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Forming tubular hexahedral screws-Process development by means of a combined finite element-boundary element approach

机译:形成管状六面体螺钉-通过有限元-边界元组合方法进行工艺开发

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The aim of the present paper is twofold: first, to propose a new forming process that is capable of producing hexahedral heads with washers in tubular screws and, second, to present a numerical approach to solve the plastic deformation of the tubular preforms and the elastic deformation of the dies. The methodology draws from independent determination of mechanical properties and fabrication of prototypes with a forming tool designed and fabricated by the authors to the development of a direct boundary integral element formulation for solving the elastic deformation of the dies inside an existing in-house finite element computer program. The performance of the proposed forming process is assessed by experimentation and results and observations are explained in the light of the proposed numerical approach based on the combination of the finite element (FE) with the boundary element (BE) methods. Because project and design of tooling is often only dependent on boundary solutions for the elastic deformation of dies and for the contact between the workpiece and the dies, the proposed FE-BE approach seems as a cost-effective methodology that avoids discretization of dies by finite elements, reduces the overall size and improves the performance of the resulting computer models.
机译:本文的目的是双重的:首先,提出一种新的成型工艺,该工艺能够生产带有垫圈的管状螺钉的六面体头部;其次,提出一种数值方法来解决管状预成型件的塑性变形和弹性模具变形。该方法学从对机械性能的独立确定以及使用由作者设计和制造的成形工具制造原型到开发直接边界积分元素公式来解决现有内部有限元计算机内部模具的弹性变形程序。通过实验评估了所提出的成形工艺的性能,并根据所提出的基于有限元(FE)和边界元(BE)方法的数值方法对结果进行了解释。由于工装的设计和项目通常仅取决于模具的弹性变形以及工件与模具之间的接触的边界解决方案,因此所提出的FE-BE方法似乎是一种经济有效的方法,可以避免通过有限的方式离散化模具元素,减小了整体尺寸并提高了所得计算机模型的性能。

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