovative tooling elements (stress pins) to prolong die life and improve dimensional tolerances in precision forming processes

机译:创新的模具元件(应力销)的设计和有限元分析,以延长模具寿命并提高精密成型工艺中的尺寸公差

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摘要

This paper proposes the use of stress pins as an innovative pre-stressing element, and presents the results of a design methodology investigation through combined finite element analysis (FEA) and design of experiment (DOE) studies for large and non-axisymmetric precision forming tooling (i.e. as in hydroforming and precision forging of connecting rod) where conventional shrink-fit solutions cannot be applied effectively and economically. In summary, smart pre-stressing elements (i.e. stress pins) are implemented to overcome very fundamental and practical problem of prolonging the die life, preventing die failures and improving dimensional part tolerances by applying local and controlled pre-stressing effects.
机译:本文提出了将应力销钉用作创新的预应力元件,并通过组合有限元分析(FEA)和实验设计(DOE)研究大型和非轴对称精密成形工具的方法论,提出了一种设计方法的结果。 (例如,在液压成形和连杆的精密锻造中),传统的收缩配合解决方案无法有效,经济地应用。总之,智能预应力元件(即应力销)的实施是为了克服非常基本和实际的问题,即通过施加局部和受控的预应力效应来延长模具寿命,防止模具故障并提高零件尺寸公差。

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