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Optimization of bearing lengths in aluminum extrusion dies

机译:铝挤出模具中轴承长度的优化

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Bearing design plays a key role in producing high quality extruded products. Balancing the flow by adjusting the bearing lengths to eliminate profile distortion is a common practice in the industry. The bearing correction, however, is accomplished by costly trial and error approaches-largely relying on the expertise of die designers. In this paper we present a numerical algorithm to optimize the bearing lengths that produce uniform velocity at the die exit. This is based on a finite element model to solve material flow during extrusion. The solution approach involves iteratively computing velocity, temperature, and strain fields during extrusion and updating the bearing lengths until balanced flow is achieved. Different aspects of bearing design and robustness of this optimization technique are illustrated through a few examples.
机译:轴承设计在生产高质量的挤出产品方面发挥着关键作用。通过调节轴承长度来平衡流动以消除轮廓失真是该行业的常见做法。然而,轴承校正是通过昂贵的试验和错误方法来实现的 - 基本上依赖模具设计师的专业知识。在本文中,我们提出了一种数值算法,以优化在模具出口处产生均匀速度的轴承长度。这是基于有限元模型来解决挤出过程中的材料流动。解决方案方法包括迭代地计算挤出过程中的速度,温度和应变场,并更新轴承长度直到实现平衡流动。通过几个例子说明了这种优化技术的轴承设计和鲁棒性的不同方面。

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