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Study on Metal Flow in Continuous Extrusion Cladding of Cable Aluminum Sheath Using FEM Analysis

机译:使用FEM分析的连续挤出覆盖覆盖金属流动研究

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This paper analyzed continuous extrusion cladding process through 3D FE simulation in the non-steady state. The model is used to predict the metal flow characteristics during the entire process. According to the metal flow characteristic, continuous extrusion cladding process is classified into feeding, welding, filling and forming stages. The modeling results predict temperature, stress, strain rate and velocity fields. When the metal flows through the die bearing, the velocity distribution is non-uniformity, because of the non-symmetrical structure and the difference in temperature of the upper and bottom portion of the die cavity. And FEM results also show that the velocity distribution is sensitive to the change in mandrel radius. Increasing the mandrel radius can relatively improve the metal flow velocity in the upper cavity and decrease the velocity in the bottom cavity. There is an optimum mandrel radius value that makes metal flow most uniform. These also provide the theoretical basis for optimizing the technology and the die design.
机译:本文通过非稳态3D模拟分析了连续挤出包层过程。该模型用于预测整个过程中的金属流特性。根据金属流动特性,连续挤出包层工艺被分类为进给,焊接,填充和形成阶段。建模结果预测温度,应力,应变率和速度场。当金属流过管轴承时,由于非对称结构和模腔的上部和底部的温度差异,速度分布是不均匀的。和有限元的结果也表明,速度分布对心轴半径的变化敏感。增加心轴半径可以相对改善上腔中的金属流速并降低底腔中的速度。有一个最佳的心轴半径值,使金属流最均匀。这些还提供了优化技术和模具设计的理论依据。

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