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2D and 3D finite element analysis of a three stage forging sequence

机译:三阶段锻造序列的2D和3D有限元分析

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The particular cold forging process presented in this paper is the method used to form a spline shape on the head of an aerospace fastener in three forging blows. The workpiece material was Ti-6AL-4V. The first two figures of this paper illustrate the change in workpiece geometry during the final forging operation. This complicated process is a combination of extrusion (forward and backward) and forging of a very complex spline geometry. The first two stages of the forging operation were modelled using 2D finite element analysis (FEA) because of the symmetry in the workpiece geometry. Between stages two and three (shown in the first two figures), the stresses within the 2D workpiece were imported into a 3D model to enable the simulation of the spline formation. By analysing the strain, damage and flow patterns in all three stages, an in-depth understanding of the operation was obtained. The result from this analysis illustrates the powerful application of modem FEA packages for a large-scale deformation forging process.
机译:本文介绍的一种特殊的冷锻工艺是用于在三个锻造冲击中在航空紧固件的头部上形成花键形状的方法。工件材料是Ti-6AL-4V。本文的前两个图显示了最终锻造过程中工件几何形状的变化。这种复杂的过程是挤压(向前和向后)和锻造非常复杂的花键几何形状的组合。由于工件几何形状的对称性,使用二维有限元分析(FEA)对锻造操作的前两个阶段进行建模。在第2阶段和第3阶段之间(如前两个图所示),将2D工件内的应力导入到3D模型中,从而可以模拟样条线的形成。通过分析这三个阶段的应变,损坏和流动模式,可以对操作进行深入的了解。分析的结果说明了现代FEA封装在大规模变形锻造过程中的强大应用。

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