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作 者:丁杰雄[1] 崔海龙[1] 张川东[1] 付陆元[1]
机构地区:[1]电子科技大学机械电子工程学院,四川成都611731
出 处:《四川大学学报(工程科学版)》2012年第6期181-185,共5页Journal of Sichuan University (Engineering Science Edition)
基 金:国家科技重大专项资助项目(2010ZX04015-011)
摘 要:为了提高金属切削过程的数值模拟精度,围绕与其密切相关的材料本构方程和刀-屑摩擦特性展开研究。针对铝合金7050-T7451材料,采用分离式霍普金森压杆实验(Split Hopkinson Pressure Bar,SHPB)获取材料本构方程,采用正交切削实验获取切削过程的刀-屑摩擦曲线。对AdvantEdge FEM软件进行二次开发,输入材料本构方程和刀-屑摩擦系数,研究切屑厚度、剪切角、应变、应变率等切削过程典型特征随切削参数的变化规律。结果表明:所提出的数值模拟方法对切削过程的典型特征具有很好的预测效果,在AdvantEdge FEM软件中输入合适的材料本构方程和刀-屑摩擦系数能够明显提高数值模拟精度。In order to improve the numerical simulation accuracy in metal cutting process, material constitutive equation and tool-chip friction characteristics were investigated. For the aluminum alloy 7050-T'/451 material, the method of Split Hopkinson Pressure Bar (SHPB) was used to confirm the material constitutive equation. The orthogonal cutting experiment was used to form the curve of tool- chip friction. Material constitutive equation and the coefficient of tool-chip fiction were input into the secondary development of the Ad- vantEdge FEM software, the variation law of typical characteristics of chip thickness, shear angle, strain and strain rate with cutting parameters were researched in metal cutting process. The results showed that typical characteristics of cutting process was predicted ac- curately by numerical simulation method proposed, the accuracy of numerical simulation can be improved significantly when appropriate material constitutive equation and coefficient of tool-chip were input in the AdvantEdge FEM software.
关 键 词:数值模拟 材料本构方程 刀-屑摩擦 AdvantEdgeFEM软件
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