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Modeling of double action extrusion - A novel extrusion process for friction characterization at the billet-die bearing interface

机译:双作用挤压的建模-一种新颖的挤压工艺,用于在钢坯-模具轴承界面处表征摩擦

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摘要

The friction in the bearing channel of hot aluminium extrusion was studied by using a novel simulative friction test: double action extrusion (DAE). FEM simulations of DAEs were carried out to evaluate two commonly used friction models. It was found that full-sticking friction represents the experimental results the best. For a further understanding of the DAE, a theoretical model was developed, and a good agreement between the modeling results and experiments was obtained. The theoretical modeling results revealed that the length difference of the extrudates was caused by the combined effects of friction and material rate dependence at elevated temperatures.
机译:通过使用新型模拟摩擦试验:双作用挤压(DAE),研究了热铝挤压轴承通道中的摩擦。对DAE进行了有限元模拟,以评估两个常用的摩擦模型。发现全粘摩擦最能代表实验结果。为了进一步了解DAE,建立了理论模型,并在建模结果和实验之间取得了良好的一致性。理论建模结果表明,挤出物的长度差异是由高温下的摩擦力和材料速率依赖性的综合作用引起的。

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