Mathematical and Numerical Modelling of Copper Tube Extrusion after Optimizing Geometrical and Operating Parameters

Ngoy Moïse Raphael Moramess, Mulaja Tshakatumba Constantin, Tshipeshi Makina Héritier, Ntambwe Sapu Aaron, Tubadi Diamba José, Mwema Mutamba Edouard
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Abstract

This study aimed to optimize cross-sectional area of the extruder and the flow rate of the material through the extruder. Extrusion process was first mod-elized using the continuum mechanics method before being simulated with the commercial software LS-DYNA using the Johnson-Cook model based on the finite element method after optimization of the factors with simplex algorithm. The study was carried out on a connecting rod: diameter of 145 mm, cross-section of 1.65 m 2 , length of 0.25 m, volume of 0.41 m 3 and a mass of 37 kg. Optimum parameters obtained were temperature of 850˚C, flow rate of 0.237 m/s, die diameter of 19.2 mm, pin diameter of 14 mm, extrusion strength of 565.6 kN and press pressure of 245 GPa. From these factors, a blank was obtained with external and internal diameters of 19.2 and 14 mm respectively over a length of 28 m with a thickness of 2.6 mm. Simulation using LS-DYNA software resulted in a difference in values of 7.4% between optimization and simulation when the difference of 2.4% was found between modelling and simulation. These values make the process optimal for industrial application to improve the extrusion requirements of copper tubes.
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优化几何参数和操作参数后的铜管挤压的数学和数值模拟
本研究旨在优化挤出机的截面积和物料通过挤出机的流量。首先采用连续介质力学方法对挤压过程进行建模,然后通过单纯形算法对各因素进行优化,采用基于有限元法的Johnson-Cook模型,利用LS-DYNA商用软件对挤压过程进行模拟。研究对象是一根连杆:直径145毫米,横截面1.65 m2,长度0.25 m2,体积0.41 m2,质量37 kg。得到的最佳参数为温度850℃,流速0.237 m/s,模具直径19.2 mm,销直径14 mm,挤压强度565.6 kN,压力245 GPa。由此得到的毛坯外径为19.2 mm,内径为14 mm,长28 m,厚2.6 mm。LS-DYNA软件仿真结果表明,优化值与仿真值相差7.4%,建模值与仿真值相差2.4%。这些值使该工艺最适合工业应用,以提高铜管的挤压要求。
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