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Numerical Modeling of the Development of Intermetallic Layers between Aluminium and Steel during Co-Extrusion

机译:共挤出过程中铝和钢金属间层开发的数值模型

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Undergoing the Tailored Forming process chain, coaxial aluminium-steel profiles joined by co-extrusion are formed into hybrid bearing bushings by die forging. During the joining of aluminium and steel, intermetallic phases may develop. As these phases are very hard and brittle, it is important to be able to predict the width of the resulting intermetallic layer because it is likely to reduce the strength of the compound for the subsequent forging step. In the scope of this paper, a possibility for numerical calculation of the resulting phase thickness during the co-extrusion of aluminium and steel, by means of Lateral Angular Co-Extrusion (LACE), is presented. In the first step, an analogy test on a forming dilatometer was developed for the experimental investigation of the intermetallic phase formation. The width of the intermetallic phase seam was determined by means of scanning electron microscopy using an image processing tool. Based on the experimental results, a calculation instruction was defined to describe the intermetallic phase thickness as a function of temperature and contact time. The function was implemented in a commercial finite element (FE) software by means of a user-defined subroutine and validated on the basis of experimental data.
机译:经过定制的成型过程链,通过共挤出加入的同轴铝 - 钢型材通过模具锻造成杂交轴承衬套。在加入铝和钢时,金属间相可能发展。随着这些相位非常难以脆,重要的是能够预测所得金属间层的宽度,因为它可能降低随后的锻造步骤的化合物的强度。在本文的范围内,通过横向角共挤出(蕾丝),提出了通过横向角共挤出(鞋带)在铝和钢的共挤出过程中所得相厚的数值计算的可能性。在第一步中,开发了对形成膨胀计的类比试验以进行金属间相形成的实验研究。通过使用图像处理工具通过扫描电子显微镜测定金属间相接缝的宽度。基于实验结果,定义了计算指令以描述作为温度和接触时间的函数的金属间相厚度。该功能通过用户定义的子程序在商业有限元(FE)软件中实现,并根据实验数据验证。

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