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Effect of Friction Coefficient on Deep Drawing of 6A16 Aluminum Alloy for Automobile Body 被引量:3

Effect of Friction Coefficient on Deep Drawing of 6A16 Aluminum Alloy for Automobile Body
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摘要 Based on the ABAQUS/Explicit finite element method,the forming force changing trend of deep drawing test for 6A16 aluminum alloy plate after pre-aging and storage at room temperature for one month was simulated under friction coefficient ranging from 0 to 0.22.The lubricants selected for the tests were mechanical oil,butter and dry film lubricant,and the friction coefficient of these lubricants were 0.05,0.10 and 0.15,respectively.Microstructural evolution of 6 A16 aluminum alloy plate during drawing forming was investigated by OM,SEM and EBSD.The results showed that,with the increase of friction coefficient,the stress,strain and deformation degree in deformation zone increased,while the grain size in deformation zone decreased.Thus,the hardness of the cup-typed component increased with the increase of friction coefficient.Butter-lubricated cups had the highest tensile strength and yield strength after paint-bake cycle.The combination of simulation results and microstructure analysis of 6A16 aluminum alloy plate after drawing forming indicates that the appropriate lubricant is butter. Based on the ABAQUS/Explicit finite element method, the forming force changing trend of deep drawing test for 6 A16 aluminum alloy plate after pre-aging and storage at room temperature for one month was simulated under friction coefficient ranging from 0 to 0.22. The lubricants selected for the tests were mechanical oil, butter and dry film lubricant, and the friction coefficient of these lubricants were 0.05, 0.10 and 0.15, respectively. Microstructural evolution of 6 A16 aluminum alloy plate during drawing forming was investigated by OM, SEM and EBSD. The results showed that, with the increase of friction coefficient, the stress, strain and deformation degree in deformation zone increased, while the grain size in deformation zone decreased. Thus, the hardness of the cup-typed component increased with the increase of friction coefficient. Butter-lubricated cups had the highest tensile strength and yield strength after paint-bake cycle. The combination of simulation results and microstructure analysis of 6 A16 aluminum alloy plate after drawing forming indicates that the appropriate lubricant is butter.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第1期208-214,共7页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Key Research and Development Program of China(No.2016YFB0300805).
关键词 FINITE element method 6A16 aluminum alloys deep DRAWING test FRICTION COEFFICIENT finite element method 6A16 aluminum alloys deep drawing test friction coefficient
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