管道冲压模具几何形状的优化

M. Farshidi
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引用次数: 3

摘要

由于管有许多工业应用,不同的尝试集中在管的严重塑性变形过程。作为一个例子,管通道压制(TCP)是一个有吸引力的过程,因为它可以用于加工不同尺寸的管。然而,需要更多的尝试来改善TCP的结果。例如,在减小应变非均质性的同时,施加更大的应变是这一过程的挑战。本工作旨在通过有限元模拟程序优化TCP的模具几何形状,并通过实验验证,以增加施加的应变和减少应变的非均匀性。结果表明,模具曲率半径的增大导致施加塑性应变减小,应变非均质性增大。此外,考虑管厚和通道角,计算了通过TCP施加合理应变所需的最小凸模高度。除此之外,还推荐了最佳的模具几何形状,以尽量减少应变不均匀性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of die geometry for Tube Channel Pressing
Since tubes have numerous industrial applications, different attempts are focused on the severe plastic deformation processes of tubes. As an illustration, tube channel pressing (TCP) is an attractive process for this purpose since it can be used for processing of different sizes of tubes. However, more attempts are needed to improve the outcomes of TCP. For example, imposing of a greater strain besides reductions of the strain heterogeneity are the challenges of this process. This work is aimed to optimize the die geometry of TCP through a finite element simulation procedure verified by experiments in order to increase the imposed strain as well as to decrease the strain heterogeneity. Results show that the increase of die curvature radius causes decrease of imposed plastic strain and increase of strain heterogeneity. In addition, the minimum amount of die convex height for imposing of a reasonable strain through TCP is calculated considering the tube thickness and the channel angle. Besides this, the optimum die geometry is recommended in order to minimize the strain heterogeneity.
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