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Finite element simulation of die design for hot extrusion process of Al/Cu clad composite and its experimental investigation

机译:Al / Cu包覆复合材料热挤压过程模具设计的有限元模拟及实验研究

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摘要

A clad composite material is a variant of the typical composites which is composed of two or more materials joined at their interface surface. The advantage of clad material is that the combination of different properties of materials can satisfy both the need of good mechanical properties and the demand of user such as electrical properties simultaneously. This paper is concerned with the direct and indirect extrusion process of copper-clad aluminum rod. Extrusion of copper-clad aluminum rod was simulated using a commercially available finite element package, DEFORM which can be used to simulate metal forming and heat transfer, welding and machining processes. The simulations were performed for copper-clad aluminum rod to predict the distributions of temperature, effective stress, effective strain rate and mean stress for various sheath thickness, die exit diameters and die temperatures. From the simulations, it was found that the larger the die outlet diameter and the thickness of the sheath material are, the better results can be acquired. It was found that the experimental result for lubricant material with carbon oil has good agreement with extrusion force from finite element analysis.
机译:复合复合材料是典型复合材料的一种变体,它由两种或更多种在其界面处连接的材料组成。包层材料的优点是材料不同性能的组合既可以满足良好机械性能的需求,又可以同时满足用户的电气性能等要求。本文涉及铜包铝棒的直接和间接挤压工艺。使用市售的有限元软件包DEFORM模拟了覆铜铝棒的挤压,该软件包可用于模拟金属成型和传热,焊接和机械加工过程。对覆铜铝棒进行了仿真,以预测温度,有效应力,有效应变率和平均应力的分布情况,这些温度分别针对不同的护套厚度,模具出口直径和模具温度。从仿真中发现,模具出口直径和外皮材料的厚度越大,可获得的结果越好。通过有限元分析发现,含碳油润滑材料的实验结果与挤压力具有良好的一致性。

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