Numerical Simulation and Experimental Research on the Deformation of Equal Channel Angular Pressing of Al-5Ti-1B Aluminum Alloy

Wen Yu Zhang, X. Liu, X. Jin
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Abstract

The effective strain size and distribution of Al-5Ti-1B alloy deformed by equal channel angular pressing (ECAP) were investigated through the finite element simulation by the die with outer corner ψ=0°, 20°, 30° and the friction coefficient f=0, 0.2, 0.3. The simulation results show that the effective strains decrease with the increase of the outer corner ψ from 0° to 30° with a constant f; the more uniform deformation were obtained under the conditions of large friction than that of small friction. Al-5Ti-1B alloy was produced by once path ECAP at room temperature under the die with the corner angle φ=90° and ψ=20°. The optical microscope and compressing test machine were performed. The results indicate that the grain size was obviously refined. The yield strength increased by 37.5% from 142.0MPa to 195.3MPa, and hardness increased by 24% from 45.2HV to 55.9 HV.
Al-5Ti-1B铝合金等道角挤压变形的数值模拟与实验研究
采用外角ψ=0°,20°,30°,摩擦系数f=0, 0.2, 0.3的模具,通过有限元模拟研究了Al-5Ti-1B合金等径角挤压变形(ECAP)的有效应变大小和分布。仿真结果表明,有效应变随外角ψ从0°增大到30°而减小,且f恒定;大摩擦条件下的变形比小摩擦条件下的变形更均匀。在φ=90°,φ= 20°的模具下,采用一次径道ECAP在室温下制备了Al-5Ti-1B合金。进行了光学显微镜和压缩试验机的检测。结果表明,晶粒尺寸明显细化。屈服强度从142.0MPa提高到195.3MPa,提高37.5%;硬度从45.2HV提高到55.9 HV,提高24%。
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