本文研究了 SiCw/Al 金属基复合材料的界面问题。用俄歇电子谱仪(AES)对断口表面和对它进行溅射剥层后分析的结果表明 SiC 晶须与基体 Al 结合良好。通过透射电镜和 X 射线能谱观测,没有发现界面反应层存在的迹象。分析表明既没有C、Si...本文研究了 SiCw/Al 金属基复合材料的界面问题。用俄歇电子谱仪(AES)对断口表面和对它进行溅射剥层后分析的结果表明 SiC 晶须与基体 Al 结合良好。通过透射电镜和 X 射线能谱观测,没有发现界面反应层存在的迹象。分析表明既没有C、Si 元素通过界面向基体中的扩散,也没有 Al 通过界面向晶须中的扩散。X 射线衍射试验结果进一步证实了这一点。研究还表明 SiC 晶须与其周围的 Al 基体可能存在某种位向关系。展开更多
The effect of friction coefficient on the deep drawing of aluminum alloy AA6111 at elevated temperatures was analyzed based on the three conditions using the finite element analysis and the experimental approach.Resul...The effect of friction coefficient on the deep drawing of aluminum alloy AA6111 at elevated temperatures was analyzed based on the three conditions using the finite element analysis and the experimental approach.Results indicate that the friction coefficient and lubrication position significantly influence the minimum thickness,the thickness deviation and the failure mode of the formed parts.During the hot forming process,the failure modes are draw mode,stretch mode and equi-biaxial stretch mode induced by different lubrication conditions.In terms of formability,the optimal value of friction coefficient determined in this work is 0.15.At the same time,the good agreement is performed between the experimental and simulated results.Fracture often occurs at the center of cup bottom or near the cup corner in a ductile mode or ductile-brittle mixed mode,respectively.展开更多
基金Project (51204124) supported by the National Natural Science Foundation of ChinaProject (2012M511610) supported by the China Postdoctoral Science FoundationProject (14125041) supported by the Scientific Research Foundation of Wuhan Institute of Technology
文摘本文研究了 SiCw/Al 金属基复合材料的界面问题。用俄歇电子谱仪(AES)对断口表面和对它进行溅射剥层后分析的结果表明 SiC 晶须与基体 Al 结合良好。通过透射电镜和 X 射线能谱观测,没有发现界面反应层存在的迹象。分析表明既没有C、Si 元素通过界面向基体中的扩散,也没有 Al 通过界面向晶须中的扩散。X 射线衍射试验结果进一步证实了这一点。研究还表明 SiC 晶须与其周围的 Al 基体可能存在某种位向关系。
基金Project(2009ZX04014-074)supported by the National Science and Technology Major Project of ChinaProject(P2014-15)supported by the State Key Laboratory of Materials Processing and Die&Mould Technology,Huazhong University of Science and Technology,ChinaProject(20120006110017)supported by the Specialized Research Fund for the Doctoral Program of Higher Education of China
文摘The effect of friction coefficient on the deep drawing of aluminum alloy AA6111 at elevated temperatures was analyzed based on the three conditions using the finite element analysis and the experimental approach.Results indicate that the friction coefficient and lubrication position significantly influence the minimum thickness,the thickness deviation and the failure mode of the formed parts.During the hot forming process,the failure modes are draw mode,stretch mode and equi-biaxial stretch mode induced by different lubrication conditions.In terms of formability,the optimal value of friction coefficient determined in this work is 0.15.At the same time,the good agreement is performed between the experimental and simulated results.Fracture often occurs at the center of cup bottom or near the cup corner in a ductile mode or ductile-brittle mixed mode,respectively.