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Mathematical modelling to predict mechanical properties of Copper (C101) feedstock in continuous extrusion

机译:数学建模以预测连续挤出中铜(C101)原料的力学性能

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The continuous extrusion process is a process for producing endless profiles with a high degree of accuracy. The two important and vital process parameters are extrusion wheel velocity and product diameter which affect the mechanical and metallurgical properties of the material. In this work, continuous extrusion of pure copper (C101) rod has been carried out on commercial setup TBJ 350 for feedstock diameter of 9.5 mm at different extrusion wheel velocities and product diameters using different die sizes. The yield strength and percent elongation of extruded feedstock at different wheel velocities and product diameters has been estimated by carrying out the tensile test. The continuous extrusion process has been carried out based on two factor three-level central composite rotatable design using response surface methodology. A mathematical model has been developed to predict the mechanical properties of the extruded feedstock through continuous extrusion process and its validation has been carried out using ANOVA technique.
机译:连续挤出过程是生产具有高精度的无穷性曲线的方法。两个重要和重要的工艺参数是挤出轮速度和产品直径,其影响材料的机械和冶金性能。在这项工作中,在不同的挤出轮速度的原料直径为9.5mm的商业设置TBJ 350上进行连续挤出,在不同的挤出轮速度和使用不同模具尺寸的产品直径。通过进行拉伸试验,估计了挤出原料在不同车速和产品直径下的屈服强度和百分比。使用响应面方法基于两个因子三级中央复合可旋转设计进行了连续挤出工艺。已经开发了一种数学模型来预测通过连续挤出过程来预测挤出原料的机械性能,并且通过ANOVA技术进行了其验证。

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